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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A comparison of novel ozone-based systems and photocatalysis for the removal of water pollutants
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A comparison of novel ozone-based systems and photocatalysis for the removal of water pollutants

机译:新型臭氧基系统和光催化去除水污染物的比较

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Three ozone-based systems and a photocatalytic system have been compared for the removal of a reactive dyestuff,orange RO16,and 2-chlorophenol in relation to degradation performances and ozone and energy consumptions.These systems were (1) liquid/gas-ozone (LGO): ozone was applied as it is produced in the gas phase;liquid/solid-ozone (LSO): ozone was adsorbed on particulate silica-based material and then applied to water;liquid/liquid-ozone (LLO): ozone was dissolved in a water-immiscible solvent and then applied to water; and photocatalytic system using titanium dioxide catalyst (PHC).All four systems were capable of degrading the pollutants but presented different characteristics.The LSO system offered the possibility of using long contact times for slow ozone reactions and the LLO system is most suitable for fast ozone reactions.Both systems offer the prospect of more efficient use of ozone by extracting specific pollutants away from the water phase to the solid or the solvent phases.The PHC system presented the lowest rates and the highest energy consumptions by a factor of up to 400 times as compared to the ozone-based systems.The four systems were classified on the basis of their energy consumption as follows: for the degradation of RO16 (LLO
机译:比较了三种基于臭氧的系统和光催化系统在降解性能,臭氧和能耗方面的去除活性染料,橙色RO16和2-氯苯酚的能力。这些系统为(1)液/气-臭氧( LGO):臭氧是在气相中产生的;液态/固态臭氧(LSO):臭氧吸附在颗粒状二氧化硅基材料上,然后应用于水;液态/液态臭氧(LLO):臭氧是溶于与水不混溶的溶剂中,然后加到水中;四个系统都能降解污染物,但表现出不同的特性.LSO系统提供了较长的接触时间用于慢速臭氧反应的可能性,LLO系统最适合快速臭氧通过从水相转移到固相或溶剂相中提取特定的污染物,这两种系统都提供了更有效利用臭氧的前景.PHC系统显示出最低的速率和最高的能源消耗高达400倍与基于臭氧的系统相比,这四个系统的能耗分类如下:RO16的降解(LLO

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