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Porosity Development in Activated Carbons Prepared from Walnut Shells by Carbon Dioxide or Steam Activation

机译:二氧化碳或水蒸气活化从核桃壳制得的活性炭中的孔隙度增加

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摘要

The influence of carbon dioxide and steam as activating agents on the porosity development of activatedcarbons produced from walnut shells was investigated. The study was made covering a wide range of burnoff(12-76%) and employing different temperatures and times: in carbon dioxide activation, 850 °C varying theactivation time in the range 60-480 min, and in steam activation, 700, 850, and 900 °C (for 30-120 min).It was found that the gasifying agent has a profound influence on the activated carbon porosity development.First, steam is more reactive and produces, in general, activated carbons with greater N2 adsorption capacity.Second, the increase in the fraction of mesopores with activation time is more pronounced for steam. Whilesteam generates micro-, meso-, and macropores from the early stages of the process, carbon dioxide produceshighly microporous carbons, with broadening of the microporosity only for long activation times.
机译:研究了二氧化碳和蒸汽作为活化剂对核桃壳产生的活性炭孔隙率的影响。这项研究涵盖了广泛的燃尽(12-76%)并采用了不同的温度和时间:在二氧化碳活化中,温度为850°C,活化时间在60-480分钟内变化,在蒸汽活化中,温度为700、850在900°C(30-120分钟)的温度下,发现气化剂对活性炭孔隙率的发展有深远的影响:首先,蒸汽更具反应性,通常会产生具有更大的N2吸附能力的活性炭其次,对于蒸汽来说,中孔分数随活化时间的增加更为明显。尽管蒸汽从该过程的早期阶段就产生了微孔,中孔和大孔,但二氧化碳产生的微孔碳含量很高,而微孔的扩宽仅适用于较长的活化时间。

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