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Development of Porous Materials Using Sewage Sludge by Molten-salt Method

机译:熔融盐法利用污泥开发多孔材料

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This study is about the development of porous material which shapes 03~8mm bead with sewage sludge by molten-salt method. The development of porous material was conducted by 2 different processes. One is made by molding sewage sludge into beads with pelletizer and then coating the beads with molten-salt and lastly sintered at 1050°C, and the other is mixing sewage sludge with molten-salt which is using synthesized zeolite, and then molding the mixture into beads with pelletizer. The molded mixture is finally sintered at 1050°C. We evaluated the value of developed material as sorbent and artificial soil for tree-planning by analyzing surface area, distribution of pore size, and cation exchange capacity(CEC). According to the results, surface coated porous material have 92.8m~2/g of surface area and CEC 98.9meq/100g and the mixture sewage sludge with molten-salt have 104.1m~2/g of surface area and CEC 140.8meq/100g. Thus, developed porous material can be applied to various uses as sorbent and artificial soil.
机译:本研究是关于利用盐溶法将污泥定形为03〜8mm的微孔的多孔材料的研究。多孔材料的开发是通过两种不同的方法进行的。一种方法是用造粒机将污水污泥模制成珠,然后用熔融盐包被珠,最后在1050°C下烧结,另一种是将污水污泥与熔融盐混合(使用合成沸石),然后模制混合物用造粒机切成小珠。最后将模制的混合物在1050℃下烧结。通过分析表面积,孔径分布和阳离子交换容量(CEC),我们评估了开发的材料作为吸附剂和人造土壤用于树木规划的价值。根据结果​​,表面涂覆的多孔材料的表面积为92.8m〜2 / g,CEC为98.9meq / 100g,含盐的混合污泥的表面积为104.1m〜2 / g,CEC为140.8meq / 100g。 。因此,开发的多孔材料可以被用作吸附剂和人造土壤的各种用途。

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