Max Resource Reports High-Grade Iron Ore (Fe) Results from Florália Hematite DSO Project in Minas Gerais, Brazil
Max Resource Reports High-Grade Iron Ore (Fe) Results from Florália Hematite
DSO Project in Minas Gerais, Brazil
Vancouver B.C., April 22, 2025 – MAX RESOURCE CORP. (“Max” or the “Company”) (TSX.V: MAX; OTC: MXROF;
Frankfurt: M1D2) is pleased to report successful iron ore (Fe) and recovery results from dry magnetic test work for its
Florália Hematite DSO Project (“Florália DSO”) located 67 km east of Belo Horizonte, Minas Gerais, Brazil.
Based on the positive results from the preliminary dry magnetic tests (refer to NR dated March 30, 2025), Max
collected 6 bedrock 80kg samples (FL-001 to 006) from across the Florália DSO property. Each sample crushed in 3
fractions 12mm, 6mm and 2mm for dry magnetic test work at Inbras Laboratory Brazil (manufacturer of dry magnetic
units). Sample (FL-005) was split into two equal portions as an internal check (refer to Figures 1 & 3, Table 1).
Highlights
FL-001: 69.5% Fe at 81% recovery from 59.7% 6mm fraction sample (1500,2500,7500 Guass)
FL-002: 66.9% Fe at 73% recovery from 59.7% 6mm fraction sample (1500, 2500,7500 Guass)
FL-003: 68.7% Fe at 78% recovery from 64.9% 2mm fraction sample (1500,2500,7500 Guass)
FL-004: 61.8% Fe at 76% recovery from 57.5% 12mm fraction sample (2500,7500 Guass)
FL-005: 60.2% Fe at 78% recovery from 46.2% 6mm faction sample (1500,2500,7500 Guass)
FL-006: 59.3% Fe at 67% recovery from 47.8% 2mm fraction sample (1500,2500,7500 Guass)
Figure 1: Florália dry magnetic test work, XRF and recovery results
Max cautions investor that handheld XRF analysis is not chemical analysis. All samples have been sent to ALS Laboratories for follow up chemical analysis. The Max Resource technical team feel
iron ore is a relatively homogenous material and XRF analysis should be an applicable initial analysis method.
Max cautions investors the potential quantity and grade of the iron ore is conceptual in nature, and further cautions there has been insufficient exploration to define a mineral resource and Max is
uncertain if further exploration will result in the target being delineated as a mineral resource. Hematite mineralization tonnage potential estimation is based on in situ high-grade outcrops and
interpreted and modelled magnetic anomalies. Density value used for the estimate is 2.8t/m³. Hematite sample grades range between 55-61%Fe. The 58 channel samples were collected for
chemical analysis from in situ outcrops in previously mined slopes of industrial materials.
“The dry magnetic test work was a great success delivering high-grade iron ore (Fe) results well above the benchmark
of 62% Fe. The previously announced channel sampling results were significant, taken across banded iron formation,
131 of 174 returning values from 50 to 61% Fe. We look forward to the initial drilling results due shortly,” Max CEO,
Brett Matich, commented.
“Max Iron Brazil has In-Principle Advice from ASX, plans on listing on the official ASX list, and to secure funding for the
next stage of exploration and development for the Floralia DSO Project,” he concluded.
Florália DSO holds strategic advantages over other DSO projects due to its location and existing infrastructure
including, existing 15 km road to rail loading terminal connecting to multiple steel mills and shipping ports. In
addition, existing roads to established DSO buyers Vale (16 km NW) and ArcelorMittal (26 km NE).
Figure 2: Florália location and infrastructure map
Florália DSO, existing 15 km road SE to railway terminal: existing roads to established DSO buyers Vale (16 km NW) and
ArcelorMittal (26 km NE). Local mining infrastructure; railway networks, haul roads, mining services and personnel
Dry Magnetic Test Work Method
Each sample was split into 3 sub-samples and crushed yielding a 12mm, 6mm and 2mm sub-sample, which were
subsequently dried to an approximate moisture content of 0.3% H₂O. After removing a 600 -gram cut, each crushed
sub-sample was exposed to first a 1400 Gauss magnetic drum, then a 2500 Gauss magnetic drum and finally a 7500
Gauss magnetic drum resulting in three concentrates and final tails. In addition, potential Fe recovery of tailing s with
further test work. This resulted in 5 splits from each sub-sample: 600-gram cut, 1400 Gauss concentrate, 2500 Gauss
concentrate, 7500 Gauss concentrate, and final tails. The 600gram -cut, each of the three concentrates and the final
tails were then read with an Olympus Vanta Series M portable XRF unit for % iron (Fe).
