Microbial degradation of organic carbon sorbed to phyllosilicate clays with and without hydrous iron oxide coating

伊利石 针铁矿 铁酸盐 吸附 高岭石 粘土矿物 化学 矿化(土壤科学) 氧化铁 矿物学 环境化学 无机化学 地质学 吸附 有机化学 氮气
作者
Akhmad Rizalli Saidy,Ronald J. Smernik,Jeff Baldock,Klaus Kaiser,Jonathan Sanderman
出处
期刊:European Journal of Soil Science [Wiley]
卷期号:66 (1): 83-94 被引量:58
标识
DOI:10.1111/ejss.12180
摘要

Summary Sorption of organic carbon ( OC ) to phyllosilicate clays and hydrous iron oxides retards its mineralization, thus contributing to stabilization of organic carbon in soils. The degree of protection varies with the nature of the minerals present. In a previous study, we reported that when the amount of OC exceeds the sorption capacity of minerals, the rate of OC mineralization is determined primarily by mineral surface area. Here, we report on OC mineralization under conditions of less OC loading and with OC pre‐sorbed to the mineral surfaces. The same suite of minerals (kaolinite, illite and smectite with and without goethite coating and illite coated with haematite, goethite and ferrihydrite) was used as in the previous study. The stability of sorbed OC decreased in the order kaolinite > illite > smectite amongst the uncoated clays. Goethite coating of kaolinite and smectite increased the stability of sorbed OM against microbial decomposition, while the stability of illite‐associated OC did not change with goethite coating. For illite coated with different hydrous iron oxides, only ferrihydrite increased the stability of sorbed OC against microbial decomposition. These differences reflect closely the differences in the strength and reversibility of OC sorption, as measured in previous batch sorption experiments on these systems, rather than reflecting differences in mineral surface area. These findings demonstrate that at relatively small loadings of OC , the degree of protection of sorbed OC provided by mineral surfaces is controlled primarily by the strength of organo–mineral associations.
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