>In order to study the characteristics of nitrous oxide (N2O) production and hydroxylamine (NH2OH) variation under '/> Characteristics of N <sub>2</sub>O production and hydroxylamine variation in short-cut nitrification SBR process
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Characteristics of N 2O production and hydroxylamine variation in short-cut nitrification SBR process

机译:N 2 O产生和羟胺变化的特征,弥补硝化SBR过程

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摘要

>In order to study the characteristics of nitrous oxide (N2O) production and hydroxylamine (NH2OH) variation under oxic conditions, concentrations of NH2OH and N2O were simultaneously monitored in a short-cut nitrification sequencing batch reactor (SBR) operated with different influent ammonia concentrations. In the short-cut nitrification process, N2O production was increased with the increasing of ammonia concentration in influent. The maximum concentrations of dissolved N2O-N in the reactor were 0.11 mg/L and 0.52 mg/L when ammonia concentrations in the influent were 50 mg/L and 70 mg/L respectively. Under the low and medium ammonia load phases, the concentrations of NH2OH-N in the reactor were remained at a low level which fluctuated around 0.06 mg/L in a small range, and did not change with the variation of influent NH4+-N concentration. Based on the determination results, the half-saturation of NH2OH in the biochemical conversion process of NH2OH to NO2?-N was very small, and the value of 0.05 mg NH2OH-N/L proposed in the published literature was accurate. NH2OH is an important intermediate in the nitrification process, and the direct determination of NH2OH in the nitrification process was beneficial for revealing the kinetic process of NH2OH production and consumption as well as the effects of NH2OH on N2O production in the nitrification process.]]>
机译:<![cdata [ >为了研究氧化亚氮的特性(n 2 o )在氧化物条件下的生产和羟胺(NH <亚> 2 OH)变化,在短时间内同时监测NH 2 OH和N 2 O的浓度 - 用不同流入的氨浓度操作的硝化测序批量反应器(SBR)。在短切硝化过程中,随着流入的氨浓度的增加,增加N <亚亚> 2 O产生。当流入物中的氨浓度分别为50mg / L和70mg / L时,反应器中溶解的N 2 O-N的最大浓度为0.11mg / L和0.52mg / L.在低和中氨负荷相下,反应器中NH 2 / sup> OH-N的浓度保持在低水平,在小范围内波动约0.06mg / L,并且没有改变流入的NH 4 + -n浓度的变化。基于测定结果,NH 2 OH的半饱和度在NH 2 OH至NO 2 的生物化学转换过程中? -n非常小,并且在公开文献中提出的0.05mg NH 2 OH-N / L的值是准确的。 NH 2 OH是硝化过程中的重要中间体,并且在硝化过程中的NH 2 OH的直接测定有利于揭示NH 的动力学过程2 OH生产和消耗以及NH 2 OH对硝化过程中N 2 O产生的影响。 ]]>

著录项

  • 来源
    《Water Science and Technology》 |2018年第2期|共9页
  • 作者单位

    School of Civil Engineering Chang’an University The middle section of the south 2nd ring road Xi'an Shaanxi Province 710064 China;

    School of Environmental Science and Engineering Chang’an University The middle section of the south 2nd ring road Xi'an Shaanxi Province 710064 China;

    Key Laboratory of Water Supply &

    Sewage Engineering Ministry of Housing and Urban-rural Development Chang'an University The middle section of the south 2nd ring road Xi'an Shaanxi Province 710064 China;

    School of Architecture and Civil Engineering Xi'an University of Science and Technology Yanta Road No. 58 Xi'an Shaanxi Province 710054 China;

    School of Civil Engineering Chang’an University The middle section of the south 2nd ring road Xi'an Shaanxi Province 710064 China;

    School of Environmental Science and Engineering Chang’an University The middle section of the south 2nd ring road Xi'an Shaanxi Province 710064 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水资源调2查与水利规划;
  • 关键词

    hydroxylamine; nitrous oxide; SBR process; short-cut nitrification;

    机译:羟胺;氧化二氮;SBR过程;短切硝化;

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