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LODE RESOURCES LTD Capital/Financing Update 2025

Sep 29, 2025

65220_rns_2025-09-29_36ca650a-3d4e-451e-9143-7191b25bf225.pdf

Capital/Financing Update

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ASX Announcement | 30 September 2025 ASX Code: LDR

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MONTEZUMA DISTRICT EXPLORATION DELIVERS HIGH-GRADE SILVER & ANTIMONY ASSAYS

Lode Resources Ltd (‘Lode’ or ‘Company’) (ASX: LDR) is pleased to announce the commencement of regional exploration in areas surrounding the Montezuma Silver & Antimony Project including initial high-assay silver and antimony results.

Highlights

  • Grab samples from waste dumps at the Fahlore mine workings have returned high-grade silver, antimony and copper assays including:

  • 2,480 g/t Ag, 2.35% Sb and 3.19% Cu

  • 2,060 g/t Ag, 2.30% Sb and 3.12% Cu

  • 1,610 g/t Ag, 1.01% Sb and 0.83% Cu

  • 670 g/t Ag, 1.65% Sb and 3.73% Cu

  • 631 g/t Ag, 1.27% Sb and 0.86% Cu

  • 554 g/t Ag, 0.17% Sb and 1.29% Cu

  • 466 g/t Ag, 0.52% Sb and 0.71% Cu

  • 464 g/t Ag, 0.48% Sb and 0.66% Cu

  • Mineralisation at Fahlore silver & antimony deposit comprise jamesonite, galena, tetrahedrite and chalcopyrite. This is similar mineralogy to the Montezuma Silver & Antimony deposit, located 4000 metres to the southwest, which is currently being drilled.

  • The Fahlore workings includes a series of shaft, adit and waste dumps that extend over 350 metres of strike in a N-S direction.

  • Regional, exploration fieldwork is ongoing with multiple targets defined using historic systematic soil sampling being investigated

  • Preliminary field investigation has resulted in the rediscovery of the Blocks East Antimony-Silver workings where soils were highly anomalous in silver, copper and lead (antimony not historically analysed)

  • Lode sees the Montezuma Silver & Antimony deposit as a model for discovering other such structurally controlled granite related Antimony-Silver sulphide deposits surrounding the Montezuma Silver and Antimony Project and other project areas currently under application in Tasmania’s West Coast Mining Province .

  • Lode is acquiring a significant land holding in the district with the recent acquisition of tenement EL2/2020 adding 88 sqkm’s and tenement application EL6/2025 adding 71 sqkm’s.

Lode’s Managing Director Ted Leschke said: “The significant expansion of Lode’s exploration ground in and around the Montezuma Silver and Antimony Project has provided immense exploration potential to discover similar high-grade antimony & silver deposits. We look forward to updating the market with further exploration results in due course”

ASX Code: LDR | ACN: 637 512 415 | www.loderesources.com

A: Level 15, Governor Macquarie Tower, 1 Farrer Place Sydney NSW 2000 | P: +61 2 9199 8017

| E: [email protected]

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Montezuma Silver & Antimony Project – Early Results In Regional Exploration

Grab samples from historical waste dumps at the Fahlore workings have returned high-grade silver, antimony and copper assays as shown in Table 1 and Figure 2. Grab sampling is selective in nature with resultant assay grades considered to be qualitative rather than quantitative and not necessarily representative of the mined mineralisation which may actually be lower or higher in grade.

Table 1. Montezuma Silver & Antimony Project – Fahlore mine dump assays

Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
Sample
Easting
Northing
Ag
Sb
Cu
Pb
Zn
Au
Sn
Number
(m GDA94) (m GDA94)
(g/t)
(%)
(%)
(%)
(%)
(g/t)
(%)
FA004 374325 5367840 554 0.17 1.29 0.12 0.03 0.08 0.01
FA005 374310 5367825 77 0.16 0.56 0.12 0.02 0.05 0.01
FA006 374378 5367966 12 0.02 0.03 0.03 0.01 0.02 0.01
FA007 374377 5367941 2480 2.35 3.19 0.09 0.15 0.11 0.01
FA008 374373 5367920 464 0.48 0.66 0.10 0.02 0.06 0.01
FA009 374368 5367953 215 0.25 2.41 0.09 0.06 0.07 0.01
FA010 374365 5367935 1610 1.01 0.83 0.42 0.03 0.16 0.01
FA011 374355 5367860 198 0.61 0.48 0.47 0.01 0.12 0.01
MR0006 374353 5367941 2060 2.30 3.12 0.36 0.11 0.13 0.02
MR0007 374346 5367726 21 0.79 0.05 1.43 0.04 0.03 0.02
MR0010 374371 5367759 47 0.12 0.21 0.12 <0.01 0.05 0.01
MR0011 374373 5367752 631 1.27 0.86 0.11 0.04 0.08 0.01
MR0012 374374 5367743 670 1.65 3.73 0.25 0.06 0.05 0.01
FO 1 373108 5363959 21 - - 0.04 0.05 0.04 -0.01
FO 2 373108 5363959 47 - - 0.02 0.05 0.02 <0.01
FOC 374397 5367877 466 0.52 0.71 0.13 0.21 0.07 0.01
FOD1 374855 5367957 31 0.04 0.08 0.03 0.06 0.01 0.01
FOD2 374374 5367962 4 0.01 0.01 0.01 0.03 0.03 0.01

The Fahlore silver and antimony deposit mineralisation comprises jamesonite, galena, tetrahedrite and chalcopyrite and is similar in composition to the Montezuma silver and antimony deposit which is currently being drilled.

The Fahlore workings includes series of shaft, adit and waste dumps that extend over a strike of 350 metres in a N-S direction (Figure 1).

Exploration fieldwork is ongoing with multiple targets defined using extensive soil sampling that was completed by contract field staff for Electrolytic Zinc Company in the 1980’s followed up with other exploration techniques.

Early success includes the successful rediscovery of the lost Blocks East workings after investigating Ag-Cu-Pb soil geochemical anomalies (see Figure 2). Initial rock chip sampling and mapping has been carried out and assays will be reported when received.

Lode sees the successful drill definition of the Montezuma silver & antinomy deposit as a model for discovering other such structurally controlled granite related Sb-Ag sulphide deposits in the West Coast Mining Province.

Soil anomalies defined by historical exploration provide numerous untested structural targets in the district yet to be investigated. Lode is acquiring a significant land holding in the district with the recent acquisition of tenement EL2/2020 adding 88 sqkm’s and tenement application EL6/2025 adding 71 sqkm’s.

