<rdf:RDF xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dct="http://purl.org/dc/terms/" xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#">
  <rdf:Description rdf:about="https://doi.org/10.1016/j.geoderma.2003.11.016">
    <dct:isReferencedBy>IMPACT4SOIL</dct:isReferencedBy>
    <dct:isReferencedBy>OpenAire</dct:isReferencedBy>
    <dct:isReferencedBy>Recolector de Ciencia Abierta, RECOLECTA</dct:isReferencedBy>
    <dct:isReferencedBy>DIGITAL.CSIC</dct:isReferencedBy>
    <dct:isReferencedBy>Crossref</dct:isReferencedBy>
    <dct:isReferencedBy>Microsoft Academic Graph</dct:isReferencedBy>
    <dct:isPartOf>Geoderma</dct:isPartOf>
    <dct:license>Open Access</dct:license>
    <dct:created>2004-01-23</dct:created>
    <dc:description>Open AccessPeer reviewed </dc:description>
    <dc:description>Open AccessPeer reviewed This work was funded by the Xunta de Galicia and by the Spanish Ministerio de Educaci&#243;n y Ciencia. </dc:description>
    <dc:description>Open AccessPeer reviewed This work was funded by the Xunta de Galicia and by the Spanish Ministerio de Educaci&#243;n y Ciencia. Variation in the inorganic and organic N contents and in the resistance of organic N to step-wise acid hydrolysis (four steps of increasing hydrolytic intensity) was analysed in burned soils sampled (0&#8211;5 and 5&#8211;10 cm depth) at different times after high severity forest wildfires, as well as in one soil heated in the laboratory at 150, 210 or 350 &#176;C. Ammonium content increased in the 0&#8211;5 and 5&#8211;10 cm soil layers immediately after burning and after heating at 150, 210 or 350 &#176;C. The positive effect of burning on NH4+-N persisted for several months and was particularly intense 1 year after burning. Two, 5 and 10 years after wildfire, NH4+-N in burned soils was similar or slightly higher than in the corresponding unburned soils. Nitrite and nitrate were very low or undetectable in most burned and unburned samples analysed. Organic N strongly decreased in one of the soils immediately after wildfire and in the soil heated at 350 &#176;C; conversely, in the other recently burned soil and in samples heated at 150 and 210 &#176;C, organic N was slightly higher or similar to that in the corresponding unburned soils. During the 2 years after wildfire, organic N changed little and in soils sampled 5 and 10 years after burning the organic N contents were close to those of the unburned control soils. Independent of the variation in organic N content, the lability of organic N dramatically changed after burning or heating, this change remaining for at least 2 years after wildfire. The amount of N solubilised by acid hydrolysis strongly decreased in both 0&#8211;5 and 5&#8211;10 cm soil layers after wildfire and in soils heated at 210 or 350 &#176;C. This decrease was mainly due to the loss of labile N (solubilised after hydrolysis with 1 and 3 N HCl), while the hydrolysable N obtained with 6 N HCl changed little or even increased. On the contrary, the amount and/or percentage of N resistant to acid hydrolysis (residual N) increased in recently burned soils and in soils heated at 210 or 350 &#176;C (except in the 5&#8211;10 cm layer of one soil). In the months following burning, differences in the lability of organic N between the burned and unburned soils decreased, especially in the 0&#8211;5 cm soil layer, although 2 years after wildfire the effect of burning on the organic N compounds was still detectable. In soils sampled 5 or 10 years after wildfire, the amounts and percentages of the residual N and of different fractions of hydrolysable N were similar to those of the unburned soils. The relationship between the reduction in hydrolysable N and the alteration of N mineralisation (previously studied) was also analysed. </dc:description>
    <dc:subject>Nitrogen</dc:subject>
    <dc:subject>Forest fires</dc:subject>
    <dc:subject>Residual N</dc:subject>
    <dc:subject>04 agricultural and veterinary sciences</dc:subject>
    <dc:subject>Hydrolysable N</dc:subject>
