Evaluation of the effectiveness of technological measures to manage the risk to public health when exposed to atmospheric emissions of multi-fuel combined heat and power plants

Q3 Social Sciences
S. Petrov, Yurii Zhernov
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引用次数: 1

Abstract

AIM: To assess the effectiveness of technological measures to manage the risk to public health of exposure to atmospheric emissions from multi-fuel combined heat and power plants (CHP). METHODS: The study involved modeling the dispersion of emissions from the thermal power plants, calculation of surface concentrations, assessment of carcinogenic and non-carcinogenic risks to public health, and estimating the relative risk of mortality, referrals and hospitalizations based on WHO guidelines on atmospheric air quality. Predictive scenarios were constructed for thermal power plants, including the initial state, modernization with the help of technological and sanitary measures, and changes in the structure of the fuel balance. RESULTS: The use of low-temperature vortex fuel combustion technology in combination with a modernized dust and gas cleaning system significantly (p 0.001) decreased the predicted carcinogenic risk index by an average of 80.67%, non-carcinogenic risk index by 78.84%, and relative mortality risks and referrals to medical organizations by more than 80%. The use of a gas turbine plant increased the production of electric energy by 72.23%, thermal energy by 4.89%, and significantly (p 0.001) reduced the level of carcinogenic risk by 4460%, non-carcinogenic risk by 3547%, and relative risks of mortality, visits to medical organizations and hospitalizations by 3364%. CONCLUSION: The use of the best available technologies to modernize multi-fuel CHP plants significantly reduces the level of risk to public health while it increases the production of electric and thermal energy and maintaining the advantage of using both solid and gaseous fuels.
评价技术措施的有效性,以管理暴露于多燃料热电联产电厂大气排放时对公众健康造成的风险
目的:评价多燃料热电联产电厂(CHP)大气排放对公众健康风险管理的技术措施的有效性。方法:该研究包括模拟火电厂排放物的扩散,计算表面浓度,评估对公众健康的致癌和非致癌风险,并根据世卫组织大气空气质量指南估计死亡、转诊和住院的相对风险。对火电厂的初始状态、技术和卫生措施下的现代化、燃料平衡结构的变化等进行了预测。结果:低温涡旋燃料燃烧技术与现代化粉尘和气体净化系统相结合,可使预测致癌风险指数平均降低80.67%,非致癌风险指数平均降低78.84%,相对死亡风险和转诊率平均降低80%以上(p < 0.001)。燃气轮机电厂的使用使电能产量增加了72.23%,热能产量增加了4.89%,致癌风险水平降低了4460%,非致癌风险水平降低了3547%,死亡率、就诊率和住院率的相对风险降低了334% (p < 0.001)。结论:利用现有的最佳技术对多燃料热电联产电厂进行现代化改造,大大降低了对公众健康的风险水平,同时增加了电能和热能的产量,并保持了使用固体和气体燃料的优势。
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来源期刊
Ekologiya Cheloveka (Human Ecology)
Ekologiya Cheloveka (Human Ecology) Medicine-Medicine (all)
CiteScore
1.00
自引率
0.00%
发文量
62
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