Matches in SemOpenAlex for { <https://semopenalex.org/work/W1986152287> ?p ?o ?g. }
- W1986152287 endingPage "294" @default.
- W1986152287 startingPage "289" @default.
- W1986152287 abstract "Does removal of cations from soil solution during soil reduction stimulate phosphorus (P) release? An ion-exchange resin system was employed to provide a sink during the incubation of twelve soils under fully reducing conditions. This experimental design was considered to better simulate the loss of ions likely to occur under field conditions than more routine batch type closed extraction systems where solutes build-up in the extract solution. The small solute concentrations that remain in the equilibrating solution suggest the mixed resin system acted as an effective sink over the whole experimental period. By maintaining a small P concentration the resin system mimics soil drainage conditions and encourages P release from soil. Measurement of soil P forms by sequential extraction after the incubation period indicated an increase in the amorphous forms present. Here we show that even if the P-containing solution is retained by the soil, the potential for a subsequent P loss is increased under aerobic conditions. The management of drainage systems should try and avoid the onset of anaerobic conditions. Eventually, magnesium- and calcium-based precipitation products could recapture P from drains recycling it in topsoils as fertilizer." @default.
- W1986152287 created "2016-06-24" @default.
- W1986152287 creator A5001560742 @default.
- W1986152287 creator A5045092145 @default.
- W1986152287 creator A5077399885 @default.
- W1986152287 creator A5079064806 @default.
- W1986152287 date "2014-01-01" @default.
- W1986152287 modified "2023-09-23" @default.
- W1986152287 title "Release of phosphorus under reducing and simulated open drainage conditions from overfertilised soils" @default.
- W1986152287 cites W1974438924 @default.
- W1986152287 cites W1979152758 @default.
- W1986152287 cites W1979792877 @default.
- W1986152287 cites W1980962955 @default.
- W1986152287 cites W1981781756 @default.
- W1986152287 cites W1982078532 @default.
- W1986152287 cites W1982461761 @default.
- W1986152287 cites W1983822762 @default.
- W1986152287 cites W1991464292 @default.
- W1986152287 cites W1993718444 @default.
- W1986152287 cites W1995141654 @default.
- W1986152287 cites W2005451034 @default.
- W1986152287 cites W2008076467 @default.
- W1986152287 cites W2018116890 @default.
- W1986152287 cites W2021908521 @default.
- W1986152287 cites W2021965944 @default.
- W1986152287 cites W2025820864 @default.
- W1986152287 cites W2041561306 @default.
- W1986152287 cites W2042476915 @default.
- W1986152287 cites W2049726374 @default.
- W1986152287 cites W2050364577 @default.
- W1986152287 cites W2055863565 @default.
- W1986152287 cites W2056522327 @default.
- W1986152287 cites W2067808848 @default.
- W1986152287 cites W2073447410 @default.
- W1986152287 cites W2075435443 @default.
- W1986152287 cites W2075980612 @default.
- W1986152287 cites W2078856164 @default.
- W1986152287 cites W2079147959 @default.
- W1986152287 cites W2079285932 @default.
- W1986152287 cites W2079714793 @default.
- W1986152287 cites W2080165364 @default.
- W1986152287 cites W2086362897 @default.
- W1986152287 cites W2088233718 @default.
- W1986152287 cites W2088526612 @default.
- W1986152287 cites W2090473742 @default.
- W1986152287 cites W2090655787 @default.
- W1986152287 cites W2092115228 @default.
- W1986152287 cites W2093402298 @default.
- W1986152287 cites W2094223773 @default.
- W1986152287 cites W2124274072 @default.
- W1986152287 cites W2130553815 @default.
- W1986152287 cites W2148298037 @default.
- W1986152287 cites W2329960452 @default.
- W1986152287 cites W4245347120 @default.
- W1986152287 doi "https://doi.org/10.1016/j.chemosphere.2013.09.016" @default.
- W1986152287 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24103442" @default.
- W1986152287 hasPublicationYear "2014" @default.
- W1986152287 type Work @default.
- W1986152287 sameAs 1986152287 @default.
- W1986152287 citedByCount "25" @default.
- W1986152287 countsByYear W19861522872015 @default.
- W1986152287 countsByYear W19861522872016 @default.
- W1986152287 countsByYear W19861522872017 @default.
- W1986152287 countsByYear W19861522872018 @default.
- W1986152287 countsByYear W19861522872019 @default.
- W1986152287 countsByYear W19861522872021 @default.
- W1986152287 countsByYear W19861522872022 @default.
- W1986152287 countsByYear W19861522872023 @default.
- W1986152287 crossrefType "journal-article" @default.
- W1986152287 hasAuthorship W1986152287A5001560742 @default.
- W1986152287 hasAuthorship W1986152287A5045092145 @default.
- W1986152287 hasAuthorship W1986152287A5077399885 @default.
- W1986152287 hasAuthorship W1986152287A5079064806 @default.
- W1986152287 hasBestOaLocation W19861522872 @default.
- W1986152287 hasConcept C107872376 @default.
- W1986152287 hasConcept C143050476 @default.
- W1986152287 hasConcept C159390177 @default.
- W1986152287 hasConcept C159750122 @default.
- W1986152287 hasConcept C178790620 @default.
- W1986152287 hasConcept C185592680 @default.
- W1986152287 hasConcept C18903297 @default.
- W1986152287 hasConcept C205649164 @default.
- W1986152287 hasConcept C25642318 @default.
- W1986152287 hasConcept C2780560099 @default.
- W1986152287 hasConcept C39432304 @default.
- W1986152287 hasConcept C510538283 @default.
- W1986152287 hasConcept C55493867 @default.
- W1986152287 hasConcept C58640448 @default.
- W1986152287 hasConcept C67592535 @default.
- W1986152287 hasConcept C86803240 @default.
- W1986152287 hasConcept C87717796 @default.
- W1986152287 hasConceptScore W1986152287C107872376 @default.
- W1986152287 hasConceptScore W1986152287C143050476 @default.
- W1986152287 hasConceptScore W1986152287C159390177 @default.
- W1986152287 hasConceptScore W1986152287C159750122 @default.
- W1986152287 hasConceptScore W1986152287C178790620 @default.
- W1986152287 hasConceptScore W1986152287C185592680 @default.
- W1986152287 hasConceptScore W1986152287C18903297 @default.