 | | | | Links to recent scientific papers, web posts, upcoming events, job opportunities, podcasts, and event recordings, etc. on Carbon Dioxide Removal TechnologyJUMP TO SECTIONTOP HIGHLIGHT OF THE WEEKFrontier Infrastructure Holdings & Carbonfuture announced largest ethanol BECCS carbon removal partnership agreement to date Frontier Infrastructure Holdings and Carbonfuture have signed the largest ethanol BECCS carbon removal partnership announced to date, making up to 750,000 durable CDR credits from Project Sprint available to global buyers. Read on to unpack more updates from past week: We monitor hundreds of sources every week and deliver the most important carbon removal developments in one curated briefing. If these updates save you time each week, please consider becoming a paid subscriber to support the work.Donate Get 20% off a group subscription COMMERCIAL NEWSMota-Engil committed €100M to CDR by 2030, including up to €50M for biochar projects through BCircle alongside forestry initiatives (QC Intel)US lawmakers reintroduced legislation requiring DOE to procure up to 10 MtCO₂/year of removals from 2036, creating a major government-backed CDR market (US Senate Committee on Environment & Public Works)ProClime and Cadira Capital have partnered to invest an initial $10 million in seven biochar plants across India, targeting 35,000 annual CDR credits certified by Puro.earth and Isometric (ProClime)PayPal partnered with 3Degrees to develop a diversified CDR portfolio including Indian biochar and North Dakota BECCS (3Degrees)Frontier Infrastructure Holdings and Carbonfuture announced the largest ethanol BECCS CDR partnership to date, offering up to 750,000 durable removal credits from Project Sprint (PR Newswire)Supercritical launched a call for biochar feedstock data on behalf of a major tech company as part of a research program exploring what biochar needs to achieve gigatonne-scale CDR (Supercritical)Isometric issued Biochar Solutions’ first 2,821 CDR certificates from the Burney Forest Power project in California (LinkedIn)Gulf Cryo partnered with CO2minX to explore CO₂ mineralisation opportunities (Gas World)Rainbow Standard finalized its Bio-Oil in Asphalt module under the BiCRS methodology, enabling carbon credit issuance for this pathway (Rainbow Standard)Verra launched a next-generation registry with S&P Global Energy, improving project tracking and future market integration (Verra)Australia announced an annual ACCU issuance cap for soil carbon projects to improve credit integrity (Argus Media)Green Carbon partnered with RAOT and Mahidol University to test rubberwood biochar applications in Thailand’s natural rubber sector (Green Carbon)Deep Sky partnered with World Engineering Day for Sustainable Development to share the story behind Deep Sky Alpha, the world’s first CDR innovation and commercialization centre (LinkedIn)Paebbl permanently stored 20 tonnes of CO₂ in building materials (LinkedIn)Sylvera launched the Open Carbon Data Project with Rockefeller Foundation, Meta and WRI to create open forest carbon data for Brazil’s Atlantic Forest (Sylvera)Share RESEARCH PAPERSAuthors: Kirstine Lund Christiansen, Jonas Allesson, Guy Finkill, Nick Fitzpatrick, Inge-Merete HougaardSynopsis: The paper examines the growing use of co-financed bioenergy with carbon capture and storage (BECCS) projects, where governments and companies jointly fund carbon dioxide removal. The authors argue this model risks double-counting climate benefits, undermines the credibility of carbon offsets by failing additionality tests, and could worsen global climate inequality by favoring wealthy governments and large corporations with greater purchasing power.
Authors: Fang Wang, Xuelin Xu, Zhonghai Zhang, Wendi Liu, Jinchi Mu, Jiandong Chen, Tao WangSynopsis: Researchers developed a concentrated-light-driven DAC system using a monolithic PEI/Ni/γ-Al₂O₃ adsorbent to improve CO₂ capture efficiency and reduce regeneration energy. The system achieved high CO₂ uptake, nearly 97% regeneration efficiency, and complete desorption in just two minutes at 70°C. The study also reveals how humidity changes the CO₂ capture mechanism and demonstrates stable performance over repeated cycles, highlighting the potential of light-powered DAC for negative emissions.
