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Feasibility study on preparation activated carbon from sewage sludge exploiting low oxygen flue gas

机译:利用低氧烟气制备污泥活性炭的可行性研究

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This study focused on the feasibility of exploiting low oxygen flue gas to prepare activated carbon from sludge to improve the economic efficiency. Base on the physical (steam as activated agent) and chemical (ZnCl2 as activated agent) activation method, the effect of the operation parameters such as activation temperature, time, steam content, the ratio of sludge to ZnCl2 and oxygen content on the performance of sludge-derived activated carbon was investigated. The performance of the activated carbon was characterized by BET surface area, methylene blue adsorption value and methyl orange adsorption value. The results show that the optimal operational parameters of activation temperature, time and steam content are 800°C, 90min and 34.8% respectively for the physical activation method. However, the products are not so good. The specific surface area, yield, adsorption value of methylene blue and methyl orange are only 246.3m2·g-1, 46%, 18.1 mg·g-1, 14.8mg·g-1 respectively. The flue gas is not enough for physical activation to produce activated carbon due to its low vapor content and high operation cost to satisfy demands of high activation temperature. Considering the chemical activation method, the existence of oxygen can promote the formation and development of micropore of activated carbon. The optimal oxygen content is about 2%~4% for ZnCl2 as activated agent. Under the optimal condition of activation temperature 550°C, activation time 90min and oxygen content 2%, the specific surface area and methylene blue adsorption value are the largest, which are 516.1m2·g-1 and 129.8mg·g-1. The pore volume, micropore volume and average pore size are 0.29cm3·g-1, 0.16cm3·g-1 and 3.95nm respectively. All the data demonstrate that combination with chemical activation, the flue gas with high temperature and low oxygen content can be used as heat resource, shielding gas and activation gas to produce activated carbon from dewatered sludge with moisture content higher than 80% directly. This study can provide a theoretical basis to low the cost of production sludgederived activated carbon and realize recycling of sludge.
机译:本研究专注于利用低氧气烟气的可行性,以制备污泥的活性炭,以提高经济效率。基于物理(蒸汽作为活化剂)和化学(ZnCl2作为活化剂)活化方法,操作参数如活化温度,时间,蒸汽含量,污泥与ZnCl2的比率和氧含量的性能研究了污泥衍生的活性炭。通过BET表面积,亚甲基蓝吸附值和甲基橙吸附值表征活性炭的性能。结果表明,对于物理激活方法,活化温度,时间和蒸汽含量的最佳操作参数分别为800°C,90分钟和34.8%。但是,产品不是那么好。亚甲基蓝和甲基橙的比表面积,产率,吸附值仅为246.3m 2·g-1,46%,18.1mg·g-1,14.8mg·g-1。由于其低蒸汽含量和高运行成本,烟气气体不足以产生活性炭,以满足高活化温度的需求的高运行成本。考虑到化学活化方法,氧的存在可以促进活性炭微孔的形成和发育。 ZnCl2作为活性剂的最佳氧含量约为2%〜4%。在活化温度的最佳条件下,550℃,活化时间90min和氧含量2%,比表面积和亚甲基蓝吸附值最大,其为516.1m2·g-1和129.8mg·g-1。孔体积,微孔体积和平均孔径分别为0.29cm 3·g-1,0.16cm3·g-1和3.95nm。所有数据表明,与化学活化的组合,具有高温和低氧含量的烟道气可用作热资源,屏蔽气体和活化气体,以产生从脱水污泥的活性炭,其水分含量直接高于80%。该研究可以为低于生产疏水活性炭的生产成本提供理论基础,实现污泥的再循环。

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