DOM will have a significant effect on the retardation of Hg~(2+) and it can scramble for Hg~(2+) with soil colloids by competitive sorption which reduced the adsorption capacity of Hg~(2+) in soil.
这一结果表明,由于DOM具有较强的络合能力,与土壤胶体竞争吸附了Hg~(2+)离子,从而降低了土壤对Hg~(2+)的吸附量。
参考来源 - DOM对汞在土壤—水—气界面释放的影响Carbon nano-sol can make the soil colloids re-release a lot of soil nutrients.
纳米碳溶胶可以使土壤胶体重组释放出大量土壤营养元素。
参考来源 - 纳米增效肥对杂交稻增效研究·2,447,543篇论文数据,部分数据来源于NoteExpress
Adsorption was enhanced by the presence of organic matter in soil colloids.
土壤胶体中有机质的存在促进了胶体对酶的吸附。
DNA adsorption on soil colloids and minerals is driven by an increase in entropy.
DNA在红壤胶体或矿物表面的吸附是一个熵增过程。
Only 10-20% DNA was adsorbed by electrostatic forces on soil colloids and minerals.
DNA在红壤胶体和矿物表面通过静电力作用吸附的比例较低,仅为10—20%。
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