Authors: Zuyuan Gao, Mengwen Pang, Mingjie Li, Yuzhen Ming, Hongbin Liu, Kedong YinSynopsis: Laboratory study investigated how two heterotrophic marine nanoflagellates respond to OAE. While both species experienced negative effects under acute exposure, their ability to acclimate differed, with high alkalinity reducing growth and altering cellular processes, particularly in one species. The findings suggest OAE could have species-specific impacts on marine protozoa, raising concerns about potential effects on marine biodiversity and ecosystem stability.
Authors: Noemma Olagaray, Jonathan Edward Lambert, Tannis ThorlaksonSynopsis: An outdoor experiment explored how basalt application, microbial inoculation with Bacillus subtilis, and soil moisture interact to influence enhanced silicate weathering (ESW) in maize. Basalt improved silicon and several nutrient concentrations in plants, while the microbes enhanced silicon uptake and partly reduced early growth stress. The results show that the benefits of ESW depend strongly on soil biology and water availability, highlighting their importance for effective carbon removal and soil management.
Authors: Matias Saez Moreno, Jens Hartmann, Janine Börker, Peggy Bartsch, and Charly Andre MorasSynopsis: Researchers compared the performance of three OAE feedstocks across different temperature and salinity conditions to evaluate their carbon removal potential. Sodium bicarbonate consistently delivered the intended alkalinity, while calcium hydroxide performed best in cold waters and magnesium hydroxide was slowed by high salinity. The findings show that OAE efficiency depends strongly on both feedstock choice and local ocean conditions, emphasizing the need to match materials to deployment environments.
Authors: Noemma Olagaray, Jonathan Edward Lambert, Tannis ThorlaksonSynopsis: The authors developed the ERW Metal Accumulation Calculator (ERW-MAC) to assess soil metal accumulation risks from ERW. Modeling shows basalt feedstocks generally remain below regulatory thresholds despite raising some metal concentrations, while peridotite often results in elevated nickel and chromium levels. The study recommends a three-step risk assessment process—feedstock characterization, conservative modeling, and regulatory evaluation—supported by ongoing field monitoring to ensure safe ERW deployment.
Authors: Morgan Reed Raven, Nitai Amiel, Dror L. Angel, James P. Barry, et al.Synopsis: The paper evaluates the potential of Marine Anoxic Carbon Storage (MACS), a proposed carbon dioxide removal approach that stores plant-derived organic carbon in oxygen-free marine environments. While MACS could theoretically operate at gigatonne scale with limited environmental risks, significant uncertainties remain. The authors identify five key factors that could constrain large-scale deployment and outline priority research needed to assess its environmental impacts, feasibility, and role in future climate mitigation.
Authors: Keju An, Dylan Wald, Kejun Chen, Ryan KingSynopsis: This study combines a dual-amine (PEI-TEPA) sorbent with a rotating adsorption bed (RAB) to improve DAC by overcoming gas–solid mass-transfer limitations. The optimized system achieved higher CO₂ uptake, faster adsorption, and maintained 87.6% of its capacity after ten regeneration cycles. The findings show that integrating advanced sorbent design with process intensification is more effective than material improvements alone, offering a promising pathway toward compact, high-efficiency DAC systems.
Authors: Ilai Guendelman, Ivan Mitevski & Gabriel VecchiSynopsis: Researchers found that Earth’s hydrological response to decreasing CO₂ differs from its response to increasing CO₂, challenging the assumption that hydrological sensitivity remains constant. Climate model experiments show precipitation changes more per degree of warming during CO₂ halving than doubling, largely due to rapid atmospheric adjustments in longwave radiation. The findings also help explain hysteresis observed in abrupt CDR simulations, highlighting the importance of fast atmospheric processes in shaping precipitation responses.
Authors: Yolanda A Criado, Carlos Bajo, Loreto Suarez, Roberto GarcíaSynopsis: The research investigates how operating conditions and sorbent properties affect the maximum carbonation conversion of calcium hydroxide in DAC. Experiments show that relative humidity and sorbent surface area have the greatest influence on CO₂ uptake, while higher CO₂ concentrations speed initial reactions but can reduce overall conversion. The authors also develop an empirical model to predict carbonation performance, providing a practical tool for designing and optimizing Ca(OH)₂-based DAC systems.
Authors: Carla Esch, Jacqueline Kieven, Antonia Geiser, Roman Ryapushkin, Wibke Zängle, Matthias WesslingSynopsis: Researchers evaluated electrically heated polyethyleneimine (PEI)-impregnated carbon fabric sorbents for DAC under realistic operating conditions. Although the sorbents showed high intrinsic CO₂ capacity, only 15–30% was utilized during continuous operation because performance was limited by gas transport rather than adsorption capacity. The findings indicate that improving module design, heat management, and dynamic sorbent utilization is more important than simply increasing sorbent capacity for efficient electrified DAC systems.
