Publications

Browse and download publications produced by ERW project scientists, including research papers, reports, and other outputs arising from collaborations with research partners and related ERW projects.

Enhanced Rock Weathering Research in Australia and New Zealand Symposium 25 June 2026

Publications from this project

POTENTIAL WORDING Access ERW project resources, including fact sheets, publications, reports, papers, videos, and other downloadable materials developed by the project team.
Explore the latest resources from the ERW project. This collection includes downloadable fact sheets, technical reports, publications, research papers, videos, and other materials designed to share project findings, knowledge, and outcomes.

Other Publications on ERW by project scientists

  • Iticha, B., Fitzpatrick, R., Marschner, P., & Mosley, L. M. (2026). Synergistic effects of lime–organic amendment interactions in acidic soils. European Journal of Soil Science, 77(1), e70276. https://doi.org/10.1111/ejss.70276

  • Iticha, B., Hughes, B., Fitzpatrick, R., & Mosley, L. M. (2026). Calibration of rapid lime requirement determination methods for acidic soils in South Australia. Soil Research, 64, SR25247. https://doi.org/10.1071/SR25247

  • Iticha, B., Mosley, L. M., & Marschner, P. (2025). Water-extractable alkalinity to estimate the acid-neutralising capacity of organic amendments. Geoderma, 455, 117219. https://doi.org/10.1016/j.geoderma.2025.117219

  • Nelson, P. N., & Green, H. (2025). Comment on ‘Investigating CO2 sequestration via enhanced rock weathering: Effects of temperature and citric acid on dolomite and basalt’. Journal of Cleaner Production, 533, 147000. https://doi.org/10.1016/j.jclepro.2025.147000
  • Nelson, P. N., Green H., & Holden, F. (2025). Comment on ‘CO2 removal with enhanced wollastonite weathering in acidic and calcareous soils’. Soil Ecology Letters, 75(3), 250322. https://doi.org/10.1007/s42832-025-0322-2
  • Bhattacharyya, P., Sarkar, B., & Roy, K. S. (2024). Editorial: New generation agronomy for net-zero greenhouse gas emissions. Frontiers in Agronomy, Volume 6, 144104. https://doi.org/10.3389/fagro.2024.1441041
  • Green, H., Larsen, P., Liu, Y., & Nelson, P. N. (2024). Carbon dioxide removal via weathering of sugarcane mill ash under different soil conditions. Applied Geochemistry, 165, 105940. https://doi.org/10.1016/j.apgeochem.2024.105940
  • Holden, F. J., Davies, K., Bird, M. I., Hume, R., Green, H., Beerling, D. J., & Nelson, P. N. (2024). In-field carbon dioxide removal via weathering of crushed basalt applied to acidic tropical agricultural soil. Science of the Total Environment, 955, 176568. https://doi.org/10.1016/j.scitotenv.2024.176568
  • Iticha, B., Mosley, L. M., & Marschner, P. (2024). Combining lime and organic amendments based on titratable alkalinity for efficient amelioration of acidic soils. SOIL, 10, 33-47. https://doi.org/10.5194/soil-10-33-2024
  • Basak, B. B., Sarkar, B., Maity, A., Chari, M. S., Banerjee, A., & Biswas, D. R. (2023). Low-grade silicate minerals as value-added natural potash fertilizer in deeply weathered tropical soil. Geoderma, 433, 116433. https://doi.org/10.1016/j.geoderma.2023.116433
  • Lewis, A. L., Sarkar, B., Wade, P., Kemp, S. J., Hodson, M. E., Taylor, L. L., Yeong, K. L., Davies, K., Nelson, P. N., Bird, M. I., Kantola, I. B., Masters, M. D., DeLucia, E., Leake, J. R., Banwart, S. A., & Beerling, D. J. (2021). Effects of mineralogy, chemistry and physical properties of basalts on carbon capture potential and plant-nutrient element release via enhanced weathering. Applied Geochemistry, 105023. https://doi.org/10.1016/j.apgeochem.2021.105023
  • Beerling, D. J., Kantzas, E. P., Lomas, M. R., Wade, P., Eufrasio, R. M., Renforth, P., Sarkar, B., Andrews, M. G., James, R. H., Pearce, C. R., Mercure, J.-F., Pollitt, H., Holden, P. B., Edwards, N. R., Khanna, M., Koh, L., Quegan, S., Pidgeon, N. F., Janssens, I. A., Banwart, S. A. (2020). Potential for large-scale CO2 removal via enhanced rock weathering with croplands. Nature, 583, 242-248. https://doi.org/https://doi.org/10.1038/s41586-020-2448-9
  • Kelland, M. E., Wade, P. W., Lewis, A. L., Taylor, L. L., Sarkar, B., Andrews, M. G., Lomas, M. R., Cotton, T. E. A., Kemp, S. J., James, R. H., Pearce, C. R., Hartley, S. E., Hodson, M. E., Leake, J. R., Banwart, S. A., & Beerling, D. J. (2020). Increased yield and CO2 sequestration potential with the C4  cereal Sorghum bicolor cultivated in basaltic rock dust-amended agricultural soil. Global Change Biology, 26, 3658-3676. https://doi.org/10.1111/gcb.15089
  • Basak, B. B., Sarkar, B., Sanderson, P., Naidu, R. (2018). Waste mineral powder supplies plant available potassium: evaluation of chemical and biological interventions. Journal of Geochemical Exploration, 186, 114-120. https://doi.org/10.1016/j.gexplo.2017.11.023
  • Beerling, D., Leake, J., Long, S., Scholes, J., Ton, J., Nelson, P. N., Bird, M. I., Kantzas, E., Taylor, L., Sarkar, B., Kelland, M., DeLucia, E., Kantola, I., Müller, C., Rau, G., & Hansen, J. (2018). Farming with crops and rocks to address global climate, food and soil security. Nature Plants 4, 138-147. https://doi.org/10.1038/s41477-018-0108-y
  • Singh, M., Sarkar, B., Sarkar, S., Churchman, J., Bolan, N., Mandal, S., Menon, M., Purakayastha, T. J., & Beerling, D.J. (2018). Chapter Two – Stabilization of soil organic carbon as influenced by clay mineralogy. Advances in Agronomy, 148, 33-84. https://doi.org/10.1016/bs.agron.2017.11.001
  • Basak, B. B., Sarkar, B., Biswas, D. R., Sarkar, S., Sanderson, P., & Naidu, R. (2017). Chapter Three – Bio-intervention of naturally occurring silicate minerals for alternative source of potassium: Challenges and opportunities. Advances in Agronomy, 141, 115-145. https://doi.org/10.1016/bs.agron.2016.10.016

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