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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Iodine-assisted control of the pore and morphology in the porous carbons prepared by the carbonization of ion-exchange resins
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Iodine-assisted control of the pore and morphology in the porous carbons prepared by the carbonization of ion-exchange resins

机译:通过离子交换树脂碳化制备的多孔碳的碘辅助控制孔隙和形态

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In this study, iodine stabilization treatment was employed to prepare spherical porous carbons by the carbonization of the Na+-form and K+-form of acrylic ion-exchange resins. Iodine treatment led to the increased carbonization yield of carbon and the successful maintenance of the bead shape of the raw resin. The as-obtained carbons contained by-products such as alkali metal carbonate or iodide. The removal of these salts with water led to carbons with well-developed porous structure. In addition, the pore size distribution and surface area changed with the variation in the iodine treatment time and carbonization temperature. The 1-h iodine-treated K+-form resin was converted to spherical carbon with the highest surface area of around 2000 m(2)/g at a carbonization temperature of 800 degrees C. Above this temperature, meso/macropores were introduced because of the considerable emphasis of the activation effect of the by-products.
机译:在该研究中,使用碘稳定化处理来通过丙烯酸离子交换树脂的Na + - 甲型和K + -Form的碳化制备球形多孔碳。 碘治疗导致碳化率的增加和原料树脂珠子形状的成功维持。 通过产品如碱金属碳酸盐或碘化物所含的碳。 用水去除这些盐,带有发育良好的多孔结构的碳。 另外,孔径分布和表面积随碘处理时间和碳化温度的变化而变化。 将1-H碘处理的K + -Form树脂转化为球形碳,在800℃的碳化温度下,最高表面积约为2000米(2)/ g的最高表面积。在此温度以上,因此引入了Meso / Macropores 相当强调副产品的激活效果。

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