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The effects of pH and addition of an organic buffer (HEPES) on nitrate transformation in Fe-0-water systems

机译:pH和添加有机缓冲液(HEPES)对Fe-0-水系统中硝酸盐转化的影响

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The feasibility of using zero-valent iron (Fe-0) powder to remediate nitrate-contaminated water was studied using bench-scale batch reactors. Operational parameters, such as Fe-0 dosage (w/v), initial concentration of nitrate-nitrogen, pH, and the use of an organic buffer (HEPES) were studied, specifically focusing on the effects of pH and the addition of HEPES on nitrate transformation using zero-valent iron powder. Nitrate-nitrogen was removed by 94% when 0.01M of HEPES was added to a non-shaking batch reactor containing 20 mg/l nitrate-nitrogen and 4% (w/v) of Fe-0. Shaking was proved to be more efficient than no shaking. Using the response surface methodology it was found that nitrate removal was closely related to pH. At low pH (e.g., pH < 2), the nitrate removal was fast and efficient (95% to 100%). At high pH (e.g., pH > 11), the transformation of nitrate was fast and efficient only for low concentration of nitrate in the Fe-0-H2O system. At normal pH range (pH = 6 to 8), nitrate removal was usually lower than 50% without buffer treatment. The addition of the organic buffer (HEPES) could greatly enhance the nitrate transformation in a wide pH range (e.g., pH = 2 to 11). (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 12]
机译:使用台式规模的分批反应器研究了使用零价铁(Fe-0)粉末修复硝酸盐污染的水的可行性。研究了操作参数,例如Fe-0剂量(w / v),硝酸盐氮的初始浓度,pH值和有机缓冲液(HEPES)的使用,特别是关注pH值的影响以及HEPES的添加使用零价铁粉进行硝酸盐转化。当将0.01M HEPES添加到一个非摇动的间歇式反应器中时,其中的硝酸盐氮去除了94%,该反应器包含20 mg / l的硝酸盐氮和4%(w / v)的Fe-0。事实证明,摇动比不摇动更有效。使用响应表面方法,发现硝酸盐的去除与pH密切相关。在低pH值(例如pH <2)下,硝酸盐的去除快速有效(95%至100%)。在高pH值(例如pH> 11)下,仅当Fe-0-H2O系统中的硝酸盐浓度较低时,硝酸盐的转化才快速有效。在正常pH范围(pH = 6至8)下,未经缓冲液处理的硝酸盐去除率通常低于50%。有机缓冲液(HEPES)的加入可以在宽的pH范围(例如pH = 2至11)中大大增强硝酸盐转化。 (C)1998由Elsevier Science Ltd.出版。保留所有权利。 [参考:12]

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