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Nitrogen Removal from Three-stage Oxidation-reduction System by Simulation of the Riparian Environment

机译:通过岩土环境模拟从三级氧化还原系统中去除氮气

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Riparian zones (RZ) is area in which sediments typically exhibit strong redox transitions and play a key role in river metabolism. A three-stage oxidation-reduction cores device which perfuse with heterogeneous sediment (gravel and sand) was used in the present study to analyze nitrogen removal in the multiple oxidation-reduction environment of river. The monitoring of oxidationreduction potential (ORP) on the device confirmed that the system was successfully reproduced three-stage oxidation-reduction gradient environment in riparian zones. The results indicated that ammonia nitrogen, nitrate nitrogen, total nitrogen (TN) and chemical oxygen demand (COD) can be removed effectively, and the removal rates are 72.05 %, 99.28 %, 78.17 % and 77.64 % respectively. And optimum removal efficiency of nitrogen was founded in the first-stage downflow column. The ratio of C/N and ammonia nitrogen load of influent influence the nitrogen removal effect, and maximum removal rate of nitrogen was observed under the condition that C/N is 8 and ammonia nitrogen load is 2.63 g d~(-1) m~(-3).
机译:河岸区(RZ)是其中沉积物通常表现出强烈的氧化还原转变并在河流代谢中发挥关键作用的区域。用异质沉积物(砾石和沙子)灌注的三级氧化还原芯装置用于本研究分析河流多氧化还原环境中的氮去除。对装置上的氧化潜力电位(ORP)的监测证实了该系统在河岸区域成功地再现了三级氧化还原梯度环境。结果表明,氨氮,硝酸盐氮,总氮(TN)和化学需氧量(COD)可有效除去,除去率分别为72.05%,99.28%,78.17%和77.64%。氮的最佳去除效率在第一阶段的下流柱中成立。在C / N为8和氨氮负荷为2.63 gd〜(-1)m〜()下观察到氮去除效应的C / N和氨氮负荷的比例,以及氨氮载荷为2.63 gd〜(1)m〜( -3)。

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