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Artwork for Reviewer 2 does geoengineering

Reviewer 2 does geoengineering

Andrew Lockley

Reviewer 2 quibbles with actual experts in Solar Radiation Modification and Carbon Dioxide Removal, before rejecting their work on spurious, spiteful and capricious grounds. You'd expect nothing less from R2.

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  • 20 episodes
  • Avg 58 min
  • English
  • August 18 · 1 hr 1 min

    Influence of Surface Roughness on ERW - Kukla

    How much carbon can enhanced rock weathering actually remove? In this episode, @geoengineering1 talks with Tyler Kukla of CarbonPlan about how assumptions about rock surface roughness can dramatically change enhanced weathering estimates. They discuss why surface area is critical to weathering rates, how commonly used roughness calculations can overestimate available surface area, and what this means for modeled CO₂ removal. The conversation also explores the differences between surface-area- and water-transport-limited weathering, the challenges of scaling enhanced weathering, and why better measurements are needed to constrain models. The discussion is based on Tyler Kukla et al.’s CarbonPlan article, How Surface Roughness Scaling Can Mislead Enhanced Weathering Predictions. https://carbonplan.org/research/modeling-bytes-02-roughness

  • August 14 · 52 min

    Aerosol Warming Over Bright Surfaces - Kapoor

    @geoengineering1 interviews Taveen Kapoor about his study [preprint] showing that purely scattering stratospheric aerosols can produce positive shortwave radiative forcing, and localized warming, over high-albedo surfaces such as snow, ice, and deserts. They discuss how diffuse light reflected from bright surfaces travels farther through the aerosol layer, increasing the likelihood of backscattering toward the surface. They also discuss why multi-angle radiative-transfer calculations reveal stronger positive forcing than the standard two-stream approximation, particularly in tropical and extratropical regions, while daily averages can obscure intense daytime forcing peaks. The conversation explores implications for SAI, including potential effects on snowmelt and regions such as the Tibetan Plateau and Sahel, as well as the growing burden of alumina aerosols from spacecraft reentry. They also discuss uncertainties and related research on alumina-based stratospheric aerosols. Paper Discussed: Zhang, L., Kapoor, T. S., Upadhyay, P., & Chakrabarty, R. K. (2026). Purely light-scattering aerosols could induce positive shortwave radiative forcing over high-albedo surfaces. EGUsphere, 2026, 1-17. https://doi.org/10.5194/egusphere-2026-3947

  • May 15 · 50 min

    Viridas Pressurised DAC, El-Sayed

    In this episode, @geoengineering1 speaks with Ahmed El-Sayed of Viridas Technologies, a company aiming to revolutionize Direct Air Capture (DAC) by redesigning the process from the ground up, including the fan system itself. The conversation explores why DAC remains expensive, largely due to the extremely low concentration of CO2 in ambient air. While most research focuses on developing new solvents and materials to reduce energy use, Ahmed argues that the thermodynamic limits of capture efficiency may already have been reached. Instead, Viridas is pursuing a different strategy i.e. increasing the volume of air processed. Their proposed high-pressure system reduces contactor size by 70x while delivering more than 3100x better performance through major gains in absorption capacity and absorption rate. Ahmed also discusses the use of scalable, oxygen-resistant solvents derived from widely produced industrial chemicals, and why the future of DAC may depend on breakthroughs in turbomachinery and membrane technologies to drive costs down to ultra-low levels and enable gigaton-scale deployment. Paper Discussed: Elsayed, A., & Alawadh, T. (2026). Scaling Carbon Removal to Gigaton Capacity using Pressurized Direct Air Capture. https://doi.org/10.26434/chemrxiv.15002130/v1 Viridas Technologies: https://www.viridastechnologies.com/

  • April 16 · 50 min

    Avantium: Engineering Sorbents for DAC - Wessels

    @geoengineering1 interviews Rudolf Wessels, Director of Technology and Innovation at Avantium R&D Solutions in the Netherlands (founded in 2000 as a Shell spin-out). The discussion examines Avantium’s contribution to advancing Direct Air Capture (DAC) through high-throughput experimentation platforms designed to accelerate the discovery and optimization of sorbent materials, enabling rapid, parallel testing under controlled conditions. Wessels also discusses the company’s recent collaboration with the U.S. National Institute of Standards and Technology (NIST) Carbon Dioxide Removal Consortium, focused on improving measurement protocols, benchmarking practices, and validation in DAC systems. The episode highlights how standardized testing, process optimization, and material innovation can support the scale-up and credibility of carbon removal technologies. Links: https://rds.avantium.com/products/direct-air-capture-solutions/ https://rds.avantium.com/avantium-joins-nist-to-accelerate-dac-innovation/ To stay updated on all things geoengineering-related, subscribe to: Carbon Removal Updates Substack: https://carbonremovalupdates.substack.com/ Solar Geoengineering Updates Substack: https://solargeoengineeringupdates.substack.com/

