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DOI10.2478/rtuect-2019-0010
Particulate matter emission decrease possibility from household sector using flue gas condenser - Fog unit. Analysis and interpretation of results
Priedniece V.; Kalnins E.; Kirsanovs V.; Pedisius N.; Veidenbergs I.; Blumberga D.
发表日期2019
ISSN22558837
起始页码135
结束页码151
卷号23期号:1
英文摘要Particulate matter (PM) is a significant pollution problem on the global scale. There are different ways to measure PM from stationary sources. The most used types of PM collection methods include different filters. These include cellulose, glass, mixed and membrane filters. In this study PM samples were measured in the flue gas condenser - fog unit system before and after the unit according to ISO 9096 standard using isokinetic and gravimetric method. PM concentrations after fog unit were measured at different water flows and nozzle types. Impact factors, that effect PM concentrations before and after the fog unit are listed and studied in detail. Achieved results show that the fog unit can be one potential technology for particle matter emission decrease from the household sector. © 2019 Vivita Priedniece et al., published by Sciendo 2019.
关键词concentration (composition)emissionfilterfoggravimetryparticulate mattersource identification
语种英语
来源机构Environmental and Climate Technologies
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/132585
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GB/T 7714
Priedniece V.,Kalnins E.,Kirsanovs V.,et al. Particulate matter emission decrease possibility from household sector using flue gas condenser - Fog unit. Analysis and interpretation of results[J]. Environmental and Climate Technologies,2019,23(1).
APA Priedniece V.,Kalnins E.,Kirsanovs V.,Pedisius N.,Veidenbergs I.,&Blumberga D..(2019).Particulate matter emission decrease possibility from household sector using flue gas condenser - Fog unit. Analysis and interpretation of results.,23(1).
MLA Priedniece V.,et al."Particulate matter emission decrease possibility from household sector using flue gas condenser - Fog unit. Analysis and interpretation of results".23.1(2019).
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