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.

  1. 2d ago

    How Much CO₂ Can Enhanced Weathering Really Remove? - Derry

    Cornell University geochemist Louis Derry joins @geoengineering1 to discuss a fundamental question for enhanced rock weathering: how much of the alkalinity generated in soils actually makes it through watersheds to the ocean? Derry argues that many studies and commercial MRV approaches focus on the top 10-30 cm of soil, potentially missing critical processes along the full flow path, including ion exchange in acidic soils, secondary clay formation, acidity generation and carbonate precipitation, which can reduce alkalinity export before it reaches streams. He highlights hydrological constraints, arguing that limited runoff and realistic alkalinity concentrations make proposed removal rates of 5-10 tonnes of CO₂ per hectare per year difficult to achieve across typical row-crop regions. Drawing on natural basaltic catchments and experimental systems, he points to estimates of global basalt weathering of ~0.1-0.2 Gt CO₂/yr, suggesting gigaton-scale enhanced weathering projections are overoptimistic, with co-benefits more credible than large-scale CDR. Paper Discussed: Derry, L. A., Maher, K., & Chadwick, O. A. (2026). Critical zone processes limit alkalinity export from natural basaltic systems. Nature, 1–6. https://doi.org/10.1038/s41586-026-10936-3 Related article: Limitations on carbon dioxide uptake by enhanced weathering - Springer Nature Research Communities https://communities.springernature.com/posts/limitations-on-carbon-dioxide-uptake-by-enhanced-weathering

  2. Sep 18

    Extratropical Cyclones and Storm Track Responses to SAI - Wieners & de Nooij

    @geoengineering1 interviews Claudia Elisabeth Wieners and Meike de Nooij about extratropical cyclones, the winter storm systems that drive much of the weather variability and many extreme wind and precipitation events in the midlatitudes, and how stratospheric aerosol injection (SAI) could alter their tracks and associated weather extremes. They discuss what makes extratropical cyclones different from tropical cyclones, why SAI could affect storm tracks, and what their high-resolution modelling reveals about changes in the North Atlantic and North Pacific. The conversation explores why SAI is not simply an “undo button” for global warming, with regional shifts in storm tracks and different responses in precipitation and wind extremes even when global temperatures are brought closer to present-day levels. Claudia and Meike also discuss the uncertainties surrounding their findings, the need for further high-resolution modelling, and the broader challenges of assessing and governing SAI. They argue that governments and policymakers need to take SAI seriously by supporting rigorous research and considering how any future deployment should be carefully governed. Paper discussed: de Nooij, M., de Jong, J., Baatsen, M. L., & Wieners, C. E. (2026). Extratropical Cyclone and Storm track Responses to Stratospheric Aerosol Injection in High-Resolution CESM Simulations. EGUsphere [preprint], 1-26. https://doi.org/10.5194/egusphere-2026-4133

  3. Apr 4

    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/

3.2
out of 5
9 Ratings

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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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