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生物炭改良土壤中莠去津的解吸:根系分泌物的影响和生物炭与土壤之间的老化相互作用。

Desorption of atrazine in biochar-amended soils: Effects of root exudates and the aging interactions between biochar and soil.

机构信息

School of Environmental Science and Engineering, Shaanxi University of Science & Technology, Xi'an, 710021, China; MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin, 300071, China.

MOE Key Laboratory of Pollution Processes and Environmental Criteria, College of Environmental Science and Engineering, Nankai University, Tianjin, 300071, China.

出版信息

Chemosphere. 2018 Dec;212:687-693. doi: 10.1016/j.chemosphere.2018.08.124. Epub 2018 Aug 27.

Abstract

The effects of wheat root exudates and the aging interactions between biochar and soil on atrazine desorption from biochar-amended soil were carefully examined. Compared with CaCl solution, wheat root exudates significantly increase the desorption of atrazine from biochar, mainly by promoting the desorption of atrazine adsorbed on biochar with specific forces. Wheat root exudates were effectively separated into three components with different electrical properties, namely, anionic, neutral, and cationic components. Mainly due to the carboxyl-containing compounds, the anionic component was the main active component in the wheat root exudates that enhances the desorption of atrazine from the biochar. Additionally, wheat root exudates can increase the desorption of atrazine from biochar-amended soil. The promotion of atrazine desorption by root exudates was more obvious in soils with low organic matter contents, where atrazine was mainly adsorbed by biochar. The aging interaction between the biochar and soil increased the total desorption rate and rapid desorbing fraction of the atrazine in the soil, most likely due to the reduction of the biochar sorption capacity in the aged biochar-amended soil.

摘要

本文深入研究了小麦根系分泌物以及生物炭与土壤之间的老化相互作用对生物炭添加土壤中莠去津解吸的影响。与 CaCl2 溶液相比,小麦根系分泌物显著增加了莠去津从生物炭中的解吸,主要是通过促进生物炭上特定力吸附的莠去津解吸来实现。小麦根系分泌物可以有效地分离成具有不同电性的三个成分,即阴离子、中性和阳离子成分。主要由于含羧基的化合物,阴离子成分是增强莠去津从生物炭中解吸的小麦根系分泌物中的主要活性成分。此外,小麦根系分泌物可以增加生物炭添加土壤中莠去津的解吸。在有机质含量较低的土壤中,根系分泌物对莠去津解吸的促进作用更为明显,因为莠去津主要被生物炭吸附。生物炭与土壤之间的老化相互作用增加了土壤中莠去津的总解吸率和快速解吸分数,这很可能是由于老化生物炭添加土壤中生物炭的吸附能力降低所致。

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