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小型垃圾热解气化焚烧厂碳排放计算 被引量:10
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作者 黄静颖 张浩 +3 位作者 谭钦怀 詹明秀 林晓青 李晓东 《环境卫生工程》 2021年第4期1-6,共6页
生活垃圾焚烧行业具有很大的碳减排潜力,但目前还缺乏可靠的碳排放计算方法。以舟山市某垃圾热解气化焚烧厂为例,分别采用平衡法和CCER方法学对该厂中的碳排放和碳减排量进行了对比计算。由平衡法计算得该厂单位垃圾碳排放量为0.61 tCO2... 生活垃圾焚烧行业具有很大的碳减排潜力,但目前还缺乏可靠的碳排放计算方法。以舟山市某垃圾热解气化焚烧厂为例,分别采用平衡法和CCER方法学对该厂中的碳排放和碳减排量进行了对比计算。由平衡法计算得该厂单位垃圾碳排放量为0.61 tCO2e/t,其中,化石源碳燃烧产生的碳排放量为0.28 tCO2e/t,生物源碳碳排放为0.33 tCO2e/t(该部分可产生碳减排效益);CCER方法学计算所得的基准线排放量为0.53 tCO2e/t,项目排放量为0.29 tCO2e/t,项目减排量为0.24 tCO2e/t。两种方法学的计算结果基本一致。平衡法可以对CCER方法学中项目排放量的垃圾焚烧产生的排放项进行补充,同时是一种简便快捷、准确性高、价格低廉的碳排放在线分析的可行方法。但仍需对我国垃圾组分进行特定分析以完善平衡法。 展开更多
关键词 垃圾焚烧 碳排放 平衡法 中国核证自愿减排量方法学
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Synthesis of vertical graphene nanowalls by cracking n-dodecane using RF inductively-coupled plasma-enhanced chemical vapor deposition
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作者 Jiageng ZHENG Qinhuai TAN +5 位作者 Hang CHEN Angjian WU Xiaodong LI Jianhua YAN Jiaxu DAI Jiao ZHOU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第2期95-103,共9页
A facile and controllable one-step method to treat liquid hydrocarbons and synthesize vertical graphene nanowalls has been developed by using the technique of inductively-coupled plasma-enhanced chemical vapor deposit... A facile and controllable one-step method to treat liquid hydrocarbons and synthesize vertical graphene nanowalls has been developed by using the technique of inductively-coupled plasma-enhanced chemical vapor deposition for plasma cracking of n-dodecane.Herein,the morphology and microstructure of solid carbon material and graphene nanowalls are characterized in terms of different operating conditions,i.e.input power,H2/Ar ratio,injection rate and reaction temperature.The results reveal that the optimal operating conditions were 500 W,5:10,30μl min^-1 and 800℃ for the input power,H2/Ar ratio,injection rate and reaction temperature,respectively.In addition,the degree of graphitization and the gaseous product are analyzed by Raman spectroscopy and gas chromatography detection.It can be calculated from the Raman spectrum that the relative intensity of ID/IG is approximately 1.55,and I2D/IG is approximately 0.48,indicating that the graphene prepared from n-dodecane has a rich defect structure and a high degree of graphitization.By calculating the mass loading and detecting the outlet gas,we find that the cracking rate of n-dodecane is only 6%-7%and that the gaseous products below C2 mainly include CH4,C2H2,C2H4,C2H6 and H2.Among them,the proportion of hydrogen in the outlet gas of n-dodecane cracking ranges from 1.3%-15.1%under different hydrogen flows.Based on our research,we propose a brand new perspective for both liquid hydrocarbon treatment and other value-added product syntheses. 展开更多
关键词 ICPECVD n-dodecane cracking vertical graphene nanowalls
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