紫外/臭氧协同处理废水技术及应用  被引量:2

Application of UV/Ozone Synergistic Treatment Technology of Wastewater

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作  者:马健伟[1] 姚仲仲 张心宇 MA Jian-wei;YAO Zhong-zhong;ZHANG Xin-yu(College of Civil Engineering and Architecture,Northeast Petroleum University,Daqing Heilongjiang163318,China;School of Earth Sciences,Yunnan University,Kunming Yunnan 650500,China)

机构地区:[1]东北石油大学土木建筑工程学院,黑龙江大庆163318 [2]云南大学地球科学学院地信系,云南昆明650500

出  处:《当代化工》2022年第10期2455-2458,2462,共5页Contemporary Chemical Industry

基  金:国家自然科学基金(项目编号:51606036)。

摘  要:新型污染物是废水处理中的难点,常规的生物处理法很难对这类污染物进行高效处理。研究人员发现通过紫外/臭氧协同处理工艺可以使这类污染物有效降解,随着紫外/臭氧工艺应用范围扩大,该工艺已经发展出多种形式。紫外/臭氧系统还能与催化剂或其他生化处理工艺协同使用让难降解污染物降解速率得到提升。紫外/臭氧系统除了可以协同处理难降解有机物,还具有杀毒灭菌等功能。但是紫外/臭氧协同处理工艺仍有一定的不足与可改进之处。New pollutants is a new difficulty in wastewater treatment.It is difficult to treat these organic pollutants efficiently by conventional biological treatment methods.This kind of organic matter can be effectively degraded by UV/ozone collaborative treatment process.UV/ozone process has developed many forms.Moreover,the UV/ozone system can also be used in conjunction with catalysts or other biochemical treatment structures to further improve the degradation rate of refractory pollutants.In addition to the synergistic treatment of organic matter in wastewater by UV/ozone system,sterilization can also be carried out.However,the UV ozone synergistic treatment process still has some shortcomings and need be improved.

关 键 词:废水处理 紫外 臭氧 高级氧化 

分 类 号:X703.1[环境科学与工程—环境工程]

 

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