Authors: Shan Shan Liu, Jin Ming Song, Xue Gang Li, Hua Mao Yuan, Li Qin Duan et al.Synopsis: Researchers tested a calcium–alkali coupling approach that enhances ocean carbon removal by converting dissolved inorganic carbon into solid calcium carbonate, promoting additional atmospheric CO₂ uptake as seawater re-equilibrates. Laboratory, mesocosm, and offshore field experiments demonstrated effective carbon removal with only limited short-term environmental impacts. While the method shows substantial theoretical potential for boosting the ocean carbon sink, its long-term effectiveness, ecological impacts, and scalability require further investigation.
Authors: Pragalathan Rasaiah; Prerna Yogeshwar; Suraj Kumar; Jitendra S. SangwaiSynopsis: Researchers evaluated basalt from India’s Rajmahal Traps for ERW as a permanent carbon dioxide removal strategy. Under optimized conditions, the basalt captured up to 9.72 g of CO₂ per kilogram, with analyses confirming the formation of stable carbonate minerals such as calcite and magnesite. The findings highlight Rajmahal basalt as a promising domestic resource for long-term carbon storage and support ERW as a potential component of India’s decarbonization strategy.
Authors: Hengrui Zhang, Yang Wang, Zhong-Hai Li, Taras V. Gerya et al.Synopsis: Modeling study compared carbon release in the hot Colombia and cold Tonga subduction zones to better understand deep Earth carbon cycling. The results reveal that hot subduction zones release carbon efficiently over a narrow depth range, whereas cold subduction zones remove carbon much more slowly across greater depths. These contrasting decarbonation patterns improve understanding of volcanic CO₂ emissions and the long-term cycling of carbon between Earth's surface and interior.
Authors: Jun Yu, J. Keith Moore, Francois W. Primeau, et al.Synopsis: Using a process-rich ocean biogeochemical model, researchers assessed the climate benefits and ecological risks of ocean iron fertilization (OIF) across ten ocean biomes. They found the Southern Ocean offers the most favorable balance of carbon removal and environmental impacts, while fertilization in the equatorial Pacific causes greater ecological disruption despite similar carbon removal efficiency. The study also shows that much of the captured CO₂ is eventually re-emitted, highlighting challenges for carbon crediting, governance, and large-scale deployment.
Authors: Daria Seitz, René Dechow, Mirjam Helfrich & Axel DonSynopsis: The study evaluates the climate impacts of increasing straw removal from German croplands to supply biomass for replacing fossil-based products. Modeling across 1,115 agricultural sites shows that large-scale additional straw harvesting could reduce soil organic carbon stocks and generate significant CO₂ emissions, potentially offsetting some benefits of fossil fuel substitution. The authors conclude that sustainable residue management, including practices such as cover cropping, is needed to maintain soil carbon and support climate mitigation.
Authors: Tianyi Qiu, Jay Ram Lamichhane, David J. Beerling et al.Synopsis: Authors propose combining cover crops (CCs) with ERW to create more sustainable and climate-resilient agricultural systems. They argue that interactions between plant roots, soil processes, and mineral weathering could improve carbon sequestration, nutrient cycling, greenhouse gas mitigation, and soil health. However, challenges including weathering limits, potential metal accumulation, and governance barriers must be addressed before widespread deployment of CC–ERW approaches.
Authors: Yao Shen, Kai Pang, Weichen Zhao, Liang Chen, Jingkai Zhao, Jiexu Ye, Beini Zhang, Sujing Li, Wei Li, Zhen Xu, Jing Meng, Xiang Gao & Shihan ZhangSynopsis: Researchers developed a new electric swing adsorption (ESA) sorbent for DAC that addresses the traditional limitation of inefficient amine–CO₂ interactions. By creating a proton-trapping network, the material achieves a 1:1 amine-to-CO₂ ratio, increasing CO₂ uptake and reducing regeneration energy. Techno-economic analysis suggests the approach could lower DAC costs to below $100 per tonne of CO₂, offering a potential pathway toward large-scale, low-energy carbon removal.
