Estimation of Carbon Dioxide and Carbon Stock of Vegetation along the Sukarno-Hatta Street Sides

F. M. O. Abobsesa, Arief Rachmansyach, A. Leksono
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引用次数: 3

Abstract

Carbon dioxide (CO 2 ) is an essential element of the atmosphere that is the basis of photosynthesis process and the vital component of body organism processes. However, if it rises above the normal level, it becomes the most serious cause of global warming. However, the growth of CO 2 in the atmosphere has been slowed by the increase in the ability of plants to absorb the gas. This study is aimed to analyze CO 2 emissions and plant absorption ability to discover carbon stock and carbon balance in the atmosphere. This study used a sample of human activities that contribute to CO 2 emissions along the Soekarno-Hatta Street and the number of trees that soak the emissions. Remote sensing is applied to predict the levels of carbon dioxide emissions and absorption and carbon stocks. The absorption and stock of the carbon are calculated using a specific formula for biomass. The results showed a significant amount of carbon dioxide was emitted by motor vehicles passing through Soekarno-Hatta Street. However, only a small portion was generated by human activities carried out in stores, offices, restaurants, hotels, and hospitals. In line with that, the trees in the Soekarno-Hatta area were able to absorb carbon dioxide about 6 times higher than emitted. It also proved that the Palm tree ( Roystonea regia ) was capable of storing more carbon dioxide in significant amounts than the other two species, the Ashoka tree ( Polyalthia longifolia ), and the Rain tree ( Samanea saman ). Therefore, increasing the number of trees such as Palm tree in the area was recommended. Keywords: Coaching strategy, Regency Adiwiyata , School management , Sintang Regency
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苏加诺-哈达沿街植被二氧化碳和碳储量估算
二氧化碳(CO2)是大气中的一种重要元素,是光合作用过程的基础,也是机体过程的重要组成部分。然而,如果它上升到正常水平以上,它将成为全球变暖的最严重原因。然而,由于植物吸收二氧化碳的能力增加,二氧化碳在大气中的生长速度减慢了。本研究旨在分析CO2排放和植物吸收能力,以发现大气中的碳储量和碳平衡。这项研究使用了Soekarno-Hatta街沿线导致二氧化碳排放的人类活动样本,以及吸收排放物的树木数量。遥感用于预测二氧化碳的排放和吸收水平以及碳储量。碳的吸收和储存量是使用生物质的特定公式计算的。结果显示,通过Soekarno-Hatta街的机动车排放了大量二氧化碳。然而,只有一小部分是由在商店、办公室、餐馆、酒店和医院进行的人类活动产生的。与此相一致的是,Soekarno-Hatta地区的树木能够吸收比排放量高出约6倍的二氧化碳。研究还证明,棕榈树(Roystonea regia)比其他两种树(阿育王树(Polyathia longifolia)和雨树(Samanea saman)能够储存大量的二氧化碳。因此,建议增加该地区棕榈树等树木的数量。关键词:教练策略,Adiwiyata摄政,学校管理,新唐摄政
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