The impact of manure, straw and biochar amendments on aggregation and erosion in a hillslope Ultisol

Soil erosion is a serious problem in subtropical China where hillslope red soils (Ultisols in US soil taxonomy) are intensively cultivated. Manure and amendments have been reported to improve crop growth and soil structural stability in long-term experiments so the objective of this study was to det...

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Veröffentlicht in:Catena (Giessen) 2016-03, Vol.138, p.30-37
Hauptverfasser: Peng, X., Zhu, Q.H., Xie, Z.B., Darboux, F., Holden, N.M.
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Sprache:eng
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Zusammenfassung:Soil erosion is a serious problem in subtropical China where hillslope red soils (Ultisols in US soil taxonomy) are intensively cultivated. Manure and amendments have been reported to improve crop growth and soil structural stability in long-term experiments so the objective of this study was to determine the effect of different organic amendments on soil aggregate stability, agronomic performance, runoff, and erosion. Four treatments consisted of inorganic NPK fertilizer (NPK), NPK fertilizer plus rice straw mulch (NPK+Str), NPK fertilizer plus rice straw-derived biochar (NPK+BC), and NPK fertilizer plus swine manure (NPK+OM) located on land with a 9–14% slope planted with peanut (Arachis hypogaea L.). During the peanut season, soil erosion ranged from around 2600tonkm−2 with just inorganic NPK fertilizer down to 627tonkm−2 with fertilizer plus swine manure, while addition of swine manure also increased the above-ground biomass and SOC (P0.05) except the SOC, because biochar was susceptible to erosion (2115tonkm−2). The least erosion was observed in the straw mulch treatment (225tonkm−2), while it improved the above-ground biomass (P
ISSN:0341-8162
1872-6887
DOI:10.1016/j.catena.2015.11.008