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Activated carbon from lignocellulosic biomass‐phenolic resin

机译:木质纤维素生物质酚醛树脂活性炭

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AbstractLignocellulosic biomass of agricultural/industrial by‐products residues was taken after the pressing and extraction of olive‐oil and lignin Klason and a‐cellulose were isolated. Also, phenol‐formaldehyde was polymerized by using an acid catalyst. Various mixtures of lignocellulosic materials and novolac resin were cured with haxamethylenetetramine and then pyrolyzed up to 1000°C. The IR‐Spectrum of the cured material consisted of 20 novolac and 80 cellulose is practically similar to that of 100 cellulose. The corresponding material with lignin Klason instead of cellulose has different IR‐Spectrum compared to that of 100 lignin, because of additional reactions taken place between lignin and novolac under curing conditions. The weight losses, the shrinkages at the end of the pyrolysis, the specific surface area of the carbonaceous materials produced and their adsorption abilities of methylene blue and alizarin yellow from aqueous solutions were determined. The material consisted of 20 novolac and 80 cellulose or 80 lignin, appears as optimum characteristics of production process. The experimental results are also discussed under the aspect of sample shapes that influence the adsorption as well as the electron donor–acceptor (EDA) interactions between the functional groups of dyes and the carbonaceous materials. © 1994 John
机译:摘要 提取橄榄油、木质素Klason和a-纤维素后,采集农业/工业副产品残留物的木质纤维素生物质。此外,酚醛使用酸催化剂聚合。木质纤维素材料和酚醛清漆树脂的各种混合物用哈沙亚甲基四胺固化,然后热解至1000°C。 固化材料的红外光谱由20%酚醛清漆和80%纤维素组成,几乎与100%纤维素相似。与100%木质素相比,用木质素代替纤维素的相应材料具有不同的红外光谱,因为在固化条件下木质素和酚醛清漆之间发生了额外的反应。测定了所生产的碳质材料的重量损失、热解结束时的收缩率、比表面积及其对亚甲基蓝和茜素黄对水溶液的吸附能力。该材料由20%的酚醛清漆和80%的纤维素或80%的木质素组成,似乎是生产过程的最佳特性。实验结果还从影响吸附的样品形状以及染料官能团与含碳材料之间的电子给体-受体(EDA)相互作用的角度进行了讨论。© 1994 约翰

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