Authors: Gerhard Hofer, Tobias PröllSynopsis: The study develops a thermodynamic model to evaluate continuous temperature–vacuum swing adsorption (TVSA) systems for solid-sorbent DAC under realistic conditions. Results show that lowering desorber pressure can improve regeneration efficiency and reduce heat requirements, while vacuum-enabled regeneration can achieve efficiencies above 30%. The analysis highlights regeneration heat and blower energy as key performance limits, providing guidance for improving sorbents, reactor design, and DAC system efficiency.
Authors: Mohamed Essalhi; Rawan A. Al Qahtani; Aasif Helal; Mona S. Otaibi; Ammar H. Alahmed; Zain H. Yamani; Islam M. A. Mekhemer; Mahmoud M. AbdelnabySynopsis: Researchers modified a vinylene-linked covalent organic framework (COF) by adding amine groups to enhance its carbon dioxide capture performance. Although the functionalization reduced surface area, it introduced stronger CO₂-binding sites, improving adsorption capacity, selectivity, and stability under direct air capture conditions. The findings demonstrate that postsynthetic amine modification can transform COFs into efficient low-pressure CO₂ capture materials for future carbon removal applications.
Results of transcriptomic responses of Low-level OAE acclimated PL (Source)Important processes related to marine anoxic carbon storage (Source)WEB POSTSOcean iron fertilisation field trials: A step forwards or a step too far? (Sage Journal)The Status of DOE’s $3.5 Billion Regional Direct Air Capture Hubs Program (DOE Alumni Network)July CDR: Offtake deals hit multi-year low; developers rebound (QC Intel)French CDR group calls for roadmap to deliver 22 mln tonnes of removals by 2050 (Carbon Pulse)INTERVIEW: European ERW firm to focus on industrial partnerships (QC Intel)Minister’s carbon sequestration response raises more questions than answers - McAleer (Farming Life)UCSB-led international team evaluates anoxic marine basins as potential sites for carbon sequestration (The Current)Gigablue pushes for EEZ rule changes to scale ocean carbon trials (Business Desk)Carbon Removal Via Direct Air Capture: High Integrity, Challenging Delivery (MSCI)Engineered Carbon Removals: A Fast-Growing but Early-Stage Pipeline (MSCI)mCDR developer signals NZ exit unless regulators reverse stance (QC Intel)The oceans near Australia may be the best places to fertilize for removing carbon dioxide (Phys.Org)Artificial algal blooms could remove atmospheric carbon — but can they be used responsibly? (Nature)Advancing the carbon takeback conversation: flexibility and pilot pathways (Illuminem)EW shows potential for durable CDR but evidence gaps could slow scale-up, major review finds (Carbon Pulse)What do the European Commission’s proposed EU ETS reforms mean for carbon credit markets? (Abatable)Compliance market moves widen the case for carbon removal investment, says investor (Carbon Pulse)Opinion: How The Revamped SBTi Standard Reinforces The Dual Purpose Of Biochar In Companies’ Supply Chains (Carbon Herald)FEATURE: Halifax’s big bet on the future of carbon removal (Carbon Pulse)Here are the right reasons to buy carbon removal credits (Trellis)Uncertainty Plagues US DAC Sector as Players Shift Strategy (Energy Intelligence)Climate Uncovered - The 3 levers that could stabilise the climate (Climate Uncovered)From demo to FOAK: scaling industrial innovation (CN Cement)Building on solid ground: why LULUCF target allocation in the EU needs two storeys, not one (Carbon Gap)DATA DIVE: Over 90% of marine carbon removal credits yet to be delivered to their buyers (Carbon Pulse)From Rocks to Net Zero: How Oman Can Lead the Future of Carbon Removal (NetZerovation)Innovating Carbon Capture from First Principles using Artificial Intelligence and the Molecular Biology Toolkit (XCaptureCO2)Share Carbon Removal Updates REPORTSGoverning Carbon Dioxide Removal in Saudi Arabia: Technologies and Regulations (KAPSARC)An updated assessment of hydrogen BECCS technologies (Gov.UK)The Soil Carbon Market: Momentum & Measurement (AlliedOffsets)Carbon removal is graduating: it is the next major institutional investment opportunity (Counteract)UPCOMING EVENTSAugust 2026September 2026Developing Your Message | 16 September 2026 | OnlineCommunicating Risk | 07 October 2026 | OnlineEngaging with the Media | 28 October 2026 | Online
AGU26 Annual Meeting | 7–11 December 2026 | San Francisco, CA | Abstract Submission Deadline: 05 August 2026We have curated a “Carbon Removal Events Calendar.” Explore and stay informed about upcoming events, conferences, and webinars on Carbon Dioxide Removal technology. Sync specific events / all events to your default calendar to ensure you never miss out on important CDR updates. Carbon Removal Events Calendar Add our Carbon Removal Events Calendar to your default calendar in 2 ways:Sync specific event: Click the event → menu (≡) → Share → choose your calendar → Save.Or sync all events: Menu (≡) → Preferences → iCalendar Feeds → Copy URL → Add to your calendar settings → Subscribe.JOB OPPORTUNITIES“Mission Zero Technologies is a London-based climate tech startup working to reinvent carbon for a thriving planet. Since 2020, they have rapidly pioneered the world’s most versatile direct air capture (DAC) technology to recover historic CO₂ emissions from the atmosphere, anywhere at any scale.”
