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首页> 外文期刊>Separation and Purification Technology >Monograph Enhanced reduction of hexavalent chromium by hydrogen sulfide in frozen solution
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Monograph Enhanced reduction of hexavalent chromium by hydrogen sulfide in frozen solution

机译:通过硫化氢在冷冻溶液中通过硫化氢增强单针减少

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摘要

Significant enrichment of hexavalent chromium [Cr (VI)] has been detrimentally influenced both environment and human's health in the polar regions. We found that reduction of Cr (VI) by hydrogen sulfide (H2S) was significantly enhanced in ice (-20 degrees C) but relatively slow in water (25 degrees C) under the same experimental conditions. This enhancement is ascribed to the freeze concentrations of Cr (VI), H2S, and proton (H+) in ice grain boundaries during freezing. Sulfate (SO42-) was produced more appreciably in ice than in water. Cr (VI) reduction in ice was enhanced effectively under various H2S concentrations (5.0-100 mu M), pHi (2.0-7.7), and increasing the freezing temperature from -30 to -15 degrees C. Optical and chemical observations with a confocal Raman microscope under frozen state supported the freeze concentration of Cr (VI) in ice grain boundaries. The accumulation of H+ (pH decrease) in ice grain boundaries was verified with the UV-visible absorption spectra of cresol red (CR) in ice. Removal of Cr (VI) in electroplating wastewater was significant and comparable to that in distilled water by freezing. Therefore, Cr (VI) reduction by H2S in ice phase indicates the occurrence of Cr (VI) removal in cold regions.
机译:大量富集六价铬[Cr(vi)]在极地地区的环境和人类健康方面受到不利。我们发现,在冰(-20℃)中,硫化氢(H 2 S)的Cr(VI)的还原在相同的实验条件下在水(25℃)中相对较慢。在冻结期间,这种增强归因于冰晶界中的Cr(VI),H 2 S,H 2 S和质子(H +)的冻结浓度。硫酸盐(SO42-)在冰上比水更明显地制作。在各种H 2 S浓度(5.0-100μm),PHI(2.0-7.7)下有效增强冰的Cr(VI),并将冷冻温度从-30至-15摄氏度的凝固温度提高。用共焦的光学和化学观察在冷冻状态下拉曼显微镜支持冰晶界限的Cr(VI)的冷冻浓度。用冰中的甲酚红(Cr)的UV可见吸收光谱来验证冰晶界界面中H +(pH值下降)的积累。在电镀废水中除去Cr(VI)是显着的,并且通过冷冻蒸馏水在蒸馏水中的显着性和比较。因此,在冰相中通过H 2 S减少Cr(VI)表明在寒冷地区中的Cr(vi)去除的发生。

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