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Utilization of wheat bran for producing activated carbon with high specific surface area via NaOH activation using industrial furnace

机译:利用麦麸通过工业炉通过NaOH活化生产高比表面积的活性炭

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Waste of wheat bran was used for the first time to prepare activated carbon with high specific surface area via sodium hydroxide activation. The effects of activation temperature (700-900 degrees C) and NaOH mass ratio (1-5) on surface area were studied. Products were characterized by thermal analysis, nitrogen adsorption-desorption, X-ray diffraction, infrared spectroscopy, scanning electron microscopy and transmission electron microscopy. One development model was used to explain the evolution of pore structure. The product synthesized at 800 degrees C with mass ratio of 4 possessed the largest surface area of 2543 +/- 89 m(2)/g with low ash content of 0.68 +/- 0.03 wt%. For liquid adsorption of methylene blue, the maximum adsorption capacity was recorded as 887.3 +/- 24.9 mg/g, higher than 663.8 +/- 14.8 mg/g for commercial coconut shell carbon. Adsorption data were fitted well with the Redlich-Peterson isotherm and pseudo-second order model, closing to surface area. Cost of carbon production using industrial furnace was calculated as 3.56 +/- 0.18 $/kg (reduced 32.4% than tube furnace), with output of 1.28 +/- 0.07 kg/d (improved 11.8 times). It could be demonstrated that wheat bran was an effective and sustainable raw material to obtain low cost carbon product with high surface area, indicating its potential utilization. (C) 2018 Elsevier Ltd. All rights reserved.
机译:第一次使用麦麸废料通过氢氧化钠活化制备具有高比表面积的活性炭。研究了活化温度(700-900摄氏度)和NaOH质量比(1-5)对表面积的影响。通过热分析,氮吸附-解吸,X射线衍射,红外光谱,扫描电子显微镜和透射电子显微镜对产品进行表征。一种发展模型被用来解释孔隙结构的演变。在800摄氏度下以4的质量比合成的产品具有2543 +/- 89 m(2)/ g的最大表面积,且灰分含量低至0.68 +/- 0.03 wt%。对于亚甲基蓝的液体吸附,记录的最大吸附容量为887.3 +/- 24.9 mg / g,高于商品椰子壳碳的663.8 +/- 14.8 mg / g。吸附数据与Redlich-Peterson等温线和伪二级模型拟合得很好,接近表面积。使用工业炉的碳生产成本经计算为3.56 +/- 0.18 $ / kg(比管式炉降低32.4%),产量为1.28 +/- 0.07 kg / d(提高了11.8倍)。可以证明,麦麸是获得高表面积低成本碳产品的有效且可持续的原料,表明了其潜在的利用价值。 (C)2018 Elsevier Ltd.保留所有权利。

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