首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Soil CO2 emission in sugarcane management systems
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Soil CO2 emission in sugarcane management systems

机译:甘蔗管理系统中的土壤二氧化碳排放

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摘要

Sugarcane management systems affect soil attributes such as the carbon cycle. This fact has stimulated the sugar and alcohol industry to refine the sugarcane production systems by replacing the pre-harvest burning (PB) and manual harvest with mechanized harvesting followed by residue deposition. The aim of this study was to evaluate different management systems with respect to C cycling carbon dioxide and soil parameters (chemical, physical and biological) which were determined over the season. Three sugarcane cultivation systems were evaluated at the following periods: (a) PB, (b) 5-year green harvest and (c) 10-year green harvest. The results indicated that CO2 emission was 36% greater in the 10-year sugarcane green harvest system than in the PB system. The bulk density and macroporosity were the factors that were most affected by the different sugarcane management systems and that significantly influenced soil CO2 emissions. The principal component analysis showed that soil CO2 emission was 18% influenced by base saturation (V%) and 14% by pH, especially in the PB area. Additionally, 19% was affected by carbon and macroporosity in the 5- and 10-year green harvest areas, respectively. From our results, it can be concluded that the most CO2 emissions are in the areas of sugarcane green, this is due to the higher carbon concentration when compared with the area of burning sugarcane. The parameters that most influenced the CO2 emissions were bulk density, porosity, macroporosity, pH and V%.
机译:甘蔗管理系统会影响土壤属性,例如碳循环。这一事实刺激了糖和酒精行业,通过用机械化收割和残渣沉积来代替收割前燃烧(PB)和手动收割来完善甘蔗生产系统。这项研究的目的是评估在整个季节确定的有关碳循环二氧化碳和土壤参数(化学,物理和生物)的不同管理系统。在以下时期对三种甘蔗种植系统进行了评估:(a)PB,(b)5年绿色收成和(c)10年绿色收成。结果表明,十年制甘蔗绿色收获系统的二氧化碳排放量比PB系统高出36%。堆密度和大孔隙度是受不同甘蔗管理系统影响最大的因素,并且显着影响土壤CO2排放。主成分分析表明,土壤CO2排放受碱饱和度(V%)的影响为18%,受pH值的影响为14%,特别是在PB地区。此外,在5年和10年绿色采伐区,分别有19%的土壤受到碳和大孔隙的影响。从我们的结果可以得出结论,二氧化碳排放量最多的是甘蔗绿色区域,这是由于与燃烧甘蔗的区域相比,碳浓度更高。影响CO2排放量最大的参数是堆密度,孔隙率,大孔率,pH和V%。

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