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Environmental assessment of different solar driven advanced oxidation processes

机译:不同太阳能驱动高级氧化工艺的环境评估

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In this work a comparative environmental assessment of different advanced oxidation processes (AOP's) is performed. Two energy scenarios have been considered according to the energy source used: solar energy and electricity (UVA lamp). A life cycle assessment (LCA) is carried out in order to quantify the environmental impacts of the AOP's. The treatments considered are heterogenous photocatalysis, photo-Fenton reactions, the coupling of heterogeneous photocatalysis and photo-Fenton, and heterogeneous photocatalysis in combination with hydrogen peroxide. These AOP's are applied to the treatment of kraft mill bleaching wastewaters. The system under study includes the production of the catalysts, reagents as well as the production of electricity; eight environmental impact categories are assessed for each AOP: global warming, ozone depletion, aquatic eutrophication, acidification, human toxicity, freshwater aquatic toxicity, photochemical ozone formation, and abiotic resource depletion, the results of the LCA show that the environmental impact of AOP's is caused mainly by the amount of electricity consumed, whereas the impact of producing the reagents and catalysts is comparatively low. For this reason, the solar energy scenario reduces the impact more than 90% for almost all AOP's and impact categories. None of the solar driven AOP's can be identified as the best in all impact categories, but heterogenous photocatalysis and photo-Fenton reactions obtain better results than the remaining treatments, since these treatments do not consume simultaneously both TiO_2 and H_2O_2, the chemicals with highest environmental burdens in the system.
机译:在这项工作中,对不同的高级氧化工艺(AOP)进行了比较环境评估。根据所使用的能源,已经考虑了两种能源方案:太阳能和电力(UVA灯)。为了量化AOP的环境影响,进行了生命周期评估(LCA)。所考虑的处理是多相光催化,光-Fenton反应,多相光催化与光-Fenton的偶联以及与过氧化氢结合的多相光催化。这些AOP用于牛皮纸厂漂白废水的处理。所研究的系统包括催化剂,试剂的生产以及电力的生产;每个AOP评估了八个环境影响类别:全球变暖,臭氧消耗,水体富营养化,酸化,人类毒性,淡水水生毒性,光化学臭氧形成和非生物资源消耗,LCA的结果表明AOP的环境影响为造成这种现象的主要原因是电量消耗,而生产试剂和催化剂的影响相对较小。因此,对于几乎所有AOP和影响类别,太阳能方案都可以将影响降低90%以上。在所有冲击类别中,没有一种太阳能驱动的AOP可以被认为是最好的,但是异质光催化和光芬顿反应比其余处理获得更好的结果,因为这些处理不会同时消耗环境最高化学物质TiO_2和H_2O_2系统的负担。

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