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As(V) Sorption/Desorption on Different Waste Materials and Soil Samples

机译:不同废物和土壤样品对As(V)的吸附/解吸

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摘要

Aiming to investigate the efficacy of different materials as bio-sorbents for the purification of As-polluted waters, batch-type experiments were employed to study As(V) sorption and desorption on oak ash, pine bark, hemp waste, mussel shell, pyritic material, and soil samples, as a function of the As(V) concentration added. Pyritic material and oak ash showed high sorption (90% and >87%) and low desorption (<2% and <7%). Alternatively, hemp waste showed low retention (16% sorption and 100% desorption of the amount previously sorbed), fine shell and pine bark sorbed <3% and desorbed 100%, the vineyard soil sample sorbed 8% and released 85%, and the forest soil sample sorbed 32% and desorbed 38%. Sorption data fitted well to the Langmuir and Freundlich models in the case of both soil samples and the pyritic material, but only to the Freundlich equation in the case of the various by-products. These results indicate that the pyritic material and oak ash can be considered efficient As(V) sorbents (thus, useful in remediation of contaminated sites and removal of that pollutant), even when As(V) concentrations up to 6 mmol L−1 are added, while the other materials that were tested cannot retain or remove As(V) from polluted media.
机译:为了研究不同材料作为生物吸附剂净化As污染水的功效,采用批处理型实验研究了As(V)在橡树灰,松树皮,大麻废料,贻贝壳,黄铁矿上的吸附和解吸。材料和土壤样品,取决于所添加的As(V)浓度。硫铁矿物质和橡灰显示出高吸附(90%和> 87%)和低脱附(<2%和<7%)。另外,大麻废料的保留率低(16%的吸附率和100%的脱附率),细壳和松树皮的吸附率小于3%且脱附率达100%,葡萄园土壤样品的吸附度为8%且释放率为85%,森林土壤样品吸收了32%,吸收了38%。对于土壤样品和黄铁矿材料,吸附数据非常适合Langmuir和Freundlich模型,而对于各种副产物,仅适合Freundlich方程。这些结果表明,即使当As(V)的浓度高达6 mmol L 时,也可​​以认为黄铁矿物质和橡树灰被认为是有效的As(V)吸附剂(因此,可用于补救污染部位和去除该污染物)。添加了-1 ,而其他经过测试的材料则无法从污染的介质中保留或去除As(V)。

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