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The study on the carbon dioxide sequestration by applying wooden structure on eco-technological and leisure facilities

机译:木结构在生态科技休闲设施中固存二氧化碳的研究

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摘要

Because the photosynthesis ability of old artificial forest stands is inferior to that of young stands, the utilization of these logs is benefit to the sequestration of carbon dioxide. Hence, construction of wooden patios, trails, and retaining wall to substitute concrete ones could reduce the carbon dioxide emission in Taiwan. According the research data, the energy consumption during wood processing was very low, so did the carbon dioxide emission. Because concrete was replaced and about 50% of wood consists of carbon which is from carbon dioxide sequestration, both the utilization of wood and artificial forest planted could reduce the carbon dioxide concentration. The purpose of the study was to evaluate the effects of carbon dioxide emission and sequestration by using wooden structure in both wooden leisure and eco-technological facilities. Results shown when check dam constructed by ACQ. treated Japanese cedar following O&D (outdoor) method and CNS3000 K4 criterion with 40 years lifetime could reduce about 30 tons of carbon dioxide emission, which is equivalent to the carbon dioxide expiration of 92 persons per year. On another case, 61 tons of carbon dioxide emission was reduced, which is equivalent to the carbon dioxide expiration of 190 persons per year. If the high energy consumption materials, such as steel and cement, could be substituted by wood or wooden material, it could be beneficial to the sustainable management of the earth environment.
机译:由于旧的人工林林分的光合作用能力不如年轻的林分,因此利用这些原木有利于二氧化碳的隔离。因此,建造木制露台,小径和挡土墙以替代混凝土可以减少台湾的二氧化碳排放量。根据研究数据,木材加工过程中的能耗非常低,二氧化碳的排放量也很低。由于更换了混凝土,并且约有50%的木材由来自二氧化碳隔离的碳组成,因此木材和人工林的利用均可降低二氧化碳的浓度。该研究的目的是通过在休闲和生态技术设施中使用木质结构来评估二氧化碳排放和隔离的影响。当由ACQ建造止水坝时显示的结果。按照O&D(室外)方法和CNS3000 K4标准处理的日本雪松具有40年的使用寿命,可减少约30吨二氧化碳排放,相当于每年有92人二氧化碳排放。在另一种情况下,减少了61吨的二氧化碳排放量,相当于每年有190人死于二氧化碳。如果用木材或木质材料代替钢铁和水泥等高能耗材料,将有利于地球环境的可持续管理。

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