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A novel thermal process for activated carbon production from the vetch biomass with air at low temperature by two-stage procedure

机译:低温空气中两步法从紫the生物质生产活性炭的新型热过程

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摘要

The method differs from a known method for the pyrolysis processing of agriculture waste. In this article, a novel thermal process of producing activated carbon from the vetch at low temperature by air is discussed. This paper reports the preparation of activated carbon with two-stage pyrolysis with air from the vetch by zinc chloride activation. The experiments in this study vary the pre- and post-treatment procedures, the impregnation ratio of the activating agent, and the carbonization temperature. The pyrolysis was carried out at different low activation temperatures in the range of 30-80 and 240-400 ℃. Adsorption capacity was demonstrated with BET and iodine number. The respective highest BET surface area and iodine number for the produced activated carbons was obtained as 1287 m~2/g and 1004mg/g. SEM evaluated the structural morphology of activated carbons. The surface chemical characteristics of activated carbons were determined by FTIR spectroscopic method. The use of low temperature chemical carbonization has the potential to further improve the economics of generating activated carbon.
机译:该方法不同于用于农业废物热解处理的已知方法。在本文中,讨论了一种在低温下通过空气由紫producing生产活性炭的新型热处理工艺。本文报道了用两步热解法从山etch中通过氯化锌活化制得的空气进行活性炭的制备。这项研究中的实验改变了预处理和后处理程序,活化剂的浸渍率以及碳化温度。热解是在30-80和240-400℃的不同低活化温度下进行的。用BET和碘值证明吸附能力。得到的活性炭的最高BET表面积和碘值分别为1287m〜2 / g和1004mg / g。 SEM评估了活性炭的结构形态。通过FTIR光谱法测定了活性炭的表面化学特性。低温化学碳化的使用有可能进一步提高产生活性炭的经济性。

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