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Interdependent environmental factors controlling nitrification in waters

机译:相互依赖的环境因素控制着水的硝化作用

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In many areas of the world limited water resources have lead to increased use of recycled water for agricultural and industrial purposes. Prior to releasing reclaimed water to consumers, excessive concentrations of inorganic nitrogenous compounds (ammonium, nitrite and nitrate) must be removed, and the water has to meet sanitary standards. The dynamics and abundance of the different nitrogenous compounds depend on the nitrification process (microbial oxidation of ammonia and nitrite). This is a key process in the nitrogen cycle and the autotrophic nitrifying bacteria catalyzing it are found in soils, sediments, wastewater, freshwater and marine water. Nitrification is a two-step process: first ammonia oxidizers convert ammonia to nitrite and then nitrite oxidizers convert nitrite to nitrate. An efficient nitrification process requires linked balanced activity of the two bacterial groups. Environmental factors that control nitrification affect ammonia and nitrite oxidizers differentially and thus disrupt the linkage between the two steps of the process. The effects of various environmental factors on the two bacterial groups and on the overall nitrification process are discussed. Light was identified to be a major factor inhibiting nitrification in a wastewater reservoir in Israel. Especially, nitrite oxidation was hindered causing the accumulation of nitrite during late spring and summer. [References: 24]
机译:在世界许多地区,有限的水资源导致越来越多的可循环水用于农业和工业用途。在向用户释放再生水之前,必须去除过量浓度的无机含氮化合物(铵,亚硝酸盐和硝酸盐),并且水必须符合卫生标准。不同含氮化合物的动力学和丰度取决于硝化过程(氨和亚硝酸盐的微生物氧化)。这是氮循环中的关键过程,在土壤,沉积物,废水,淡水和海水中发现了催化它的自养硝化细菌。硝化过程分为两个步骤:首先,氨气氧化剂将氨气转化为亚硝酸盐,然后亚硝酸盐氧化剂将亚硝酸盐转化为硝酸盐。有效的硝化过程需要两个细菌群具有相关联的平衡活性。控制硝化作用的环境因素对氨和亚硝酸盐氧化剂的影响不同,从而破坏了该过程两个步骤之间的联系。讨论了各种环境因素对这两个细菌群以及整个硝化过程的影响。在以色列,污水被认为是抑制硝化作用的主要因素。特别是,阻碍了亚硝酸盐的氧化,导致春末和夏季亚硝酸盐的积累。 [参考:24]

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