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Ageing of dissolved copper and copper-based nanoparticles in five different soils: short term kinetics vs long term fate

机译:在五种不同的土壤中溶解铜和铜基纳米粒子的老化:短期动力学与长期命运

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摘要

With the growing availability and use of copper based nanomaterials (Cu-NMs), there is increasing concern regarding their release and potential impact on the environment. In this study, the short term (≤ 5 days) ageing profile and the long term (4 months) speciation of dissolved Cu, copper oxide (CuO-) and copper sulfide nanoparticles (CuS-NPs) were investigated in five different soils using X-ray absorption spectroscopy (XAS). Soil pH was found to strongly influence the short term chemistry of the Cu-NMs added at 100 mg/kg above background. Low pH soils promoted rapid dissolution of CuO-NPs that effectively aligned their behaviour to that of dissolved Cu within 3 days. In higher pH soils, CuO-NPs persisted longer due to slower dissolution in the soil and resulted in contrasting short term speciation compared to dissolved Cu, which formed copper hydroxides and carbonates that were reflective of the soil chemistry. Organic matter appeared to slow the dissolution process but in the long term, the speciation of Cu added as dissolved Cu, CuO-NPs and CuS-NPs were found to be same for each soil. The results imply that in the short term Cu-NMs may exhibit unique behaviour in alkaline soils compared to their conventional forms (e.g. in the event of an adverse leaching event), but in the long term (≥ 4 months), their fates are dictated by the soil properties and are independent of the initial Cu form, and are likely to present minimal risk of nano-specific Cu-NM impact in the soil environment for the concentration studied here.
机译:随着铜基纳米材料(Cu-NMs)的可用性和使用不断增长,人们越来越关注它们的释放以及对环境的潜在影响。在这项研究中,使用X线研究了五种不同土壤中溶解的Cu,氧化铜(CuO-)和硫化铜纳米颗粒(CuS-NPs)的短期(≤5天)老化曲线和长期(4个月)形态。射线吸收光谱法(XAS)。发现土壤pH值强烈影响以高于背景浓度100 mg / kg添加的Cu-NMs的短期化学性质。低pH值土壤促进了CuO-NP的快速溶解,从而在3天内有效地使其行为与溶解的Cu的行为保持一致。在较高pH的土壤中,由于溶解在土壤中的速度较慢,CuO-NPs的持久时间更长,与形成溶解于土壤化学反应的氢氧化铜和碳酸盐的溶解铜相比,形成的短期物种形成了鲜明的对比。有机物似乎减缓了溶解过程,但从长远来看,发现每种土壤中溶解的Cu,CuO-NPs和CuS-NPs所添加的Cu的形态均相同。结果表明,与常规形式相比,Cu-NMs在短期内可能在碱性土壤中表现出独特的行为(例如,如果发生不良浸出事件),但从长期来看(≥4个月),它们的命运决定了取决于土壤的性质,并且与初始的Cu形式无关,并且对于此处研究的浓度,可能对土壤环境中的纳米级特定Cu-NM影响具有最小的风险。

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