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Potassium doping increases biochar carbon sequestration potential by 45 facilitating decoupling of carbon sequestration from soil improvement

机译:钾的掺杂使生物炭的固碳潜力提高了45%促进了固碳与土壤改良脱钩

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摘要

Negative emissions technologies offer an important tool to limit the global warming to <2 °C. Biochar is one of only a few such technologies, and the one at highest technology readiness level. Here we show that potassium as a low-concentration additive in biochar production can increase biochar’s carbon sequestration potential; by up to 45% in this study. This translates to an increase in the estimated global biochar carbon sequestration potential to over 2.6 Gt CO2-C(eq) yr−1, thus boosting the efficiency of utilisation of limited biomass and land resources, and considerably improving the economics of biochar production and atmospheric carbon sequestration. In addition, potassium doping also increases plant nutrient content of resulting biochar, making it better suited for agricultural applications. Yet, more importantly, due to its much higher carbon sequestration potential, AM-enriched biochar facilitates viable biochar deployment for carbon sequestration purposes with reduced need to rely on biochar’s abilities to improve soil properties and crop yields, hence opening new potential areas and scenarios for biochar applications.
机译:负排放技术为将全球变暖限制在2°C以下提供了重要的工具。 Biochar是仅有的少数此类技术之一,并且是技术准备水平最高的一种。在这里我们表明,钾作为生物炭生产中的低浓度添加剂可以增加生物炭的固碳潜力;在这项研究中最多增加了45%这意味着估计的全球生物炭固碳潜力增加到超过2.6 Gt CO2-C(eq)yr -1 ,从而提高了有限生物量和土地资源的利用效率,并大大提高了生物炭生产和大气碳固存的经济学。另外,钾掺杂还增加了所得生物炭的植物养分含量,使其更适合农业应用。然而,更重要的是,由于富含碳的潜力更高,富含AM的生物炭促进了可行的生物炭用于碳固存的目的,而减少了依靠生物炭改善土壤特性和作物产量的能力的需求,从而为生物炭开辟了新的潜在领域和前景。生物炭的应用。

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