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Plastic Film Mulching Increases Soil Respiration in Ridge-furrow Maize Management

机译:垄沟玉米管理中的塑料膜覆盖增加土壤呼吸

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The cultivation practice of ridge-furrow with full plastic film mulching has been significantly promoted for crop production and is now used extensively in northwest China. There is still a dearth of information on the change in carbon dioxide (CO2) emission under plastic film mulching. A study was implemented to assess how plastic film mulching altered the soil profile CO2 concentration and fluxes within a whole growing season; moreover, through the total carbon budget, to evaluate the potential risk of this cultivation system. A full plastic film-mulched ridge-furrow (PM) treatment and a conventional ridge-furrow treatment without mulching (CK) were studied. The plastic film had a significant blocking effect on CO2 release, and the soil profile CO2 concentration in PM was twice that of CK. The CO2 diffusion coefficient for PM was only 48% of the CK value. The soil profile CO2 concentration increased with soil depth and the concentration in furrows was lower than in ridges at the surface (0-10 cm) but higher in the deeper soil (10-30 cm). More soil organic carbon was lost in PM, and total emitted CO2 in PM was 22% higher than for CK. Meanwhile, the total biomass in PM was 39% higher than that in CK. This study demonstrated that full plastic film mulching was an effective management to increase crop production. However, it could have a negative effect on soil carbon storage and controlling greenhouse gas emissions.
机译:垄沟覆盖全塑料膜的耕作方法已大大促进了作物生产,目前在中国西北地区得到广泛应用。关于塑料膜覆盖下二氧化碳(CO2)排放变化的信息仍然匮乏。进行了一项研究,以评估覆盖整个地上的塑料膜如何改变土壤剖面中的二氧化碳浓度和通量。此外,通过总碳预算来评估该种植系统的潜在风险。研究了全塑料膜覆盖垄沟(PM)处理和常规的不覆盖垄沟(CK)处理。塑料薄膜对CO2的释放具有显着的阻挡作用,土壤剖面中PM中的CO2浓度是CK的两倍。 PM的CO2扩散系数仅为CK值的48%。土壤剖面CO2浓度随土壤深度增加而增加,犁沟中的浓度低于表层(0-10 cm)的垄沟,而较深的土壤(10-30 cm)较高。 PM中损失的土壤有机碳更多,PM中的总排放CO2比CK高22%。同时,PM中的总生物量比CK高39%。这项研究表明,全塑料地膜覆盖是提高作物产量的有效方法。但是,它可能对土壤碳存储和控制温室气体排放产生负面影响。

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