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Potential and costs of carbon dioxide removal by enhanced weathering of rocks

机译:通过增强岩石的耐候消除二氧化碳的潜力和成本

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摘要

The chemical weathering of rocks currently absorbs about 1.1 Gt CO2 a(-1) being mainly stored as bicarbonate in the ocean. An enhancement of this slow natural process could remove substantial amounts of CO2 from the atmosphere, aiming to offset some unavoidable anthropogenic emissions in order to comply with the Paris Agreement, while at the same time it may decrease ocean acidification. We provide the first comprehensive assessment of economic costs, energy requirements, technical parameterization, and global and regional carbon removal potential. The crucial parameters defining this potential are the grain size and weathering rates. The main uncertainties about the potential relate to weathering rates and rock mass that can be integrated into the soil. The discussed results do not specifically address the enhancement of weathering through microbial processes, feedback of geogenic nutrient release, and bioturbation. We do not only assess dunite rock, predominantly bearing olivine (in the form of forsterite) as the mineral that has been previously proposed to be best suited for carbon removal, but focus also on basaltic rock to minimize potential negative side effects. Our results show that enhanced weathering is an option for carbon dioxide removal that could be competitive already at 60 US $ t(-1) CO2 removed for dunite, but only at 200 US $ t(-1) CO2 removed for basalt. The potential carbon removal on cropland areas could be as large as 95 Gt CO2 a(-1) for dunite and 4.9 Gt CO2 a(-1) for basalt. The best suited locations are warm and humid areas, particularly in India, Brazil, South-East Asia and China, where almost 75% of the global potential can be realized. This work presents a techno-economic assessment framework, which also allows for the incorporation of further processes.
机译:岩石的化学风化目前吸收约1.1gt CO 2 A(-1),主要储存为海洋中的碳酸氢盐。这种缓慢的自然过程的增强可以从大气中去除大量的二氧化碳,旨在抵消一些不可避免的人为排放,以遵守巴黎协议,同时它可能会降低海洋酸化。我们提供了对经济成本的第一次全面评估,能源需求,技术参数化和全球和区域碳拆除潜力。定义该潜力的关键参数是晶粒尺寸和耐候性。关于潜力的主要不确定性与可集成到土壤中的耐候率和岩石质量。讨论的结果没有特别解决通过微生物过程的耐候性,对造环营养释放的反馈和生物扰动的增强。我们不仅可以评估Dunite岩石,主要是含有橄榄石(以叉子的形式)作为先前提出最适合碳去除的矿物质,但也侧重于玄武岩岩石,以尽量减少潜在的负面副作用。我们的研究结果表明,增强的风化是一种可以在DINE中除去的60 US $ 60 US $ 60 US $ t(-1)二氧化碳的二氧化碳去除选项,但仅在玄武岩中除去200美元T(-1)二氧化碳。农田地区的潜在碳除尘可以是Dunite和4.9gt CO 2 A(-1)的95gt CO2 A(-1)。最适合的地区是温暖潮湿的地区,特别是在印度,巴西,东南亚和中国,近75%的全球潜力可以实现。这项工作提出了一种技术经济评估框架,该框架还允许纳入进一步的过程。

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