    <dc:subject>15. Life on land</dc:subject>
    <dc:subject>Soil fertility</dc:subject>
    <dc:subject>01 natural sciences</dc:subject>
    <dc:subject>6. Clean water</dc:subject>
    <dc:subject>13. Climate action</dc:subject>
    <dc:subject>0401 agriculture, forestry, and fisheries</dc:subject>
    <dc:subject>Recalcitrant and labile N</dc:subject>
    <dc:subject>0105 earth and related environmental sciences</dc:subject>
    <dc:creator rdf:resource="https://orcid.org/0000-0002-9635-2961"/>
    <dc:creator>Prieto-Fern&#225;ndez, &#193;ngeles, Carballas, Modesto, Carballas, Tarsy, </dc:creator>
    <dc:date>2004-08-01</dc:date>
    <dc:type>journalpaper</dc:type>
    <dct:abstract>Open AccessPeer reviewed </dct:abstract>
    <dct:abstract>Open AccessPeer reviewed This work was funded by the Xunta de Galicia and by the Spanish Ministerio de Educaci&#243;n y Ciencia. </dct:abstract>
    <dct:abstract>Open AccessPeer reviewed This work was funded by the Xunta de Galicia and by the Spanish Ministerio de Educaci&#243;n y Ciencia. Variation in the inorganic and organic N contents and in the resistance of organic N to step-wise acid hydrolysis (four steps of increasing hydrolytic intensity) was analysed in burned soils sampled (0&#8211;5 and 5&#8211;10 cm depth) at different times after high severity forest wildfires, as well as in one soil heated in the laboratory at 150, 210 or 350 &#176;C. Ammonium content increased in the 0&#8211;5 and 5&#8211;10 cm soil layers immediately after burning and after heating at 150, 210 or 350 &#176;C. The positive effect of burning on NH4+-N persisted for several months and was particularly intense 1 year after burning. Two, 5 and 10 years after wildfire, NH4+-N in burned soils was similar or slightly higher than in the corresponding unburned soils. Nitrite and nitrate were very low or undetectable in most burned and unburned samples analysed. Organic N strongly decreased in one of the soils immediately after wildfire and in the soil heated at 350 &#176;C; conversely, in the other recently burned soil and in samples heated at 150 and 210 &#176;C, organic N was slightly higher or similar to that in the corresponding unburned soils. During the 2 years after wildfire, organic N changed little and in soils sampled 5 and 10 years after burning the organic N contents were close to those of the unburned control soils. Independent of the variation in organic N content, the lability of organic N dramatically changed after burning or heating, this change remaining for at least 2 years after wildfire. The amount of N solubilised by acid hydrolysis strongly decreased in both 0&#8211;5 and 5&#8211;10 cm soil layers after wildfire and in soils heated at 210 or 350 &#176;C. This decrease was mainly due to the loss of labile N (solubilised after hydrolysis with 1 and 3 N HCl), while the hydrolysable N obtained with 6 N HCl changed little or even increased. On the contrary, the amount and/or percentage of N resistant to acid hydrolysis (residual N) increased in recently burned soils and in soils heated at 210 or 350 &#176;C (except in the 5&#8211;10 cm layer of one soil). In the months following burning, differences in the lability of organic N between the burned and unburned soils decreased, especially in the 0&#8211;5 cm soil layer, although 2 years after wildfire the effect of burning on the organic N compounds was still detectable. In soils sampled 5 or 10 years after wildfire, the amounts and percentages of the residual N and of different fractions of hydrolysable N were similar to those of the unburned soils. The relationship between the reduction in hydrolysable N and the alteration of N mineralisation (previously studied) was also analysed. </dct:abstract>
    <dc:title>Inorganic And Organic N Pools In Soils Burned Or Heated: Immediate Alterations And Evolution After Forest Wildfires</dc:title>
    <dc:identifier>10.1016/j.geoderma.2003.11.016</dc:identifier>
    <dct:references>https://doi.org/10.1016/j.geoderma.2003.11.016</dct:references>
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