2

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Figure 1. Montezuma Silver & Antimony Project – Fahlore mine workings and dump assays

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215 g/t Ag, 0.25% Sb, 2.41% Cu
2,480 g/t Ag, 2.35% Sb, 3.19% Cu
2,060 g/t Ag, 2.3% Sb, 3.12% Cu
1610 g/t Ag, 1.01% Sb, 0.83% Cu
464 g/t Ag, 0.48% Sb, 0.66% Cu
466 g/t Ag, 0.52% Sb, 0.71% Cu
198 g/t Ag, 0.61% Sb, 0.48% Cu
554 g/t Ag, 0.17% Sb, 1.29% Cu
631 g/t Ag, 1.27% Sb, 0.86% Cu
670 g/t Ag, 1.65% Sb, 3.73% Cu
----- End of picture text -----

3

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Figure 2. Montezuma Silver & Antimony Project – Historical soil sampling reveals numerous soil anomalies

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Fahlore mine workings
Anomalous soils
Blocks East mine workings
Montezuma Silver & Antimony deposit
with drilling in progress
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4

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The Montezuma Silver & Antimony Project

The Montezuma Silver & Antimony Project includes a high-grade silver & antimony deposit with initial development, advanced metallurgical test work and significant mining equipment and beneficiation infrastructure. The Montezuma Silver & Antimony Project deposit is accessed via the Zeehan township located 14km to the west. The Montezuma Silver & Antimony Project is located between well-known mining centres such as:

  • Rosebery-Hercules (Zn, Cu, Pb, Ag, Au) owned by MMG Ltd

  • Renison Bell (Sn) owed by Metals X Ltd and Yunnan Tin Group Company Ltd

  • Henty (Au) owned by Catalyst Metals Ltd

  • Zeehan (Sn, Pb, Ag) owned by Stellar Resources Ltd

Figure 3 . Montezuma Silver & Antimony Project - located in Tasmanian’s premier West Coast Mining Province

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The Montezuma Silver & Antinomy Project’s beneficiation infrastructure is located 15km northwest of the Zeehan township. Infrastructure includes connection to grid power, cone crusher, ball mill, gravity tables, spirals, tankage, raw water and a recently constructed tailings dam. Trial pilot scale beneficiation treatment of Montezuma mineralisation is planned once metallurgical parameters, flowsheet configuration and permitting are finalised.

The Montezuma silver-antimony lode is structurally controlled with strong shearing and open space fracturing along the Montezuma Fault. Modelling of this structure using drilling and surface mapping of the existing known mineralised lode shows that the Montezuma structure strikes approximately 350° and dips 65°E. Extrapolation of the interception between the modelled Montezuma structure and surface along strike was an exploration method used to map and sample lode extensions.

Exploration and extension drilling of the Montezuma lodes since April 2025 has delineated high grade mineralisation over a 200m strike length by 200m depth with 20-40m spaced systematic diamond drill holes. The deposit remains open along strike and down dip with drilling ongoing (see Figure 5 and Page 10).

Historically, previous explorers focused primarily on tin (Sn) and lead-zinc (Pb-Zn) exploration and antimony was rarely assayed. Assays of mineralisation encountered in drilling to date has shown there is good geochemical associations between several elements, that being Sb-Ag-Au-Pb-Cu-Zn-Sn.

Cassiterite is a tin bearing mineral which is relatively resistant to chemical weathering due it being an oxide (SnO2) and resistant to physical weathering due its high density (7.3 g/cm[3] ). Historic soil sampling by Electrolytic Zinc Company of Australia Ltd in the 1980’s has revealed a strong Sn anomaly associated with the Montezuma mineralisation over 500m strike. Besides Sn other base metals are being used to locate silver & antimony targets as it is known that often these elements are emplaced along similar structures.

5

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Previous Drilling (all assays previously reported[3-13] )

Previous drilling at the Montezuma Silver & Antimony Project focused on a relatively small but very highgrade section of the hanging wall lode (HW). Twelve drill holes returned bonanza antimony and silver grades over approximately a 25m strike x 20 depth area of the hanging wall lode.

Table 2 . Previous Montezuma Silver & Antimony Project drill intercept assays

Hole From To Interval Sb Ag Au Pb Cu Sn
(m) (m) (m) (%) (g/t) (g/t) (%) (%) (%)
MZSFW1 3.00 12.50 9.50 1.86 291 0.38 2.82 0.14 0.09
incl. 7.30 11.20 3.90 1.95 430 0.38 2.67 0.12 0.07
incl. 8.60 10.50 1.90 5.36 913 0.66 8.33 0.37 0.21
MZSFW2 11.00 19.00 8.00 2.13 223 0.72 3.61 0.10 0.20
incl. 12.10 16.80 4.70 3.49 340 1.03 5.92 0.11 0.26
incl. 14.30 16.00 1.70 5.59 649 1.08 7.99 0.17 0.10
MZSFW3 2.50 13.00 10.50 2.98 263 0.71 4.66 0.17 0.14
incl. 4.70 12.00 7.30 4.18 353 0.93 6.52 0.23 0.17
incl. 9.00 11.00 2.00 12.00 1,030 2.37 17.80 0.61 0.39
MZSFW4 3.00 12.00 9.00 0.17 98 0.52 0.19 0.11 0.10
inl 7.50 9.00 1.50 0.34 224 2.03 0.19 0.42 0.37
MZSFW5 0.00 8.60 8.60 5.02 738 0.70 7.28 0.32 0.16
incl. 3.30 8.20 4.90 8.59 1,251 1.18 12.43 0.54 0.26
incl. 5.20 7.80 2.60 12.02 1,677 1.16 17.40 0.71 0.33
MZSFW6 3.00 6.80 3.80 1.23 443 1.23 2.01 0.21 0.10
incl. 3.00 5.80 2.80 1.55 543 1.46 2.52 0.26 0.10
incl. 3.80 4.90 1.10 2.34 741 1.56 3.33 0.41 0.11
MZSFW7 15.00 22.00 7.00 3.57 432 1.03 4.60 0.17 0.10
Incl. 16.70 20.70 4.00 6.05 722 1.66 7.76 0.28 0.16
Incl. 19.40 20.20 0.80 18.23 612 1.30 22.56 0.20 0.13
MZSFW8 3.00 3.50 0.50 1.30 49 0.35 2.59 0.27 0.15
MZSFW8 10.00 15.00 5.00
2.90
2.75
4.38
280
445
1.12 4.51 0.22 0.31
incl. 10.90 13.80 1.80 7.22 0.34 0.50
MZS01 19.50 24.30 4.80
2.70
0.44
0.74
58
79
0.28 0.78 0.06 0.06
incl. 21.00 23.70 0.36 1.35 0.10 0.05
MZS02 22.00 25.00 3.00
0.90
1.79
5.51
101
285
0.51 4.56 0.12 0.14
incl. 23.10 24.00 1.33 14.30 0.35 0.27
MZS03 25.20 30.00 4.80
1.30
2.31
6.58
329
826
0.48 4.05 0.13 0.08
incl. 28.00 29.30 0.76 11.33 0.27 0.13
MZS04 10.00 13.00 3.00 0.09 174 0.14 0.12 0.05 0.11
MZS04 23.00 30.90 7.90 0.14 25 0.31 0.21 0.03 0.04

