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使用商业活性炭和甜菜粕基活性炭对糖浆进行脱色处理。

Decolorization of sugar syrups using commercial and sugar beet pulp based activated carbons.

作者信息

Mudoga H L, Yucel H, Kincal N S

机构信息

Department of Chemical Engineering, Middle East Technical University, Ankara 06531, Turkey.

出版信息

Bioresour Technol. 2008 Jun;99(9):3528-33. doi: 10.1016/j.biortech.2007.07.058. Epub 2007 Sep 7.

Abstract

Sugar syrup decolorization was studied using two commercial and eight beet pulp based activated carbons. In an attempt to relate decolorizing performances to other characteristics, surface areas, pore volumes, bulk densities and ash contents of the carbons in the powdered form; pH and electrical conductivities of their suspensions and their color adsorption properties from iodine and molasses solution were determined. The color removal capabilities of all carbons were measured at 1/100 (w/w) dosage, and isotherms were determined on better samples. The two commercial activated carbons showed different decolorization efficiencies; which could be related to their physical and chemical properties. The decolorization efficiency of beet pulp carbon prepared at 750 degrees C and activated for 5h using CO2 was much better than the others and close to the better one of the commercial activated carbons used. It is evident that beet pulp is an inexpensive potential precursor for activated carbons for use in sugar refining.

摘要

使用两种商业活性炭和八种甜菜粕基活性炭对糖浆脱色进行了研究。为了将脱色性能与其他特性联系起来,测定了粉末状活性炭的表面积、孔体积、堆积密度和灰分含量;测定了它们悬浮液的pH值和电导率以及它们对碘和糖蜜溶液的颜色吸附特性。所有活性炭的脱色能力均在1/100(w/w)剂量下进行测量,并对性能较好的样品测定等温线。两种商业活性炭表现出不同的脱色效率;这可能与它们的物理和化学性质有关。在750℃下制备并使用二氧化碳活化5小时的甜菜粕活性炭的脱色效率比其他活性炭要好得多,并且接近所使用的商业活性炭中性能较好的一种。显然,甜菜粕是用于制糖精炼的活性炭的一种廉价潜在前驱体。

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