  • April 4 · 1 hr 14 min

    Sustaera - electric DAC

    @geoengineering1 interviews Cory Sanderson, CTO and co-founder of Sustaera, a North Carolina-based Direct Air Capture (DAC) startup focused on low-cost carbon capture, separations chemistry, and process scale-up. Sanderson traces his journey from Air Products, where he worked on vacuum swing adsorption CO₂ capture for an SMR hydrogen plant and encountered economic and infrastructure constraints, to founding Sustaera. He also explains the company’s shift from CO₂-to-methane materials, which depended on costly clean hydrogen, to a pure DAC approach. He then outlines Sustaera’s system, which utilises a fixed, cartridge-based monolithic contactor with laminar-flow channels and a conductive, structured sorbent that integrates resistive (Joule) heating directly into the material, thereby improving efficiency, stability, and regeneration speed. He highlights the novelty of the design, noting that Sustaera has achieved over 90% heating efficiency in lab tests, 20-30 minute adsorption cycles, and multi-year sorbent lifetimes. With a modular, catalytic-converter-style manufacturing approach, the company is currently at TRL 5, has pre-sold removals at $700/ton to Stripe and Shopify, and is raising $8.6M to build its first outdoor commercial unit. For more details, visit: https://www.sustaera.com/ To stay updated on all things geoengineering-related, subscribe to: Carbon Removal Updates Substack: https://carbonremovalupdates.substack.com/ Solar Geoengineering Updates Substack: https://solargeoengineeringupdates.substack.com/

  • March 20 · 46 min

    Climefi - supporting CDR buyers

    @geoengineering1 interviews Paolo Piffaretti, co-founder of ClimeFi (https://www.climefi.com/), on how durable carbon dioxide removal (CDR) credits are verified and delivered for corporate buyers. ClimeFi acts as a buyer-side agent, helping organizations define contribution vs. compensation goals, run reverse-auction RFPs, build diversified portfolios, conduct due diligence, negotiate contracts with risk-mitigation clauses, and monitor suppliers through delivery. They also unpack how CDR deals work in practice, covering offtakes, pre-purchases, and newer call options for flexibility, along with what is changing in the market and how buyers manage risk in a space where many projects fail. ClimeFi has also recently opened its Beyond 2030 request for proposals (RFP) on behalf of multiple buyers. It is the company’s most ambitious procurement to date, targeting 100,000 to 500,000 tonnes of durable carbon removal. All pathways are eligible, provided permanence of 200+ years. Submissions close on Wednesday 8 April. Details: https://www.climefi.com/blog-posts/climefi-launches-beyond-2030-rfp-for-durable-carbon-removal To stay updated on all things geoengineering-related, subscribe to: Carbon Removal Updates Substack: https://carbonremovalupdates.substack.com/ Solar Geoengineering Updates Substack: https://solargeoengineeringupdates.substack.com/

  • January 24 · 1 hr 19 min

    Comparing SRM and Opioids - Clark

    In this episode, @geoengineering1 is joined by Britta Clark, a postdoctoral researcher at Harvard University, to unpack why solar geoengineering is increasingly compared to opioids. They discuss how this framing casts SRM as temporary “relief” from climate warming and why it raises concerns about potentially slowing emissions cuts. The conversation focuses on how climate models, policy debates, and public discourse can quietly shift expectations about how fast emissions reductions should happen once solar geoengineering is considered, even when people say it should not delay the energy transition. Together, they explore why this tension matters and what it could mean for future climate decisions. Paper: Clark, B. (2025). Solar geoengineering, delay, and addiction. Climatic Change, 178(11), 209. https://doi.org/10.1007/s10584-025-04059-3 Open access version: https://philpapers.org/rec/CLASGD-2 To stay updated on all things geoengineering-related, subscribe to: Carbon Removal Updates Substack: https://carbonremovalupdates.substack.com/ Solar Geoengineering Updates Substack: https://solargeoengineeringupdates.substack.com/