Figure 4. Montezuma Silver & Antimony Project long section showing antimony (Sb), silver (Ag)and gold (Au) assays for previously reported drill intercepts (dark blue annotation boxes) and surface grab samples (light blue annotation boxes)

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----- Start of picture text -----

MZSFW1
9.50m @
1.86% Sb
291 g/t Ag
0.38 g/t Au
MZSFW8 MZSFW4 MZSFW6
2.75% Sb 5.00m @ 0.17% Sb 9.00m @ 1.23% Sb 3.80m @
280 g/t Ag 98 g/t Ag 443 g/t Ag
1.12 g/t Au 0.52 g/t Au 1.23 g/t Au
MZSFW3 MZS01
10.50m @ 4.80m @
2.98% Sb 0.44% Sb
MZSFW7 263 g/t Ag 58 g/t Ag
7.00m @ 0.71 g/t Au 0.28 g/t Au
1.03 g/t Au 432 g/t Ag 3.57% Sb 0.72 g/t Au223 g/t Ag 2.13% Sb 8.00m @ MZSFW2 MZSFW5 0.51 g/t Au 101 g/t Ag 1.79% Sb 3.00m @ MZS02 Montezuma Modelled Structure Open
8.60m @
5.02% Sb MZS03
738 g/t Ag MZS04 4.80m @
0.70 g/t Au 7.90m @ 2.31% Sb
0.14% Sb 329 g/t Ag
25 g/t Ag 0.48 g/t Au
0.31 g/t Au
Open
SGD+0: 6.01% Sb 10.6% Pb
18.30% Sb 3,050g/t Ag 18.9% Pb SGD+10: 10.10% Sb 1,950 g/t Ag 14.00% Pb SGD+15: 17.2% Sb 399 g/t Ag 29.68% Pb
SGD+25: 24.50% Sb 501 g/t Ag
SGD+30: 640 g/t Ag 16.70% Pb SGD+35: 4.36% Sb 124 g/t Ag 13.81% Pb SGD+40: 5.73% Sb 175 g/t Ag 11.00% Pb SGD+45: 10.40% Sb 158 g/t Ag 17.5% Pb SGD+50: 5.12% Sb 986 g/t Ag 18.50% Pb
446 g/t Ag
SGD+5:
39.08% Pb
g
16.90% Sb
----- End of picture text -----

6

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Development Face and Bulk Sampling (all assays previously reported[3-13] )

Development of the portal box cut and exploration drive has provided an opportunity for development face and bulk sampling. Previously samples were taken from three development faces up to the initial adit face, each representing a 2.4m cut (drilled, charged, blasted, mineralised/waste rock removed and stockpiled). These development face samples have graded up to 21.4% antimony (Sb), 2,478 g/t silver (Ag) and 44.3% lead (Pb). Antimony (Sb) grades ranged from 1.54% to 21.40%, lead (Pb) grades ranged from 2.13% to 44.3% and silver (Ag) grades ranged from 93 g/t to 2,478 g/t.

Total interval grades for face sampling are 9.3% antimony (Sb), 306 g/t silver (Ag) and 16.7% lead (Pb) over 1.85m for development face LT1, 7.8% antimony (Sb), 804 g/t silver (Ag) and 10.9% lead (Pb) over 2.20m for development face LT2 and 6.2% antimony (Sb), 301 g/t silver (Ag) and 11.7% lead (Pb) over 2.00m for development face LT3.

Table 3. Montezuma Silver & Antimony Project deposit – sampling of three development faces

Sample Easting Northing RL
m
From
m
To
m
Interval
m
Sb Ag Pb
Number m m % g/t %
LT101 0.00 0.50 0.50 17.50 434 34.00
LT102 373154.2 5364182.0 620.0 0.50 1.45 0.95 3.07 186 5.26
LT103 1.45 1.85 0.40 13.90 431 22.40
LT1 Total Interval 0.00 1.85 1.85 9.31 306 16.73
LT201 0.00 0.50 0.50 18.65 2,478 25.80
LT202 373154.3 5364178.1 620.0 0.50 1.10 0.60 5.90 346 8.49
LT203 1.10 1.60 0.50 6.78 534 9.21
LT204 1.60 2.20 0.60 1.54 93 2.13
LT2 Total Interval 0.00 2.20 2.20 7.81 804 10.85
LT301 0.00 0.30 0.30 13.65 1,170 21.00
LT302 373154.0 5364176.3 620.3 0.30 0.50 0.20 21.40 462 44.30
LT303 0.50 2.00 1.50 2.66 106 5.51
LT3 Total Interval 0.00 2.00 2.00 6.18 301 11.71

Previously representative sample assays of mineralisation mined during box cut and portal development averaged 4.75% antimony (Sb), 239 g/t silver (Ag) and 9.36% lead (Pb) for combined mineralisation/waste batches and representative sampling averaged 9.02% antimony (Sb), 769 g/t silver (Ag) and 15.47% lead (Pb) for mineralisation only batches. The latter reconciles well with corresponding face sampling – see LT1 Total Interval in Table 4.

