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Physical and Electrochemical Properties of Supercapacitor Composite Electrodes Prepared from Biomass Carbon and Carbon from Green Petroleum Coke

机译:从生物质碳和绿色石油焦炭制备的超级涂物复合电极的物理和电化学性能

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The green monoliths (GMs) were prepared from the mixtures of pre-carbonized fibers of oil palm empty fruit bunches (or self-adhesive carbon grains (SACG)) and green petroleum coke (GPC) with the mixing ratio of 0, 10, 30, 50 and 70 % GPC, respectively. The GMs were carbonized in N_2 environment at 800oC to produce carbon monoliths (CM00, CM10, CM30, CM50 and CM70). The CMs were CO_2 activated at 800oC for 1 hour to produced activated carbon monolith electrodes (ACM00, ACM10, ACM30, ACM50 and ACM70). For each percentage of GPC, three duplicate symmetrical supercapacitor cells were fabricated using these activated carbon monolith electrodes respectively, and the capacitive performance amongst the cells was compared and analyzed in order to observe the relationship between the capacitive performance and the physical properties (microstructure and porosity) of the ACMs electrodes containing varying percentage of GPC.
机译:从油棕空果束(或自粘碳晶粒(SACG))和绿色石油焦(GPC)的混合比为0,10,30的混合比例,从碳化纤维的混合物中制备了绿色单极性(GMS)。分别为50%和70%GPC。将GMS在8000C中在N_2环境中碳化以产生碳整料(CM00,CM10,CM30,CM50和CM70)。 CMS在800℃下激活CMS 1小时,以产生活性炭整体电极(ACM00,ACM10,ACM30,ACM50和ACM70)。对于每种百分比的GPC,分别使用这些活化的碳整体电极制造了三个重复的对称超电容器细胞,并进行了细胞中的电容性能,以观察电容性能与物理性质之间的关系(微观结构和孔隙率之间的关系)含有不同百分比的GPC百分比的ACMS电极。

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