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批量和映射形态分析揭示了有机废物处理过程中 Cu 物种的形态和异质性。

Bulk and Mapping Speciation Analyses Unveil the Pattern and Heterogeneity of Cu Species during Organic Waste Treatment.

机构信息

CIRAD, UPR Recyclage et Risque, Montpellier F-34398, France.

Recyclage et Risque, Université de Montpellier, CIRAD, Montpellier 34398, France.

出版信息

Environ Sci Technol. 2024 Aug 13;58(32):14439-14449. doi: 10.1021/acs.est.4c02887. Epub 2024 Jul 29.

DOI:10.1021/acs.est.4c02887
PMID:39073989
Abstract

Organic wastes (OWs) can be a common source of copper (Cu) contamination of agricultural soils. Here we conducted a comprehensive study of 22 raw and treated OWs sampled at 6 different full-scale OW treatment plants. Bulk XANES analysis findings indicated that the Cu oxidation state was subject to changes throughout the OW treatment process, mostly depending on the anaerobic/aerobic conditions prevailing in each treatment stage. These changes were independent of the OW origin (agricultural, urban or industrial). Cu(I) prevailed in raw OWs and digestates (88-100%), whereas Cu(II) dominated in composts (46-100%). Bulk EXAFS analysis confirmed these observations and revealed that Cu(I) species in raw OWs and digestates consisted mainly of Cu(I)-sulfide (76-100%), while Cu(II) species (60-100%) in composts were Cu(II)-citrate, Cu(II)-carbonate and amorphous Cu(II)-phosphate. Interestingly, we observed that anaerobic digestion was conducive to the formation of crystallized Cu(I)-sulfides at the expense of nanosized and poorly crystalline Cu(I)-sulfide species, and that the recalcitrant Cu(I) species in composts was always crystallized Cu(I)-sulfide. XANES imaging analysis revealed Cu(II) species present in low proportions (2-4%) that were not detected using bulk XAS analysis in raw OWs and digestates. This demonstrated the potential of XANES imaging for probing minor species in complex matrices.

摘要

有机废物(OWs)可能是农业土壤铜(Cu)污染的常见来源。在这里,我们对在 6 个不同的全规模 OW 处理厂中采样的 22 个原始和处理后的 OW 进行了全面研究。整体 XANES 分析结果表明,Cu 的氧化态在 OW 处理过程中发生了变化,主要取决于每个处理阶段的厌氧/好氧条件。这些变化与 OW 的来源(农业、城市或工业)无关。Cu(I)在原始 OW 和消化物中占主导地位(88-100%),而 Cu(II)在堆肥中占主导地位(46-100%)。整体 EXAFS 分析证实了这些观察结果,并表明原始 OW 和消化物中的 Cu(I)物种主要由 Cu(I)-硫化物组成(76-100%),而堆肥中的 Cu(II)物种(60-100%)则由 Cu(II)-柠檬酸盐、Cu(II)-碳酸盐和无定形 Cu(II)-磷酸盐组成。有趣的是,我们观察到厌氧消化有利于结晶化 Cu(I)-硫化物的形成,而不利于纳米级和非晶态 Cu(I)-硫化物的形成,并且堆肥中顽固的 Cu(I)物种始终是结晶化的 Cu(I)-硫化物。XANES 成像分析表明,在原始 OW 和消化物中,Cu(II)物种的比例较低(2-4%),这是使用整体 XAS 分析无法检测到的。这证明了 XANES 成像在探测复杂基质中少量物种的潜力。

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