Table 4. Combined development mineralisation/waste assay

Sample Sb Ag Pb
Number % g/t %
DSO1 All in 4.16 232 8.48
DSO2 All in 4.30 237 8.87
DSO3 All in 5.25 244 9.88
DSO4 All in 5.29 243 10.20
Average 4.75 239 9.36

Table 85 Development mineralisation only assays

Sample Sb Ag Pb
Number % g/t %
DSO11/22 01 7.96 917 12.85
DSO11/22 02 9.01 672 16.30
DSO11/22 03 10.10 718 17.25
Average 9.02 769 15.47

Photo 1. Mined and coarsely crushed Montezuma mineralisation. Representative sample assays of mineralisation only batches averaged 9.02% antimony (Sb), 769 g/t silver (Ag) and 15.47% lead (Pb)

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Photo 2. Exploration drive development

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7

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Currently Drilling (all assays previously reported[3-13] )

Early in 2025 an extensive drill programme commenced at Montezuma to test for extensions of the Montezuma silver & antimony deposit, both down dip and along strike. The initial target area being tested is approximately 300min strike by 200m depth. This 50-to-60-hole drilling programme (8,000m to 10,000m) is ongoing with 17 holes for 2,507m having been completed up to the FY year end with a total 26 drill holes for 41,50m completed to date.

Exploration and extension drilling has produced numerous high-grade antimony and silver drill intercepts including:

776 g/t AgEq or 2.18% SbEq over 9.9m (MZS19) incl: 1,981 g/t AgEq or 5.06% SbEq over 2.6m (MZS19) incl: 2,491 g/t AgEq or 7.01% SbEq over 1.6m (MZS19) ➢ 806 g/t AgEq or 2.27% SbEq over 9.2m (MZS13) incl: 1,133 g/t AgEq or 3.19% SbEq over 6.2m (MZS13) ➢ 1,519 g/t AgEq or 4.27% SbEq over 3.5m (MZS11) incl: 3,254 g/t AgEq or 9.16% SbEq over 1.0m in ( MZS11) ➢ 772 g/t AgEq or 2.17% SbEq over 5.0m (MZS16) incl: 1,798 g/t AgEq or 5.06% SbEq over 2.0m (MZS16) ➢ 1,378 g/t AgEq or 3.88% SbEq over 2.8m (MZS05) incl: 1,825 g/t AgEq or 5.14% SbEq over 1.6m (MZS05)

Figure 5. Montezuma Silver & Antimony Project Hanging Wall Lode Long Section showing drill holes completed to date and intercepts for drill holes MZS18 to MZS22 (Section 5364050N)

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8

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The Montezuma silver & antimony deposit consists of structurally controlled polymetallic sulphide lodes associated with the Montezuma fault, hosted by a sequence of turbidites, siltstones, sandstones and black shale units. Antimony is contained within Jamesonite, a lead-iron-antimony sulphide mineral (Pb4FeSb6S14) and is a late-stage hydrothermal mineral forming at moderate to low temperatures. Silver occurs as tetrahedrite and argentiferous galena.

Drilling to date has intercepted multiple mineralised veins in each drill hole and the mineralised structures remain open in all directions. Silver and antimony are by far the most dominant metals however significant gold, lead, copper and tin values highlight the polymetallic nature of mineralisation in the Montezuma lodes. Antimony and silver values interchange dominance from intercept to intercept.

In addition to numerous wide intercepts encountered to date (20 intercepts >2m), multiple mineralised “daughter” structures occur adjacent to the footwall and hanging wall structures, suggesting the potential for a bulk tonnage resource scenario. This is particularly pertinent where the footwall and hanging wall structures coalesce.

The Montezuma silver & antimony deposit is associated with a 500m Sn, Ag, As soil anomaly defined by historical soil sampling. Follow-up surface mapping and sampling followed by drilling has extended the Montezuma silver & antimony deposit along strike

Lode sees the Montezuma silver & antimony deposit as a model for discovering other such structurally controlled granite related Sb-Ag sulphide deposits in the West Coast Mining Province. Base metal soil anomalies defined by historical exploration provide numerous untested structural targets in the district. Lode has acquired a significant land holding in the district with the recent acquisition of tenement EL2/2020 adding 88 sqkm’s and tenement application EL6/2025 adding 71 sqkm’s.

Table 6 . Montezuma Silver & Antimony Project. Top 25 intercepts by metal endowment.

Hole From To Interval SbEq1 AgEq1 Sb Ag Pb Cu Au2 Sn2 Endowment
(m) (m) (m) (%) (g/t) (%) (g/t) (%) (%) (g/t) (%) (AgEq g/t.m)
MZS19 100.60
110.50
9.90
2.18
776
1.32
189
1.29
0.91
0.63 0.90 7679
MZS13 51.80
61.00
9.20
2.27
806
1.25
250
2.17
0.67
1.33 0.77 7416
MZS11 98.80
102.30
3.50
4.27
1519
0.99
956
0.98
1.89
0.85 1.51 5315
MZS16 99.70
104.70
5.00
2.17
772
0.57
470
0.49
0.89
1.28 1.78 3860
MZS05 41.70
44.50
2.80
3.88
1378
2.89
231
5.49
0.11
0.90 0.08 3857
MZS20 125.80
134.70
8.90
0.80
285
0.54
61
1.21
0.08
0.44 0.12 2533
MZS10 76.90
78.50
1.60
4.39
1561
3.32
251
5.59
0.19
0.57 0.18 2498
MZS17 149.40
158.90
9.50
0.70
249
0.14
134
0.14
0.59
0.65 0.53 2361
MZS15 99.00
107.00
8.00
0.72
257
0.36
76
0.63
0.39
0.30 0.45 2058
MZS06 49.60
52.00
2.40
2.35
836
1.87
81
3.93
0.12
0.31 0.14 2005
MZS22 227.80
239.00
11.20
0.44
157
0.11
68
0.91
0.32
0.56 0.23 1763
MZS06 12.00
14.50
2.50
1.81
644
0.23
373
8.86
0.13
0.06 0.06 1609
MZS17 177.00
181.00
4.00
1.00
354
0.33
130
0.87
0.88
0.14 0.08 1415
MZS08 95.00
96.00
1.00
3.66
1301
0.99
719
1.21
2.02
0.40 1.96 1301
MZS12 56.00
57.00
1.00
3.07
1092
1.18
526
1.06
1.26
0.91 0.98 1092
MZS15 62.30
66.90
4.60
0.67
237
0.43
49
0.84
0.16
0.56 0.45 1089
MZS11 81.00
82.00
1.00
2.84
1010
2.35
73
4.75
0.07
0.17 0.08 1010
MZS12 124.00
127.30
3.30
0.85
301
0.11
118
0.09
1.41
1.52 1.27 993
MZS17 197.30
205.50
8.20
0.33
117
0.05
67
0.09
0.30
0.50 0.14 956
MZS14 43.00
55.00
12.00
0.21
76
0.09
36
0.09
0.07
0.32 0.11 909
MZS13 160.70
163.80
3.10
0.81
289
0.20
86
0.28
1.25
0.58 0.97 896
MZS08 81.00
85.00
4.00
0.49
173
0.33
36
0.80
0.05
0.19 0.13 691
MZS08 251.00
252.00
1.00
1.90
675
0.91
211
2.11
0.96
0.35 0.13 675
MZS11 26.50
27.50
1.00
1.85
658
1.11
168
1.82
0.61
1.46 0.73 658
MZS14 84.00
88.00
4.00
0.42
150
0.32
16
0.82
0.03
0.10 0.14 598