“Isometric is the AI-native certifier of climate solutions.”
“CarbonPlan is a nonprofit organization using science and data to accelerate climate action.”
“Varaha is a leading global climate tech startup that specializes in nature-based solutions, including regenerative agriculture, agroforestry, and biochar projects that promote climate adaptation, biodiversity, water conservation and increased income for smallholder land stewards.”
“The German Association for Negative Emissions (DVNE) is the largest national association for active CO₂ removal in the EU.”
“Planetary Technologies’ vision is to protect and restore the ocean and climate for generations to come. We do this by enhancing the ocean’s natural ability to fight climate change through carbon dioxide removal and storage.”
“Indigo Ag transforms on-farm regenerative agricultural practices into durable new revenue streams for farmers and agribusinesses, creating a more resilient world with thriving farmers and more sustainable and environmentally prosperous companies.”
“The goal of the position is to advance our understanding of warming-induced feedback on emissions of greenhouse gases (specifically methane) from vegetated wetlands, coastal systems, and inland waters, with a focus on advancing process-based science and informing strategies to reduce greenhouse gas emissions. Warming is changing, and generally increasing, the emissions of methane from anaerobic systems, yet the production, consumption and transport pathways are poorly understood.”
“DG Clima C3 within the European Commission has been driving cutting-edge CDR policy, amongst others the Carbon Removal and Carbon Farming Regulation (CRCF).”
“Climeworks is a leading high-quality carbon removal provider, combining decades of expertise in Direct Air Capture (DAC) technology with a holistic approach to carbon removal solutions.”
“The German Association for Negative Emissions (DVNE) is the largest national association for active CO₂ removal in the EU.”
Looking for your dream job in CDR? There are 571 jobs available *right now*: check them all out at: CDRjobs Board PODCASTS“There are many startup accelerators out there. There are fewer focused on climate tech. Fewer still for carbon dioxide removal. Lucky for us, remove runs the absolute heck out of their programs. And it’s been a true joy of mine coaching startups in them this past year. I can’t even believe it, but the time has come for another program... In Latin America!If you are a Latin American carbon dioxide removal project and/or technology developer, you should apply to remove’s LatAm cohort. Applications are out now, and there is a chance we might end up working together.I have had nothing but wonderful experiences with the team at remove. They offer focused training, a powerful network, and an unmatched peer group in your cohort. Hoping to see you there!In today’s episode, cofounders and managing directors of remove, Marian Krüger and Hans Westerhof, join the show to talk about the program, what it means to be ecosystem builders, and how they aim to grow capacity in the Global South generally and Latin America in particular.”
“In this episode of The CDR Policy Scoop, Eve Tamme and Sebastian Manhart follow up on their interview with Mette Quinn to hash out their own read of Brussels’ proposal to fold carbon removals into the EU ETS, and they don’t agree on much. Is this really a “compliance market,” or a purchasing programme that happens to sit on the ETS cap? Eve and Sebastian take opposing sides, and the answer matters more than semantics: it shapes how the whole mechanism should be judged.The cost assumptions get the roughest treatment. Sebastian has spent the past week stress-testing the BioCCS and DAC numbers behind the impact assessment, and he’s not convinced. The transport and storage figures look wildly optimistic against what he’s hearing from Europe’s biggest BioCCS developers off the record. Biochar comes off worse still: favourably discussed in the impact assessment, then dropped entirely from the actual proposal, with nature-based solutions getting an explicit review clause that biochar never received.Timing is the other flashpoint. A 250 million ton removals commitment sounds decisive, until you line it up against a 48 million ton auctioning target for 2039 and realise the years don’t match. Add in unresolved questions about who eats the risk on non-delivered offtakes or a shifting carbon price, and the “who pays” question stops being hypothetical.They close on supply: will a demand signal alone be enough to pull removals out of the Global South, or will an undersupplied market let developers simply triage toward whoever pays most? Robert Höglund’s observation that this may be the first major EU proposal to treat permanent removals as functionally equivalent to reductions gets a nod too, a precedent Eve and Sebastian both think could ripple well beyond the ETS.”
