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Electromigration of microbial electron acceptors and nutrients: (Ⅰ) Transport in synthetic media

机译:微生物电子受体和营养物的电迁移:(Ⅰ)在合成介质中的迁移

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Microbiological cleanup is a widely used in situ remediation strategy for organic soil and groundwater contaminations. However, often the availability of electron acceptors and nutrients are limiting factors for microbial pollutant degradation in the field. Electromigration represents a new approach for the transport of microbiological agents in soil. In this study, the electrokinetic transport of the microbial electron acceptors nitrate and sulfate and of the nutrients ammonium and phosphate was compared. All experiments were performed under standardized conditions, i.e. with constant voltage in demineralized water and a model sandy soil. Average transport rates for nitrate, sulfate, poly-phosphate, and ammonium were 1.34 cm/h, 1.91 cm/h, 0.48 cm/h, and 0.40 cm/h, respectively, in single compound studies. Transport velocities were dependent on applied voltage gradient but not on the initial ion concentration. Additionally, electrokinetic transport was studied with ion mixtures. The ion distribution in the soil was significantly influenced by the pH profile and the associated voltage gradient.
机译:微生物净化是有机土壤和地下水污染的一种广泛使用的原位修复策略。但是,电子受体和营养素的可用性通常是限制该领域微生物污染物降解的因素。电迁移代表了微生物制剂在土壤中运输的新方法。在这项研究中,比较了微生物电子受体硝酸盐和硫酸盐以及养分铵盐和磷酸盐的电动迁移。所有实验均在标准条件下进行,即在软化水和模型沙土中以恒定电压进行。在单个化合物研究中,硝酸盐,硫酸盐,多磷酸盐和铵的平均传输速率分别为1.34 cm / h,1.91 cm / h,0.48 cm / h和0.40 cm / h。传输速度取决于施加的电压梯度,而不取决于初始离子浓度。另外,用离子混合物研究了电动迁移。土壤中的离子分布受到pH曲线和相关电压梯度的显着影响。

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