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Production of porous carbonaceous adsorbent from physical activation of sewage sludge: application to wastewater treatment

机译:污水污泥的物理活化生产多孔碳质吸附剂:在废水处理中的应用

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With an objective of production of carbonaceous sorbent for industrial effluent treatment, physical activation by steam of biological sludge collected from the municipal wastewater treatment plant of Nantes (France) was studied and optimised using experimental design. Thus, this activation process consists of a carbonisation under N-2 atmosphere at 600 degrees C for 1 h, followed by a thermal oxidation using steam (760 degrees C, 0.5 h, 2.5 L/min). The global mass yield of the process is equal to 38%. The thermal treatment allows a specific surface area of up to 225 m(2)/g to be reached, the porous structure being composed of both micropores and mesopores. The content of acidic surface groups is 0.71 mEq/g whereas that of basic surface groups is 0.55 mEq/g. The adsorption properties of the sorbent made from sludge are estimated with regard to various pollutants representative of industrial pollution of wastewaters and compared with those of commercial activated carbon. Whereas the adsorption capacities of organic micropollutants are quite low because of proportionality to the microporosity, the important mesoporosity of the sorbent leads to interesting properties for macromolecules removal from aqueous solutions, such as dyes (q(m) = 175-200 mg/g). Furthermore, the surface functional groups and Ca2+ ions within the materials allow high copper ion adsorption capacities of 140 mg/g to be obtained. Finally, a techno-economic approach shows that the sludge activation process seems to be economically competitive with regard to incineration.
机译:为了生产用于工业废水处理的含碳吸附剂,研究并利用实验设计优化了从南特市(法国)市政污水处理厂收集的生物污泥的蒸汽物理活化。因此,该活化过程包括在N-2气氛下于600摄氏度下碳化1小时,然后使用蒸汽进行热氧化(760摄氏度,0.5小时,2.5升/分钟)。该过程的全球总产率等于38%。热处理可使比表面积达到225 m(2)/ g,多孔结构由微孔和中孔组成。酸性表面基团的含量为0.71mEq / g,而碱性表面基团的含量为0.55mEq / g。针对代表废水工业污染的各种污染物,估算了由污泥制成的吸附剂的吸附性能,并将其与商业活性炭进行了比较。尽管由于与微孔率成比例,有机微污染物的吸附能力非常低,但吸附剂的重要中孔率却导致了从水溶液中去除大分子的有趣特性,例如染料(q(m)= 175-200 mg / g) 。此外,材料中的表面官能团和Ca2 +离子可实现140 mg / g的高铜离子吸附能力。最后,一种技术经济方法表明,污泥活化过程在焚化方面似乎具有经济竞争力。

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