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首页> 外文期刊>Open Journal of Soil Science >Bowen Ratio Energy Balance Measurement of Carbon Dioxide (CO2) Fluxes of No-Till and Conventional Tillage Agriculture in Lesotho
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Bowen Ratio Energy Balance Measurement of Carbon Dioxide (CO2) Fluxes of No-Till and Conventional Tillage Agriculture in Lesotho

机译:莱索托免耕和常规耕作农业的二氧化碳通量的鲍恩比能量平衡测量

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Global food demand requires that soils be used intensively for agriculture, but how these soils are managed greatly impacts soil fluxes of carbon dioxide (CO2). Soil management practices can cause carbon to be either sequestered or emitted, with corresponding uncertain influence on atmospheric CO2 concentrations. The situation is further complicated by the lack of CO2 flux measurements for African subsistence farms. For widespread application in remote areas, a simple experimental methodology is desired. As a first step, the present study investigated the use of Bowen Ratio Energy Balance (BREB) instrumentation to measure the energy balance and CO2 fluxes of two contrasting crop management systems, till and no-till, in the lowlands within the mountains of Lesotho. Two BREB micrometeorological systems were established on 100-m by 100-m sites, both planted with maize (Zea mays) but under either conventional (plow, disk-disk) or no-till soil mangement systems. The results demonstrate that with careful maintenance of the instruments by appropriately trained local personnel, the BREB approach offers substantial benefits in measuring real time changes in agroecosystem CO2 flux. The periods where the two treatments could be compared indicated greater CO2 sequestration over the no-till treatments during both the growing and non-growing seasons.
机译:全球粮食需求要求将土壤集约化用于农业,但是如何管理这些土壤会极大地影响土壤中的二氧化碳通量。土壤管理实践可能导致碳被隔离或排放,从而对大气中的二氧化碳浓度产生不确定的影响。由于缺乏非洲自给农场的二氧化碳通量测量,情况进一步复杂化。对于在偏远地区的广泛应用,需要一种简单的实验方法。第一步,本研究调查了鲍文比率能量平衡(BREB)仪器的使用,以测量莱索托山区低地上两种耕作和免耕的对比作物管理系统的能量平衡和CO2通量。在100米x 100米的站点上建立了两个BREB微气象系统,都在玉米(玉米(Zea mays))上种植,但在常规(耕作,圆盘-圆盘)或免耕的土壤管理系统下种植。结果表明,在经过适当培训的当地人员的精心维护下,BREB方法在测量农业生态系统CO2通量的实时变化方面具有巨大优势。可以比较两种处理的时期表明,在生长季节和非生长季节都比免耕处理的固碳量更高。

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