富硫生物炭对水稻根际汞形态的影响

Hualing Hu , Yiman Gao , Wenbing Tan , Beidou Xi
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引用次数: 1

摘要

天然富硫生物炭(NRB)可以替代传统的S改性生物炭。然而,在天然富s生物炭条件下,溶解有机质(DOM)对水稻根际土壤汞(Hg)形态的影响尚不清楚。通过盆栽试验,研究了施用NRB对水稻根际DOM化学组成和结构以及相关汞形态和有效性的影响。施用NRB显著提高了根际土壤甲基汞(MeHg)浓度,且随施用频率的增加而增强。这一现象可以解释为甲基汞固定对水稻根际土壤S含量增加的响应。我们还观察到DOM的分子量和官能团复杂性增加,可能导致甲基汞迁移率下降。此外,施用富s生物炭导致DOM的pH升高和腐殖化,普遍降低了水溶性和硫化汞部分(易有效汞种)和有机螯合部分(潜在有效汞种)的浓度。研究结果表明,施用NRB可降低水稻根际甲基汞的有效性,从而为降低甲基汞毒性潜在风险提供了实践依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of dissolved organic matter on mercury speciation in rice rhizosphere amended with sulfur-rich biochar

Effects of dissolved organic matter on mercury speciation in rice rhizosphere amended with sulfur-rich biochar

Natural sulfur (S)-rich biochar (NRB) can be employed as an alternative for traditional S-modified biochar. However, the effect of dissolved organic matter (DOM) on mercury (Hg) speciation in rice rhizosphere soils under natural S-rich biochar application remains unclear. We conducted a pot experiment to study the effects of NRB application on the chemical composition and structure of DOM and the related speciation and availability of Hg in rice rhizosphere. Applying NRB significantly increased the concentration of methylmercury (MeHg) in the rhizosphere soils, which was enhanced with application frequency. This observation can be explained by MeHg immobilization in response to increasing S content in rice rhizosphere soils. We also observed increased molecular weight and functional group complexity of DOM, likely contributing to the decrease in MeHg mobility. Furthermore, the increase in pH and humification of DOM caused by S-rich biochar application generally reduced the concentrations of water-soluble and mercuric-sulfide fraction (easily-available Hg species) and organo-chelated fraction (potentially-available Hg species). Our findings highlight that the application of NRB can reduce the availability of MeHg in rice rhizosphere, thus providing a practical basis for reducing the potential risk of MeHg toxicity.

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