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Biouptake Responses of Trace Metals to Long-Term Irrigation with Diverse Wastewater in the Wheat Rhizosphere Microenvironment

机译:小麦根际微环境中多种废水长期灌溉对微量金属的生物吸收响应

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摘要

Wastewater irrigation is widely practiced and may cause serious environmental problems. However, current knowledge on the effects of long-term irrigation with wastewater from different sources on the biouptake of trace metals (TMs) in the rhizosphere zone by plants in farmlands is limited. Here, we analyzed wheat rhizosphere soil and wheat roots collected from a typical wastewater irrigation area in North China to evaluate the influence of wastewater irrigation from different sources on the bioavailability of trace metals in soils. Results showed that irrigation with tanning and domestic wastewater helped enhance the bioavailability of trace metals in rhizosphere soil by increasing the active organic carbon content, soil redox potential, and catalase activity, thus enhancing the proportion of the potentially bioavailable part of trace metal speciation. Conversely, irrigation with pharmaceutical wastewater can reduce the bioavailability of trace metals in rhizosphere soil by increasing total soil antibiotics and thus decreasing the proportions of bioavailable and potentially bioavailable parts of trace metal speciation. These findings can provide insights into the migration and transformation of trace metal speciation in soil rhizosphere microenvironments under the context of wastewater irrigation.
机译:废水灌溉被广泛采用,并可能导致严重的环境问题。但是,目前关于长期灌溉使用不同来源的废水对农田植物在根际区生物吸收微量金属(TMs)的影响的知识是有限的。在这里,我们分析了从华北典型废水灌溉区收集的小麦根际土壤和小麦根,以评估不同来源的废水灌溉对土壤中痕量金属生物利用度的影响。结果表明,鞣制和生活污水灌溉通过增加活性有机碳含量,土壤氧化还原电势和过氧化氢酶活性,帮助提高了根际土壤中痕量金属的生物利用度,从而增加了痕量金属物种潜在生物利用度的比例。相反,用制药废水灌溉可以通过增加土壤抗生素总量,从而减少痕量金属物种的生物利用度和潜在生物利用度的比例来降低根际土壤中痕量金属的生物利用度。这些发现可为废水灌溉背景下土壤根际微环境中微量金属形态的迁移和转化提供深刻见解。

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