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Life cycle assessment of advanced oxidation processes for olive mill wastewater treatment

机译:橄榄油废水处理高级氧化工艺的生命周期评估

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摘要

The efficient management of biorecalcitrant agro-industrial effluents, such as olive mill wastewater (OMW), is a matter of concern along all Mediterranean countries. However, the applicability of any treatment technique is strongly related, apart from its mineralization and detoxification efficiency, to its joint environmental impacts. In this work, the life cycle assessment methodology was utilized to estimate the environmental footprint of three advanced oxidation processes (AOPs), namely UV heterogenous photocatalysis (UV/TiO ), wet air oxidation (WAO) and electrochemical oxidation (EO) over boron-doped diamond electrodes, for OMW treatment. It was observed that both EO and WAO can be competitive processes in terms of COD, TPh and color removal. EO was found to be a more environmentally friendly technique as it yields lower total environmental impacts, including CO emissions to atmosphere. The environmental impacts of all three AOPs show that human health is primarily affected followed by impacts onto resources depletion. All in all, it was found that the environmental sustainability of AOPs is strongly related to their energy requirements and that their total environmental impacts decline according to the following order: UV/TiO > WAO > EO.
机译:整个地中海国家都对有效处理难降解的农业工业废水(例如橄榄磨坊废水(OMW))进行了管理。但是,除矿化和排毒效率外,任何处理技术的适用性都与其共同的环境影响密切相关。在这项工作中,使用生命周期评估方法来估算三种高级氧化过程(AOP)的环境足迹,即UV-异质光催化(UV / TiO),湿空气氧化(WAO)和硼上的电化学氧化(EO)。掺杂的金刚石电极,用于OMW处理。据观察,就COD,TPh和脱色而言,EO和WAO都是竞争性过程。人们发现,环氧乙烷是一种更环保的技术,因为它产生的总环境影响较小,包括向大气排放的二氧化碳。所有这三个《行动计划》对环境的影响表明,人类健康受到的影响最大,其次是对资源消耗的影响。总而言之,发现AOP的环境可持续性与它们的能源需求密切相关,并且它们的总环境影响按照以下顺序下降:UV / TiO> WAO> EO。

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