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New concepts of microbial treatment processes for the nitrogen removal: effect of protein and amino acids degradation

机译:脱氮微生物处理工艺的新概念:蛋白质和氨基酸降解的影响

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High concentrations of proteins and amino acids can be found in wastewater and wastewater stream produced in anaerobic digesters, having shown that amino acids could persist over different managements for nitrogen removal affecting the nitrogen removal processes. Nitrogen removal is completely necessary because of their implications and the significant adverse environmental impact of ammonium such as eutrophication and toxicity to aquatic life on the receiving bodies. In the last decade, the treatment of effluents with high ammonium concentration through anammox-based bioprocesses has been enhanced because these biotechnologies are cheaper and more environmentally friendly than conventional technologies. However, it has been shown that the presence of important amounts of proteins and amino acids in the effluents seriously affects the microbial autotrophic consortia leading to important losses in terms of ammonium oxidation efficiency. Particularly the presence of sulfur amino acids such as methionine and cysteine has been reported to drastically decrease the autotrophic denitrification processes as well as affect the microbial community structure promoting the decline of ammonium oxidizing bacteria in favor of other phylotypes. In this context we discuss that new biotechnological processes that improve the degradation of protein and amino acids must be considered as a priority to increase the performance of the autotrophic denitrification biotechnologies.
机译:在厌氧消化池产生的废水和废水流中可以发现高浓度的蛋白质和氨基酸,这表明氨基酸可以在不同的处理方式下持续存在,从而影响脱氮过程。由于氮的影响和铵对环境的严重不利影响,例如富营养化和对水生生物的毒性,都会对氮的去除非常必要。在过去的十年中,由于基于生物合成技术的生物技术比传统技术更便宜且对环境更友好,因此提高了通​​过基于厌氧氨氧化生物工艺处理高铵浓度废水的能力。然而,已经表明,废水中存在大量蛋白质和氨基酸会严重影响微生物自养菌群,导致铵氧化效率方面的重大损失。尤其是,据报道,硫氨基酸(如蛋氨酸和半胱氨酸)的存在会大大减少自养反硝化过程,并影响微生物群落结构,促进铵氧化细菌的衰落,有利于其他种型。在这种情况下,我们讨论了改善蛋白质和氨基酸降解的新生物技术工艺必须被视为提高自养反硝化生物技术性能的优先事项。

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