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A Pilot-Scale Reactor for the Study of Gas Emissions from Composting

机译:用于堆肥气体排放研究的中试反应堆

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Composting is generally accepted as an environmentally benign process for organic waste disposal. However, when not properly managed, composting can result in the emission of toxic and environmentally hazardous gases. Due to the potential negative consequences of composting, there is a need to gain a better understanding of the physical conditions that affect these volatile emissions in order to better control them. The objective of this project was to construct a pilot-scale compost reactor as a platform to study the potential impact of temperature, 0_2 concentration, airflow rate, and moisture content on the composting process. The pilot-scale reactor was able to control the temperature and O_2 concentration inside the compost using an automated control algorithm. FTIR spectroscopy was used to continually measure the concentrations of CO_2 and CH_4 under time-varying temperature and O_2 concentration conditions. This functionality will form the basis of future work to correlate physical process parameters with the volatile emissions from the compost process.
机译:堆肥被普遍认为是处理有机废物的环保方法。但是,如果管理不当,堆肥会排放有毒和对环境有害的气体。由于堆肥的潜在负面影响,需要更好地了解影响这些挥发性排放物的物理条件,以便更好地控制它们。该项目的目的是建造一个中试规模的堆肥反应器,作为研究温度,0_2浓度,气流速率和水分含量对堆肥过程的潜在影响的平台。中试规模的反应器能够使用自动控制算法控制堆肥内部的温度和O_2浓度。 FTIR光谱用于在时变温度和O_2浓度条件下连续测量CO_2和CH_4的浓度。该功能将成为未来工作的基础,以将物理过程参数与堆肥过程中的挥发性排放物相关联。

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