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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >A Green Route to High-Surface Area Carbons by Chemical Activation of Biomass-Based Products with Sodium Thiosulfate
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A Green Route to High-Surface Area Carbons by Chemical Activation of Biomass-Based Products with Sodium Thiosulfate

机译:通过硫代硫酸钠的生物质基产品的化学活化通过化学活化来到高表面积碳的绿色途径

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摘要

A simple, sustainable, and affordable approach for the synthesis of highly porous carbons is presented. The procedure is based on the use of sodium thiosulfate as an activating agent and a variety of biomass-based products (glucose, sucrose, and gelatine) as carbon precursors. The synthesis scheme involves three steps: (a) mixing the reactants by grinding, (b) heat treatment at temperatures in the 800900 degrees C range, and (c) extracting the carbon material from the carbonized solid by simple washing with water. The generation of the pore structure is based on the redox reaction between the carbonaceous matter and sodium thiosulfate acting as an oxidant. In this way, porous carbons with high BET surface areas in the similar to 2000-2700 m(2) g(-1) range and large pore volumes of up to 2.4 cm(3) g(-1) are obtained. The porosity of these carbons consists of two pore systems made up of narrow micropores of 0.8 nm and larger pores of up to 5 nm. These porous carbons have a certain amount of sulfur (similar to 2-3%) that is incorporated into the carbon framework as thiophene-like and oxidized sulfur groups. Additionally, in the case of gelatine, N content up to 2-3% is preserved.
机译:介绍了一种简单,可持续和合成的高度多孔碳的合成方法。该方法基于使用硫代硫酸钠作为活化剂和各种基于生物质的产物(葡萄糖,蔗糖和明胶)作为碳前体。合成方案涉及三个步骤:(a)通过研磨(b)在800900℃范围内的温度下热处理混合反应物,并通过简单地用水从碳化固体中提取碳材料。孔隙结构的产生是基于碳质质和硫代硫酸钠的氧化还原反应作用作为氧化剂。以这种方式,获得具有高BEES表面区域的多孔碳,类似于2000-2700M(-1)范围和高达2.4cm(3 )g(-1)的大孔体积。这些碳的孔隙率由两个孔系统组成,由0.8nm的窄微孔组成,孔的较大孔最多5nm。这些多孔碳具有一定量的硫(类似于2-3%),其掺入碳骨架中作为噻吩样和氧化硫基团。另外,在明胶的情况下,保留高达2-3%的N含量。

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