  • January 9 · 1 hr 23 min

    Malaria Trends and SRM - Hussain

    In this episode, @geoengineering1 interviews Athar Hussain, physicist and professor of atmospheric science at COMSATS University, Pakistan, about his recent study examining how SAI could influence malaria transmission across South Asia. Using the VECTRI malaria model, the research compares an unmitigated high-emissions pathway (RCP8.5) with the GLENS-SAI scenario, which stabilizes global temperatures at 2020 levels, across seven countries: Afghanistan, Bangladesh, Bhutan, Iran, India, Nepal, and Pakistan. The discussion highlights that while SAI could reduce overall malaria transmission intensity across much of the region by lowering vector density, entomological inoculation rates (EIR), and case numbers, its effects are spatially uneven, with localized increases projected in parts of Pakistan, Afghanistan, Iran, and Nepal. The conversation also explores the public-health implications of these shifts, the potential risks and trade-offs of solar geoengineering, and the importance of region-specific strategies, local expertise, and international collaboration in addressing climate-related health risks. Paper: Hussain, A., Shoaib, M., & Latif, M. (2025). Malaria transmission dynamics under climate change and solar geoengineering in South Asia: a GLENS-based assessment. Malaria Journal, 24(1), 439. https://doi.org/10.1186/s12936-025-05666-2 To stay updated on all things geoengineering-related, subscribe to: Carbon Removal Updates Substack: https://carbonremovalupdates.substack.com/ Solar Geoengineering Updates Substack: https://solargeoengineeringupdates.substack.com/

  • Dec 22, 2025 · 1 hr 11 min

    Adaptation vs Geoengineering - Gambill

    @geoengineering1 interviews Paul Gambill to discuss the intricate dynamics between adaptation and geoengineering. Drawing on his experience as the former founder of Nori, the first carbon removal marketplace, Paul reflects on why scaling durable carbon removal has proven so difficult and what those barriers suggest for stabilizing the climate in an era of overshoot. The conversation then turns to the growing relevance of geoengineering approaches, including solar radiation management (SRM) and other large-scale interventions, and the conditions under which they might move from taboo to serious consideration. The episode explores a spectrum of techniques that blur the line between adaptation and planetary engineering, from ocean iron fertilization and ice-sheet stabilization to localized cooling strategies. Throughout, Paul stresses the need for public awareness, strategic policy development, philanthropic investment, and credible long-term governance to ensure that any future climate interventions are deliberate, legitimate, and responsibly managed. Articles referenced in the episode: What’s the Difference Between Adaptation and Geoengineering? https://www.inevitableandobvious.com/p/adaptation-vs-geoengineering A Climate Goal for the Overshoot Era https://www.inevitableandobvious.com/p/a-climate-goal-for-the-overshoot-era What It Takes to Make Cooling Interventions Thinkable https://www.inevitableandobvious.com/p/what-it-takes-to-make-cooling-thinkable Paul Gamble’s current project: https://pitch.com/v/light-the-beacons-pitch-deck-hchvkq To stay updated on all things geoengineering-related, subscribe to: Carbon Removal Updates Substack: https://carbonremovalupdates.substack.com/ Solar Geoengineering Updates Substack: https://solargeoengineeringupdates.substack.com/

  • Dec 13, 2025 · 1 hr 12 min

    Festive snowy forests - D'Souza

    What could be more festive than carbon storage in snowy evergreen forests? @geoengineering1 interviews Kevin Bradley D'Souza, a postdoctoral researcher at the University of Waterloo, about the real climate potential of reforesting Boreal forests. Kevin explains the crucial role these forests play in carbon storage, biodiversity, and permafrost protection, while noting that reforestation in the Boreal comes with important challenges. The conversation explores key factors such as albedo effects, wildfire risks, and the importance of Indigenous perspectives in forest management. Kevin also stresses the need for careful, multi-dimensional approaches to reforestation and urges caution around commercial forest-based carbon credits, given the scientific uncertainties that still remain. Papers discussed: Dsouza, K. B., Ofosu, E., Salkeld, J., Boudreault, R., Moreno-Cruz, J., & Leonenko, Y. (2025). Assessing the climate benefits of afforestation in the Canadian Northern Boreal and Southern Arctic. Nature Communications, 16(1), 1964. https://doi.org/10.1038/s41467-025-56699-9 Dsouza, K. B., Ofosu, E., Boudreault, R., Moreno-Cruz, J., & Leonenko, Y. (2025). Substantial carbon removal capacity of Taiga reforestation and afforestation at Canada’s boreal edge. Communications Earth & Environment, 6(1), 893. https://doi.org/10.1038/s43247-025-02822-z To stay updated on all things CDR-related, subscribe to the Carbon Removal Updates Substack newsletter: https://carbonremovalupdates.substack.com/

