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由磷酸活化咖啡渣制备的碳:亚甲基蓝和 Nylosan Red N-2RBL 的吸附与表征。

Carbons prepared from coffee grounds by H3PO4 activation: characterization and adsorption of methylene blue and Nylosan Red N-2RBL.

机构信息

LCME, Polytech'Savoie, Université de Savoie, 73376 Le Bourget du Lac Cedex, France.

出版信息

J Hazard Mater. 2010 Mar 15;175(1-3):779-88. doi: 10.1016/j.jhazmat.2009.10.076. Epub 2009 Oct 30.

Abstract

Activated carbons were prepared by the pyrolysis of coffee grounds impregnated by phosphoric acid at 450 degrees C for different impregnation ratios: 30, 60, 120 and 180 wt.%. Materials were characterized for their surface chemistry by elemental analysis, "Boehm titrations", point of zero charge measurements, Infrared spectroscopy, thermogravimetric analysis (TGA); as well as for their porous and morphological structure by Scanning Electron Microscopy (SEM) and nitrogen adsorption at 77K. The impregnation ratio was found to govern the porous structure of the prepared activated carbons. Low impregnation ratios (<120 wt.%) led to essentially microporous and acidic activated carbons whereas high impregnation ratios (>120 wt.%) yielded to essentially mesoporous carbons with specific surface areas as high as 925 m(2)g(-1), pore volume as large as 0.7 cm(3)g(-1), and neutral surface. The activated carbons prepared from coffee grounds were compared to a commercial activated carbon (S(BET) approximately 1400 m(2)g(-1)) for their adsorption isotherms of methylene blue and "Nylosan Red N-2RBL", a cationic and anionic (azo) dye respectively. The mesoporous structure of the material produced at 180 wt.% H(3)PO(4) ratio was found to be appropriate for an efficient sorption of the latter azo dye.

摘要

咖啡渣经磷酸浸渍后在 450°C 下热解,制备出不同浸渍比(30、60、120 和 180wt%)的活性炭。通过元素分析、“Boehm 滴定”、零电荷点测量、红外光谱、热重分析(TGA)对材料的表面化学性质进行了表征;通过扫描电子显微镜(SEM)和 77K 下的氮气吸附对多孔和形态结构进行了表征。浸渍比被发现控制了所制备的活性炭的多孔结构。低浸渍比(<120wt%)导致本质上是微孔和酸性的活性炭,而高浸渍比(>120wt%)导致本质上是中孔的碳,比表面积高达 925m²/g,孔体积高达 0.7cm³/g,表面呈中性。将咖啡渣制备的活性炭与商业活性炭(S(BET)约 1400m²/g)进行比较,研究了它们对亚甲蓝和“Nylosan Red N-2RBL”(一种阳离子和阴离子(偶氮)染料)的吸附等温线。发现以 180wt%H₃PO₄ 比例制备的材料的中孔结构有利于后者偶氮染料的有效吸附。

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