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Aggregate Formation in a Kaolinite Suspension during Microbiological Modification of Clay Surface

机译:在粘土表面微生物改性期间高岭石悬浮液中的聚集形成

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An aggregate-forming effect of the microorganisms that modify a hydrophilic surface of minerals to an amphiphilic one was demonstrated in a model experiment: a sterile liquid medium was supplemented with the microorganism Bacillus velezensis washed off from river sand and with kaolinite, which contains potassium ions (up to 1%) in a sorbed state and in admixtures. An increase in the protein, carbon, and nitrogen contents was observable over two months of incubation; the C : N ratio reached a value close to 5. It was assumed that the microorganisms consuming potassium ion necessary for their vital activity produce protein compounds in the form of specific secretions of glycoprotein and polysaccharide natures. These compounds hydrophobized the surface of minerals (the contact angle increased from 20 degrees to 40 degrees), changed the specific surface area, and increased the share of microaggregate fractions (50-250 and 250-500 mu m) by 5.4 and 1.5%, respectively. The incubation with B. velezensis hydrophobized the kaolinite surface as compared with the control specimens, most likely because of an amphiphilic nature of the microbial products. In turn, the hydrophobization of mineral surface induced a hydrophobic interaction between mineral particles thereby forming organomineral microaggregates.
机译:在模型实验中证明了修饰矿物质亲水表面的微生物的聚集作用:在模型实验中进行了一种无菌液体介质,含有从河砂和高岭石洗掉的微生物芽孢杆菌,含有钾离子的微生物在吸附状态和混合中的(高达1%)。蛋白质,碳和氮含量的增加是可观察到的两个月的孵育; C:N比达到接近5的值。假设消耗其生命活动所需的钾离子的微生物以糖蛋白和多糖性质的特异性分泌物的形式产生蛋白质化合物。这些化合物疏水化了矿物表面(接触角从20度增加到40度),改变了比表面积,并将微凝胶馏分(50-250和250-500μm)增加了5.4和1.5%的份额,分别。与对照样品相比,与B. Velezensis孵育疏水化高岭石表面,最有可能是因为微生物产品的两亲性质。反过来,矿物表面的疏水化诱导矿物颗粒之间的疏水相互作用,从而形成有机碱基微烧结。

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