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首页> 外文期刊>Journal of environmental monitoring: JEM >Adsorptive selenite removal from water using a nano-hydrated ferric oxides (HFOs)/polymer hybrid adsorbent
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Adsorptive selenite removal from water using a nano-hydrated ferric oxides (HFOs)/polymer hybrid adsorbent

机译:使用纳米水合三氧化二铁/聚合物杂化吸附剂从水中吸附亚硒酸盐

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Selenite (SeO_3~(2-)) is an oxyanion of environmental significance due to its toxicity when taken in excess. In the present study, a hybrid adsorbent (HFO-201) was prepared by irreversibly impregnating hydrated ferric oxide (HFO) nanoparticles within a commercial available anion-exchange resin (D-201), and its adsorption towards selenite from water was investigated in batch and column tests. HFO-201 exhibited improved sorption selectivity toward selenite as compared to the polymeric anion exchanger D-201. Two possible adsorption interactions were responsible for selenite removal by HFO-201, the electrostatic interaction from the ammonium groups bound to the D-201 matrix, and the formation of inner-sphere complexes between the loaded HFO nanoparticles and selenite. In a wide pH range (i.e., 3-8), increasing solution pH was found to result in a decrease of selenite removal on HFO-201. Adsorption isotherms fit the Freundlich model well, and selenite adsorption increased with increasing ambient temperature, indicating its endothermic nature. Column adsorption tests suggested that satisfactory removal of selenite from 2 mg/L to less than 0.01 mg/L could be achieved by HFO-201 even in the presence of the commonly encountered anionic competition at greater concentration, with the treatment capacity of ~1200 bed volume (BV) per run, while that for D-201 was only less than 30 BV under otherwise identical conditions. Furthermore, the exhausted HFO-201 was amenable to efficient in situ regeneration with a binary NaOH-NaCl solution.
机译:亚硒酸盐(SeO_3〜(2-))是一种具有环境重要性的氧阴离子,因为过量摄入时其毒性很大。在本研究中,通过将水合三氧化二铁(HFO)纳米粒子不可逆地浸渍在市售阴离子交换树脂(D-201)中来制备杂化吸附剂(HFO-201),并分批研究了其对水中亚硒酸盐的吸附和列测试。与聚合物阴离子交换剂D-201相比,HFO-201对亚硒酸盐的吸附选择性更高。两种可能的吸附相互作用是由HFO-201去除亚硒酸盐的原因,与D-201基质结合的铵基团的静电相互作用以及负载的HFO纳米颗粒与亚硒酸盐之间的内球络合物的形成。在宽的pH范围内(即3-8),发现增加溶液的pH导致HFO-201上亚硒酸盐去除的减少。吸附等温线非常适合Freundlich模型,并且亚硒酸盐的吸附随着环境温度的升高而增加,表明其吸热性。柱吸附试验表明,即使存在较高浓度的常见阴离子竞争条件,HFO-201仍可将亚硒酸盐从2 mg / L去除至小于0.01 mg / L,令人满意的去除效果,处理量约为1200床每次运行的体积(BV),而在其他相同条件下D-201的体积仅小于30 BV。此外,用尽的HFO-201适合使用二元NaOH-NaCl溶液进行有效的原位再生。

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