The 1400 Gauss concentrates ran 63.46% to 69.99% iron in the 2mm fraction, 65.81% to 69.99% iron in the 6mm
fraction and 58.47% to 69.99% iron in the 12mm fraction. The 2500 Gauss concentrates ran 51.18% to 69.99% iron in
the 2mm fraction, 52.22% to 69.99% iron in the 6mm fraction and 51.44% to 69.99% iron in the 12mm fraction. The
7500 Gauss concentrates ran 44.45% to 62.90% iron in the 2mm fraction, 48.24% to 64.58% iron in the 6mm fraction
and 45.20% to 69.80% iron in the 12mm fraction.
In addition, all but two of the 21 splits returned concentrate recoveries above 65%, with 15 returning in excess of 70%
and 11 returning in excess of 76%.
Table 1. Florália dry magnetic test work, XRF and recovery results
Max cautions investor that handheld XRF analysis is not chemical analysis. All samples have been sent to ALS Laboratories for follow up chemical
analysis. The Max Resource technical team feel iron ore is a relatively homogenous material and XRF analysis should be an applicable initial
analysis method.
Figure 3: Florália dry magnetic sample locations
Florália channel geochemistry, logistics, diamond and auger drill hole locations
2mm fraction kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery
sub-sample 26.78 30.35 27.39 26.89 16.93 14.71 29.43
Feed 0.59 63.22 0.77 60.10 0.75 64.90 0.63 56.37 0.38 52.78 0.88 47.78
1400 Gauss Conc. 11.77 69.99 44.0% 10.20 69.99 33.6% 3.19 69.99 11.6% 1.58 NS 5.9% 6.95 63.46 41.1% 4.63 66.78 31.5% 4.52 69.99 15.4%
2500 Gauss Conc. 8.44 69.99 31.5% 3.61 67.71 11.9% 14.52 69.99 53.0% 11.32 65.64 42.1% 3.28 55.18 19.4% 3.36 59.03 22.8% 9.75 55.69 33.1%
7500 Gauss Conc. 1.05 61.79 3.9% 3.69 62.90 12.2% 3.59 62.63 13.1% 8.31 54.28 30.9% 2.43 51.25 14.4% 2.03 50.72 13.8% 3.71 44.45 12.6%
Tails 4.57 32.29 9.50 45.82 6.37 53.25 5.11 41.89 4.43 36.80 3.87 28.48 10.92 47.21
Fe% Conc./Recovery 69.5 79.4% 67.97 57.7% 68.67 77.8% 61.5 78.9% 58.97 74.8% 61.12 68.1% 59.33 61.1%
6mm fraction kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% % recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery
sub-sample 27 .45 30.47 26.14 26.79 13.53 18.68 29.61
Feed 0.51 59.72 0.65 59.69 1.19 65.46 0.53 55.61 0.73 46.18 0.93 50.45
1400 Gauss Conc. 11.53 69.99 42.0% 9.58 69.99 31.4% 3.56 69.99 13.6% 0.00 NS 0.0% 5.25 65.81 38.8% 5.34 67.50 28.6% 3.68 68.94 12.4%
2500 Gauss Conc. 9.32 69.99 34.0% 8.56 65.24 28.1% 13.12 69.99 50.2% 12.23 64.73 45.7% 3.18 58.87 23.5% 4.77 59.03 25.5% 11.38 52.22 38.4%
7500 Gauss Conc. 1.30 62.27 4.7% 4.15 63.47 13.6% 4.05 64.58 15.5% 8.21 52.10 30.6% 2.14 48.36 15.8% 3.36 50.84 18.0% 4.75 48.24 16.0%
Tails 4.69 35.01 8.98 34.58 5.46 54.81 6.00 38.59 3.56 23.84 4.55 24.95 9.19 46.25
Fe% Conc./Recovery 69.45 80.7% 66.92 73.2% 69.9 79.3% 59.65 76.3% 60.19 78.2% 61.37 72.1% 58.55 66.9%
12mm fraction kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery kg wt XRF Fe% Recovery
sub-sample 28.09 30.51 26.13 26.76 19.64 12.82 30.71
Feed 0.50 62.02 0.94 57.07 0.67 66.18 0.57 57.51 0.76 50.40 0.59 45.67
1400 Gauss Conc. 12.80 69.99 45.6% 8.56 69.99 28.1% 2.80 69.99 10.7% 0.00 NS 0.0% 7.50 64.74 38.2% 3.67 66.16 28.6% 2.73 58.47 8.9%
2500 Gauss Conc. 8.31 69.99 29.6% 8.60 63.74 28.2% 13.18 69.99 50.4% 12.51 63.08 46.8% 5.22 52.93 26.6% 3.60 55.88 28.1% 12.28 51.44 40.0%
7500 Gauss Conc. 1.47 61.25 5.2% 4.15 60.43 13.6% 4.70 69.80 18.0% 7.87 59.84 29.4% 2.84 45.78 14.5% 1.82 54.19 14.2% 5.81 45.20 18.9%
Tails 6.43 33.63 8.78 32.58 5.18 54.98 5.90 40.48 4.68 23.30 3.19 22.79 9.04 41.69
Fe% Conc./Recovery 69.34 80.4% 65.57 69.8% 69.88 79.1% 61.83 76.2% 59.89 79.2% 60.5 70.9% 53.12 67.8%
