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氨水处理工艺的改进
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作者 村井洋一 张国富 《燃料与化工》 2000年第6期316-318,共3页
关键词 炼焦炉 氨水处理工艺 脱油 脱氨 活性污泥
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氨水处理工艺的清洁生产研究
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作者 王方东 《燃料与化工》 2003年第2期101-102,共2页
关键词 氨水处理工艺 精洁生产 研究 焦化废水处理
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Acid Separation, Catalytic Oxidation and Coagulation for ATC Waste Liquid Treatment 被引量:1
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作者 丁晓玲 贾春宁 《Transactions of Tianjin University》 EI CAS 2005年第2期97-100,共4页
It is difficult to treat 2-amino-thiazoline-4-carboxylic acid (ATC) waste liquid effectively at present for its characteristics of high chemical oxygen demand (COD), high salinity and low biodegradability. In orde... It is difficult to treat 2-amino-thiazoline-4-carboxylic acid (ATC) waste liquid effectively at present for its characteristics of high chemical oxygen demand (COD), high salinity and low biodegradability. In order to solve this problem, this paper presents several kinds of physical-chemical treatment unit techniques, including acid separation, catalytic oxidation and coagulation. First of all, acid separation was adopted to precipitate relevant organics at isoelectric point. When the temperature and pH value of acid separation were controlled at about 5 ℃ and 2.2 respectively, the COD removal rate could reach 27.600. Secondly, oxidation was used to break chemical constitution of refractory organics. The optimal reaction parameters of catalytic oxidation should be 20 ℃, pH adjusted to 5.0 and [Fe2+] 300 mg/L. Then with 500 H2O2 added and after one-hour reaction, the COD removal rate could achieve about 5200. Finally, coagulation was adopted to remove a portion of refractory organics, and 1500 polymeric molysite flocculant was the best for the coagulation, and the COD removal rate could reach about 1500. Therefore, the proposed feasible process of physical-chemical pretreatment for ATC waste liquid could have about 7000 COD removed in total. 展开更多
关键词 ATC waste liquid physical-chemical treatment acid separation catalytic oxidation COAGULATION
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