9

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Figure 6 . Montezuma Silver & Antimony Project . Soil anomaly, completed and planned drilling positions

==> picture [475 x 655] intentionally omitted <==

10

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Antimony - One of the World’s most critical metals

Antimony is classified as a critical metal by both the Australian Federal Government and the Tasmanian State Government, as well as almost every advanced western nation. Antimony markets have tightened further with China announcing the ban on antimony exports specifically to the United States on 3 December*. This curb strengthens the enforcement of existing limits on critical minerals exported from China announced last year and the more specific ban on certain antimony product exports early this year, all due to national security concerns. Antimony prices have now reached record levels due to tight supply conditions.

The Tasmanian Government recently outlined a Critical Minerals Strategy which includes the objective of growing exploration for critical minerals and supporting critical minerals projects. Montezuma, 100% owned by Lode, is Tasmania’s only antimony project**.

Figure 7. Tasmania’s strategic minerals – Montezuma is Tasmania’s only antimony project,100% owned by LDR

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----- Start of picture text -----

Montezuma Silver & Antimony Project
• 100% owned by LDR
• Tasmania’s only antimony project
----- End of picture text -----

*https://www.reuters.com/markets/commodities/china-bans-exports-gallium-germanium-antimony-us-2024-12-03/

  • **https://mrt.tas.gov.au/__data/assets/pdf_file/0017/551114/Critical_Minerals_Strategy_23_Oct_2024.pdf

11

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Figure 8. Antimony Prices have tripled in the West in just one year and are up circa 70% in China

==> picture [405 x 153] intentionally omitted <==

Source: USGS, Polyus 2023 Annual Report

Figure 9. China’s antimony production has fallen by 67% in the last decade

==> picture [410 x 195] intentionally omitted <==

Source: Bloomberg

This announcement has been approved and authorised by Lode Resource Ltd.’s Managing Director, Ted Leschke.

For more information on Lode Resources and to subscribe for our regular updates, please visit our website at www.loderesources.com or email [email protected]

No Material Changes

The Company confirms it is not aware of any new information or data that materially affects the information included in this announcement and that all material assumptions and technical parameters underpinning the exploration activities in this market announcements continue to apply and have not materially changed.

Competent Person’s Statement

The information in this market announcement that relates to exploration results is based on information compiled by Mr Tim Callaghan, who is a Member of the Australian Institute of Geoscientists. The information in this market announcement is an accurate representation of the available data for Montezuma project. Mr. Callaghan has sufficient experience which is relevant to the style of mineralisation and type of deposit under consideration and to the activity which he is undertaking to qualify as a Competent Person as defined in the 2012 edition of the ‘Australasian Code for Reporting of Exploration Results, Mineral Resources and Ore Reserves’. Mr Callaghan consents to the inclusion in this announcement of the matters based on the information in the form and context in which it appears.

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1Silver & Antimony Metal Equivalent Grades

LDR is reporting both antimony and silver equivalent grade figures due to interchanging dominance of these two metals from intercept to intercept. Metal equivalent grade figures are a method of demonstrating overall metal endowment for all significant metals’ grades in a single grade figure for each intercept and thus allowing a simpler comparison between intercepts. Montezuma’s reported antimony and silver equivalent figures are based on conversion factors as follows:

  • ➢ SbEq(%) = Sb(%) + 0.00281Ag(g/t) + 0.056Pb(%) + 0.29Cu(%) ➢ AgEq(g/t) = Ag(g/t) + 355Sb(%) + 20Pb(%) + 101Cu(%)

Metal equivalent conversion factors were calculated using 30 December 2024 metal prices of US$34,747/t antimony, US$29.1/oz silver, US$1,912/t lead and US$8,705/t copper. The antimony price was calculated as an average of several antimony products in a number of markets.

Metal equivalent conversion factors were calculated using a preliminary flotation test carried out by ALS Metallurgy (Burnie) in September 2019, where recoveries achieved were 74.5% antimony, 77.9% silver, 75.8% lead and 84.8% copper. It is Lode’s opinion that all the elements included in the metal equivalents calculation have a reasonable potential to be recovered and sold.

2Tin and Gold Assays

Tin and Gold assay figures are not included in equivalent figures as gold was not assayed in an early flotation test. ALS Metallurgy has been commissioned to complete further comprehensive flotation tests on Montezuma Antimony & Silver mineralisation including the recovery of tin and gold. This includes Quantitative X-ray Diffraction (QXRD) analysis to determine overall mineralogy.

Montezuma Silver & Antimony Project References

  1. LDR announcement 9 December 2024 titled “Montezuma Antimony Project Development Activities Commence”

  2. LDR announcement 21 January 2025 titled “Montezuma Antimony Project Inaugural High-Grade Assays”

  3. LDR announcement 3 February 2025 titled “High-Grade Antimony and Silver Drill Intercepts”

  4. LDR announcement 25 February 2025 titled “Up to 31.9% Antimony and 5,460 g/t silver”

  5. LDR announcement 10 April 2025 titled “Extensive Drill Programme Underway at Montezuma Antimony Project” 8. LDR announcement 30 April 2025 titled “Quarterly Activities Reports for the Period Ended 31 March 2025”

  6. LDR announcement 1 July 2025 titled “Multiple High-Grade Antimony and Silver Drill Intercepts”

  7. LDR announcement 14 July 2025 titled “Gold Assays Enhance High-Grade Antimony and Silver Drill Intercepts”

  8. LDR announcement 21 July 2025 titled “Tin Assays Enhance High-Grade Antimony and Silver Drill Intercepts” 12. LDR announcement 21 July 2025 titled “More High-Grade Antimony & Silver Drill Intercepts Plus Bulk Tonnage” 13. LDR announcement 1 September 2025 titled “Grades up to 2,730 g/t Silver Eq and Deepest Intercept To Date”

13

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Appendix I

JORC Code, 2012 Edition - Table 1.

