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首页> 外文期刊>Journal of Hazardous Materials >Recovery of iodide as triiodide from thin-film transistor liquid crystal display wastewater by forward osmosis
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Recovery of iodide as triiodide from thin-film transistor liquid crystal display wastewater by forward osmosis

机译:从薄膜晶体管液晶显示器废水中渗透到三碘化物作为转发渗透性的碘化物

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摘要

Triiodide, a larger charged molecule compared to iodide, is thermodynamically favored with the presence of both iodide and iodine, and is easier to be retained by membrane processes. For the first time, iodide was recovered in the form of triiodide by forward osmosis (FO) for thin-film transistor liquid crystal display industries by preoxidation of iodide to triiodide. Partial oxidation by NaOCl was used to convert the iodide to iodine and then to form triiodide. Ethylenediaminetetraacetic acid disodium salt (EDTA-2Na), a commonly used chelating agent in the industry, was used as the draw solute because of its low reverse salt flux. The results revealed that the ideal efficiency of iodide recovery was at pH 3 with a preoxidation (adding 0.0150 M NaClO) for the 0.048 M iodide wastewater with a recovery of 98.5%. Additionally, the Pourbaix diagram and starch indicator were used to verify the formation of triiodide. Membrane distillation was demonstrated to recover the EDTA-2Na draw solute, and more than 99% of recoveries for the draw solutes with initial water flux of 12.0 L/m(2) h were achieved, indicating that simultaneous recovery of the EDTA-2Na draw solute and water is feasible.
机译:与碘化物相比的三碘化物,更大的带电分子,在碘化物和碘的存在下热力地赞成,并且更容易通过膜方法保留。首次,通过前渗透(Fo)以三碘化物的形式回收碘化物,用于通过碘化物预氧化到三碘化物的薄膜晶体管液晶显示器行业。使用NaoCl的部分氧化将碘化物转化为碘,然后形成三碘化物。由于其低逆向盐通量,使用乙二胺四乙酸二钠盐(EDTA-2NA),作为工业中常用的螯合剂,作为抽取溶质。结果表明,碘化物回收的理想效率在pH 3下,对0.048米碘化物废水加氧化(加入0.0150m NaClO),回收率为98.5%。另外,使用POPBAIX图和淀粉指示器来验证三碘化物的形成。证明膜蒸馏以回收EDTA-2NA的溶质,并且达到初始水通量为12.0L / m(2)H的初始水通量的39%以上的回收率,表明EDTA-2NA的同时恢复溶质和水是可行的。

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