Matches in SemOpenAlex for { <https://semopenalex.org/work/W3136892251> ?p ?o ?g. }
Showing items 1 to 79 of
79
with 100 items per page.
- W3136892251 endingPage "1687" @default.
- W3136892251 startingPage "1679" @default.
- W3136892251 abstract "Few of the current methods of improving air quality, including end-pipe treatment, industrial, energy and transportation structure adjustments, are from the viewpoint of the spatial pattern optimization of pollutant emissions. Therefore, based on factors such as natural environment, human health, pollutant transmission capability, and meteorological diffusion conditions, our research group used the threshold approach, natural breaks, spatial erasure, and other methods to define the layout area suitable for atmospheric pollution sources. Based on these results, the emissions pattern was optimized to achieve air quality improvement. Taking Guangdong Province as an example, we examined the application of the emissions pattern optimization of air quality improvement and atmospheric environment zoning. The results indicate that the first class area of environmental air quality accounts for 9% of total province area, the densely populated area accounts for 3%, the sensitive area of the national air quality monitor stations accounts for 15%, the pollutant accumulation area accounts for 22%, and the layout area suitable for atmospheric pollution sources primarily distributed in the west part of the province accounts for 60%. By shifting the non-thermal power industrial sources into those area, the concentration level of PM2.5 will decrease by 4% at the provincial scale and 10% at the city scale. Emissions pattern optimization has become an innovative aided support technology for the continuous improvement of air quality. In practical applications, it can be combined with energy and industrial structure adjustments, pollution control technology enhancements, and cross-regional prevention and control to formulate the most feasible air quality improvement plan." @default.
- W3136892251 created "2021-03-29" @default.
- W3136892251 creator A5001552044 @default.
- W3136892251 creator A5002619101 @default.
- W3136892251 creator A5002695961 @default.
- W3136892251 creator A5037149679 @default.
- W3136892251 creator A5070538018 @default.
- W3136892251 creator A5078398017 @default.
- W3136892251 date "2021-04-01" @default.
- W3136892251 modified "2023-09-22" @default.
- W3136892251 title "Optimization Method and Case Study of Air Pollution Emission Spatial Pattern" @default.
- W3136892251 doi "https://doi.org/10.13227/j.hjkx.202007250" @default.
- W3136892251 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/33742803" @default.
- W3136892251 hasPublicationYear "2021" @default.
- W3136892251 type Work @default.
- W3136892251 sameAs 3136892251 @default.
- W3136892251 citedByCount "0" @default.
- W3136892251 crossrefType "journal-article" @default.
- W3136892251 hasAuthorship W3136892251A5001552044 @default.
- W3136892251 hasAuthorship W3136892251A5002619101 @default.
- W3136892251 hasAuthorship W3136892251A5002695961 @default.
- W3136892251 hasAuthorship W3136892251A5037149679 @default.
- W3136892251 hasAuthorship W3136892251A5070538018 @default.
- W3136892251 hasAuthorship W3136892251A5078398017 @default.
- W3136892251 hasConcept C126314574 @default.
- W3136892251 hasConcept C153294291 @default.
- W3136892251 hasConcept C178790620 @default.
- W3136892251 hasConcept C185592680 @default.
- W3136892251 hasConcept C18903297 @default.
- W3136892251 hasConcept C205649164 @default.
- W3136892251 hasConcept C39432304 @default.
- W3136892251 hasConcept C521259446 @default.
- W3136892251 hasConcept C559116025 @default.
- W3136892251 hasConcept C82685317 @default.
- W3136892251 hasConcept C86803240 @default.
- W3136892251 hasConcept C87717796 @default.
- W3136892251 hasConceptScore W3136892251C126314574 @default.
- W3136892251 hasConceptScore W3136892251C153294291 @default.
- W3136892251 hasConceptScore W3136892251C178790620 @default.
- W3136892251 hasConceptScore W3136892251C185592680 @default.
- W3136892251 hasConceptScore W3136892251C18903297 @default.
- W3136892251 hasConceptScore W3136892251C205649164 @default.
- W3136892251 hasConceptScore W3136892251C39432304 @default.
- W3136892251 hasConceptScore W3136892251C521259446 @default.
- W3136892251 hasConceptScore W3136892251C559116025 @default.
- W3136892251 hasConceptScore W3136892251C82685317 @default.
- W3136892251 hasConceptScore W3136892251C86803240 @default.
- W3136892251 hasConceptScore W3136892251C87717796 @default.
- W3136892251 hasIssue "4" @default.
- W3136892251 hasLocation W31368922511 @default.
- W3136892251 hasOpenAccess W3136892251 @default.
- W3136892251 hasPrimaryLocation W31368922511 @default.
- W3136892251 hasRelatedWork W1556059992 @default.
- W3136892251 hasRelatedWork W1751138436 @default.
- W3136892251 hasRelatedWork W1998231310 @default.
- W3136892251 hasRelatedWork W2018962345 @default.
- W3136892251 hasRelatedWork W2074521460 @default.
- W3136892251 hasRelatedWork W2171543093 @default.
- W3136892251 hasRelatedWork W2357816600 @default.
- W3136892251 hasRelatedWork W2372954852 @default.
- W3136892251 hasRelatedWork W2498543391 @default.
- W3136892251 hasRelatedWork W2807810544 @default.
- W3136892251 hasRelatedWork W2948120707 @default.
- W3136892251 hasRelatedWork W2960215097 @default.
- W3136892251 hasRelatedWork W2994362717 @default.
- W3136892251 hasRelatedWork W3123394452 @default.
- W3136892251 hasRelatedWork W3135887628 @default.
- W3136892251 hasRelatedWork W3195297102 @default.
- W3136892251 hasRelatedWork W3201679558 @default.
- W3136892251 hasRelatedWork W562805730 @default.
- W3136892251 hasRelatedWork W621218553 @default.
- W3136892251 hasRelatedWork W854382362 @default.
- W3136892251 hasVolume "42" @default.
- W3136892251 isParatext "false" @default.
- W3136892251 isRetracted "false" @default.
- W3136892251 magId "3136892251" @default.
- W3136892251 workType "article" @default.