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Biogeochemistry of heavy metals in contaminated excessively moistened soils (analytical review).

机译:受污染的过度潮湿土壤中重金属的生物地球化学(分析综述)。

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The biogeochemical behavior of heavy metals in contaminated excessively moistened soils depends on the development of reducing conditions (either moderate or strong). Upon the moderate biogenic reduction, Cr as the metal with variable valence forms low-soluble compounds, which decreases its availability to plants and prevents its penetration into surface- and groundwater. Creation of artificial barriers for Cr fixation on contaminated sites is based on the stimulation of natural metal-reducing bacteria. Arsenic, being a metalloid with a variable valence, is mobilized upon the moderate biogenic reduction. The mobility of siderophilic heavy metals with a constant valence grows under the moderate reducing conditions at the expense of dissolution of iron (hydr)oxides as carriers of these metals. Zinc, which can enter the newly formed goethite lattice, is an exception. Strong reduction processes in organic excessively moist and flooded soils (usually enriched in S) lead to the formation of low-soluble sulfides of heavy elements with both variable (As) and constant (Cu, Ni, Zn, and Pb) valence. On changing aquatic regime in overmoistened soils and their drying, sulfides of heavy metals are oxidized, and previously fixed metals are mobilized.Notes Translated from Pochvovedenie (2014) 3, 273-282 (Ru).
机译:重金属在受污染的过度潮湿的土壤中的生物地球化学行为取决于还原条件(中等或强烈)的发展。经过适度的生物还原后,铬作为价态可变的金属会形成低可溶性化合物,从而降低了其对植物的利用率并阻止其渗透到地表水和地下水中。 Cr固定在污染部位的人工屏障的建立是基于对天然金属还原细菌的刺激。砷是具有可变化合价的准金属,在中等程度的生物成因还原后会动员。在中等还原条件下,具有恒定价态的嗜铁性重金属的迁移率增加,但以溶解铁(氢氧化)氧化物作为这些金属的载体为代价。可以进入新形成的针铁矿晶格的锌是一个例外。在有机的过度潮湿和水淹的土壤(通常富含S)中的强烈还原过程会导致重元素的低溶性硫化物形成,其价态(As)和常数(Cu,Ni,Zn和Pb)均恒定。随着潮湿环境中水生环境的变化及其干燥,重金属的硫化物被氧化,而先前固定的金属被动员。注释译自Pochvovedenie(2014)3,273-282(Ru)。

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