FL-004 FL-005 FL-005a FL-006FL-001 FL-002 FT-003
Quality Assurance
Chemical analysis was performed at ALS Laboratories. Metal Oxides are determined using XRF analysis. Fusion disks
are made with pulped samples and the addition of a borate- based flux. Analysis at ALS is for a 24- element suite. FeO
is determined using titration and LOI using loss determination by thermogravimetric analysis at 1000°C.
Max did not insert standards or blanks in the assay stream and is relying on ALS's lab QA/QC. The ALS lab inserts its
own standards at set frequencies and monitors the precision of the XRF analysis. These results reported well within the
specified 2 standard deviations of the mean grades for the main elements.
Proposed IPO of Max Brazil Iron Ltd. (“Max Brazil”) to the Official List of the ASX
Further to the Company’s news releases on December 12, 2024, January 2, 2025, January 7, 2025, January 9, 2025,
January 20, 2025, and March 3 0, 2025, Max Brazil has closed the third tranche of its non- brokered private placement
for a new aggregate amount of 27,300,000 ordinary shares in the capital of Max Brazil (the “Ordinary Shares”) at a price
of AUD $0.10 per Ordinary Share for aggregate gross proceeds AUD $2,73 0,000.
At the special meeting held on February 26, 2025, shareholders of the Company approved an ordinary resolution
approving the undertaking of an initial public offering by the Company’s majority owned subsidiary, Max Brazil. There
was overwhelming support with 99.55% of shares voted at the meeting in favour of the resolution.
Max Iron Brazil has received In- Principle Advice on suitability from ASX Limited (the “ASX”) to advance plans for
admission to the official list of the Australian Securities Exchange. Max Brazil plans to lodge a Prospectus with the
Australian Securities an d Investments Commission in Q2 2025. ASX confirmed the ticker code “ MAX” has been
reserved for Max Brazil.
Max Brazil plans to complete an initial public offering of a minimum of 30,000,000 Ordinary Shares in the capital of Max
Brazil (the “Ordinary Shares”) at a price of AUD $0.20 per Ordinary Share for minimum aggregate gross proceeds of AUD
$6,000,000 up to a maximum of 50,000,000 Ordinary Shares for maximum aggregate proceeds of AUD $10,000,000
(the “Offering”).
The net proceeds of the Offering to be used, among other things, for the advancement of the Florália DSO Project, and
for general working capital purposes.
Max Brazil will be subject to applicable Australian securities legislation and the rules and regulations of the ASX. There
is no guarantee that the proposed IPO or listing of Max Brazil on the ASX will be completed on the terms set out in this
announcement or at all. Closing of the IPO is subject to a number of conditions, including receipt of all necessary
corporate and regulatory approvals.
Sierra Azul Copper-Silver Project Background
The Company’s wholly -owned Sierra Azul Project sits along the Colombian portion of the world’s largest producing
copper belt (Andean belt), with world-class infrastructure and the presence of global majors (Glencore and Chevron).
Max has an Earn-In Agreement (“EIA”) with Freeport -McMoRan Exploration Corporation (“Freeport”), a wholly - owned
affiliate of Freeport-McMoRan Inc. (“NYSE: FCX”) relating to the Sierra Azul Project. Under the terms of the EIA, Freeport
has been granted a two -stage option to acquire up to an 80% ownership interest in the Sierra Azul Project by funding
cumulative expenditures of C$50 million and making cash payments to Max of C$1.55 million.
