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RZOLV Reports Approximately 97.0% Gold Recovery on Complex Copper-Gold Ore Without Pretreatment, Highlighting Potential to Simplify Flowsheets Versus Cyanide

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RZOLV Technologies (OTCQB: RZOLF) reported metallurgical bottle roll test results showing approximately 97.0% gold recovery on a complex copper-gold ore without pretreatment. The tested head grade was ~9.6 g/t Au with 2.12% Cu, run at 20% pulp density over 168 hours.

RZOLV says this result could simplify flowsheets versus cyanide-based routes by potentially avoiding SART circuits, lowering capital intensity and reducing reagent penalties, subject to further testing, verification and scale-up.

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Positive

  • Gold recovery ~97.0% on tested copper-gold ore
  • Test performed without pretreatment, reducing potential processing steps
  • Sample grade 9.6 g/t Au and 2.12% Cu provides a strong test case
  • Potential to avoid SART circuit, implying lower capital intensity

Negative

  • Results from a single 150 g bottle roll sample—limited scale
  • Recovery figures initially based on internal calculations pending full external verification
  • Company notes need for further work on scale-up, reagent optimization, copper deportment

News Market Reaction – RZOLF

+2.32%
1 alert
+2.32% News Effect

On the day this news was published, RZOLF gained 2.32%, reflecting a moderate positive market reaction.

Data tracked by StockTitan Argus on the day of publication.

New test results support RZOLV as a potential breakthrough solution for complex gold-copper ores, with the potential to avoid cyanide-related SART complexity

Vancouver, British Columbia--(Newsfile Corp. - April 8, 2026) - RZOLV Technologies Inc. (TSXV: RZL) (OTCQB: RZOLF) ("RZOLV" or the "Company") is pleased to report the results of recent metallurgical test work in which the Company achieved approximately 97.0% gold recovery on a complex copper-gold ore using the RZOLV formula, without pretreatment.

The tested material graded approximately 9.6 g/t gold and 2.12% copper and is hosted within an alkaline gold-copper porphyry system. The gold mineralization is interpreted to be low-sulphidation epithermal mineralization.

The Company believes these results are significant because copper-bearing gold ores are widely recognized as challenging for conventional cyanide processing. SGS technical publications note that copper minerals can materially increase cyanide consumption and complicate solution management, and that where cyanide-soluble copper becomes significant, operators may consider adding a SART circuit to precipitate copper sulphide and recover cyanide for recycle. By achieving approximately 97.0% gold recovery on this copper-bearing ore without pretreatment, RZOLV believes the test work supports the potential for a simpler and potentially lower-cost processing route relative to a conventional cyanide alternative on similar mineralization.

RZOLV Technologies conducted bottle roll leach tests on the subject material to evaluate performance under controlled laboratory conditions. The test was conducted at 20% pulp density on a 150 g sample crushed to a target size of -500 µm and run for 168 hours with solution sampling at regular intervals.

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Figure 1 - Gold Recovery Over Time (Test 137-1, Cu/Au Sample - RZOLV 168 Hours)

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https://images.newsfilecorp.com/files/11597/291567_7731d13ab4115b06_001full.jpg

Table 1 - Gold Recovery Over Time (Cu/Au Sample - RZOLV 168 Hours)

TestAssayed Head Au (g/t)Calculated Head Au (g/t)Final Residue Au (g/t)Recovery @24h Recovery @48h Recovery @72h Recovery @96h Recovery @120h Recovery @168h
1379.59.60.2933.95%79.67%87.90%91.27%91.35%96.97%

 

Analytical Basis

Testing was carried out at ambient laboratory temperature. Process pH and oxidation-reduction potential were monitored during the tests. Solution samples were collected at closely spaced intervals during the initial 4 hours to characterize early-stage kinetics, followed by additional sampling at 24, 48, 72, 96, and 120 hours.

Gold extraction values reported herein are based on internal solution and residue calculations generated during the test program. Final solid residues from the test were subsequently submitted to ALS Laboratories for independent assay verification. Results are presented above.

"This is an important result for RZOLV because it goes well beyond recovery alone," said Duane Nelson, President & CEO of RZOLV Technologies. "To achieve this high gold recovery on a copper-bearing complex ore without pretreatment suggests that RZOLV may offer a practical alternative in mineral systems where cyanide can become penalized by copper. If supported by further work, this could translate into simpler plant design, lower capital costs, lower reagent penalty, and the potential to avoid the need for a costly SART circuit that might otherwise be required under a cyanide flowsheet."

