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Effectiveness of enhanced mineral weathering as a carbon sequestration tool and alternative to agricultural lime: An incubation experiment

机译:增强矿物风化的有效性作为碳封存工具及农业石灰的替代方法:孵化实验

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摘要

Applying finely ground silicate minerals to soils could mitigate CO2 emissions by enhancing the rate of carbon sequestration via silicate weathering. Using these minerals instead of agricultural lime to increase soil pH would also eliminate the dissolution of lime as a major source of agricultural CO2 emissions. However, dissolution rates of silicate minerals in the soil environment are uncertain and impacts of their application on the decomposition of soil organic matter have yet to be determined. A 3-month soil incubation was performed to investigate the effects of olivine, a highly weatherable silicate mineral, at two application rates (OLIVlow, OLIVhigh) on soil CO2 flux, available Mg and Al, and pH in comparison to control and lime-amended soils. There was no difference in cumulative net CO2 flux between the olivine-amended soils and the control though total flux from the limed soils was 221% higher than the control. Heterotrophic respiration was also greatest in the lime-amended soils. The weathering rate of OLIVlow (26.7%) was higher than of OLIVhigh (7.1%), but both treatments increased soil pH to a level sufficient to overcome aluminum toxicity. Our results suggest that olivine amendments are an effective tool for carbon sequestration and a suitable replacement for lime.
机译:将细地硅酸盐矿物涂在土壤中可以通过提高通过硅酸盐风化的碳封存速率来减轻二氧化碳排放。使用这些矿物代替农业石灰来增加土壤pH也会消除石灰的解散作为农业二氧化碳排放的主要来源。然而,土壤环境中的硅酸盐矿物质的溶出速率是不确定的并且对其在土壤有机物分解上的应用的影响尚未确定。进行3个月的土壤孵育,以研究橄榄石,一种高度耐用的硅酸盐矿物质,两种应用率(Olivlow,Olivhigh)在土壤二氧化碳通量,可用Mg和Al和pH值的情况下,与控制和石灰修改相比土壤。橄榄石修正的土壤和控制之间的累积净二氧化碳助焊剂没有差异,但跛行土壤的总通量比​​对照的总通量为221%。在石灰修正的土壤中,异养呼吸也是最大的。 Olivlow的耐候性(26.7%)高于Olivhigh(7.1%),但两种治疗将土壤pH增加到足以克服铝毒性的水平。我们的研究结果表明,Olivine修正案是碳封存的有效工具和适用于石灰的替代品。

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