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Metal speciation in landfill leachates with a focus on the influence of organic matter

机译:垃圾渗滤液中的金属形态,重点关注有机物的影响

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摘要

This study characterises the heavy-metal content in leachates collected from eight landfills in France. In order to identify heavy metal occurrence in the different size fractions of leachates, a cascade filtration protocol was applied directly in the field, under a nitrogen gas atmosphere to avoid metal oxidation. The results of analyses performed on the leachates suggest that most of the metals are concentrated in the <30 kDa fraction, while lead, copper and cadmium show an association with larger particles. Initial speciation calculations, without considering metal association with organic matter, suggest that leachate concentrations in lead, copper, nickel and zinc are super-saturated with respect to sulphur phases. Speciation calculations that account for metal complexation with organic matter, considered as fulvic acids based on Cl(s) NEXAFS spectroscopy, show that this mechanism is not sufficient to explain such deviation from equilibrium conditions. It is therefore hypothesized that the deviation results also from the influence of biological activity on the kinetics of mineral phase precipitation and dissolution, thus providing a dynamic system. The results of chemical analyses of sampled fluids are compared with speciation calculations and some implications for the assessment of metal mobility and natural attenuation in a context of landfill risk assessment are discussed.
机译:这项研究表征了从法国八个垃圾填埋场收集的渗滤液中的重金属含量。为了识别在不同大小的浸出液中重金属的存在,在氮气气氛下,在现场直接应用级联过滤规程以避免金属氧化。对浸出液进行的分析结果表明,大多数金属集中在<30 kDa的馏分中,而铅,铜和镉则与较大的颗粒有关。初始形态计算不考虑金属与有机物的缔合,表明铅,铜,镍和锌中的渗滤液相对于硫相而言过饱和。基于Cl(s)NEXAFS光谱的考虑到金属与有机物络合的物种形成计算表明,这种机理不足以解释这种偏离平衡条件的现象。因此,可以推测,偏差也是由于生物活性对矿物相沉淀和溶解动力学的影响所致,从而提供了一个动态系统。将采样流体的化学分析结果与形态计算进行了比较,并讨论了在掩埋场风险评估中对金属迁移率和自然衰减评估的一些含义。

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