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Dissolved organic matter retention in volcanic soils with contrasting mineralogy: a column sorption experiment

机译:含有对比矿物学的火山土壤中溶解有机物保留:柱吸附实验

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There is an increasing recognition that sorption and precipitation reactions between the dissolved phase of organic matter and reactive minerals and metals found in soils are an important carbon stabilization mechanism. We explored the relative importance of this sorption mechanism with pedological shifts in soil properties by conducting a dissolved organic matter leaching/sorption experiment using intact soil cores from a substrate/age gradient in Hawai'i. In the subsurface horizons, sorption of dissolved organic carbon was often positively correlated short-range ordered (SRO) mineral content, with sorption rates approaching 100% when SRO minerals dominated. Dissolved organic matter sorption in the presence of SRO minerals was highly selective towards aromatic compounds, consistent with prior nuclear magnetic resonance spectroscopy conducted on carbon found in SRO rich mineral soil. In subsurface horizons where SRO content was low (youngest and oldest sites in the chronosequence), sorption was also found to be high but much less selective, more reversible and more degradable indicating that different stabilization mechanisms are operative. These experimental results provide further evidence for a direct mechanism by which volcanic soils are able to store disproportionately high amount of soil organic matter via retention of aromatic acids.
机译:越来越识别,有机物质的溶解相和土壤中发现的金属之间的吸附和沉淀反应是一种重要的碳稳定机制。我们探讨了这种吸附机理的相对重要性通过在夏威夷的基材/年龄梯度中使用完整的土壤核来进行溶解的有机物质浸出/吸附试验,通过从夏威夷的基材/年龄梯度进行溶解的有机物质浸出/吸附试验。在地下视野中,溶解的有机碳的吸附通常是正相关的短范围有序(SrO)矿物质含量,当SRO矿物占主导地位时,吸附速率接近100%。在Sro矿物质存在下溶解的有机物质吸附对芳族化合物具有高度选择性,与在SRO富含矿物土壤中发现的碳上进行的先前核磁共振光谱相一致。在地下视野中,SRO含量低的(成分中最年轻,最古老的网站),也发现吸附是高但更少的选择性,更可逆且更可降解,表明不同的稳定机制是可操作的。这些实验结果为直接机制提供了进一步的证据,通过该直接机制通过保留芳族酸可以通过保留储存不成比例的土壤有机物质。

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