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Aduro Reports NGP Pilot Plant Campaign Results, Achieving 86% Liquid Hydrocarbon Yield

(Positive)
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Aduro (Nasdaq: ADUR) reported new results from its Next Generation Process (NGP) Pilot Plant, showing steady-state operation and consistent product quality using waste-derived polypropylene feedstock.

The latest 47-hour run under a 24/4 model achieved 86% liquid hydrocarbon recovery, with 85% of liquids in the C20-and-below range associated with naphtha cracker feedstocks. Steady state was reached after 12 hours and maintained for 35 hours, re-established within about two hours after deliberate operating changes. Data will guide longer-duration 24/7 campaigns with mixed plastics and inform design of the planned first-of-a-kind industrial plant.

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Positive

  • Steady-state operation maintained for 35 hours within a 47-hour continuous run
  • Liquid hydrocarbon recovery of approximately 86% from polypropylene feedstock
  • About 85% of liquid product in C20-and-below naphtha-range hydrocarbons
  • Process returned to steady state within roughly two hours after operating changes
  • Pilot data supports design basis for planned FOAK industrial plant
  • Campaigns support progression from 24/4 model toward sustained 24/7 operation

Negative

  • None.

News Market Reaction – ADUR

+17.22%
28 alerts
+17.22% Session close to close
+19.1% Peak in 1 hr 26 min
$602.71M Market Cap
0.6x Rel. Volume

In the Jun 9 session, ADUR gained 17.22%, reflecting a significant positive market reaction. Argus tracked a peak move of +19.1% during that session. Our momentum scanner triggered 28 alerts that day, indicating elevated trading interest and price volatility.

Data tracked by StockTitan Argus on the day of publication.

Market Context

The stock surged +17.2% in the session following this news. A strong positive reaction aligns with t...
Analysis

The stock surged +17.2% in the session following this news. A strong positive reaction aligns with the operational milestone described, where the NGP Pilot Plant achieved 86% liquid hydrocarbon recovery and maintained steady state for 35 hours. Past news has sometimes produced mixed short-term moves, so extended gains have not been guaranteed. Investors tracking sustainability of any surge would typically monitor future campaign data, progress toward the 10,000 tonne-per-year FOAK facility, and further financing disclosures.

Key Figures

Liquid hydrocarbon recovery: 86% C20-and-below fraction: 85% Continuous operation duration: 47 hours +5 more
8 metrics
Liquid hydrocarbon recovery 86% Steady-state window in latest NGP Pilot Plant campaign
C20-and-below fraction 85% Share of liquid product within naphtha cracker feedstock range
Continuous operation duration 47 hours NGP Pilot Plant run excluding startup and shutdown phases
Time to steady state 12 hours Time to reach steady-state conditions during campaign
Steady-state period 35 hours Duration steady-state conditions were maintained
FOAK facility capacity 10,000 tonnes per year Planned Hydrochemolytic Technology site at Chemelot Industrial Park
Cash balance $39.4 million Cash as of interim 6-K for nine months ended Feb 28, 2026
Gross offering proceeds US$3 million Additional proceeds from over-allotment option exercise in January 2026

Historical Context

5 past events · Latest: Jun 03 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jun 03 FOAK project leadership Positive -5.1% Appointed project director to lead FOAK Chemelot facility delivery.
May 28 Conference participation Positive +7.9% Announced participation in multiple June industry and investor conferences.
May 26 TSX trading approval Positive +4.0% Received final approval to list on TSX and delist from CSE.
May 19 TSX conditional listing Positive -2.8% Disclosed conditional TSX listing approval and planned CSE delisting.
May 14 Industry association join Positive +11.9% Joined Utah Petroleum Association to align HCT with Uinta Basin producers.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Positive corporate and strategic news has often led to gains, but there are notable instances where upbeat updates were followed by short-term declines.

Recent Company History

Over the last month, Aduro has announced several strategic milestones, including TSX conditional and final listings, joining the Utah Petroleum Association, and appointing a FOAK facility project director. These events, all tagged as news, produced mixed price reactions, with three gains and two pullbacks within 24 hours. The current pilot-plant campaign results extend this narrative of operational and commercialization progress, complementing earlier steps toward the 10,000 tonne-per-year FOAK facility and broader industrial scale-up.