“In this episode of The CDR Policy Scoop, Eve Tamme and Sebastian Manhart sit down with Dr. Injy Johnstone, Senior Research Fellow at the Max Planck Net Zero Lab, to unpack her new report, What Are Residual Emissions, which tries to bring clarity to one of climate policy’s most used and least defined terms.Johnstone explains why, more than a decade after the term entered use, there is still no shared definition. The IPCC modeling community that coined it works from different inputs than a corporate net zero team, and the timeline question, today’s technology versus a 2050 horizon, changes the answer. She also draws a distinction the sector often blurs: hard to abate describes a technological limit, while residual emissions is a broader, more normative category shaped by choices about demand reduction and regulation.The conversation turns practical as Johnstone breaks residual emissions into near, medium and long term buckets that corporates and governments can plan against. Sebastian presses on the middle bucket, where overly optimistic assumptions about future technology can quietly reduce carbon removal investment today. Johnstone and Eve also test the new SBTi and ISO standards released since the report’s publication.They close on equity: who decides an industry keeps its social license to keep emitting, and who absorbs the trade offs within a finite carbon budget. Johnstone argues these normative choices are already being made, whether admitted or not, and surfacing them is the first step toward distributing that cost fairly.”
YOUTUBE VIDEOSWhat are residual emissions? On Scrubbing the Skies | Institute for Responsible Carbon Removal “This webinar - What are residual emissions? A science-based understanding to underpin corporate carbon accounting guidance - presents findings from a new report that provides a science-based examination of the concept of residual emissions, highlighting that no single authoritative definition exists across academic literature, national strategies or corporate standards. Residual emissions are best understood not as a fixed category but as the emissions that remain at the net-zero balance point after all technically, economically and socially feasible abatement has occurred. However, what is “feasible” is inherently subjective and evolves over time. Because residual emissions are shaped by assumptions in integrated assessment models, sector-specific constraints, and broader social and political choices, corporates require a dynamic, time-bound and technology-conditional approach. The report proposes a practical framework for companies to classify emissions by abatement timeframe, plan and disclose their pathways, and develop robust carbon removal strategies to neutralise remaining emissions, ensuring transparent, credible and adaptable net-zero planning.”
Carbon Confidential with Paul Polman, Former CEO of Unilever and Sustainability Advocate | CUR8 - Carbon Removals “Dr Gabrielle Walker, Co-Founder and Chief Scientist at CUR8, will sit down with Paul Polman — one of the most consequential business leaders of his generation, and a rare example of someone who has repeatedly built markets before they existed.What we covered:• How to spot tomorrow’s markets before the business case is obvious• What it takes to bring competitors, policymakers and investors together behind a shared goal• How to create the business case for a market that doesn’t yet exist”
Can Smallholder Farmers Remove Carbon at Scale? - with Yovindra Kanezin | Biochar Life Help us unlock $750,000 | Tito - AirMiners CDR and Carbon Politics: The View from the Humanities | CanCO2Re Initiative “Carbon Dioxide Removal is not just about designing new technologies, but also a subject of politics, especially upon implementation when citizens are asked to accept these new technologies. CDR features in both the past and present of climate politics in complex, even contradictory ways. And because it can be deployed strategically and discursively by actors with varied intentions and interests, CDR brings with it a host of social and political considerations.In this webinar, Dr. Petra Dolata and Dr. Mack Penner talked about the relationship between CDR and the politics of climate change. Using both historical examples and theoretical insight, they discussed how the humanities offer a disciplinary vantage from which CDR can, and indeed must, be understood if it is to serve its purpose in reducing carbon emissions and slowing the climate crisis.”