(Criteria in this section apply to all succeeding sections.)

Criteria JORC Code explanation Commentary
Sampling
techniques

Nature and Quality of sampling (e.g.
cut channels, random chips or specific
specialized industry standard
measurement tools appropriate to the
minerals under investigation, such as
downhole gamma sondes, or hand
held XRF instruments etc.).

Include reference to measures taken
to ensure sample representivity and
the appropriate calibration of any
measurement tools or systems used.
Aspects of the determination of
mineralisation that are Material to the
Public Report. In cases where
‘industry standard’ work has been
done this would be relatively simple
(e.g. ‘reverse circulation drilling was
used to obtain 1m samples from which
3kg was pulverized to produce 30g
charge for fire assay’). In other cases
more explanation may be required,
such as where there is coarse gold
that has inherent sampling problems.
Unusual commodities or sampling
types (e.g. submarine nodules) may
warrant disclosure of detailed
information.



Historic (1980’s) soil sampling completed by
contract field staff for Electrolytic Zinc
Company (EZ) – see Appendix II

C Horizon soil sampling

Hand shell auger with 75mm bit used to obtain
0.2 - 0.5kg sample at C-horizon soil rock
interface.

Grid based sampling with 20m spaced
samples on 100 to 200m spaced grid lines.

Gridding on nominally orthogonal to strike on
100 to 200m spaced lines.

Rock chip samples of 1-2kg obtained by LDR
staff.

Sampling techniques are considered an
appropriate method for greenfields for
greenfields exploration.
Drilling
techniques

Drill type (eg core, reverse
circulation, open-hole hammer, rotary
air blast, auger, Bangka, sonic, etc)
and details (eg core diameter, triple
or standard tube, depth of diamond
tails, face-sampling bit
or other type, whether core is
oriented and if so, by what method,
etc).

Not applicable. No Drilling completed as this
report relates to a historic soil sampling
survey.
Drill sample
recovery

Method of recording and assessing
core and chip sample recoveries and
results assessed.

Measures taken to maximise sample
recovery and ensure representative
nature of the samples.

Whether a relationship exists
between sample recovery and grade
and whether sample bias may have
occurred due to preferential
loss/gain of fine/coarse
material.

Not applicable. No Drilling completed as this
report relates to a historic soil sampling
survey.
Logging • Whether core and chip samples have
been geologically and geotechnically
logged to a level of detail to support
appropriate Mineral Resource
estimation, mining studies and
metallurgical studies.
•Whether logging is qualitative of

Not applicable. No Drilling completed as this
report relates to a historic soil sampling
survey.

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Criteria JORC Code explanation Commentary
quantitative in nature. Core (or
costean, channel etc) photography.
Sub- sampling
techniques and
sample
preparation

If core, whether cut or sawn and
whether quarter, half or all core
taken.

If non-core, whether riffled, tube
sampled, rotary split, etc and
whether sampled wet or dry.

For all sample types, the nature,
quality and appropriateness of the
sample preparation technique.

Quality control procedures adopted
for all sub-sampling stages to
maximise representivity of samples.

Measures taken to ensure that the
sampling is representative of the in-
situ material collected, including for
instance results for field
duplicate/second-half sampling.

Whether sample sizes are
appropriate to the grain size of the
material being sampled.

Soil samples were acquired with a 100mm
hand shell auger.

A nominally 0.2 - 0.5kg sample of soil/rock was
obtained from the C Horizon soil rock
interface.

Samples were dried and sieved with the #80
mesh fraction (180um) sub sampled for
analysis.

Sub samples numbered in paper bags of 50-
100g.

Soil sampling technique and sub sampling are
considered industry standard and appropriate
for soil sample geochemistry.

Rock chip preparation comprised drying (DRY-
21), weighing, crushing to 85% passing 2mm
(CRU-36) and a 3kg split pulverised to 85%
passing 75um (PUL-33).
Quality of assay
data and
laboratory tests


The nature, quality and
appropriateness of the assaying and
laboratory procedures used and
whether the technique is considered
partial or total.

For geophysical tools,
spectrometers, handheld XRF
instruments, etc, the parameters
used in determining the analysis
including instrument make and
model, reading times, calibrations
factors applied and their derivation,
etc.

Nature of quality control procedures
adopted (eg standards, blanks,
duplicates, external laboratory
checks) and whether acceptable
levels of accuracy (ie lack of bias)
and precision have been established.

Numbered sample bags of soil sub samples
were transported to commercial laboratory
Analabs in Burnie Tasmania.

Sub sample pulverised to -70um

Sample analysed by Atomic Apsortion
Spectrometry (AAS) after Aqua Regia Digest.

Samples analysed for Cu, Pb, Zn, Ag, As, Fe,
Cr, Mn and Sn.

The method is considered appropriate for soil
geochemistry.
Aqua regia digest and AAS is a partial testing
soluble sulphidic and hydroxide elements

No reference of QAQC methods in historic
reports.

The assay methods employed are considered
appropriate and standard practice for soil
geochemistry in mineral exploration.

Recent LDR rock chip assay methods
included 4 acid digest followed by multi
element ICP-AES spectrometry (ME-ICP61).
Gold was analysed by 30g fire assay method
Au-AA25. Sn and Sb ore grade was
analysed by fused disc XRF(XRF15c) (refer
to ALS assay codes). High grade samples
triggered further OG62 OG46 and XRF15
analysis.

Certified reference materials and blanks were
inserted at a rate of >5% at the appropriate
locations. Coarse and pulp duplicates were
requested at >5%. All QAQC fall within the
accepted limits.

The assay methods employed are considered
appropriate for total analysis.

15

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Criteria JORC Code explanation Commentary
Verification of
sampling and
assaying

The verification of significant
intersections by either independent
or alternative company personnel.

The use of twinned holes.

Documentation of primary data, data
entry procedures, data verification,
data storage (physical and
electronic) protocols.

Discuss anyadjustment to assaydata.


The results were returned to EZ limited as
certified hard copies.

Sample analyses were handwritten onto
standard sheets with sample location.

No verification of data was documented.

All sample analyses report within acceptable
limits for the medium and techniques applied.

