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Mesoporous activated carbon produced from coconut shell using a single-step physical activation process

机译:使用单步物理激活过程从椰子壳生产的中孔活性炭

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摘要

In this work, the pore properties and textural characterization of resulting activated carbons (ACs) derived from dried coconut shell (DCS) were investigated in duplicate using a single-step physical activation process. Based on the thermochemical properties of DCS analyzed, the process features its carbonization temperature of 500 A degrees C at a constant heating rate of 10 A degrees C/min under nitrogen flow, subsequently switched to the gasification with CO2 gas in the ranges of 700-900 A degrees C (activation temperature) and 0-60 min (holding time) in the same reactor. The results showed that the pore properties (including mesoporosity) of resulting AC products, obtained from nitrogen adsorption-desorption isotherm and true density measurements, were on an increasing trend as activation temperature and holding time increased. These findings were attributable to the severe reactions of the lignocellulose-based char with CO2. According to the maximal Brunauer-Emmet-Teller (BET) surface area (E integral 1100 m(2)/g) and mesoporosity percentage (E integral 40%), the optimal activation conditions should be performed at 850 A degrees C for a holding time of 60 min, but will result in relatively low yield. Furthermore, the textural structures and elemental compositions of DCS-based ACs were viewed using the scanning electron microscopy-energy dispersive X-ray spectroscopy (SEM-EDS) and elemental analysis, showing consistent results as described above.
机译:在这项工作中,使用单步物理活化过程重复研究衍生自干椰壳(DCS)的所得活性炭(ACS)的孔隙性能和纹理表征。基于分析DCS的热化学性质,该方法在氮气流动下以10℃/ min的恒定加热速率为500℃的碳化温度,随后在700-的范围内用CO2气体切换到气化。在同一反应器中900℃(活化温度)和0-60分钟(保持时间)。结果表明,由氮吸附 - 解吸等温线和真实密度测量获得的所得AC产物的孔特性(包括介孔率)在激活温度和保持时间增加,呈上升趋势。这些发现可归因于基于木质纤维素的焦炭的严重反应,CO 2。根据最大Brunauer-Emmet-experer(BET)表面积(E积分1100m(2)/ g)和中孔率百分比(E积分40%),应在850℃下进行最佳活化条件以保持时间为60分钟,但会导致相对低的收益率。此外,使用扫描电子显微镜 - 能量分散X射线光谱(SEM-EDS)和元素分析观察DCS的ACs的纹理结构和元素组成,显示如上所述的一致结果。

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