Department of Civil and Environmental Engineering , University of California-Davis , Davis , California 95616 , United States.
Atmospheric Science Graduate Group , University of California-Davis , Davis , California 95616 , United States.
Environ Sci Technol. 2018 Nov 20;52(22):13619-13628. doi: 10.1021/acs.est.8b04170. Epub 2018 Nov 9.
Biogas and biomethane (=purified biogas) are major renewable fuels that play a pivotal role in the evolving global energy economy. Here, we measure ultrafine particle (UFP; D (particle diameter) < 100 nm) emissions from the combustion of biomethane and biogas produced from five different representative sources: two food waste digesters, two dairy waste digesters, and one landfill. Combustion exhaust for each of these sources is measured from one or more representative sectors including electricity generation, motor vehicles, and household use. Results show that UFP emissions are similar when using biomethane and natural gas with similar sulfur and siloxane content. Approximately 70% of UFPs emitted from water heaters and cooking stoves were semivolatile, but 30% of the UFPs were nonvolatile and did not evaporate even under extremely high dilution conditions. Photochemical aging of biomethane combustion exhaust and natural gas combustion exhaust produced similar amounts of secondary organic aerosol (SOA) formation. The results of the current study suggest that widespread adoption of biogas and biomethane as a substitute for natural gas will not significantly increase ambient concentrations of primary and secondary UFPs if advanced combustion technology is used and the sulfur and siloxane content is similar for biogas/biomethane and natural gas.
沼气和生物甲烷(=净化沼气)是主要的可再生燃料,在不断发展的全球能源经济中发挥着关键作用。在这里,我们测量了来自五种不同代表性来源的生物甲烷和沼气燃烧产生的超细颗粒(UFP;D(粒径)<100nm)排放:两个食物垃圾消化器,两个奶制品废物消化器和一个垃圾填埋场。对这些来源中的每一个,都从一个或多个代表性部门进行了燃烧废气测量,包括发电、汽车和家庭使用。结果表明,当使用具有相似硫和硅氧烷含量的生物甲烷和天然气时,UFP 排放相似。热水器和炊具排放的 UFP 中约有 70%是半挥发性的,但有 30%的 UFP 是不可挥发性的,即使在极高的稀释条件下也不会蒸发。生物甲烷燃烧废气和天然气燃烧废气的光化学老化产生了相似数量的二次有机气溶胶(SOA)形成。当前研究的结果表明,如果采用先进的燃烧技术,并且沼气/生物甲烷和天然气的硫和硅氧烷含量相似,那么将沼气和生物甲烷广泛用作天然气的替代品,不会显著增加环境中初级和次级 UFP 的浓度。