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首页> 外文期刊>Soil Science Society of America Journal >Iron Oxides as Major Available Interface Component in Loamy Arable Topsoils
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Iron Oxides as Major Available Interface Component in Loamy Arable Topsoils

机译:氧化铁是壤土质耕层表土中主要的可用界面组分

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摘要

To characterize biogeochemical interface properties in soil with respect to oxide surfaces, the contribution of weakly crystalline and crystalline oxides to soil specific surface area (SSA) of particle size fractions was determined. Three arable topsoils with intermediate to high clay content were subjected to ultrasonic dispersion and particle size fractionation. The obtained silt and clay fractions were treated with hydrogen peroxide, extracted with oxalate and dithionite and the SSA of all fractions was determined using BET-N-2. Results show that stable microaggregates were present in the coarse and medium silt fractions of all soils that could not be dispersed physically even at the highest ultrasonic dispersion energy and were probably stabilized by organic matter and iron oxides. Iron oxides were a major contributor to the SSA of all particle size fractions and the losses of carbon aft er oxalate and dithionite extraction showed that a major part of the organic matter in all particle size fractions was stabilized by iron oxides, even in these clay-rich soils. Weakly crystalline oxide surface area did not increase with decreasing particle size and calculated negative surface areas for some of the fine fractions indicated that weakly crystalline oxides were present as coatings on other minerals. The results demonstrate the importance of (iron) oxides for microaggregation and stabilization of organic matter in soil. However, the actual interface provided by these oxides depends on particle size and crystallinity due to the possible occlusion of mineral surfaces by organic matter and weakly crystalline oxides.
机译:为了表征土壤相对于氧化物表面的生物地球化学界面性质,确定了弱结晶和结晶氧化物对粒径分数的土壤比表面积(SSA)的贡献。对三种具有中等至高粘土含量的可耕表土进行超声分散和粒度分级。将获得的粉砂和粘土级分用过氧化氢处理,用草酸盐和连二亚硫酸盐萃取,并使用BET-N-2测定所有级分的SSA。结果表明,稳定的微团聚体存在于所有土壤的粗粉和中等粉尘中,即使在最高超声分散能量下也无法物理分散,并且可能被有机物和氧化铁稳定。氧化铁是所有粒度级分的SSA的主要贡献者,草酸碳和亚连二硫酸盐萃取的损失表明,所有粒度级分中的大部分有机物都被氧化铁稳定,即使在这些粘土中,丰富的土壤。弱结晶氧化物的表面积不会随粒度的减小而增加,某些细小颗粒的负表面积经计算表明,弱结晶氧化物作为涂层存在于其他矿物上。结果证明了(铁)氧化物对于土壤中有机物的微聚集和稳定的重要性。但是,由于有机物和弱结晶性氧化物可能会堵塞矿物表面,因此这些氧化物提供的实际界面取决于粒径和结晶度。

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