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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Biochar application constrained native soil organic carbon accumulation from wheat residue inputs in a long-term wheat-maize cropping system
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Biochar application constrained native soil organic carbon accumulation from wheat residue inputs in a long-term wheat-maize cropping system

机译:生物炭应用于长期小麦玉米种植系统中小麦残留投入的天然土壤有机碳积累

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An understanding of the influence of biochar on soil organic carbon (SOC) formed from different carbon (C) sources, other than biochar, at field scale is required to accurately assess and predict the C sequestration potential of biochar. For this study, we set up a field experiment in 2009, including four treatments (i.e. BO, B30, B60, and B90, where the biochar application rates were 0, 30, 60, and 90 t ha(-1), respectively). We then assessed the impact of biochar after five years (i.e. in 2014) on native SOC derived from C-3 (wheat) and C-4 (maize) crop residues, and also changes in relatively labile and stable SOC fractions. After five years, the content of native SOC derived from crop residues increased by 81% (from 4.32 to 7.84 g kg(-1)) in the BO treatment, while the increases of native SOC were relatively lower in the B30 (61%), B60 (43%), and B90 (26%) treatments. Thus biochar decreased the content of native SOC compared to the BO. Additionally, biochar decreased "labile pool I" (first step, weak acid hydrolysable) of native SOC by 11.2-47.7%, compared to the BO, but did not influence "labile pool II" (second-step, strong acid hydolysable) and "recalcitrant pool" (acid non-hydolysable). Using the natural abundance C-13, our results showed that 62-74% of the native SOC was derived from wheat across all the treatments. Blocher application decreased the contribution of wheat-derived C to native SOC by 14.7, 29.0, and 41.5% in the B30, B60, and B90 treatments, respectively, while the content of maize-derived native SOC did not change, relative to the BO. In conclusion, although wheat-derived native SOC was higher than maize-derived native SOC, biochar application decreased the contribution of wheat residue to native SOC, possibly by enhancing its degradation, thus decreasing wheat-derived native SOC storage in an agricultural system.
机译:需要了解生物炭土壤有机碳(SoC)的不同碳(C)来源,除BioChar之外,需要准确地评估和预测生物炭的C螯合潜力。对于本研究,我们在2009年建立了一个田间实验,包括四种治疗(即BO,B30,B60和B90,其中生物炭申请率分别为0,30,60和90 t ha(-1)) 。然后,我们在五年后评估生物炭的影响(即2014年)对来自C-3(小麦)和C-4(玉米)作物残留物的天然Soc,以及相对不稳定和稳定的SOC分数的变化。在五年后,博福治疗中源自农作物残留物的天然SOC的含量增加了81%(从4.32至7.84g kg(-1)),而B30的天然SoC的增加相对较低(61%) ,B60(43%)和B90(26%)治疗。因此,与BO相比,生物炭降低了天然Soc的内容。此外,生物炭减少了天然SoC的“不稳定池I”(第一步,弱酸可水解)11.2-47.7%,相比Bo相比,但没有影响“不稳定的池II”(二阶,强酸潜水)和“醋酸池”(酸不透粘剂)。我们的研究结果表明,使用天然丰富C-13,表明62-74%的本土SoC来自所有治疗中的小麦。 Blocher应用程序分别将小麦衍生C至天然SoC的贡献降低14.7,29.0和41.5%,分别在B30,B60和B90治疗中,而玉米衍生的天然SoC的含量没有改变,相对于博。总之,尽管小麦衍生的天然SoC高于玉米衍生的天然SoC,但是BioChar申请减少了小麦残留对天然SoC的贡献,可能通过增强其降解,从而降低农业系统中的小麦衍生的天然SoC储存。

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