LDR rock chip sample results received
electronically.
Location of data
points


Accuracy and quality of surveys used
to locate drill holes (collar and down-
hole surveys), trenches, mine
workings and other locations used in
Mineral Resource estimation.

Specification of the grid system used.

Quality and adequacy of topographic
control.

All samples collected on 100 to 200m spaced
cut grid lines.

Lines cut and gridded by experienced track
cutters using sighting compass and topo lines
applying topographic corrections.

Grid lines and samples plot within acceptable
limits of mapped physical features (creeks,
roads).

Samples spaced at 20m intervals along lines
using grid peg locations.

Samples located on AMG66 grid and
transformed to GDA 94 Zone 55 by LDR
personnel.

Rock chips located by hand held GPS (+/-5m)
as GDA94 Zone 55 coordinates.
Data spacing
and distribution

Data spacing for reporting of
Exploration Results.

Whether the data spacing and
distribution is sufficient to establish
the degree of geological and grade
continuity appropriate for the Mineral
Resource and Ore Reserve
estimation procedure(s) and
classifications applied.

Whether sample compositing has
been applied.

200 to 100m spaced systematic east-west grid
lines orthogonal to strike of geology.

20m spaced samples along grid lines.

Soil sample spacing is considered appropriate
for greenfields exploration.

Rock chip sampling randomly oriented
according to field locations of outcrop and rock
dumps.

No sample compositing has been applied.
Orientation of
data in relation
to geological
structure

Whether the orientation of sampling
achieves unbiased sampling of
possible structures and the extent to
which this is known, considering the
deposit type.

If the relationship between the drilling
orientation and the orientation of key
mineralised structures is considered
to have introduced a sampling bias,
this should be assessed and
reported if material.

Gridlines cut orthogonal to geological strike.

Lines and samples are designed to identify
geochemical anomalies in the subsoil C-
horizon and are considered appropriate for this
purpose.

Orientation is not applicable for LDR rock chip
samples.
Sample security
The measures taken to ensure
sample security.

No record of sample security in historic EZ
exploration reports.

LDR rock chips delivered to ALS laboratories
by LDR staff.
Audits or
reviews

The results of any audits or reviews
of sampling techniques and data.

No audits or reviews have been carried out at
this point.

16

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Section 2 Reporting of Exploration Results

(Criteria listed in the preceding section also apply to this section.)

Criteria JORC Code explanation Commentary
Mineral
tenement
and land
tenure
status

Type, reference name/number,
location and ownership including
agreements or material issues with
third parties such as joint ventures,
partnerships, overriding royalties,
native title interests, historical sites,
wilderness or national park and
environmental settings.

The security of the tenure held at the
time of reporting along with any
known impediments to obtaining a
licence to operate in the area.

The Montezuma Project is located on tenements
EL7/20191, EL2/202012and 2M/2023.

These tenements are 100% held by Spero Mining
Pty Ltd, Granville Mining Pty Ltd and parties
related to the recent 100% acquisition by Lode
Resources Ltd.

Native title does not exist over the above
tenements.

All leases/tenements are in good standing.
1Under renewal
*2Processing of title transfer documents by Mineral Resources
Tasmania has not yet been completed due to a backlog in their
licence processing section and a state election
Exploration
done by
other parties

Acknowledgment and appraisal of
exploration by other parties.

The Dundas district has seen extensive historic
exploration and mining activity since the 1880’s
to the 1920’s.

Soil sample data was derived from open file
Electrolytic Zinc Company (EZ) exploration
reports from field work completed in the 1980’s.

EZ, RGC, Getty Oil, Comstaff, Geophoto and
CSR completed numerous exploration activities
mainly between 1970 and 1990.
Geology
Deposit type, geological setting and
style of mineralisation.

The Montezuma Silver & Antimony Project
deposit is a structurally controlled lode,
associated with the Montezuma fault. Fault
related fissure vein mineralisation is associated
with Silurian granite intrusions associated with
widespread Sn-W and Pb-Zn-Ag-Sb mineralising
event in western Tasmania. The district is
prospective for this under-explored style of
mineralisation. This project area is also
prospective for gold, zinc, copper, tin and
tungsten.
Drill hole
Information

A summary of all information material
to the understanding of the
exploration results including a
tabulation of the following information
for all Material drill holes, including,
easting and northing, elevation or RL,
dip and azimuth, down hole length,
interception depth and hole length.

If the exclusion of this information is
justified the Competent Person should
clearly explain why this is the
case.

See tables and figures containing relevant sample
locations in the body of this report.
Data
aggregation
methods

In reporting Exploration Results,
weighting averaging techniques,
maximum and/or minimum grade
truncations (eg cutting of high
grades) and cut-off grades are
usually Material and should be
stated.

Where aggregate intercepts
incorporate short lengths of high-
grade results and longer lengths of

No grade capping has been applied.

Montezuma reported antimony and silver
equivalent figures are based on conversion factors
as follows:

SbEq(%) = Sb(%) + 0.00281Ag(g/t) +
0.056
Pb(%) + 0.29Cu(%)

AgEq(g/t) = Ag(g/t) + 355
Sb(%) + 20Pb(%) +
101
Cu(%)

Metal equivalent conversion factors were
calculated using 30 December 2025 metal prices

17

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Criteria JORC Code explanation Commentary
low-grade results, the procedure
used for such aggregation should be
stated and some typical examples of
such aggregations should be shown
in detail.

The assumptions used for any
reporting of metal equivalent values
should be clearly stated.
of US$34747/t antimony, US$29.1/oz silver,
US$1912/t lead and US$8705/t copper.

Metal equivalent conversion factors were
calculated using a preliminary flotation test carried
out by ALS Metallurgy (Burnie) in September 2019
where recoveries achieved were 74.5% antimony,
77.9% silver, 75.8% lead and 84.8% copper. It is
Lode’s opinion that all the elements included in the
metal equivalents calculation have a reasonable
potential to be recovered and sold.
Relationship
between
mineralisation
widths and
intercept
lengths

These relationships are particularly
important in the reporting of
Exploration Results.

If the geometry of the mineralisation
with respect to the drill hole angle is
known, its nature should be reported.

If it is not known and only the down
hole lengths are reported, there
should be a clear statement to this
effect (eg ‘down hole length, true
width not known’).

