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Record #197891:

Impact of wildfire on stream nutrient chemistry and ecosystem metabolism in boreal forest catchments of interior Alaska / Emma F. Betts, Jeremy B. Jones, Jr.

Title: Impact of wildfire on stream nutrient chemistry and ecosystem metabolism in boreal forest catchments of interior Alaska / Emma F. Betts, Jeremy B. Jones, Jr.
Author(s): Betts, Emma F.
Jones, Jeremy B.,
Date: 2009.
In: Arctic, Antarctic, and Alpine Research. (2009.), Vol. 41(4) (2009)
Abstract: Investigates impact of wildfire on stream chemistry by examining solute chemistry in four boreal forest catchments from 2002-2007. Measures ecosystem metabolism during summer 2005 in one burned and two unburned catchments. Finds that wildfire is associated with threefold increase in stream nitrate concentration, whereas dissolved organic carbon and dissolved organic nitrogen decrease following fire.
Notes:

Arctic, Antarctic, and Alpine Research. Vol. 41(4) :407-417 (2009).

Keywords: 502 -- Environmental issues.
546.17 -- Nitrogen.
551.583 -- Climatic changes.
556.114 -- Water, chemical properties.
556.51 -- River basins and watersheds.
574.5 -- Marine and freshwater ecology.
547 -- Chemistry, organic.
634.0 -- Forests and forestry.
634.0.43 -- Fires.
F -- Biological sciences.
(*3) -- Arctic regions.
(*49) -- Alaska.
(*493) -- Alaska, interior.
SPRI record no.: 197891

MARCXML

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008 221003s2009####xx#ab#|##|###|0||#0|eng#d
035 ## ‡aSPRI-197891
040 ## ‡aUkCU-P‡beng‡eaacr
100 1# ‡aBetts, Emma F.
245 10 ‡aImpact of wildfire on stream nutrient chemistry and ecosystem metabolism in boreal forest catchments of interior Alaska /‡cEmma F. Betts, Jeremy B. Jones, Jr.
260 ## ‡a[S.l.] :‡b[s.n.],‡c2009.
300 ## ‡ap. 407-417 :‡bill., diags., tables, maps.
500 ## ‡aArctic, Antarctic, and Alpine Research. Vol. 41(4) :407-417 (2009).
520 3# ‡aInvestigates impact of wildfire on stream chemistry by examining solute chemistry in four boreal forest catchments from 2002-2007. Measures ecosystem metabolism during summer 2005 in one burned and two unburned catchments. Finds that wildfire is associated with threefold increase in stream nitrate concentration, whereas dissolved organic carbon and dissolved organic nitrogen decrease following fire.
530 ## ‡aAlso issued online ‡uurn:doi:10.1657/1938-4246-41.4.407‡uhttps://dx.doi.org/10.1657/1938-4246-41.4.407
650 07 ‡a502 -- Environmental issues.‡2udc
650 07 ‡a546.17 -- Nitrogen.‡2udc
650 07 ‡a551.583 -- Climatic changes.‡2udc
650 07 ‡a556.114 -- Water, chemical properties.‡2udc
650 07 ‡a556.51 -- River basins and watersheds.‡2udc
650 07 ‡a574.5 -- Marine and freshwater ecology.‡2udc
650 07 ‡a547 -- Chemistry, organic.‡2udc
650 07 ‡a634.0 -- Forests and forestry.‡2udc
650 07 ‡a634.0.43 -- Fires.‡2udc
650 07 ‡aF -- Biological sciences.‡2local
651 #7 ‡a(*3) -- Arctic regions.‡2udc
651 #7 ‡a(*49) -- Alaska.‡2udc
651 #7 ‡a(*493) -- Alaska, interior.‡2udc
700 1# ‡aJones, Jeremy B.,‡cJr.
773 0# ‡7nnas ‡tArctic, Antarctic, and Alpine Research. ‡gVol. 41(4) (2009) ‡wSPRI-211524
916 ## ‡a2012/02/27 -- JW
917 ## ‡aUnenhanced record from Muscat, imported 2019
948 3# ‡a20221003 ‡bJW