Performance evaluation of circulating fluidized bed incineration of municipal solid waste by multivariate outlier detection in China

被引:0
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作者
Hua Tao
Pinjing He
Yi Zhang
Wenjie Sun
机构
[1] Southern Methodist University,Department of Civil and Environmental Engineering
[2] China Association of Urban Environmental Sanitation,College of Environmental Science and Engineering
[3] Tongji University,undefined
[4] Shanghai Institute for Design & Research on Environmental Engineering,undefined
关键词
Municipal solid waste; Incineration; Circulating fluidized bed; Load change; Multivariate outlier detection;
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中图分类号
学科分类号
摘要
This first nationwide survey was conducted to evaluate the overall performance of the circulating fluidized bed (CFB) incineration of municipal solid waste (MSW) in 2014-2015 in China. Total 23 CFB incineration power plants were evaluated. The data for monthly average flue gas emission of particles, CO, NOx, SO2 and HCl were collected over 12 consecutive months. The data were analyzed to assess the overall performance of CFB incineration by applying the Mahalanobis distance as a multivariate outlier detection method. Although the flue gas emission parameters had met the Chinese national emission standards, there were 11 total outliers (abnormal behavior) detected in 6 out of 23 CFB incineration power plants from the perspective of the MSWincineration performance. The results demonstrate that it is more important for a better performance of CFBs to reduce the frequencies of the MSW load changes, rather than the magnitudes of the MSW load changes, particularly reducing the frequencies in the range of 10% and more of the load changes, under the same and stable conditions. Furthermore, the overloading occurs more often than the underloading during the operation of the CFB incineration power plants in China. The frequent overloading is 0% to 30% of the designed capacity. To achieve the stable performance of CFBs in practice, an appropriately designed MSW storage capacity is suggested to build in a plant to buffer and reduce the frequency of the load changes.
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