Key Terms

foak industrial plant, naphtha cracker feedstocks, polypropylene
3 terms
foak industrial plant technical
"informing design inputs for Aduro’s planned first-of-a-kind (FOAK) Industrial Plant."
A FOAK (first-of-a-kind) industrial plant is the first commercial-scale facility built to use a new technology or process rather than an established design. It matters to investors because FOAK projects carry higher technical, cost and schedule risk — like buying the first production car model instead of a tried-and-true version — but they can also offer strong rewards if the technology proves reliable and gives a company a competitive edge.
naphtha cracker feedstocks technical
"a carbon-number range typically associated with naphtha cracker feedstocks."
Naphtha cracker feedstocks are light liquid hydrocarbons—similar to the gasoline-like portion of crude oil—fed into industrial units called crackers that break large molecules into basic building blocks like ethylene and propylene. For investors, they matter because the price and availability of these feedstocks directly affect the cost, output and profit margins of chemical and plastics makers, much like the cost of flour affects a bakery’s business.
polypropylene technical
"using the same polypropylene recovered from waste plastics."
A widely used thermoplastic polymer made from propylene gas, polypropylene is a lightweight, durable plastic found in packaging, consumer goods, automotive parts and textiles — think of it as a versatile building block for many everyday products. Investors watch it because its price and availability affect manufacturers’ costs, profit margins and supply chains; changes in crude oil and natural gas feedstocks, manufacturing capacity or demand cycles can move the earnings and stock values of producers and heavy users.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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Latest campaign demonstrates steady-state operation, process robustness, and product-quality consistency

LONDON, Ontario, June 09, 2026 (GLOBE NEWSWIRE) -- Aduro Clean Technologies Inc. (“Aduro” or the “Company”) (Nasdaq: ADUR) (TSX: ACT) (FSE: 9D5), a clean technology company using the power of chemistry to transform lower value feedstocks, like waste plastics, heavy bitumen, and renewable oils, into resources for the 21st century, today provided an update on results from the latest operating campaigns at its Next Generation Process (NGP) Pilot Plant.

Highlights

  • Continuous operation: Latest campaign conducted under Aduro’s current 24/4 operating model, meaning 24-hour operation across a planned four-day campaign window.
  • Steady-state performance: Steady-state conditions were achieved under typical Hydrochemolytic™ conditions and sustained during the defined operational window, with samples collected at regular intervals.
  • Process robustness: Steady-state conditions were re-established within approximately two hours after intentional operating changes, providing data on process-control response and operator procedures.
  • Liquid hydrocarbon recovery: Results showed 86% liquid hydrocarbon recovery over the steady-state window, and 85% of the liquid product consisted of C20-and-below hydrocarbons, a carbon-number range typically associated with naphtha cracker feedstocks.
  • Product quality analysis: Product quality indicators were as expected and comparable to products from batch and R2 experimental campaigns using the same polypropylene recovered from waste plastics.
  • Feedstock selection: Polypropylene recovered from waste plastics was used as a controlled feedstock to establish a reliable operating baseline under defined Hydrochemolytic™ conditions.
  • Next campaign progression: Results support planning for longer-duration campaigns using mixed polypropylene and polyethylene feedstocks, while also informing design inputs for Aduro’s planned first-of-a-kind (FOAK) Industrial Plant.

Over the past few months, Aduro has conducted a structured series of operating campaigns as it transitions from commissioning to sustained pilot plant operations with the goal of achieving continuous, longer-duration runs. These campaigns have ranged from single-day tests to four-day operating windows and have progressively evaluated the performance of reactor, feed-handling, and product-recovery systems, and overall operability of the plant under typical process conditions of Hydrochemolytic™ technology. Each campaign has produced practical operating data that has been used to refine startup, stabilization, product recovery and mass balance, and shutdown procedures; establish operating parameters; improve equipment performance; and better integration of the feed-handling, reaction, and product recovery sections of the Pilot Plant into a unified process.

