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Indoor air quality in waste treatment: environmental issue and biotechnology application for air pollution containment, a case study

机译:废物处理中的室内空气质量:环境问题和生物技术在空气污染控制中的应用,案例研究

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A proper integrated management of municipal waste analyzes the entire life cycle of waste, from cradle to grave, i.e. the final stage of disposal or recycling, through which waste come back as a resource, as required by Waste European Directive. In this perspective, every possible impact factor should be taken into account and, therefore, air quality and odor control have to be addressed as crucial elements for sustainable waste management, as directly affecting quality of life of both workers and people living in the surroundings of waste treatment facilities. While the issue is generally regarded as a major concern in presence of incinerators (for air pollution control) and landfill (for odor, mainly), it is usually neglected when segregated dry waste treatment is involved, but it remains an element of concern for population and, therefore, public stakeholders. A modern segregated waste treatment plant, already compliant with regulations requirements regarding indoor air quality and human health, was taken as a case study to prove the effectiveness of a biotechnological treatment for air pollution and odor control. The system applied is based on stand-alone bio-oxidizers that provide internal air-mixing within the facility and capture particulates and gases by attracting them to a clean air zone generated by its action. In this paper, only the preliminary phase of application for the system is presented. It was preceded by a completion of analysis of air quality baseline, collected by a Wireless Sensor Network, which have been compared to the following five months of system activity, showing a consistent effectiveness in air pollutant containment and abatement. These results found confirmation in parallel independent laboratory analysis which showed comparable abatement trends. A comparison with a traditional biofiltration case study marked the great opportunity offered by the bioreactors' system implemented in an overall indoor air quality perspective.
机译:适当的城市废物综合管理可以分析废物从摇篮到坟墓的整个生命周期,即处置或循环利用的最后阶段,按照废物欧洲指令的要求,废物通过废物或资源循环再利用为资源。从这一角度出发,应考虑到所有可能的影响因素,因此,必须将空气质量和气味控制作为可持续废物管理的关键要素,因为这直接影响着工人和周围环境的人们的生活质量。废物处理设施。尽管在焚化炉(用于控制空气污染)和垃圾填埋场(主要用于气味)中,这个问题通常被认为是一个主要问题,但是当涉及到分开的干废物处理时,通常忽略不计,但是这仍然是人口关注的一个因素因此,公共利益相关者。以已经符合有关室内空气质量和人体健康法规要求的现代化隔离废物处理厂为例,以证明生物技术处理对空气污染和气味控制的有效性。所应用的系统基于独立的生物氧化剂,该氧化剂可在设施内提供内部空气混合,并通过将微粒和气体吸引到由其作用产生的清洁空气区域来捕获它们。在本文中,仅介绍了该系统的初步应用。在此之前,完成了对无线传感器网络收集的空气质量基线的分析,并将其与接下来五个月的系统活动进行了比较,显示出在抑制和消除空气污染物方面具有一致的有效性。这些结果在平行的独立实验室分析中得到了证实,该分析显示了相似的减排趋势。与传统生物滤池案例研究的比较表明,从整体室内空气质量角度来看,生物反应器系统提供了巨大的机会。

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