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作 者:陈佼 王瑞 杨哲涵 赵鑫 陈兴龙 赵宇豪 Chen Jiao;;Wang Rui;Yang Zhehan;Zhao Xin;Chen Xinglong;Zhao Yuhao(College of Architectural and Environmental Engineering, Chengdu Technological University, Chengdu 611730;Center of Big Data for Smart Environmental Protection, Chengdu Technological University, Chengdu 611730, China)
机构地区:[1]成都工业学院建筑与环境工程学院,四川成都611730 [2]成都工业学院智慧环保大数据中心,四川成都611730
出 处:《广东化工》2018年第20期27-28,2,共3页Guangdong Chemical Industry
基 金:四川省大学生创新创业训练计划项目(201811116108)
摘 要:采用SBR系统处理高盐有机废水,考察了有机负荷、氨氮负荷和盐度负荷冲击对COD和NH_3-N去除效果的影响。结果表明,进水COD浓度在1021.6~4981.2mg/L范围内波动时,COD去除率能保持在90%以上,但降低有机负荷会导致COD去除率略有降低。降低进水NH_3-N浓度对其去除的影响较小,而升高NH_3-N浓度到297.5~495.9 mg/L时,需连续运行2~3个周期后NH_3-N去除率才能恢复至90%以上。盐度负荷的降低对COD和NH_3-N去除率的影响较小,当NaCl浓度升高到41197.2~65915.5 mg/L时,连续运行2个周期后COD和NH_3-N去除率可恢复到90%以上。SBR system was used to treat high-salt organic wastewater, and the impact of organic, ammonia and salinity loading shock on COD and NH3-N removal were investigated. The results showed that COD removal rates could be maintained above 90 % when the influent COD concentration fluctuated in the range of 1021.6~4981.2 mg/L, but it would be slightly reduced by reducing the organic loading. Reducing NH3-N concentration had little effect on NH3-N removal, but increasing NH3-N concentration to 297.5~495.9 mg/L required continuous operation for 2~3 cycles before NH3-N removal rates could be restored to more than 90 %. When NaCl concentration increased to 4197.2~65915.5 mg/L, the COD and NH3-N removal rates could be restored to more than 90% after 2 consecutive cycles.
分 类 号:X703[环境科学与工程—环境工程]
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