The Company believes the implications of this result may include:

  • Potential flowsheet simplification, by reducing or potentially eliminating the need for a separate copper-cyanide management circuit;

  • Lower capital intensity, through the possible avoidance of a SART plant and related supporting infrastructure;

  • Reduced operating complexity, including fewer unit operations and less process management associated with copper-cyanide recycling;

  • Improved project economics, particularly for lower-grade or copper-bearing gold ores where processing costs are highly sensitive to reagent consumption and circuit complexity; and

  • Expanded market relevance for RZOLV, further supporting its potential application in ore types that can fall within conventional cyanide "penalty" windows.

The Company further notes that the absence of pretreatment in this test work is particularly encouraging. Pretreatment steps can add substantial cost, time, technical complexity and permitting burden to a project. Demonstrating high gold recovery without such steps may improve the commercial attractiveness of RZOLV for certain complex ore bodies.

These are ore types where conventional cyanide does not merely underperform environmentally, but can become economically burdened by complexity, copper interference, pretreatment requirements, or downstream circuit additions. If this result is supported by further work, it suggests that RZOLV may not simply be an alternative to cyanide, but a superior solution in selected copper-bearing gold systems. The Company intends to continue metallurgical work to further evaluate recovery performance, reagent optimization, copper deportment, process economics and scale-up parameters across broader sample sets and operating conditions.

Exchange Disclaimer

Neither the 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.

About RZOLV Technologies Inc.

RZOLV Technologies Inc. is a clean-technology company advancing a new generation of hydrometallurgical chemistry designed to transform how precious and critical metals are recovered from ores, concentrates, and renewables. The Company is developing proprietary, non-cyanide solutions intended to unlock value from complex materials where conventional methods can be limited.

Its flagship technology, RZOLV™, is a proprietary, water-based dissolution system designed to achieve strong recovery performance without the toxicity, permitting burden, and legacy liabilities associated with conventional cyanide-based processes. By operating in a broader and more controllable chemical window, RZOLV™ has the potential to recover precious and critical metals from challenging feedstocks and support a safer, more sustainable path forward for the mining and resource recovery industries.

For more information, please visit https://www.rzolv.com.

For further information, please contact:

Duane Nelson
President & CEO
RZOLV Technologies Inc.
Tel: +1-604-332-2662
Email: duane@rzolv.com

Forward-Looking Statements

This news release contains forward-looking statements within the meaning of applicable securities laws. Forward-looking statements include, but are not limited to, statements regarding the potential implications of the reported metallurgical results, including possible reductions in capital cost, operating complexity, pretreatment requirements, and the potential to reduce or eliminate the need for a SART circuit under certain conditions, as well as statements regarding future testing, scale-up, commercial applicability and economic performance. Forward-looking statements are based on management's current expectations, estimates, assumptions and beliefs as of the date hereof. Actual results may differ materially from those expressed or implied by such statements due to a variety of risks, uncertainties and other factors, including the possibility that further test work does not confirm current results, that ore characteristics vary, that scale-up performance differs from laboratory results, and that economic, technical, regulatory or market conditions change. Readers are cautioned not to place undue reliance on forward-looking statements. The Company undertakes no obligation to update or revise forward-looking statements except as required by applicable law.

To view the source version of this press release, please visit https://www.newsfilecorp.com/release/291567

FAQ

What gold recovery did RZOLF report on the April 8, 2026 copper-gold test?

RZOLF reported approximately 97.0% gold recovery on the tested copper-gold sample. According to the company, the bottle roll test used a 150 g sample at 20% pulp density run for 168 hours and was sampled at regular intervals.

What were the head grades in RZOLF's April 8, 2026 metallurgical test?

The tested material graded about 9.6 g/t gold and 2.12% copper. According to the company, the ore is from an alkaline gold-copper porphyry with interpreted low-sulphidation epithermal mineralization.

Does the RZOLF test imply RZOLV can replace cyanide processing for copper-bearing ores?

The test suggests potential to simplify or avoid cyanide SART circuits, but it is not a definitive replacement. According to the company, further metallurgical work and scale-up studies are required to confirm flowsheet and economic benefits.

How was the RZOLF metallurgical test conducted and verified?

The bottle roll test ran 168 hours at 20% pulp density on a -500 µm 150 g sample with timed solution sampling. According to the company, final solid residues were submitted to ALS Laboratories for independent assay verification.

What are the next steps RZOLF plans after the April 2026 test results?

RZOLF plans additional metallurgical work on recovery, reagent optimization, copper deportment and scale-up parameters. According to the company, these steps aim to validate performance across broader sample sets and operating conditions.