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GIS-BASED METHODOLOGY ON TECHNO-ECONOMIC POTENTIAL ASSESSMENT OF SUGARCANE RESIDUES IN MEDELLIN, CEBU, PHILIPPINES

机译:基于GIS的菲律宾梅德林蔗糖残渣技术经济潜力评估方法。

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The act of burning traditional biomass results in indoor air pollution, which has negative effects on health such as respiratory, pulmonary, and cardiovascular diseases. The practice also contributes to ambient air pollution and climate change through the emission of carbon dioxide (CO2) and non-CO2 pollutants formed by the incomplete combustion of biomass. To help reduce air pollution coupled with its effect on climate change specifically the agricultural residues left on fields and burned, a Geographic Information System (GIS) supported assessment was developed to determine the techno-economic potentials of utilizing agricultural residues in Medellin, Cebu. The methodology was based on GIS analysis of agricultural, economic and climatic data employed in GIS spatial analysis platform. Data about land use, transportation facilities, urban cartography, regional territorial planning, terrain digital model, and climatic types have been stored in the GIS to define potential areas for gathering the residues coming from sugarcanes and to assess available for energy cultivation. The sugarcane is an abundant agricultural crop in the locality and its residue is the major feedstock available for bioenergy. The results reveal a meaningful technical and economic potential concentration in the locality feasible for biomass power plant for electricity generation. The assessment has shown a strong competitiveness of sugarcane residues for bioenergy when the collection system is implemented in an efficient way. An outcome of the study was to show the opportunities originating from issue of addressing energy security by utilizing indigenous energy resources.
机译:燃烧传统生物质的行为会导致室内空气污染,对呼吸系统,肺部和心血管疾病等健康产生负面影响。这种做法还通过排放由生物质不完全燃烧形成的二氧化碳(CO2)和非CO2污染物,加剧了环境空气污染和气候变化。为了帮助减少空气污染及其对气候变化的影响,特别是留在田野上和燃烧的农业残留物,开发了地理信息系统(GIS)支持的评估,以确定在宿雾麦德林利用农业残留物的技术经济潜力。该方法基于GIS空间分析平台中使用的农业,经济和气候数据的GIS分析。有关土地利用,运输设施,城市制图,区域领土规划,地形数字模型和气候类型的数据已存储在GIS中,以定义收集甘蔗残余物并评估可用于能源种植的潜在区域。甘蔗是该地区丰富的农业作物,其残渣是可用于生物能源的主要原料。结果表明,在可行的地方,生物质发电厂的发电具有重要的技术和经济潜力。评估显示,以有效的方式实施收集系统时,甘蔗残渣在生物能源方面具有很强的竞争力。该研究的结果是表明利用本地能源解决能源安全问题的机会。

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