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作 者:成学礼 乔华 纪钦洪 Cheng Xueli;Qiaohua;Ji Qinhong(Datong SNG Project Team,China National Offshore Oil Corporation,Datong Shanxi 037100,China;New Energy Research Center,China National Offshore Oil Corporation Research Institute Co.,Ltd.,Beijing 100028,China)
机构地区:[1]中海油大同煤制气项目组,山西大同037100 [2]中海油研究总院有限责任公司新能源研究中心,北京100028
出 处:《煤化工》2020年第2期67-69,共3页Coal Chemical Industry
摘 要:针对碎煤加压气化所产生的废水具有含酚高、氨氮高、可生化性差等特点,采用水解酸化+生化A/O组合工艺进行处理,考察了停留时间和回流比对处理效果的影响。结果表明:水解酸化池较合适的水力停留时间在22.7 h^35.7 h;生化A/O池的水力停留时间超过100 h时,COD的质量浓度可降到300 mg/L左右;生化A/O池的混合液回流比对总氮的去除率影响较大,且维持3倍左右的回流比时,可获得较好的总氮去除率。The wastewater produced by crushed coal pressurized gasification had the characteristics of high phenol content, high ammonium nitrogen content and poor biodegradability. The combined process of hydrolysis acidification and A/O was used to treat such wastewater, and the effect of retention time and reflux ratio on treatment was investigated. The results showed that the suitable hydraulic retention time of hydrolysis acidification tank was between 23 and 35 hours;when the hydraulic retention time of A/O tank was more than 100 hours, COD could be reduced to about 300 mg/L;the reflux ratio of mixed liquid of A/O tank had a great effect on total nitrogen removal. Maintaining around 3 times reflux ratio could obtain a better total nitrogen removal rate.
关 键 词:碎煤加压气化 废水 水解酸化 生化A/O COD 总氮 水力停留时间 混合液回流比
分 类 号:X784[环境科学与工程—环境工程]
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