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Sustainable remediation of mercury contaminated soils by thermal desorption

机译:通过热脱附可持续修复汞污染土壤

摘要

Mercury soil contamination is an important environmental problem that needs the development of sustainable and efficient decontamination strategies. This work is focused on the application of a remediation technique that maintains soil ecological and environmental services to the extent possible as well as search for alternative sustainable land uses. Controlled thermal desorption using a solar furnace at pilot scale was applied to different types of soils, stablishing the temperature necessary to assure the functionality of these soils and avoid the Hg exchange to the other environmental compartments. Soil mercury content evolution (total, soluble, and exchangeable) as temperature increases and induced changes in selected soil quality indicators are studied and assessed. On total Hg, the temperature at which it is reduced until acceptable levels depends on the intended soil use and on how restrictive are the regulations. For commercial, residential, or industrial uses, soil samples should be heated to temperatures higher than 280 °C, at which more than 80 % of the total Hg is released, reaching the established legal total Hg level and avoiding eventual risks derived from high available Hg concentrations. For agricultural use or soil natural preservation, conversely, maintenance of acceptable levels of soil quality limit heating temperatures, and additional treatments must be considered to reduce available Hg. Besides total Hg concentration in soils, available Hg should be considered to make final decisions on remediation treatments and potential future uses. [Figure not available: see fulltext.]
机译:汞土壤污染是一个重要的环境问题,需要制定可持续,有效的去污策略。这项工作的重点是修复技术的应用,该技术可在最大程度上保持土壤生态和环境服务以及寻找替代的可持续土地利用。使用中试规模的太阳能炉对热解吸进行了控制,将其应用于不同类型的土壤,稳定了确保这些土壤功能并避免汞向其他环境隔间交换所需的温度。随着温度的升高,土壤汞含量的变化(总的,可溶的和可交换的)以及所选土壤质量指标的诱导变化都得到了研究和评估。就总汞而言,降低温度直至达到可接受水平的温度取决于预期的土壤用途以及法规的限制性。对于商业,住宅或工业用途,应将土壤样品加热至高于280°C的温度,在该温度下释放出的总汞量超过80%,达到既定的法定总汞量,并避免因可利用量高而导致的最终风险汞浓度。相反,对于农业用途或土壤自然保护而言,保持可接受的土壤质量水平会限制加热温度,必须考虑采取其他处理措施以减少有效汞。除了土壤中汞的总浓度外,还应考虑可利用的汞,以便就补救措施和潜在的未来用途做出最终决定。 [图不可用:请参见全文。]

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