Impact of thermal soil treatment on heavy metal mobility in the context of waste management.

IF 3.7 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Waste Management & Research Pub Date : 2024-09-01 Epub Date: 2024-05-09 DOI:10.1177/0734242X241251398
Daniel Vollprecht, Theresa Sattler, Julia Kern, Iris Berrer, Roland Pomberger
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Abstract

Thermal soil treatment is a well-established remediation method to remove organic contaminants from soils in waste management. The co-contamination with heavy metals raises the question if thermal soil treatment affects heavy metal mobility in soils. In this study, four contaminated soils and a reference sample were subjected to thermal treatment at 105°C, 300°C and 500°C for 7 day. Thermogravimetry and differential scanning calorimetry were used to understand the reactions, and resulting gases were identified by Fourier-transformed infrared spectroscopy. Treated and untreated samples were characterised by X-ray diffraction (XRD) and electron microprobe analysis and subjected to pH-dependent leaching tests, untreated samples additionally by X-ray-fluorescence (XRF) and inductively coupled plasma mass spectroscopy (ICP-MS). Leachates were analysed using ICP-MS and ion chromatography. Maximum available concentrations were used for hydrogeochemical modelling using LeachXS/Orchestra to predict leaching control mechanisms. Leaching experiments show that thermal treatment tends to decrease the mobility at alkaline pH of Pb, Zn, Cd, As and Cu, but to increase the mobility of Cr. In the acidic to neutral pH range, no clear trend is visible. Hydrogeochemical modelling suggests that adsorption processes play a key role in controlling leaching. It is suggested that the formation of minerals with a more negatively charged surface during thermal treatment are one reason why cations such as Pb2+, Zn2+, Cd2+ and Cu2+ are less mobile after treatment. Future research should focus on a more comprehensive mineralogical investigation of a larger number of samples, using higher resolution techniques such as nanoscale secondary ion mass spectrometry to identify surface phases formed during thermal treatment and/or leaching.

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土壤热处理对废物管理中重金属流动性的影响。
土壤热处理是一种行之有效的修复方法,用于清除废物管理土壤中的有机污染物。重金属的共同污染提出了土壤热处理是否会影响土壤中重金属迁移性的问题。在这项研究中,四种受污染土壤和一种参考样本分别在 105°C、300°C 和 500°C 下进行了为期 7 天的热处理。采用热重计和差示扫描量热法了解反应情况,并通过傅立叶变换红外光谱法鉴定产生的气体。通过 X 射线衍射(XRD)和电子微探针分析对处理过和未处理过的样品进行了表征,并进行了 pH 值浸出试验,此外还通过 X 射线荧光(XRF)和电感耦合等离子体质谱(ICP-MS)对未处理过的样品进行了浸出试验。沥滤液采用 ICP-MS 和离子色谱法进行分析。使用 LeachXS/Orchestra 对最大可用浓度进行水文地球化学建模,以预测沥滤控制机制。沥滤实验表明,热处理往往会降低铅、锌、镉、砷和铜在碱性 pH 值下的迁移率,但会增加铬的迁移率。在酸性到中性 pH 值范围内,没有明显的趋势。水文地质化学模型表明,吸附过程在控制沥滤方面起着关键作用。有观点认为,热处理过程中形成的表面带负电荷更多的矿物是 Pb2+、Zn2+、Cd2+ 和 Cu2+ 等阳离子在处理后流动性降低的原因之一。未来的研究应侧重于对更多样品进行更全面的矿物学调查,利用纳米级二次离子质谱等更高分辨率的技术来确定热处理和/或浸出过程中形成的表面相。
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来源期刊
Waste Management & Research
Waste Management & Research 环境科学-工程:环境
CiteScore
8.50
自引率
7.70%
发文量
232
审稿时长
4.1 months
期刊介绍: Waste Management & Research (WM&R) publishes peer-reviewed articles relating to both the theory and practice of waste management and research. Published on behalf of the International Solid Waste Association (ISWA) topics include: wastes (focus on solids), processes and technologies, management systems and tools, and policy and regulatory frameworks, sustainable waste management designs, operations, policies or practices.
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