C2V Initiative Year 5 Final Showcase: Startup Lightning Pitches | Urban Future Lab “Hear presentations from the C2V Year 5 Cohort of carbontech startups as they each present their unique solutions, the progress they’ve made throughout the past six months of the C2V program, and where they are headed next:Arbon develops a humidity-swing carbon capture solution, capturing CO₂ from the air or point-source without heat or pressure.- Cella develops a subsurface-mineralization technology with integrated software, enabling new ways to sequester CO₂ underground.- ICODOS transforms emissions into value through a point-source carbon capture and methanol synthesis process in a single, modularized system.- Lite-1 uses advanced biomanufacturing processes to produce circular colourants for use in food, cosmetics, and textiles.- Mission Zero Technologies has developed and internationally deployed an electrified, direct-air carbon capture solution that employs both liquid adsorption and electrochemical technologies.- Octavia Carbon develops a solid-adsorption-based, direct air carbon capture solution that utilizes geothermal heat.- Rushnu integrates point-source carbon capture with chemical production, turning salt and CO₂ into chlorine-based chemicals and minerals.-Sora Fuel integrates direct air capture with direct conversion of the captured carbon into syngas for production of sustainable aviation fuel.- Turnover Labs develops modular electrolyzers that transform raw, industrial CO₂ emissions into chemical building blocks, without capture or purification.- Universal Matter develops a Flash Joule Heating process that converts carbon waste such as end-of-life plastics, tires, or industrial waste into graphene.”
Scaling CDR Through Policy Lessons for Türkiye and the Wider Region | CDR Türkiye “The fourth edition of the CDR Stage Towards COP31 series focuses on the policy frameworks needed to scale carbon dioxide removal with integrity, with a direct focus on Türkiye and the wider region.As global climate rules take shape, establishing clear national policies and quality standards is critical for creating market confidence, unlocking investment, and positioning Türkiye strategically ahead of COP31.In this session, we explored international policy models, market integration mechanisms, and the practical steps needed to translate Türkiye’s technical potential into financeable projects.”
Global visionaries special: Jim Mann, founder & CEO of Undo | Monocle Radio “Monocle Radio is a round-the-clock global audio service featuring live shows and podcasts that cover news, entrepreneurship, culture, design, urbanism, media and more. Tune in to hear our editors, correspondents, sector specialists and canny contributors across the schedule, as well as a perfect soundtrack of great music from around the world. “
Carbon Credits in Agriculture – From Frameworks to Field Implementation | AgriPDB Platform “Building on the first webinar, which explored the fundamentals of carbon credits and the evolving carbon market landscape, this session focused on practical implementation at the project level. Experts from the FAO/FAST Partnership, CIRAD, Mirova, NABARD, and Kosher Climate shared their experience in designing, financing, and implementing agricultural carbon credit projects, highlighting both opportunities and operational challenges.”
USBC Seed to Sequestration: The Industrial Hemp and Biochar Connection | SMART Policy Group “Seed to Sequestration: The Industrial Hemp & Biochar ConnectionWhat happens when you combine two of the most powerful tools for climate-smart agriculture and green manufacturing? You unlock completely new pathways for carbon removal, soil health, and sustainable industrial feedstocks.From clearing soil contaminants to permanently destroying forever chemicals and building carbon-negative materials, this session will break down the real-world applications driving the industry forward.What We’re Covering:Phytoremediation: How hemp extracts soil contaminants, and how that biomass can be safely utilized.PFAS Destruction via Pyrolysis: How advanced pyrolysis permanently destroys “forever chemicals” while generating high-value biochar.Benefit-Stacking in Green Building: Combining hemp and biochar to create high-performance, carbon-negative materials like hempcrete.”
“This playlist features sessions from Exploring Canada’s Carbon Removal Future, a two day symposium hosted by CanCO2Re at the University of Calgary on June 23 and 24, 2025. Talks and panels cover the full landscape of carbon dioxide removal in Canada, including public perception, bioenergy with carbon capture and storage, direct air capture, mineralization, legal implications, deployment scenarios and responsible development. Speakers include researchers from the University of Calgary, University of Toronto, University of Waterloo, University of Alberta and Simon Fraser University, alongside voices from industry, law and finance.”
Weekly Carbon Removal Updates from 27 July - 02 August 2026 | Carbon Removal Updates Bulletin DEADLINESFollow us on:Twitter | Bluesky | LinkedIn | YouTube | Substack | Podcast 1 | Podcast 2
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