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Return rate of straw residue affects soil organic C sequestration by chemical fertilization.

机译:秸秆残渣的返还率通过化学施肥影响土壤有机碳固存。

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A 12-year field experiment was used to examine effects of return rates of crop straw residue on organic C sequestration by chemical fertilization in surface (0-20 cm) soil. The tested soil was a Hapli-Ustic Cambosol (FAO taxonomy) and the used crop was maize (Zea mays L.). The four main treatments were consisted of a gradient of return rate of straw residue, namely 0%, 25%, 50% and 100% of shattered straw residue (referred to as 0%S, 25%S, 50%S and 100%S, respectively). The three sub-treatments contained unfertilized control (CK), unbalanced N fertilization (N) and balanced NPK fertilization (NPK). Along the gradient of straw return rate, topsoil C storage significantly increased. The balanced NPK fertilization was more effective in sequestrating topsoil C than the unbalanced N fertilization. Responses of topsoil C storage to the straw return and fertilization significantly increased with the experimental duration. With increasing straw return rates, C-sequestration effects of the N, and NPK treatments in topsoil changed from not significant to significant or from significant to more significant in statistics. Our findings demonstrate that C-sequestration effects of chemical fertilization in topsoil strongly depend on return regime of straw residue.Digital Object Identifier http://dx.doi.org/10.1016/j.still.2011.01.007
机译:通过一项为期12年的田间试验,研究了秸秆还田的回报率对表层(0-20厘米)土壤中化学施肥对有机碳固存的影响。被测土壤为Hapli-Ustic Cambosol(FAO分类法),使用的农作物为玉米(Zea mays L.)。四种主要处理方法包括秸秆残渣返回率的梯度,即碎秸秆残渣的0%,25%,50%和100%(分别称为0%S,25%S,50%S和100%)。 S)。这三个子处理包含未施肥对照(CK),不平衡氮肥(N)和平衡氮磷钾施肥(NPK)。沿着秸秆还田速率的梯度,表层土壤C的存储量显着增加。平衡氮磷钾肥比不平衡氮肥更有效地封存表层土壤C。随着试验时间的延长,表层土壤碳储量对秸秆还田和施肥的响应显着增加。随着秸秆还田率的提高,在表层土壤中氮和氮磷钾处理的固碳效果从不显着变为显着,或从显着变为显着。我们的研究结果表明,化学肥料在表土中的固碳效应在很大程度上取决于秸秆残渣的返回方式。数字对象标识符http://dx.doi.org/10.1016/j.still.2011.01.007

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