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机构地区:[1]辽宁石油化工大学石油天然气工程学院,辽宁抚顺113001 [2]吉林建筑工程学院市政与环境工程学院,吉林长春130021
出 处:《当代化工》2012年第3期308-311,327,共5页Contemporary Chemical Industry
摘 要:以低C/N比污水为处理对象、基于物料平衡分析,研究了在MUCT工艺中硝化液内循环比与COD降解转化、PHA的代谢、磷的转移以及氮的转化等4个过程的关系。进水COD浓度恒定为(290±10)mg/L,TN浓度恒定为(55±0.5)mg/L,TP浓度恒定为(7.0±0.5)mg/L,改变硝化液内循环比,测定各反应段及出水COD、TN、TP浓度以及污泥中的PHA含量。试验结果表明:厌氧段去除的COD的63%~67%左右转化为PHA,在第二缺氧段和好氧段,PHA被消耗用于吸收污水中的磷,硝化液内循环比对第二缺氧段的消耗量有较明显的影响;硝化液内循环比对磷的释放过程影响较小,是第二缺氧段的吸磷过程的主要影响因素。Based on mass balances,relationships between the nitrified liquor recycling condition and COD removal,phosphorus release,phosphorus uptake,nitration,denitrification were discussed by using low C/N rate wastewater as the research object,in which the influent chemical oxygen demand concentration was stabilized at(290±10)mg/L,the influent total nitrogen(TN) concentration was stabilized at(55±0.5)mg/L,the influent total phosphorus(TP) concentration was stabilized at(7.0±0.5)mg/L.The nitrified liquor recycling condition was changed to compare the effluent total nitrogen and total phosphorus concentration.The experimental results show that 63%~67% of the COD removed in the anaerobic zone can be identified as PHA;in the second anoxic and aerobic zone,the PHA has been consumed for phosphate uptake,consumption of PHA is significantly affected by nitrified liquor recycling condition in second anoxic zone;nitrified liquor recycling condition has little effect on phosphorus release,but it is a key factor affecting phosphorus uptake in the second anoxic zone.
分 类 号:X703[环境科学与工程—环境工程]
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