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Chemical activation of gasification carbon residue for phosphate removal

机译:气化碳残留物的化学活化磷酸盐去除

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Recycling of waste materials provides an economical and environmentally significant method to reduce the amount of waste. Bioash formed in the gasification process possesses a notable amount of unburned carbon and therefore it can be called a carbon residue. After chemical activation carbon residue could be use to replace activated carbon for example in wastewater purification processes. The effect of chemical activation process variables such as chemical agents and contact time in the chemical activation process were investigated. This study also explored the effectiveness of the chemically activated carbon residue for the removal of phosphate from an aqueous solution. The experimental adsorption study was performed in a batch reactor and the influence of adsorption time, initial phosphate concentration and pH was studied. Due to the carbon residue's low cost and high adsorption capacity, this type of waste has the potential to be utilised for the cost-effective removal of phosphate from wastewaters. Potential adsorbents could be prepared from these carbonaceous by-products and used as an adsorbent for phosphate removal.
机译:废料的回收提供了一种经济和环境的重要方法,以减少废物量。在气化过程中形成的生物泵具有显着的不燃烧碳,因此可以称为碳残留物。化学活化碳残余物可用于替换活性炭,例如废水净化过程。研究了化学活化过程变量如化学试剂和化学活化过程中的接触时间的影响。该研究还探讨了化学活性炭残基的有效性,用于从水溶液中除去磷酸盐。在分批反应器中进行实验吸附研究,研究了吸附时间,初始磷酸浓度和pH的影响。由于碳残留物的低成本和高吸附能力,这种类型的废物具有可用于从废水中的磷酸盐进行成本效益的磷酸盐。潜在的吸附剂可以由这些碳质副产物制备并用作磷酸盐去除的吸附剂。

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