Central to this work is achieving and holding steady state – the condition in which the reactor, and the material entering and leaving it, remain stable over time. Sustained steady-state operation is an important measure of process operability because it demonstrates that the feed-handling, reaction, product recovery, and process-control systems can operate together under various operational conditions.

As part of this normal pilot plant development process, the Aduro team has completed equipment adjustments, troubleshooting, cleaning, targeted repairs, and procedural refinements. These activities have been incorporated into successive campaigns to improve functionality, reliability, control, and resilience.

Building on prior campaigns, Aduro completed its latest planned operating campaign under its current 24/4 operating model, meaning 24-hour operation across a planned four-day campaign window. Excluding startup and shutdown phases, the run operated continuously for 47 hours using polypropylene recovered from waste plastics as a controlled feedstock. During the run, the feed-handling, reaction, and product recovery systems operated together under controlled conditions, wherein the reactor was maintained at target temperature, pressure, and recipe for Hydrochemolytic™ conversion.

Within the 47-hour run, steady-state conditions were achieved after approximately 12 hours and maintained for an additional 35 hours. Samples were collected at regular intervals to assess process performance, stability of the process, and product quality under representative operating conditions. To further evaluate stability, operating conditions were intentionally changed during the campaign. Steady-state conditions were re-established within approximately two hours, providing data on process robustness, operator response, and process-control strategy.

Over the steady-state window, the total liquid hydrocarbon recovered represented approximately 86% of the mass of polypropylene fed into the reactor during that period. Of the liquid hydrocarbon recovered, approximately 85% consisted of compounds with carbon numbers of 20 or below, which is the range typically associated with naphtha cracker feedstocks. Chemical analysis of the samples collected during the defined steady-state period demonstrated product quality consistent with prior HCT testing using the same feedstock, including batch testing and R2 continuous flow operation at smaller throughput.

The results provide additional data regarding process performance under integrated Pilot Plant operation and are being used to refine operating parameters, evaluate scale-up decisions, and inform the design basis for Aduro’s planned FOAK Plant. They also support the next phase of the Pilot Plant program, including progression from the current 24/4 model toward sustained 24/7 operation and longer-duration campaigns using mixed polypropylene and polyethylene feedstocks.

“The NGP Pilot Plant is doing what it was designed to do: generate practical operating, yield, and product-quality data that helps us define the parameters for the next stage of scale-up,” said Ofer Vicus, Chief Executive Officer at Aduro. “The latest campaign builds on prior runs and provides additional insight into the way the process operates under steady-state conditions. These results strengthen our confidence in our understanding of how the process operates and are helping us to refine the design basis for our planned FOAK Plant and support the engineering planning required for longer-duration campaigns and next-stage scale-up activities.”

“The latest campaign represents an important operating milestone for the NGP Pilot Plant,” said David Weizenbach, Chief Operating Officer at Aduro. “It demonstrated the team’s ability to move the process through startup, stabilization, steady-state operation, and controlled recovery after deliberate operating changes. Each campaign is generating the practical data needed to refine procedures, improve process control, and prepare for longer-duration operation.”

About Aduro Clean Technologies

Aduro Clean Technologies is a developer of patented water-based technologies to chemically recycle waste plastics; convert heavy crude and bitumen into lighter, more valuable oil; and transform renewable oils into higher-value fuels or renewable chemicals. The Company’s Hydrochemolytic™ technology relies on water as a critical agent in a chemistry platform that operates at relatively low temperatures and cost, a game-changing approach that converts low-value feedstocks into resources for the 21st century.

For further information, please contact:

Abe Dyck, Head of Corporate Development / Investor Relations
ir@adurocleantech.com
+1 226 784 8889

Forward-Looking Statements

This news release contains forward-looking statements within the meaning of applicable Canadian and U.S. securities laws, including statements regarding the Company’s Next Generation Process (NGP) Pilot Plant operating campaigns; the duration, stability, and repeatability of continuous operations; the interpretation of process robustness and recovery following deliberate operating-condition disturbances; the evaluation and analytical results of product samples; the planned extension of operating campaigns, including longer-duration and 24/7 operations; the integration of pilot plant data into the design basis for the Company’s planned first-of-a-kind (FOAK) Plant; the Company’s broader development and commercialization pathway; and the potential scale-up and commercialization of the Company’s technology.

