Item talk:Q239667
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{
"USGS Publications Warehouse": { "@context": "https://schema.org", "@type": "Article", "additionalType": "Journal Article", "name": "The response of soil and stream chemistry to decreases in acid deposition in the Catskill Mountains, New York, USA", "identifier": [ { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse IndexID", "value": "70193347", "url": "https://pubs.usgs.gov/publication/70193347" }, { "@type": "PropertyValue", "propertyID": "USGS Publications Warehouse Internal ID", "value": 70193347 }, { "@type": "PropertyValue", "propertyID": "DOI", "value": "10.1016/j.envpol.2017.06.001", "url": "https://doi.org/10.1016/j.envpol.2017.06.001" } ], "journal": { "@type": "Periodical", "name": "Environmental Pollution", "volumeNumber": "229", "issueNumber": null }, "inLanguage": "en", "isPartOf": [ { "@type": "CreativeWorkSeries", "name": "Environmental Pollution" } ], "datePublished": "2017", "dateModified": "2017-11-01", "abstract": "The Catskill Mountains have been adversely impacted by decades of acid deposition, however, since the early 1990s, levels have decreased sharply as a result of decreases in emissions of sulfur dioxide and nitrogen oxides. This study examines trends in acid deposition, stream-water chemistry, and soil chemistry in the southeastern Catskill Mountains. We measured significant reductions in acid deposition and improvement in stream-water quality in 5 streams included in this study from 1992 to 2014. The largest, most significant trends were for sulfate (SO42\u2212) concentrations (mean trend of\u00a0\u22122.5 \u03bceq L\u22121\u00a0yr\u22121); hydrogen ion (H+) and inorganic monomeric aluminum (Alim) also decreased significantly (mean trends of\u00a0\u22120.3 \u03bceq L\u22121\u00a0yr\u22121\u00a0for H+\u00a0and\u00a0\u22120.1 \u03bceq L\u22121\u00a0yr\u22121\u00a0for Alim\u00a0for the 3 most acidic sites). Acid neutralizing capacity (ANC) increased by a mean of 0.65 \u03bceq L\u22121\u00a0yr\u22121\u00a0for all 5 sites, which was 4 fold less than the decrease in SO42\u2212concentrations. These upward trends in ANC were limited by coincident decreases in base cations (\u22121.3 \u03bceq L\u22121\u00a0yr\u22121\u00a0for calcium\u00a0+\u00a0magnesium). No significant trends were detected in stream-water nitrate (NO3\u2212) concentrations despite significant decreasing trends in NO3\u2212\u00a0wet deposition. We measured no recovery in soil chemistry which we attributed to an initially low soil buffering capacity that has been further depleted by decades of acid deposition. Tightly coupled decreasing trends in stream-water silicon (Si) (\u22120.2 \u03bceq L\u22121\u00a0yr\u22121) and base cations suggest a decrease in the soil mineral weathering rate. We hypothesize that a decrease in the ionic strength of soil water and shallow groundwater may be the principal driver of this apparent decrease in the weathering rate. 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"Organization", "name": "New York Water Science Center", "url": "https://www.usgs.gov/centers/new-york-water-science-center" } ] }, { "@type": "Person", "name": "Burns, Douglas A. daburns@usgs.gov", "givenName": "Douglas A.", "familyName": "Burns", "email": "daburns@usgs.gov", "identifier": { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0001-6516-2869", "url": "https://orcid.org/0000-0001-6516-2869" }, "affiliation": [ { "@type": "Organization", "name": "New York Water Science Center", "url": "https://www.usgs.gov/centers/new-york-water-science-center" } ] }, { "@type": "Person", "name": "Antidormi, Michael R. mantidormi@usgs.gov", "givenName": "Michael R.", "familyName": "Antidormi", "email": "mantidormi@usgs.gov", "identifier": { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0002-3967-1173", "url": "https://orcid.org/0000-0002-3967-1173" }, "affiliation": [ { "@type": "Organization", "name": "New York Water Science Center", "url": 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