使用低品位和回收材料作为选择性的砷酸盐和锑酸盐吸附剂

B. Dousova, M. Lhotka, Eva Bedrnová
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摘要

砷(As)和锑(Sb)是具有相似化学和地球化学性质的元素,但它们的环境风险因其来源和污染程度而异。As和Sb都是非常有毒的,特别是它们的无机物在III和V的氧化态下,这也代表了环境中最常见的As/Sb形式。在环境系统中,As主要以四面体配位的五价砷酸盐AsO43-(氧化环境)和三价砷酸盐AsO33-(弱还原条件下)的形式存在,而Sb则完全以八面体配位的五价锑酸盐Sb(OH)6-的形式存在,氧化还原电位范围很广。几种低品位材料(沸石、生物炭)和建筑垃圾(混凝土浆料废物)的原始和表面改性形式进行了测试,作为污染水中砷和锑氧阴离子的选择性吸附剂。通过Langmuir吸附模型验证了氧阴离子的吸附稳定性。在自然系统中,As氧阴离子对铁(Fe)氧化物/氢氧化物表现出优先亲和力,而Sb氧阴离子则更有选择性地与有机物(OM)结合。与原始材料相比,Fe/Mn改性吸附剂对氧化离子的吸附效率更高(约95%),且有下降趋势:As(V) ?某人(V)。
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USE OF LOW-GRADE AND RECYCLED MATEWRIALS AS SELECTIVE ARSENATE AND ANTIMONATE SORBENTS
Arsenic (As) and antimony (Sb) are elements with similar chemistry and geochemistry, but their environmental risk differ depending on the origin and degree of the pollution. As and Sb are both very toxic, particularly their inorganic substances in the oxidation states of III and V, which also represent the most common As/Sb forms in the environment. In environmental systems, As mostly occurs as the tetrahedrally coordinated, pentavalent arsenate AsO43- (in oxidising environment), and the trivalent arsenite AsO33- (under weakly reducing to reducing conditions), while Sb is entirely found as the octahedrally coordinated, pentavalent antimonate Sb(OH)6-, over a wide redox potential range. Several low-grade materials (zeolite, biochar) and building waste (concrete slurry waste) in original and surface modified forms were tested as selective adsorbents of As and Sb oxyanions from contaminated waters. The adsorption stability of oxyanions was verified by the Langmuir adsorption model. In natural systems As oxyanions demonstrated the preferential affinity for iron (Fe) oxides/hydroxides, while Sb oxyanions were more selectively binded to organic matter (OM). The adsorption of tested oxyanions on Fe/Mn modified sorbents ran with a higher efficiency (?95%) compare to original materials, with a decreasing trend: As(V) ? Sb(V).
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