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Purification of sodium sulfate by crystallization.

机译:通过结晶纯化硫酸钠。

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摘要

Sodium sulfate can be recovered from a dilute solution by concentrating it by conventional water treatment techniques like reverse osmosis and electrodialysis; however, those processes also concentrate impurities like arsenic. The sodium sulfate would have commercial use if it can be recovered in an arsenic-free form. This study demonstrated that sodium sulfate could be separated from impurities using slow cooling crystallization in a novel apparatus developed and designed during the experimentation. This device is called a heat exchanger crystallizer and allows slow cooling crystallization in order to grow pure crystals of sodium sulfate decahydrate. Crystals grown in the heat exchanger crystallizer from a sodium sulfate solution with 1 mg/L arsenate had arsenic levels below the detection limits of IC and ICP. In contrast, crystals grown under vacuum in a rotary evaporator had arsenic levels about the same as the feed solution due to entrapment of mother liquor in the slurry of tiny crystals. These results offer new insight into how sodium sulfate can be recovered and purified by crystallization to the extent that arsenate is not detectable in the crystals.
机译:可以通过常规水处理技术(如反渗透和电渗析)将其浓缩来从稀溶液中回收硫酸钠。但是,这些过程也会浓缩砷等杂质。如果硫酸钠可以以无砷的形式回收,则将具有商业用途。这项研究表明,在实验过程中开发和设计的新型装置中,可以使用缓慢冷却的结晶将硫酸钠与杂质分离。该装置称为热交换器结晶器,可缓慢冷却结晶,以生长十水合硫酸钠的纯净晶体。在热交换器结晶器中从含有1 mg / L砷酸盐的硫酸钠溶液中生长的晶体的砷含量低于IC和ICP的检测极限。相反,由于母液截留在微小晶体的浆料中,在旋转蒸发器中在真空下生长的晶体具有与进料溶液大致相同的砷水平。这些结果提供了新的见解,以了解如何通过结晶来回收和纯化硫酸钠,以至于在晶体中检测不到砷酸盐。

著录项

  • 作者

    Torres, Perla Teresita.;

  • 作者单位

    The University of Texas at El Paso.;

  • 授予单位 The University of Texas at El Paso.;
  • 学科 Environmental engineering.
  • 学位 M.S.En.E.
  • 年度 2013
  • 页码 69 p.
  • 总页数 69
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 语言学;
  • 关键词

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