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Catalytic reduction of perchlorate by H2 gas in dilute aqueous solutions

机译:稀水溶液中H2气催化还原高氯酸盐

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摘要

Perchlorate ions are present in both ground and surface waters in several regions of U.S.Due to the detrimental effect of perchlorate on human health it is of current urgency to remove perchlorate from the source water.Reduction of perchlorate by hydrogen gas has undisputed advantages in cost,ease in operation,and public acceptance.In the present study,we attempted to remove perchlorate ions from dilute solutions using hydrogen gas assisted by metallic catalysts in a pressurized reactor.Results indicated that perchlorate ions could be reduced to chloride by molecular hydrogen gas.Among a total of 78 catalytic systems studied,25 showed significant or observable perchlorate reduction.The reaction rate was dependent on the type of catalysts used.The maximum removal efficiency was about 20% in hours at an initial perchlorate concentration of 10 ppm in the presence of several commercial catalysts.However,metallic catalysts were able to achieve about 90% removal in 2 weeks at an initial perchlorate concentration of 2 ppm.The most efficient system was the Ti-Ti02 surface with a removal efficiency of higher than 90% in 3 days at an initial perchlorate concentration of only 1 ppm or 1000 ppb.Results clearly indicate the potential of perchlorate reduction by hydrogen molecules.
机译:在美国的几个地区,地下水和地表水中都存在高氯酸根离子,这是由于高氯酸根对人体健康的有害影响,目前迫切需要从水源中去除高氯酸根。用氢气减少高氯酸根具有无可争议的成本优势,在本研究中,我们试图在加压反应器中使用氢气在金属催化剂的辅助下从稀溶液中去除高氯酸根离子。结果表明,分子氢可以将高氯酸根离子还原为氯离子。总共研究了78个催化系统,其中25个显示出高氯酸盐显着或可观察到的还原。反应速率取决于所用催化剂的类型。当初始高氯酸盐浓度为10 ppm时,在有几种商业催化剂。但是,金属催化剂在最初的性能下能够在2周内达到90%的去除率。氯酸盐浓度为2 ppm。最有效的系统是Ti-TiO2表面,初始高氯酸盐浓度仅为1 ppm或1000 ppb时,在3天内的去除效率高于90%,结果清楚地表明了高氯酸盐还原的潜力氢分子。

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