首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced nitrogen removal through marine anammox bacteria (MAB) treating nitrogen-rich saline wastewater with Fe(III) addition: Nitrogen shock loading and community structure
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Enhanced nitrogen removal through marine anammox bacteria (MAB) treating nitrogen-rich saline wastewater with Fe(III) addition: Nitrogen shock loading and community structure

机译:通过海洋厌氧菌(MAB)加强氮气除去用Fe(III)加入氮气废水(III)加法:氮气冲击载荷和群落结构

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摘要

Marine anammox bacteria (MAB) were used to treat nitrogen-rich saline wastewater with Fe(III) addition under nitrogen shock loading. Ammonia loading rate (ALR) and nitrite loading rate (NLR) gradually increased from 0.033 and 0.039 to 0.68 and 0.89 kg/(m(3).d), respectively. With 5 mg/L Fe(III) addition, ammonia removal rate (ARR) and nitrite removal rate (NRR) reached maximal values of 0.56 and 0.60 kg/(m(3).d), respectively. The value of Delta NO2--N/Delta NH4+-N was lower than theoretical ratio due to existing marine Feammox process. The growth rate of MAB was accelerated by Fe(III) and it dominated the reactor (27.70%). Besides, MAB were synergized with Marinicella and Caldithrix to achieve higher total nitrogen removal. Haldane model was proper to analyze and predict the effect resulting from nitrite on the activity of MAB under nitrogen shock loading. Overall, this study provides novel insights into the effect of Fe(III) on MAB treating nitrogen-rich wastewater.
机译:海洋anammox细菌(MAB)用于用Fe(III)在氮气冲击载荷下进行富含富硝酸盐废水。 氨负荷率(ALR)和亚硝酸盐加载速率(NITRITE负载率(NITRITE)分别从0.033和0.039至0.68和0.89kg /(m(3).d)逐渐增加。 添加5mg / L Fe(III)加法,氨去除率(ARR)和亚硝酸盐去除率(NRR)分别达到0.56和0.60kg /(m(3).d)的最大值。 由于现有的海洋FEAMOX工艺,Delta No2 - N / Delta NH4 + -N的值低于理论比率。 用Fe(III)加速MAb的生长速率,并将反应器(27.70%)占主导地位。 此外,MAB与MariniCella和Caldithrix协同效应,以获得更高的总氮去除。 卤代模型适用于分析和预测亚硝酸盐在氮抗冲击载荷下MAb活性产生的效果。 总体而言,本研究为FE(III)对MAB治疗富含氮废水的影响提供了新的洞察。

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