Forward-looking statements are based on management’s current expectations and assumptions, including assumptions regarding the continued performance and operability of the NGP Pilot Plant; the ability to extend run durations and achieve stable continuous operations; the consistency and quality of product outputs; the applicability of pilot-scale results to larger-scale systems; the effectiveness of engineering design and scale-up activities; the availability of personnel, capital and other resources; the timely receipt of any required regulatory approvals; and general economic and market conditions.

These statements are subject to a number of risks and uncertainties that may cause actual results to differ materially from those expressed or implied, including, but not limited to: operational challenges in pilot plant campaigns; variability in performance across extended run durations; the possibility that analytical results may differ from initial observations; challenges in scaling the technology or translating pilot data into engineering design; the availability of capital and resources to support ongoing development; differences between pilot-scale results and commercial-scale outcomes; delays or changes in development plans; the risk that product quality, yields, operability or continuous run performance may not be maintained or replicated; risks related to the Company’s ability to successfully develop, scale, and commercialize its technologies; risks related to attracting and retaining key personnel; risks related to securing and maintaining necessary regulatory approvals; and general market, supply chain and macroeconomic conditions; and other factors described in the Company’s public filings available at www.sedarplus.ca and with the U.S. Securities and Exchange Commission at www.sec.gov.

Readers are cautioned not to place undue reliance on forward-looking statements. Forward-looking statements are provided for the purpose of assisting readers in understanding management’s current expectations and plans and may not be appropriate for other purposes. Except as required by law, the Company undertakes no obligation to update or revise any forward-looking statements.

June NGP Pilot Update

A photo accompanying this announcement is available at https://www.globenewswire.com/NewsRoom/AttachmentNg/efb24259-163e-43f6-a929-73bb8efcfd33


FAQ

What did Aduro (ADUR) announce about its NGP Pilot Plant results on June 9, 2026?

Aduro announced successful NGP Pilot Plant campaigns demonstrating steady-state operation, process robustness, and consistent product quality. According to Aduro, the latest 47-hour run delivered 86% liquid hydrocarbon recovery from waste-derived polypropylene, with results feeding into scale-up decisions and FOAK industrial plant design.

What liquid hydrocarbon yield did Aduro (ADUR) achieve in its latest NGP Pilot Plant campaign?

Aduro reported an 86% liquid hydrocarbon recovery over the steady-state window of its latest pilot campaign. According to Aduro, the run used polypropylene from waste plastics as feedstock and maintained steady-state conditions for 35 hours under typical Hydrochemolytic conditions.

How long did Aduro (ADUR) maintain steady-state operation in the NGP Pilot Plant?

Aduro maintained steady-state operation for about 35 hours during a 47-hour continuous campaign. According to Aduro, steady state was reached after roughly 12 hours and could be re-established within approximately two hours following intentional changes in operating conditions.

What product quality characteristics were observed in Aduro (ADUR) NGP Pilot Plant liquids?

The pilot plant produced liquid hydrocarbons where about 85% were C20-and-below compounds, associated with naphtha cracker feedstocks. According to Aduro, product-quality indicators matched prior Hydrochemolytic testing using the same polypropylene feedstock, including batch and smaller-scale continuous-flow experiments.

How will the NGP Pilot Plant results impact Aduro (ADUR) FOAK industrial plant planning?

The results provide operating, yield, and product-quality data that inform FOAK industrial plant design. According to Aduro, the data refine operating parameters, support scale-up decisions, and guide engineering planning for longer-duration campaigns and the transition toward sustained 24/7 operation with mixed plastic feedstocks.

What operating model and feedstock did Aduro (ADUR) use in the latest NGP campaign?

Aduro used its 24/4 operating model, targeting 24-hour operation across four days, in the latest pilot campaign. According to Aduro, the run processed polypropylene recovered from waste plastics as a controlled feedstock to establish a reliable baseline under defined Hydrochemolytic conditions.