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Green manure application accelerates soil organic carbon stock loss under plastic film mulching

机译:绿色粪便应用加速塑料薄膜覆盖下的土壤有机碳储量

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This study investigated the offset effect between green manure (GM) application and plastic film mulching (PFM) on soil organic carbon (SOC) stock change during maize cultivation. Within PFM and no-mulching treatments, three different fertilization sub-treatments were applied: (a) chemical fertilizer, (b) barley and (c) hairy vetch. The SOC balance were evaluated by analyzing the net ecosystem carbon budget (NECB). The results showed that the NECB value was negative during maize cultivation regardless of mulching or fertilization condition, indicated SOC loss. The PFM increased maize yield (P < 0.001) by improved soil moisture and temperature. Crop growth was enhanced under PFM relative to no mulching by 23-26%, 16-25% and 1-8% in the sub-treatments, respectively. However, PFM significantly increased carbon losses by 26-29%, 103-107% and 60-62% over no mulching in each fertilization, respectively (P < 0.001). the temperature sensitivity of CO2-C loss was 52-70% higher in PFM than that in no mulching. Accordingly, the NECB was 1.3, 5.6 and 3.0 times lower with PFM relative to the no-mulching value in the three fertilization, respectively. Under no mulching, GM application reduced SOC loss by 33-59% compared with NPK, while under PFM, it accelerated SOC loss by 8-48%. Barley showed the smallest NECB decrease (- 1.0 Mg C ha(-1)) under no mulching and the largest NECB decrease (- 5.7 Mg C ha(-1)) under PFM. The findings indicate that GM application is not enough to sustain SOC stock under PFM and suggest that the additional recycling of crop residue, such as maize stover, is necessary to increase the soil C stock.
机译:本研究研究了绿色粪肥(GM)应用和塑料薄膜覆盖(PFM)对玉米栽培过程中的土壤有机碳(SOC)股票变化的偏移效应。在PFM和无覆盖处理中,应用了三种不同的施肥子处理:(a)(a)化肥,(b)大麦和(c)毛茸茸的腐败。通过分析净生态系统碳预算(NECB)来评估SOC平衡。结果表明,无论覆盖或施肥条件如何,NECB值在玉米栽培过程中为阴性,表明SOC损失。通过改善土壤水分和温度,PFM增加了玉米产率(P <0.001)。在PFM下,分别在PFM下增强了作物生长,分别在副治疗中的覆盖率23-26%,16-25%和1-8%。然而,PFM分别在每种施肥中分别显着增加26-29%,103-107%,103-107%和60-62%(P <0.001)。 PFM的CO 2-C损失的温度敏感性比在没有覆盖的情况下高于52-70%。因此,与PFM相对于三种施肥中的无覆盖值,NECB分别为1.3,5.6和3.0倍。在没有覆盖的情况下,GM Application与NPK相比减少了SoC损失33-59%,而在PFM下,它加速了SoC损失8-48%。大麦在没有覆盖的情况下显示最小的NECB减少( - 1.0mg C ha(-1)),并且在PFM下最大的NECB减少( - 5.7mg C ha(-1))。调查结果表明,转基因申请不足以维持在PFM下的SoC库存,并表明作物残留物等玉米秸秆的额外回收是增加土壤C库存。

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