随着工业化进程的加快,工厂排放的各种有机废水会对地下水和地表水资源造成严重污染。有机废水具有来源广、毒性强和难降解等特点,对人类健康、动物生存及自然环境造成了极大威胁。UV/H2O2光化学技术属于高级氧化技术中的一种,其利用光...随着工业化进程的加快,工厂排放的各种有机废水会对地下水和地表水资源造成严重污染。有机废水具有来源广、毒性强和难降解等特点,对人类健康、动物生存及自然环境造成了极大威胁。UV/H2O2光化学技术属于高级氧化技术中的一种,其利用光能激发过氧化氢产生强氧化性的羟基自由基,将有机废水中的有毒物质转化为CO2、H2O和无机盐,是一种绿色、环保、低成本的降解工艺。本文综述了UV/H2O2光化学技术对染料废水、酚类废水和药物废水的降解研究进展,总结了降解过程中的光氧化机理。最后对该技术目前存在的问题以及未来发展前景进行了总结和展望。With the acceleration of industrialization, an increasing number of factories are discharging various types of organic wastewater in significant quantities, severely polluting groundwater and surface water resources. Organic wastewater is characterized by its diverse origins, high toxicity, and resistance to biodegradation, posing significant threats to human health, animal life, and the natural environment. The UV/H2O2 photochemical technology is an advanced oxidation technology which utilizes light energy to activate hydrogen peroxide, generating highly reactive hydroxyl radicals. These radicals can effectively degrade organic substances in wastewater into CO2, H2O and inorganic salts, making it a green and environmentally friendly process. This paper reviews the progress in the degradation of dye wastewater, phenolic wastewater, and pharmaceutical wastewater using UV/H2O2 technology, and briefly summarizes the photo-oxidation mechanisms involved in the degradation processes. Finally, we provide a concise overview of the current issues associated with UV/H2O2 technology and future development prospects.展开更多
煤层气在开采过程中会产生大量的废水,对环境造成不可忽视的污染。为实现煤层气开采过程中废水的无害化处理,减少环境污染,针对不同阶段煤层气开采废水的特点,分别提出了不同的优化处理工艺。对于钻井废水,提出采用“Fe/C微电解-H 2 O ...煤层气在开采过程中会产生大量的废水,对环境造成不可忽视的污染。为实现煤层气开采过程中废水的无害化处理,减少环境污染,针对不同阶段煤层气开采废水的特点,分别提出了不同的优化处理工艺。对于钻井废水,提出采用“Fe/C微电解-H 2 O 2耦合工艺”工艺进行处理;对于压裂废水,提出采用“微电解+Fenton氧化法+絮凝”工艺进行处理;对于排采废水,提出采用“混凝沉淀+离子交换+除气+反渗透”工艺进行处理。工艺优化之后,不同种类污染物的去除率均有了明显提升,满足相关排放和用水要求。展开更多
文摘随着工业化进程的加快,工厂排放的各种有机废水会对地下水和地表水资源造成严重污染。有机废水具有来源广、毒性强和难降解等特点,对人类健康、动物生存及自然环境造成了极大威胁。UV/H2O2光化学技术属于高级氧化技术中的一种,其利用光能激发过氧化氢产生强氧化性的羟基自由基,将有机废水中的有毒物质转化为CO2、H2O和无机盐,是一种绿色、环保、低成本的降解工艺。本文综述了UV/H2O2光化学技术对染料废水、酚类废水和药物废水的降解研究进展,总结了降解过程中的光氧化机理。最后对该技术目前存在的问题以及未来发展前景进行了总结和展望。With the acceleration of industrialization, an increasing number of factories are discharging various types of organic wastewater in significant quantities, severely polluting groundwater and surface water resources. Organic wastewater is characterized by its diverse origins, high toxicity, and resistance to biodegradation, posing significant threats to human health, animal life, and the natural environment. The UV/H2O2 photochemical technology is an advanced oxidation technology which utilizes light energy to activate hydrogen peroxide, generating highly reactive hydroxyl radicals. These radicals can effectively degrade organic substances in wastewater into CO2, H2O and inorganic salts, making it a green and environmentally friendly process. This paper reviews the progress in the degradation of dye wastewater, phenolic wastewater, and pharmaceutical wastewater using UV/H2O2 technology, and briefly summarizes the photo-oxidation mechanisms involved in the degradation processes. Finally, we provide a concise overview of the current issues associated with UV/H2O2 technology and future development prospects.
文摘煤层气在开采过程中会产生大量的废水,对环境造成不可忽视的污染。为实现煤层气开采过程中废水的无害化处理,减少环境污染,针对不同阶段煤层气开采废水的特点,分别提出了不同的优化处理工艺。对于钻井废水,提出采用“Fe/C微电解-H 2 O 2耦合工艺”工艺进行处理;对于压裂废水,提出采用“微电解+Fenton氧化法+絮凝”工艺进行处理;对于排采废水,提出采用“混凝沉淀+离子交换+除气+反渗透”工艺进行处理。工艺优化之后,不同种类污染物的去除率均有了明显提升,满足相关排放和用水要求。