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Optimization of chemical regeneration procedures of spent activated carbon

机译:废活性炭化学再生程序的优化

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The chemical regeneration of granular activated carbon exhausted in a petrochemical wastewater unit was investigated. Gas chromatography and energy-dispersive X-ray spectroscopy demonstrated that spent activated carbon carries large types of organic and inorganic materials. Diverse chemical solvents were adopted in comparison with traditional chemical solvents and regeneration efficiency was investigated for each approach. The optimum procedure and optimum condition including temperature, concentration of solvent, and time were determined. The regenerated activated carbon was used in the adsorption of methylene blue (MB) in order to find its regeneration efficiency. The regeneration efficiency can be identified by comparing of amount of MB absorbed by the fresh and regenerated activated carbon. The best acidic regenerator was hydrofluoric acid. The higher the temperature causes the faster desorption rate and consequently, the higher regeneration efficiency. The regeneration efficiency increased by means of an increase in the time of regeneration and solvent concentration, but there was an optimum time and solvent concentration for regeneration. The optimum temperature, solvent concentration and regeneration time obtained was 80 ?C, 3?molar and 3 hours, respectively.
机译:研究了石化废水单元中排出的颗粒状活性炭的化学再生。气相色谱法和能量色散X射线光谱法表明,用过的活性炭带有多种类型的有机和无机材料。与传统化学溶剂相比,采用了多种化学溶剂,并研究了每种方法的再生效率。确定了最佳程序和最佳条件,包括温度,溶剂浓度和时间。为了找到再生效率,将再生的活性炭用于吸附亚甲基蓝(MB)。可以通过比较新鲜的和再生的活性炭吸收的MB量来确定再生效率。最好的酸性再生器是氢氟酸。温度越高,解吸速率越快,因此再生效率越高。再生效率通过增加再生时间和溶剂浓度而增加,但是存在用于再生的最佳时间和溶剂浓度。获得的最佳温度,溶剂浓度和再生时间分别为80°C,3μmol和3小时。

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