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利用葡萄藤废料(葡萄种植业的废弃物)获取活性炭。

Use of grape stalk, a waste of the viticulture industry, to obtain activated carbon.

机构信息

Instituto de Ingeniería Química, Facultad de Ingeniería, Universidad Nacional de San Juan, Av. Libertador 1109, (5400) Capital, San Juan, Argentina.

出版信息

J Hazard Mater. 2009 Dec 15;172(1):13-9. doi: 10.1016/j.jhazmat.2009.06.095. Epub 2009 Jun 25.

Abstract

Grape stalk is an organic waste produced in great amounts in the industrialization processes of grape. This work presents the results of studies carried out to use this waste as raw material to prepare activated carbon through the physical and chemical route. The physicochemical characterization of this material suggests the presence of unusually high levels of ashes. Metal content was determined and high levels of potassium, sodium, iron, calcium and magnesium in carbonized and raw grape stalk were exhibited. This characteristic made difficult physical activation at high temperatures. A leaching step was included before the activation with steam, and adsorbents with surface areas between 700 and 900 m(2)/g were obtained. Physical activation was also performed at lower temperatures using carbonized grape stalk without leaching, leading to the development of some grade of porosity, with an area of 412 m(2)/g. These results would indicate the catalytic effect of the minerals present in this raw material. Chemical activation using phosphoric acid as activating agent seemed to be a very efficient method as final products with BET areas between 1000 and 1500 m(2)/g were obtained.

摘要

葡萄梗是在葡萄产业化过程中产生的大量有机废物。本工作介绍了将这种废物作为原料,通过物理化学途径制备活性炭的研究结果。该材料的物理化学特性表明其灰分含量异常高。测定了金属含量,结果表明碳化和未碳化的葡萄梗中钾、钠、铁、钙和镁的含量很高。这一特性使得在高温下进行物理活化变得困难。在蒸汽活化之前进行了浸出步骤,得到了比表面积在 700 到 900 m(2)/g 之间的吸附剂。还使用未经浸出的碳化葡萄梗在较低温度下进行了物理活化,从而开发出某种程度的孔隙度,比表面积为 412 m(2)/g。这些结果表明,该原料中存在的矿物质具有催化作用。使用磷酸作为活化剂的化学活化似乎是一种非常有效的方法,因为最终产物的 BET 比表面积在 1000 到 1500 m(2)/g 之间。

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