Matches in SemOpenAlex for { <https://semopenalex.org/work/W2853636252> ?p ?o ?g. }
- W2853636252 endingPage "9" @default.
- W2853636252 startingPage "1" @default.
- W2853636252 abstract "Abstract Human activities have greatly increased the emission of reactive nitrogen (N) to the atmosphere, leading to large increases in N deposition in sensitive ecosystems. However, few have measured both the wet and dry deposition of individual N species in southeast China and their impact on surface water quality. We investigated wet and dry deposition of N, including gaseous NH3, NO2 and HNO3, and particulate NH4+-N and NO3−-N in both the atmosphere and precipitation during a two-year period at three sites in the Taihu Lake region in southeast China. The total N deposition in this region was 64.8 kg N ha−1 yr−1 (range: 59.1–70.5 kg N ha−1 yr−1). On an annual basis, the ratio of reduced to oxidized N deposition was 1.7, suggesting that the reduced form of N dominates N deposition. Of the annual N deposition, 45.5% was deposited via precipitation, with the remaining via dry deposition. The total gaseous and particulate N deposition was 24.9 and 10.4 kg N ha−1 yr−1, respectively. The high N loading in this region has resulted in the reduction of water quality in Taihu Lake. Atmospheric N deposition accounted for 33.3 and 27.5% of the total N loading in Taihu Lake and in water bodies in the region, respectively. We conclude that dry deposition of N is one of the most important sources of surface water pollution and should be taken into account when developing strategies for mitigating water pollution." @default.
- W2853636252 created "2018-07-19" @default.
- W2853636252 creator A5000187055 @default.
- W2853636252 creator A5027172198 @default.
- W2853636252 creator A5059825075 @default.
- W2853636252 creator A5072526063 @default.
- W2853636252 creator A5086611360 @default.
- W2853636252 creator A5088116210 @default.
- W2853636252 date "2018-10-01" @default.
- W2853636252 modified "2023-10-01" @default.
- W2853636252 title "Dry deposition of N has a major impact on surface water quality in the Taihu Lake region in southeast China" @default.
- W2853636252 cites W1588537812 @default.
- W2853636252 cites W1699609949 @default.
- W2853636252 cites W1965618217 @default.
- W2853636252 cites W1978186098 @default.
- W2853636252 cites W1978347263 @default.
- W2853636252 cites W1981314783 @default.
- W2853636252 cites W1991621279 @default.
- W2853636252 cites W1992893664 @default.
- W2853636252 cites W1997476414 @default.
- W2853636252 cites W1998454837 @default.
- W2853636252 cites W2005529191 @default.
- W2853636252 cites W2012375906 @default.
- W2853636252 cites W2024475216 @default.
- W2853636252 cites W2034313811 @default.
- W2853636252 cites W2036538049 @default.
- W2853636252 cites W2047207887 @default.
- W2853636252 cites W2050623208 @default.
- W2853636252 cites W2061552162 @default.
- W2853636252 cites W2071119330 @default.
- W2853636252 cites W2074958439 @default.
- W2853636252 cites W2080482178 @default.
- W2853636252 cites W2082420776 @default.
- W2853636252 cites W2084157484 @default.
- W2853636252 cites W2091007910 @default.
- W2853636252 cites W2092093985 @default.
- W2853636252 cites W2098076869 @default.
- W2853636252 cites W2100236613 @default.
- W2853636252 cites W2102096221 @default.
- W2853636252 cites W2111345880 @default.
- W2853636252 cites W2118885226 @default.
- W2853636252 cites W2124163338 @default.
- W2853636252 cites W2138124994 @default.
- W2853636252 cites W2146323422 @default.
- W2853636252 cites W2151169768 @default.
- W2853636252 cites W2151941143 @default.
- W2853636252 cites W2153104603 @default.
- W2853636252 cites W2155725298 @default.
- W2853636252 cites W2162388514 @default.
- W2853636252 cites W2166841284 @default.
- W2853636252 cites W2167470590 @default.
- W2853636252 cites W2169516520 @default.
- W2853636252 cites W2169794216 @default.
- W2853636252 cites W2193270899 @default.
- W2853636252 cites W2238219718 @default.
- W2853636252 cites W2322466800 @default.
- W2853636252 cites W2380865741 @default.
- W2853636252 cites W2475448380 @default.
- W2853636252 cites W2547395262 @default.
- W2853636252 cites W2568503585 @default.
- W2853636252 cites W2568545972 @default.
- W2853636252 cites W2591674106 @default.
- W2853636252 cites W2599059974 @default.
- W2853636252 cites W2761196889 @default.
- W2853636252 doi "https://doi.org/10.1016/j.atmosenv.2018.07.017" @default.
- W2853636252 hasPublicationYear "2018" @default.
- W2853636252 type Work @default.
- W2853636252 sameAs 2853636252 @default.
- W2853636252 citedByCount "31" @default.
- W2853636252 countsByYear W28536362522019 @default.
- W2853636252 countsByYear W28536362522020 @default.
- W2853636252 countsByYear W28536362522021 @default.
- W2853636252 countsByYear W28536362522022 @default.
- W2853636252 countsByYear W28536362522023 @default.
- W2853636252 crossrefType "journal-article" @default.
- W2853636252 hasAuthorship W2853636252A5000187055 @default.
- W2853636252 hasAuthorship W2853636252A5027172198 @default.
- W2853636252 hasAuthorship W2853636252A5059825075 @default.
- W2853636252 hasAuthorship W2853636252A5072526063 @default.
- W2853636252 hasAuthorship W2853636252A5086611360 @default.
- W2853636252 hasAuthorship W2853636252A5088116210 @default.
- W2853636252 hasConcept C100970517 @default.
- W2853636252 hasConcept C114793014 @default.
- W2853636252 hasConcept C126314574 @default.
- W2853636252 hasConcept C127313418 @default.
- W2853636252 hasConcept C153294291 @default.
- W2853636252 hasConcept C166957645 @default.
- W2853636252 hasConcept C187320778 @default.
- W2853636252 hasConcept C18903297 @default.
- W2853636252 hasConcept C191935318 @default.
- W2853636252 hasConcept C205649164 @default.
- W2853636252 hasConcept C2780797713 @default.
- W2853636252 hasConcept C2816523 @default.
- W2853636252 hasConcept C39432304 @default.
- W2853636252 hasConcept C524765639 @default.
- W2853636252 hasConcept C526734887 @default.
- W2853636252 hasConcept C64297162 @default.
- W2853636252 hasConcept C76886044 @default.