Matches in SemOpenAlex for { <https://semopenalex.org/work/W2021008152> ?p ?o ?g. }
- W2021008152 endingPage "2379" @default.
- W2021008152 startingPage "2371" @default.
- W2021008152 abstract "Atmospheric PM2.5 (particulate matter with aerodynamic diameter of ≤ 2.5 μm), collected from a source region [Patiala: 30.2 °N; 76.3 °E; 250 m above mean sea level] of emissions from post-harvest agricultural-waste (paddy-residue) burning in the Indo-Gangetic Plain (IGP), North India, has been studied for its chemical composition and impact on regional atmospheric radiative forcing. On average, organic aerosol mass accounts for 63% of PM2.5, whereas the contribution of elemental carbon (EC) is ∼3.5%. Sulphate, nitrate and ammonium contribute up to ∼85% of the total water-soluble inorganic species (WSIS), which constitutes ∼23% of PM2.5. The potassium-to-organic carbon ratio from paddy-residue burning emissions (KBB+/OC: 0.05 ± 0.01) is quite similar to that reported from Amazonian and Savanna forest-fires; whereas non-sea-salt-sulphate-to-OC ratio (nss-SO42−/OC: 0.21) and nss-SO42−/EC ratio of 2.6 are significantly higher (by factor of 5 to 8). The mass absorption efficiency of EC (3.8 ± 1.3 m2 g−1) shows significant decrease with a parallel increase in the concentrations of organic aerosols and scattering species (sulphate and nitrate). A cross plot of OC/EC and nss-SO42−/EC ratios show distinct differences for post-harvest burning emissions from paddy-residue as compared to those from fossil-fuel combustion sources in south-east Asia." @default.
- W2021008152 created "2016-06-24" @default.
- W2021008152 creator A5058149306 @default.
- W2021008152 creator A5080185384 @default.
- W2021008152 creator A5087202414 @default.
- W2021008152 creator A5091557249 @default.
- W2021008152 date "2014-07-22" @default.
- W2021008152 modified "2023-10-03" @default.
- W2021008152 title "Organic aerosols and inorganic species from post-harvest agricultural-waste burning emissions over northern India: impact on mass absorption efficiency of elemental carbon" @default.
- W2021008152 cites W1560749659 @default.
- W2021008152 cites W1907369419 @default.
- W2021008152 cites W1968147920 @default.
- W2021008152 cites W1969298331 @default.
- W2021008152 cites W1971563001 @default.
- W2021008152 cites W1979645313 @default.
- W2021008152 cites W1980038151 @default.
- W2021008152 cites W1991156522 @default.
- W2021008152 cites W2003268725 @default.
- W2021008152 cites W2009685369 @default.
- W2021008152 cites W2010061723 @default.
- W2021008152 cites W2012796397 @default.
- W2021008152 cites W2018198926 @default.
- W2021008152 cites W2018680235 @default.
- W2021008152 cites W2020247054 @default.
- W2021008152 cites W2028018078 @default.
- W2021008152 cites W2030875415 @default.
- W2021008152 cites W2036341295 @default.
- W2021008152 cites W2039294701 @default.
- W2021008152 cites W2045854933 @default.
- W2021008152 cites W2048115295 @default.
- W2021008152 cites W2059582690 @default.
- W2021008152 cites W2065623307 @default.
- W2021008152 cites W2069189332 @default.
- W2021008152 cites W2071303659 @default.
- W2021008152 cites W2074912117 @default.
- W2021008152 cites W2075489374 @default.
- W2021008152 cites W2077426193 @default.
- W2021008152 cites W2087930482 @default.
- W2021008152 cites W2088292684 @default.
- W2021008152 cites W2089999855 @default.
- W2021008152 cites W2090646981 @default.
- W2021008152 cites W2100650102 @default.
- W2021008152 cites W2101584854 @default.
- W2021008152 cites W2104417831 @default.
- W2021008152 cites W2105970977 @default.
- W2021008152 cites W2111813284 @default.
- W2021008152 cites W2114456343 @default.
- W2021008152 cites W2114826007 @default.
- W2021008152 cites W2116543570 @default.
- W2021008152 cites W2118835402 @default.
- W2021008152 cites W2119903004 @default.
- W2021008152 cites W2138106329 @default.
- W2021008152 cites W2145945007 @default.
- W2021008152 cites W2150017363 @default.
- W2021008152 cites W2151423275 @default.
- W2021008152 cites W2162214076 @default.
- W2021008152 cites W2165237869 @default.
- W2021008152 cites W2170783614 @default.
- W2021008152 cites W2171415361 @default.
- W2021008152 cites W2171949428 @default.
- W2021008152 cites W2180632338 @default.
- W2021008152 cites W2323142819 @default.
- W2021008152 cites W4245989811 @default.
- W2021008152 doi "https://doi.org/10.1039/c4em00307a" @default.
- W2021008152 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25124269" @default.
- W2021008152 hasPublicationYear "2014" @default.
- W2021008152 type Work @default.
- W2021008152 sameAs 2021008152 @default.
- W2021008152 citedByCount "39" @default.
- W2021008152 countsByYear W20210081522016 @default.
- W2021008152 countsByYear W20210081522017 @default.
- W2021008152 countsByYear W20210081522018 @default.
- W2021008152 countsByYear W20210081522019 @default.
- W2021008152 countsByYear W20210081522020 @default.
- W2021008152 countsByYear W20210081522021 @default.
- W2021008152 countsByYear W20210081522022 @default.
- W2021008152 countsByYear W20210081522023 @default.
- W2021008152 crossrefType "journal-article" @default.
- W2021008152 hasAuthorship W2021008152A5058149306 @default.
- W2021008152 hasAuthorship W2021008152A5080185384 @default.
- W2021008152 hasAuthorship W2021008152A5087202414 @default.
- W2021008152 hasAuthorship W2021008152A5091557249 @default.
- W2021008152 hasConcept C105923489 @default.
- W2021008152 hasConcept C107872376 @default.
- W2021008152 hasConcept C118518473 @default.
- W2021008152 hasConcept C158787203 @default.
- W2021008152 hasConcept C178790620 @default.
- W2021008152 hasConcept C183889291 @default.
- W2021008152 hasConcept C185592680 @default.
- W2021008152 hasConcept C18903297 @default.
- W2021008152 hasConcept C24245907 @default.
- W2021008152 hasConcept C2776384668 @default.
- W2021008152 hasConcept C2778804858 @default.
- W2021008152 hasConcept C2779345167 @default.
- W2021008152 hasConcept C39432304 @default.
- W2021008152 hasConcept C48743137 @default.
- W2021008152 hasConcept C86803240 @default.
- W2021008152 hasConceptScore W2021008152C105923489 @default.