Not applicable. This report refers to soil sample
and rock chip samples.
Diagrams
Appropriate maps and sections (with
scales) and tabulations of intercepts
should be included for any significant
discovery being reported. These
should include, but not be limited to
plans and sections.

Refer to plans and maps within this report.
Balanced
reporting

Where comprehensive reporting of all
Exploration Results is not practicable,
representative reporting of both low
and high grades and/or widths should
be practiced to avoid misleading
reporting of Exploration Results.

All exploration results discussed in this report are
included in the tables and figures associated with
this report.

Exploration results previously reported in LDR
ASX announcements are listed at the end of this
report.
Other
substantive
exploration
data

Other exploration data, if meaningful
and material, should be reported
including (but not limited to):
geological observations; geophysical
survey results; geochemical survey
results; bulk samples – size and
method of treatment; metallurgical
test results; bulk density,
groundwater, geotechnical and rock
characteristics; potential deleterious
or contaminating substances.
• LDR’s Montezuma deposit is currently being
investigated by systematic diamond drilling testing
the extent of the deposit. Refer to previous ASX
releases relating to this work listed at the end of
this report.
• Preliminary metallurgical testwork including
flowsheet design, test work and engineering plans
for the Montezuma Antimony Project were
completed by CORE Resources Brisbane and ALS
Burnie.
• Preliminary flotation recoveries were used for the
estimation of recoverable metal equivalents in this
report.
• Further metallurgical work is in progress.
Further work The nature and scale of planned further
work (eg tests for lateral extensions or
depth extensions or large-scale step-
out drilling).

Diagrams clearly highlighting the
areas of possible extensions,
including the main geological
interpretations and future drilling
areas, provided this information is not
commercially sensitive.


Infill and extension diamond drilling is currently in
progress.

Exploration, metallurgical, mining and marketing
studies are in progress.

Geological mapping, sampling and compilation of
historic exploration in the district is ongoing. The
results of this work will be used to identify and test
targets as the project progresses.

18

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Appendix II – Historical Soil Sampling

Northing Easting Cu Pb Zn Ag Cr Mn As Sn
(m GDA94) (m GDA94) (ppm) (ppm) (ppm) (ppm) (ppm) (ppm) (ppm) (ppm)
5367582 374691 60 90 190 0 40 2800 18 0
5367582 374671 30 40 95 0 30 230 11 0
5367582 374651 20 40 70 0 45 550 8 0
5367582 374631 20 60 85 0 45 260 9 0
5367582 374611 20 45 75 0 45 90 10 0
5367582 374591 5 25 20 0 25 15 6 0
5367582 374571 30 100 160 0 30 1400 12 0
5367582 374551 20 50 70 0 30 715 10 0
5367582 374531 30 30 60 0 30 65 9 0
5367582 374511 25 30 50 0 25 355 12 0
5367582 374491 20 40 45 0 30 30 6 0
5367582 374471 10 30 50 0 30 65 9 0
5367582 374451 10 35 25 0 35 25 6 0
5367582 374431 10 50 30 0 35 45 9 0
5367582 374411 45 70 90 0 40 225 12 0
5367582 374391 10 25 60 0 250 175 6 0
5367582 374371 20 30 40 0 95 75 12 0
5367582 374351 75 20 95 2.5 60 3900 95 0
5367582 374331 45 30 65 0 65 1150 93 0
5367582 374311 35 55 45 0 90 230 70 0
5367582 374291 30 35 25 0 90 45 90 0
5367582 374271 10 5 20 0 60 20 7 0
5367582 374251 25 10 55 0 105 50 9 0
5367582 374231 30 10 45 0 70 40 6 0
5367582 374211 10 10 20 0 40 20 8 0
5367382 374791 15 20 30 0 10 160 11 0
5367382 374771 30 50 35 0 20 100 20 0
5367382 374751 5 25 15 0 10 15 17 0
5367382 374731 20 20 20 0 10 15 12 0
5367382 374711 5 15 10 0 15 5 8 0
5367382 374691 5 30 15 0 25 5 9 0
5367382 374671 15 20 35 0 30 230 10 0
5367382 374651 5 15 15 0 10 15 6 0
5367382 374631 0 5 20 0 5 40 0 0
5367382 374611 15 195 30 0 20 15 20 0
5367382 374591 0 175 15 0 25 15 11 0
5367382 374571 20 110 85 0 30 30 12 0
5367382 374551 25 100 75 0 30 15 11 0
5367382 374531 0 30 30 0 10 35 6 0
5367382 374511 10 30 40 0 35 50 9 0
5367382 374491 20 30 65 0 55 60 12 0
5367382 374471 20 25 50 0.5 40 80 11 0
5367382 374451 15 25 45 0 35 70 8 0
5367382 374431 30 50 55 0.5 50 380 20 0
5367382 374411 30 20 60 0 45 55 11 0
5367382 374391 25 30 70 0 45 75 11 0
5367382 374371 20 45 105 0.5 40 715 13 0
5367382 374351 20 40 45 0 30 75 21 0
5367382 374331 10 20 20 0 25 25 11 0
5367382 374311 25 10 25 0 35 35 11 0
5367382 374291 0 0 15 0 20 5 14 0
5367382 374271 0 10 10 0 15 10 6 0
5367382 374251 0 30 40 0 85 30 12 0

19

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5367382 374231 0 5 15 0.5 20 15 8 0
5367382 374211 0 5 16 0 30 10 9 0
5367382 374191 20 25 30 0 45 30 18 0
5367382 374171 5 10 15 0 20 30 15 0
5367382 374151 3 0 15 0 25 40 5 0
5367382 374131 5 15 15 0 20 10 5 0
5367182 374811 165 185 320 0 90 6900 71 0
5367182 374791 140 150 175 1 565 6800 34 0
5367182 374771 160 45 225 0.5 475 2300 27 0
5367182 374751 160 70 310 0.5 340 1250 58 0
5367182 374731 155 75 165 0.5 180 300 82 0
5367182 374711 240 45 175 0 130 1800 23 0
5367182 374691 225 75 165 0 90 1900 26 0
5367182 374671 270 35 140 1 135 1100 28 0
5367182 374651 105 95 110 0.5 100 4450 25 0
5367182 374631 195 210 95 8 115 9100 46 0
5367182 374611 30 80 60 0.5 45 1050 24 0
5367182 374591 30 60 50 0 40 730 5 0
5367182 374571 35 95 55 0.05 50 2400 39 1
5367182 374551 20 55 35 0 55 200 19 0
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