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实验室模拟堆肥制革污泥长期改良农田火灾后六价铬的形成证据及铬形态变化。

Evidence of hexavalent chromium formation and changes of Cr speciation after laboratory-simulated fires of composted tannery sludges long-term amended agricultural soils.

机构信息

Department of Soil, Plant and Food Sciences, University of Bari "Aldo Moro", Via G. Amendola 165/A, 70126 Bari, Italy.

Dipartimento di Ingegneria Civile, Ambientale, del Territorio, Edile e di Chimica (DICATECh), Politecnico di Bari, Via Orabona 4, 70125 Bari, Italy; CNR NANOTEC - Istituto di Nanotecnologia, Via Monteroni, 73100 Lecce, Italy.

出版信息

J Hazard Mater. 2022 Aug 15;436:129117. doi: 10.1016/j.jhazmat.2022.129117. Epub 2022 May 11.

DOI:10.1016/j.jhazmat.2022.129117
PMID:35594675
Abstract

Controlled or accidental fires can impact agricultural soils amended with composted organic materials since high temperatures cause fast organic matter (OM) mineralization and soil properties modifications. During these events, potentially toxic elements (PTEs) associated with OM can be released and change their distribution and speciation thus becoming a threat to the environment and to crops. In this study, we investigated the changes of distribution and speciation of chromium in soils long-term amended with compost obtained from tannery sludges, after simulating fires of different intensity (300, 400 and 500 °C) likely to occur on agricultural soils. A combination of conventional soil chemical analyses and bulk and (sub)micro X-ray analyses allowed the observation of the formation of hexavalent chromium and changes of chromium speciation. Specifically, a strong decrease of Cr-OM associations was found with increasing temperature in favour of Cr-iron (hydr)oxides interactions and CaCrO formation. These data provide first evidence that fires can transform OM-stabilized Cr into more mobile, available and toxic Cr-forms potentially accessible for plant uptake, thus posing a risk for the food chain and the environment.

摘要

可控或意外火灾可能会影响用堆肥有机材料改良的农业土壤,因为高温会导致有机物质(OM)快速矿化和土壤性质的改变。在这些事件中,与 OM 相关的潜在有毒元素(PTE)可能会释放出来,并改变它们的分布和形态,从而对环境和作物构成威胁。在这项研究中,我们模拟了可能发生在农业土壤上的不同强度(300、400 和 500°C)的火灾,研究了长期用来自制革污泥的堆肥改良的土壤中铬的分布和形态变化。常规土壤化学分析与整体和(亚)微 X 射线分析相结合,观察到了六价铬的形成和铬形态的变化。具体来说,随着温度的升高,发现 Cr-OM 结合物强烈减少,有利于 Cr-铁(氢)氧化物相互作用和 CaCrO 的形成。这些数据首次提供了证据,表明火灾可以将 OM 稳定的 Cr 转化为更具移动性、可用性和毒性的 Cr 形态,这些形态可能会被植物吸收,从而对食物链和环境构成风险。

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