紫外线/臭氧氧化法减少气味排放

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引用次数: 7

摘要

随着人们对空气污染的期望越来越高,对空气污染的监管越来越严格,人们需要尽量减少和方便地处理来自不同排放源的废气。包括废物和废水处理厂在内的各种工厂的排放主要来自有机物的降解。这些排放物是由扩散源以低浓度排放的一系列物质组成的。这些特点使其在经济有效的条件下的处理变得复杂。因此,环境保护和工业工厂的设计和管理需要实施重点过程来控制目标化合物。本研究表明了紫外臭氧实验室规模系统在去除异味和挥发性有机化合物方面的适用性。研究了一种被不同浓度甲苯污染的人工气体流,评估了气味和总挥发性有机化合物(VOCs)的减排效率与功率和接触时间的关系。通过对臭氧残留量的测定,优化了工艺条件。对研究结果进行了讨论,目的是评价所研究的解决方案对环境设施废气进行深度处理的可行性。在实验条件下,去除率高达91%。较低的进口浓度导致高残留臭氧排出过程,因此,它导致进口负荷超过尺寸低于每分钟1.22毫克。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Abatement of odour emissions by UV/Ozone oxidation process
The growing expectations of the population and the increasingly stringent regulations about air pollution have resulted in the need to minimize and conveniently treat the waste gas from different emission sources. The emissions from a large variety of plants, including waste and wastewater treatment plants, result mainly from the degradation of organic matter. These emissions are composed of a complex of substances emitted at low concentrations from diffusive sources. These characteristics make complex their treatment in economically efficient conditions. The design and management of environmental protection and industrial plants, therefore, require the implementation of focused processes for the control of the target compounds. The present study shows the applicability of an UV-Ozone lab-scale system for odours and VOCs removal. An artificial gaseous stream contaminated by toluene, at different incoming concentrations, was treated evaluating the abatement efficiencies in terms of odours and total VOCs as a function of power and contact time. The residue ozone concentrations was determined in order to optimize the set-up conditions. The results were discussed with the aim of evaluating the feasibility of the investigated solution for the advanced treatment of the waste gas from environmental facilities. Removal efficiencies up tp 91% were reached for the investigated conditions. Lower inlet concentrations resulted in high residue ozone outgoing the processes and, thus, it resulted over dimensioned for inlet load lower than 1,22 mg per minute.
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