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Sorptive Uptake Studies of an Aryl-Arsenical with Iron Oxide Composites on an Activated Carbon Support

机译:活性炭载体上芳烃与氧化铁复合物的吸收研究

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摘要

Sorption uptake kinetics and equilibrium studies for 4-hydroxy-3-nitrobenzene arsonic acid (roxarsone) was evaluated with synthetic magnetite (Mag-P), commercial magnetite (Mag-C), magnetite 10%, 19%, and 32% composite material (CM-10, -19, -32) that contains granular activated carbon (GAC), and synthetic goethite at pH 7.00 in water at 21 °C for 24 h. GAC showed the highest sorptive removal of roxarsone and the relative uptake for each sorbent material with roxarsone are listed in descending order as follows: GAC (471 mg/g) > goethite (418 mg/g) > CM-10 (377 mg/g) CM-19 (254 mg/g) > CM-32 (227 mg/g) > Mag-P (132 mg/g) > Mag-C (29.5 mg/g). The As (V) moiety of roxarsone is adsorbed onto the surface of the iron oxide/oxyhydrate and is inferred as inner-sphere surface complexes; monodentate-mononuclear, bidentate-mononuclear, and bidentate-binuclear depending on the protolytic speciation of roxarsone. The phenyl ring of roxarsone provides the primary driving force for the sorptive interaction with the graphene surface of GAC and its composites. Thus, magnetite composites are proposed as multi-purpose adsorbents for the co-removal of inorganic and organic arsenicals due to the presence of graphenic and iron oxide active adsorption sites.
机译:用合成磁铁矿(Mag-P),商用磁铁矿(Mag-C),10%,19%和32%的磁铁矿复合材料评估了4-羟基-3-硝基苯砷酸(roxarsone)的吸收动力学和平衡研究(CM-10,-19,-32)含有颗粒状活性炭(GAC)和pH值为7.00的合成针铁矿,在21°C的水中24小时。 GAC表现出最高的吸附性洛沙酮吸附量,每种吸附剂材料与roxarsone的相对吸收量按降序排列如下:GAC(471 mg / g)>针铁矿(418 mg / g)> CM-10(377 mg / g) )CM-19(254 mg / g)> CM-32(227 mg / g)> Mag-P(132 mg / g)> Mag-C(29.5 mg / g)。 roxarsone的As(V)部分被吸附到氧化铁/氧化水合物的表面上,并被推断为内球表面配合物。单齿单核,双齿单核和双齿双核,取决于罗沙酮的蛋白水解形态。洛克沙s的苯环为与GAC及其复合材料的石墨烯表面发生吸附相互作用提供了主要驱动力。因此,由于存在石墨烯和氧化铁活性吸附位,提出了磁铁矿复合材料作为用于共同去除无机和有机砷的多功能吸附剂。

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