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Adsorption of Specific Organics in Water on GAC and Regenertion of GAC by Countercurrent Oxidative Reation

机译:GAC对水中特定有机物的吸附及逆流氧化反应对GAC的再生作用

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Granular activated carbon (GAC) is highly effective in removing organic compounds which are resistant to biological disintegration in wastewater treatment. However, when GAC has reached its full adsorptive capacity, GAC needs to be regenerated before it can be used for a further adsorption cycle. Countercurrent oxidation reaction (COR) technique has been developed and evaluated for the regeneration of spent GAC. Various parameters such as flame temperature, the loss of carbon, destruction and removal efficiency (DRE) of organic compounds, suface area, surface structure, adsorptive capacity,etc. were examined to determine the performance of COR. The results of these tests showed that adsorptive capacity of regenerated GAC was completely recovered, the loss of carbon was controllable, flame temperature was high enough to insure completely destruction and removal (∶99.9999 %) of specific organics of interest, polychlorinated biphenyls (PCBs), that are thermally stable, and no formation of toxic byproducts such as polychlorinated dibenzo-p-dioxins (PCDDs) or polychlorinated dibenzofurans (PCDFs) were detected during the regeneration process. The COR technique is environmentally benign, easy to use and less capital intensive than other available regeneration technologies.
机译:颗粒活性炭(GAC)在去除有机化合物方面非常有效,这些有机化合物可抵抗废水处理中的生物分解。但是,当GAC达到其完全吸附能力时,GAC需要先进行再生,然后才能用于进一步的吸附循环。已经开发了逆流氧化反应(COR)技术并评估了废GAC的再生。各种参数,例如火焰温度,碳损失,有机化合物的破坏和去除效率(DRE),表面面积,表面结构,吸附能力等。检查以确定COR的性能。这些测试的结果表明,再生的GAC的吸附能力已完全恢复,碳的损失是可控制的,火焰温度足够高,可以确保完全销毁和去除感兴趣的特定有机物多氯联苯(PCBs)(∶99.9999%)。具有热稳定性,并且在再生过程中未检测到有毒副产物的形成,例如多氯二苯并-对-二恶英(PCDD)或多氯二苯并呋喃(PCDF)。与其他可用的再生技术相比,COR技术对环境无害,易于使用,且资本密集度较低。

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