Sierra Azul comprises three districts: AM, Conejo and URU. Collectively the three contiguous districts stretch over 120
km in NNE/SSW direction (refer to Figure 4). Max Resource’s land tenure at Sierra Azul includes 188 km² of mining
concessions and 1,141 km² of mineral concession applications.
Figure 4: Sierra Azul Copper Silver Project comprises three districts: AM, Conejo and URU
Collectively the three contiguous Districts stretch over 120 km in NNE/SSW direction
AM-13: Exploration Target Increased to 1,500m by 100m
• Copper-silver mineralization identified over 1,500m of strike and open ended
• New composite channel assay results include:
1.6% Copper & 6 g/t Silver over 55.0m (CS11)
1.6% Copper & 7 g/t Silver over 49.0m (CS08)
1.0% Copper & 6 g/t Silver over 26.0m (CS01)
• The 100m wide mineralized body rises over 300m in elevation between El Cedro and Mapurito valleys
suggesting significant depth potential
• Manto-style mineralization and alteration, similar to deposits in the Tocopilla – Taltal region of northern
Chile, where a mineralized corridor extends well over 100-km and hosts several economic deposits
including Mantos Blancos estimated to contain 500mt at 1% Copper
(Reference material on the Mantos Blancos deposit available here)
Max cautions investors copper-silver mineralization at Mantos Blancos is not necessarily indicative of similar
mineralization at Sierra Azul.
AM-15: Discovery of New Manto Style Target Proximal to AM-13
• The new AM-15 discovery is located approximately 1,000m northwest of AM-13
• Early work suggests a large target footprint with five mineralized outcrops already identified over a 100m by
300m and open in all directions
• High priority target based on potential size, grade and proximity to AM-13
Figure 5: AM-13 & AM-15 Target Zone
Image showing extended footprint of AM-13 in relation to the AM-15 discovery
Freeport McMoRan Funded US $4.8 Million Approved Exploration Budget for 2025
The 2025 exploration program at the Sierra Azul has three objectives: Drill Target Development, District Scale
Exploration and Basin Scale Analysis.
Drill Target Development
The Drill Target Development program will focus exploration on priority targets located in all three districts of the Sierra
Azul Project: AM, Conejo and URU. The goal of the program is to prepare the selected targets for drilling. The work
program is well under way and includes detailed geological mapping and soil sampling as well as planned ground
geophysical surveys and detailed structural analysis.
District Scale Exploration
The District Scale Exploration Program commenced in 2024 and is designed to systematically evaluate the entire Sierra
Azul Project area with the goal of identifying additional priority targets for follow-up. The program has two components:
soil and stream sediment sampling.
AM-13
The district- scale soil sampling program comprises a total of 3,646 samples collected at 50 m intervals along lines
spaced 2,000m apart. The sampling campaign commenced in 2024 and approximately 27% of the planned samples
have been collected.
Qualified Person
The Company's disclosure of a technical or scientific nature in this news release was reviewed and approved by Tim
Henneberry, P.Geo (British Columbia), a member of the Max Resource advisory board, who serves as a qualified person
under the definition of National Instrument 43-101.
For more information visit on Max Resource: https://www.maxresource.com/
For more information visit on Max Brazil: https://maxironbrazil.com/
For additional information contact:
Tim McNulty E: [email protected] T: (604) 290-8100
Rahim Lakha E. [email protected]
Brett Matich T: (604) 484 1230
Neither TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture
Exchange) accepts responsibility for the adequacy or accuracy of this release.
Except for statements of historic fact, this news release contains certain "forward -looking information" within the meaning of
applicable securities law.
Forward-looking information is frequently characterized by words such as "plan", "expect", "project", "intend", "believe", "anticipate",
"estimate" and other similar words, or statements that certain events or conditions "may" or "will" occur. Forward -looking
statements are based on the opinions and estimates at the date the statements are made and are subject to a variety of risks and
uncertainties and other factors that could cause actual events or results to differ materially from those anticipated in th e forward-
looking statements including, but not limited to delays or uncertainties with regulatory approvals, including that of the TSX V. There
are uncertainties inherent in forward-looking information, including factors beyond the Company’s control. There are no assurances
that the commercialization plans for Max Resources Corp. described in this news release will come into effect on the terms or time
frame described herein.
The Company undertakes no obligation to update forward -looking information if circumstances or management's estimates or
opinions should change except as required by law. The reader is cautioned not to place undue reliance on forward -looking
statements. Ad ditional information identifying risks and uncertainties that could affect financial results is contained in the
Company’s filings with Canadian securities regulators, which filings are available at www.sedarplus.ca.