登市场市对吸收和二氧化碳排放的远程技术和地理信息系统的集成

I. W. Nuarsa, A. As-syakur, I. Gunadi, I. Sukewijaya
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摘要

基于遥感技术和地理信息系统的登巴萨市二氧化碳吸收和排放估算登巴萨市经济的快速增长对人口增长率产生了影响。这将导致定居点、基础设施和其他配套设施对土地的需求增加。同时,可用于绿色开放空间(RTH)的土地将减少。几项研究表明,年复一年,登巴萨市植被覆盖减少,气温升高。因此,需要进行计算城市植物的CO2吸收量和登巴萨市各种活动的CO2排放量的研究。利用遥感技术和地理信息系统估算植物对二氧化碳的吸收。同时,通过点源、区域源和移动源的CO2污染源清单进行CO2排放量的计算。本研究的输出是CO2吸收和排放的分布图。从地图上可以看出,登巴萨市的二氧化碳排放量是否高于现有工厂的吸收能力。结果表明:登巴萨植被作为绿色开放空间吸收CO2的能力为235,780.63 tCO2/年,污染源排放总量为862,955,856 tCO2/年;二氧化碳排放源包括点源37,649吨/年、源区95,310吨/年和移动源862,955,856吨/年。从可移动来源来看,二氧化碳排放量最大的贡献者是轻型汽车,达到540,355.88吨/年(62.63%),其次是摩托车,为260,187.43吨/年(30.16%)。2015年,登巴萨市的二氧化碳排放量是植物吸收二氧化碳能力的3.66倍,未来这一差距有进一步扩大的趋势。为了解决这个问题,需要通过增加公共交通服务来减少机动车辆的数量等法规。使用电力等燃料以外的能源的车辆是另一个可以考虑的选择。最后,增加绿色开放空间的数量和质量是需要做的常规方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrasi Teknologi Pengideraan Jauh dan Sistem Informasi Geografis untuk Estimasi Serapan dan Emisi CO2 di Kota Denpasar
Integration of Remote Sensing Technology And Geographic Information Systems for Estimation of CO2 Updake and Emissions in Denpasar City Rapid economic growth in the Denpasar City has an impact on the rate of population growth. This will lead to increasing land requirements for settlements, infrastructure, and other supporting facilities. Meanwhile, the availability of land for green open space (RTH) will decrease. Several studies show that from year to year the area of ??vegetation cover decreases, and the air temperature in Denpasar City is increasing. Therefore, research to calculate CO2 uptake by urban plants and CO2 emissions from various activities in the city of Denpasar is needed to be done. Estimates of CO2 uptake by plants are carried out using remote sensing technology and GIS. Meanwhile, the calculation of CO2 emissions is carried out by an inventory of CO2 pollutant sources from point sources, areas sources, and mobile sources. The output of this study is a distribution map of CO2 absorption and emissions. From the map it can be seen whether the CO2 emissions of Denpasar City are higher than the ability of existing plants to absorb them. The results showed that the ability of plants in Denpasar as a green open space to absorb CO2 was 235,780.63 tCO2/year, while total emissions from pollutant sources were 862,955,856 tCO2/year. The sources of CO2 emissions include from point source 37,649 tons/year, from source area 95,310 tons/year, and from mobile sources at 862,955,856 tons/year. From the movable source the biggest contributor to CO2 emissions is light vehicles, which amounted to 540,355.88 tons/year (62.63%), then followed by motorcycles at 260,187.43 tons/year (30.16%). The amount of CO2 emissions in Denpasar City is 3.66 times greater than the ability of plants to absorb CO2 in 2015 and there is a tendency for this gap to be even greater in the future. To overcome this problem, regulations are needed such as reducing the number of motorized vehicles by increasing public transportation services. The use of vehicles using energy sources other than fuel such as electricity is another alternative to consider. Finally, the increase in the number and quality of green open spaces is a conventional method that needs to be done.
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