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Role of nitrification in the biodegradation of selected artificial sweetening agents in biological wastewater treatment process

机译:硝化作用在生物废水处理过程中精选人工甜味剂生物降解中的作用

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摘要

The biodegradation of the six artificial sweetening agents including acesulfame (ACE), aspartame (ASP), cyclamate (CYC), neohesperidindihydrochalcone (NHDC), saccharin (SAC), and sucralose (SUC) by nitrifying activated sludge was first examined. Experimental results showed that ASP and NHDC were the most easily degradable compounds even in the control tests. CYC and SAC were efficiently biodegraded by the nitrifying activated sludge, whereas ACE and SUC were poorly removed. However, the biodegradation efficiencies of the ASs were increased with the increase in initial ammonium concentrations in the bioreactors. The association between nitrification and co-metabolic degradation was investigated and a linear relationship between nitrification rate and co-metabolic biodegradation rate was observed for the target artificial sweeteners (ASs). The contribution of heterotrophic microorganisms and autotrophic ammonia oxidizers in biodegradation of the ASs was elucidated, of which autotrophic ammonia oxidizers played an important role in the biodegradation of the ASs, particularly with regards to ACE and SUC.
机译:首先研究了六种人工甜味剂的硝化活性污泥的生物降解,包括乙酰磺胺酸(ACE),阿斯巴甜(ASP),甜蜜素(CYC),新橙皮苷二氢查耳酮(NHDC),糖精(SAC)和三氯蔗糖(SUC)。实验结果表明,即使在对照试验中,ASP和NHDC也是最容易降解的化合物。 CYC和SAC被硝化活性污泥有效地生物降解,而ACE和SUC去除效果较差。然而,随着生物反应器中初始铵浓度的增加,AS的生物降解效率也随之提高。研究了目标人工甜味剂(ASs)的硝化与代谢分解之间的关系,并观察到硝化速率与代谢分解生物之间的线性关系。阐明了异养微生物和自养氨氧化剂在AS的生物降解中的作用,其中自养氨氧化剂在AS的生物降解中起着重要作用,特别是在ACE和SUC方面。

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