  • Nov 9, 2025 · 59 min

    Distributing solid aerosols - Hack

    Miranda Hack provides an in-depth look at the often-overlooked engineering and logistical barriers to large-scale deployment of solid particles for stratospheric aerosol injection (SAI). She explains how dispersing sub-micron mineral particles at altitude, including challenges like agglomeration, complex nozzle flows, and supply-chain constraints, introduces significant uncertainties and costs. These challenges may reduce cooling efficiency and narrow the design space for “low-risk” SAI strategies, suggesting that solid aerosols could be far less viable than existing models assume. Paper: Hack, M., McNeill, V. F., Steingart, D., & Wagner, G. (2025). Engineering and logistical concerns add practical limitations to stratospheric aerosol injection strategies. Scientific Reports, 15(1), 34635. https://doi.org/10.1038/s41598-025-20447-2 To stay updated on all things SRM-related, subscribe to the Solar Geoengineering Updates newsletter: https://solargeoengineeringupdates.substack.com/

  • Oct 4, 2025 · 43 min

    SRM hoses - Hyde

    Roderick Hyde discusses his recent paper on using high-altitude hoses for solar geoengineering. While most proposals focus on aircraft delivery, Hyde revisits an older but largely dismissed concept. He describes suspending a 20 km hose by balloons to continuously pump sulfur-bearing fluids into the stratosphere, and argues that advances in modern materials and engineering may overcome past barriers. The conversation covers the technical hurdles such as wind dynamics, hose stability, extreme pressures, and material stress, as well as design variations for pumping H₂S as liquid or gas. Hyde explains how streamlining, intermediate pumps, and lightweight aero-shrouds could make the system viable. The discussion also highlights the potential advantages of this approach, including affordability, continuous operation, and scalability. While a single hose could not halt global warming, Hyde suggests that a distributed network of ~20 installations could offset warming from CO₂, offering a near-term, low-cost option to buy time while longer-term climate solutions take effect. Paper: Hyde, R. A. (2025). A Planetary Cooling Hose. arXiv preprint arXiv:2509.07985. https://doi.org/10.48550/arXiv.2509.07985

  • Oct 1, 2025 · 56 min

    More Moore - polar SRM research

    John Moore joins the podcast to discuss his recent Viewpoint article responding to Siegert et al.’s paper on polar geoengineering. While Siegert and colleagues argue that proposed interventions are infeasible, environmentally dangerous, and a distraction from decarbonization, Moore contrasts the prevailing “consequences-based paradigm” (raising alarms to spur actions) with a new “compassionate harm reduction paradigm” that calls for exploring all potential tools including geoengineering rather than rejecting them outright, so humanity has options to reduce harm if warming overshoots. The conversation covers the risks of melting glaciers and sea-level rise, and specific concepts such as stratospheric aerosol injection. Moore also stresses the importance of Arctic Indigenous leadership, pointing to Saami Council-led review processes as a model for rights-based and knowledge co-produced governance. The discussion also highlights the sharp divides in the climate community over polar geoengineering and raises fundamental questions about the responsibilities of scientists in an era of accelerating climate risk. Papers: Lead Article: Siegert, M., Sevestre, H., Bentley, M. J., Brigham-Grette, J., Burgess, H., Buzzard, S., ... & Truffer, M. (2025). Safeguarding the polar regions from dangerous geoengineering: a critical assessment of proposed concepts and future prospects. Frontiers in Science, 3, 1527393. https://doi.org/10.3389/fsci.2025.1527393 Viewpoint: Moore, J. C., Macias-Fauria, M., & Wolovick, M. (2025). A new paradigm from the Arctic. Frontiers in Science, 3, 1657323. https://doi.org/10.3389/fsci.2025.1657323

  • Aug 25, 2025 · 58 min

    SRM's socioeconomic cost - Bronsther & Xu

    Jacob Bronsther & Yangyang Xu discuss their recent paper on the socioeconomic costs of Solar Radiation Modification. While SRM’s direct technical costs appear modest (~$18B/°C cooling), the authors argue that its broader costs are far greater. They estimate that Stratospheric Aerosol Injection could generate between $0 and $809 billion annually in side-effect harms, with potentially higher figures for Marine Cloud Brightening. The conversation also explores SRM’s reliance on unprecedented global cooperation, the political risks of weather accountability, and the dangers of termination, which could impose major financial costs. They contrast these challenges with large-scale Carbon Dioxide Removal, noting that although CDR entails immense technical expenses, it avoids some of SRM’s political and termination risks. The discussion highlights the complexity of weighing the full spectrum of costs and benefits when evaluating climate-engineering strategies. Paper: Bronsther, J., & Xu, Y. (2025). The social costs of solar radiation management. npj Climate Action, 4(1), 69. https://doi.org/10.1038/s44168-025-00273-y

