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Preparation of carbon-based adsorbents from the pyrolysis of sewage sludge with CO2. Investigation of the acid washing procedure

机译:由污水污泥与CO2的热解制备碳基吸附剂。酸洗程序的调查

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Carbon-based adsorbents were prepared through the physical activation of sewage sludge with CO2. The effect of the acid treatment was investigated, either before or after the physical activation. The post-washing increases the porosity due to the removal of the inorganic fraction and the improvement in the accessibility of the carbon fraction. The post-washing is essential for high activation temperatures since the high reactivity of CO2 leads to a high pore blockage. In fact, the material activated at 900 degrees C has a very low surface area (43m(2)/g), while after washing it reaches 654m(2)/g. The effect of the acid treatment prior to the physical activation depends on temperature: at 600 degrees C, it results in a huge pore development (mainly macropores), while at 900 degrees C, the microporosity increases. The adsorption capacity is not directly related to the BET surface area. For both adsorbates, the uptake ability depends on the textural properties (it is favoured by mesoporosity for methylene blue (MB) and microporosity for phenol) and surface chemistry (favourable effect of oxygen- and nitrogen-containing functional groups for MB and unfavourable effect for phenol).
机译:碳基吸附剂是通过用CO2物理活化污水污泥而制备的。在物理活化之前或之后,研究了酸处理的效果。由于去除了无机部分并改善了碳部分的可及性,因此后洗涤增加了孔隙率。后清洗对于高活化温度是必不可少的,因为CO2的高反应性会导致高孔阻塞。实际上,在900摄氏度下活化的材料的表面积很小(43m(2)/ g),而在清洗后达到654m(2)/ g。物理活化之前酸处理的效果取决于温度:在600摄氏度时,会导致巨大的孔发展(主要是大孔),而在900摄氏度时,微孔会增加。吸附能力与BET表面积没有直接关系。对于两种被吸附物,吸收能力取决于质地特性(亚甲基蓝(MB)的中孔性和苯酚的微孔性)和表面化学(含氧和氮的官能团对MB的有利作用和对甲基丙烯酸的不利作用)。苯酚)。

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