环境科学与管理
環境科學與管理
배경과학여관리
ENVIRONMENTAL SCIENCE AND MANAGEMENT
2012年
3期
104-108
,共5页
王松%郑先强%石岩%侯霙%曾猛%许丹宇
王鬆%鄭先彊%石巖%侯霙%曾猛%許丹宇
왕송%정선강%석암%후영%증맹%허단우
化工区%废水%预处理%去毒%耦合工艺
化工區%廢水%預處理%去毒%耦閤工藝
화공구%폐수%예처리%거독%우합공예
chemical industry parks%wastewater%pre-treatment%detoxification%coupling processes
化工产业是天津滨海新区重要的支柱产业,该行业废水是滨海污染物控制的主要威胁。针对常规单一方法存在的问题,试验选取滨海某化工区实际废水从内电解-Fenton、内电解-混凝、内电解-超声及微波强化氧化-光催化4种耦合去毒预处理工艺进行了研究。试验表明,与传统方法相比,内电解-Fenton法中H2O2的加入增加了污染物的降解途径,提高了对污染物的去除效率;内电解-混凝法对于制药废水的生物毒性有比较好的去除作用,不加PAM或Ca(OH)2的效果更佳;内电解-超声法对制药废水的生物毒性去除率可达92%,其可生化性提高45%;微波强化氧化-光催化法对大多数难降解物质有效,而对酚类物质降解效果不佳。
化工產業是天津濱海新區重要的支柱產業,該行業廢水是濱海汙染物控製的主要威脅。針對常規單一方法存在的問題,試驗選取濱海某化工區實際廢水從內電解-Fenton、內電解-混凝、內電解-超聲及微波彊化氧化-光催化4種耦閤去毒預處理工藝進行瞭研究。試驗錶明,與傳統方法相比,內電解-Fenton法中H2O2的加入增加瞭汙染物的降解途徑,提高瞭對汙染物的去除效率;內電解-混凝法對于製藥廢水的生物毒性有比較好的去除作用,不加PAM或Ca(OH)2的效果更佳;內電解-超聲法對製藥廢水的生物毒性去除率可達92%,其可生化性提高45%;微波彊化氧化-光催化法對大多數難降解物質有效,而對酚類物質降解效果不佳。
화공산업시천진빈해신구중요적지주산업,해행업폐수시빈해오염물공제적주요위협。침대상규단일방법존재적문제,시험선취빈해모화공구실제폐수종내전해-Fenton、내전해-혼응、내전해-초성급미파강화양화-광최화4충우합거독예처리공예진행료연구。시험표명,여전통방법상비,내전해-Fenton법중H2O2적가입증가료오염물적강해도경,제고료대오염물적거제효솔;내전해-혼응법대우제약폐수적생물독성유비교호적거제작용,불가PAM혹Ca(OH)2적효과경가;내전해-초성법대제약폐수적생물독성거제솔가체92%,기가생화성제고45%;미파강화양화-광최화법대대다수난강해물질유효,이대분류물질강해효과불가。
Chemical industry is an important pillar industry in Tianjin Binhai New Area,wastewater from that industry is main threat to pollution control in that area,as it has non-biodegradable and other characteristics.To solve the problem in single conventional method,actual wastewater from a chemical industry park in Binhai New Area was selected,4 coupling pretreatment processes for detoxication,namely Internal Electrolysis-Fenton(IEF),Internal Electrolysis-Coagulation(IEC),Internal Electrolysis-Ultrasonic(IEU) and Microwave-enhanced Oxidation-Photocatalysis(MOP) process,were studied.Through those experiments,effect was verified and characteristic was known,the foundation was laid for the follow-up demonstration project application.It was shown that,comparing with conventional method,IEF process promoted removal rate of pollutants and saved dosage of chemical agent as H2O2 was added,its biotoxicity removal was 80%.IEC process has good removal to biotoxicity of pharmaceutical wastewater,although all B/C were improved,the result without PAM or Ca(OH)2 was best.IEU process has 92% removal rate to biotoxicity of pharmaceutical wastewater,and its biodegradability was increased 45%.MOP process was effective Abstract:Chemical industry is an important pillar industry in Tianjin Binhai New Area,wastewater from that industry is main threat to pollution control in that area,as it has non-biodegradable and other characteristics.To solve the problem in single conventional method,actual wastewater from a chemical industry park in Binhai New Area was selected,4 coupling pretreatment processes for detoxication,namely Internal Electrolysis-Fenton(IEF),Internal Electrolysis-Coagulation(IEC),Internal Electrolysis-Ultrasonic(IEU) and Microwave-enhanced Oxidation-Photocatalysis(MOP) process,were studied.Through those experiments,effect was verified and characteristic was known,the foundation was laid for the follow-up demonstration project application.It was shown that,comparing with conventional method,IEF process promoted removal rate of pollutants and saved dosage of chemical agent as H2O2 was added,its biotoxicity removal was 80%.IEC process has good removal to biotoxicity of pharmaceutical wastewater,although all B/C were improved,the result without PAM or Ca(OH)2 was best.IEU process has 92% removal rate to biotoxicity of pharmaceutical wastewater,and its biodegradability was increased 45%.MOP process was effective Abstract: Chemical industry is an important pillar industry in Tianjin Binhai New Area and the wastewater from that industry is main threat to pollution control in the area for its non-biodegradable and other characteristics.To solve the problem in single conventional method,actual wastewater from a chemical industry park in Binhai New Area was treated by four coupling pretreatment processes of detoxication,namely,Internal Electrolysis-Fenton(IEF),Internal Electrolysis-Coagulation(IEC),Internal Electrolysis-Ultrasonic(IEU) and Microwave-Enhanced Oxidation-Photocatalysis(MOP) process.The experiments mentioned above verified the effects,clarified the characteristics and laid foundation for the application in follow-up demonstration projects.It is concluded that comparing with conventional method,IEF process promoted the pollutant removal rate and saved dosage of chemical agent by adding H2O2.The biotoxicity removal rate was 80%.IEC process has good removal effect on the biotoxicity of pharmaceutical wastewater,although all B/C were improved,the result without PAM or Ca(OH)2 was the best.IEU process removes 92% of biotoxicity in pharmaceutical wastewater,and the biodegradability increased 45%.MOP process was effective to most of non-biodegradable substances in chemical wastewater,but its removal result to strong hydrophilic phenols is not good.