  • Aug 14, 2025 · 36 min

    SAI can weaken CO2 greenhouse effect - Soden

    Brian Soden discusses his recent study on injecting absorptive aerosols, such as black carbon, into the upper stratosphere to weaken the CO₂ greenhouse effect. The conversation addresses the radiative physics underpinning this concept, its potential cooling efficiency relative to conventional scattering aerosols, and associated environmental risks. While model results indicate the method could theoretically be effective, Soden remains sceptical about its practical viability. Paper: He, H., Soden, B. J., Vecchi, G. A., & Yang, W. (2025). Stratospheric aerosol injection can weaken the carbon dioxide greenhouse effect. Communications earth & environment, 6(1), 485. https://doi.org/10.1038/s43247-025-02466-z

  • Jun 30, 2025 · 43 min

    SRM moratoria - Bodansky

    Daniel Bodansky discusses his recent article on the drawbacks of a global moratorium on solar radiation management deployment. The conversation critiques whether a moratorium is feasible or effective, arguing it could hinder critical research, be difficult to enforce, and unintentionally become a proxy for a permanent ban. Instead, the discussion highlights the need for more research and stronger governance frameworks to better understand and responsibly manage geoengineering. Article: Biniaz, S., & Bodansky, D. (2025, May 13). Why a global “moratorium” on solar radiation management deployment should get a chilly reception. Just Security. https://www.justsecurity.org/113295/moratorium-srm-deployment-chilly-reception/

  • May 31, 2025 · 38 min

    Mixed phase cloud thinning - Villanueva

    Diego Villanueva discusses his paper on mixed-phase regime cloud thinning (MCT). This geoengineering approach involves using ice-nucleating particles to reduce the heat-trapping effects of polar clouds. Using climate and cloud-resolving models, the study finds MCT could offset up to 25% of polar ocean warming from CO₂ doubling and increase sea ice by 8% in the Arctic and 14% in Antarctica. In the podcast, we discuss the science behind this method, its potential benefits, limitations, and broader implications. Paper: Villanueva, D., Possner, A., Neubauer, D., Gasparini, B., Lohmann, U., & Tesche, M. (2022). Mixed-phase regime cloud thinning could help restore sea ice. Environmental Research Letters, 17(11), 114057. https://doi.org/10.1088/1748-9326/aca16d

  • May 23, 2025 · 41 min

    CIRCEO: On-Ship CDR - Bardinet

    @geoengineering1 interviews Fabien Bardinet, co-founder of CIRCEO [linkedin.com/company/circeocc], a new company focused on marine-based carbon capture. CIRCEO is developing semi-autonomous sailing drones that generate electricity from wind to power onboard electrochemical systems that remove carbon from seawater. The company is currently hiring a CDR Electrochemist Co-founder: linkedin.com/jobs/view/4205443622.

  • May 10, 2025 · 57 min

    Risk-risk trade-offs - Felgenhauer

    Tyler Felgenhauer and @geoengineering1 discuss risk-risk trade-offs. Paper: Tyler Felgenhauer, Govindasamy Bala, Mark E Borsuk, Inés Camilloni, Jonathan B Wiener, Jianhua Xu, Practical paths to risk-risk analysis of solar radiation modification, Oxford Open Climate Change, Volume 5, Issue 1, 2025, kgaf012, https://doi.org/10.1093/oxfclm/kgaf012 Guest info: Tyler Felgenhauer, PhD; Senior Research Scientist; Research Director; The Duke Center on Risk; Duke University link for the RFF workshop. https://www.rff.org/events/conferences/2025-rff-and-harvard-srm-social-science-research-workshop-governance-in-a-fractured-world/

  • May 4, 2025 · 1 hr 34 min

    SRM, US & China - Nielsen

    Jeffrey Nielsen and @geoengineering1 discuss how the strategic relationship between the US and China will interact with SRM. Paper: Jeffrey Nielsen, The big green button: stratospheric aerosol injection as a geopolitical dilemma during strategic competition between the United States and China, and implications for expanding aerosol injection near-term research, Oxford Open Climate Change, Volume 5, Issue 1, 2025, kgaf009, https://doi.org/10.1093/oxfclm/kgaf009

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