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Removal of copper ions from aqueous solution using low temperature biochar derived from the pyrolysis of municipal solid waste

机译:使用源自城市固体废物热解的低温生物炭从水溶液中去除铜离子

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Sustainable methods to produce filter materials are needed to remove a variety of pollutants found in water including organic compounds, heavy metals, and other harmful inorganic and biological contaminants. This study focuses on the removal of Cu(II) from copper aqueous solutions using non-activated char derived fromthe pyrolysis of mixed municipal discarded materials (MMDM) using a new heat pipe-based pyrolysis reactor. Adsorption experiments were conducted by adding the char to copper solutions of varying concentration (50-250 mg/L) at a constant temperature of 30 degrees C. The effect of pH on copper adsorption onto the char was also investigated in the range of pH 3 to 6. Copper removal using the char was found to be heavily dependent on pH, adsorption was observed to decrease below a pH of 4.5. However, the initial copper concentration had a little effect on the sorption of copper at high concentration solutions (above 100 mg/L). Overall, the biochar showed an effective copper adsorption capacity (4-5 mg/g) when using copper solutions with a concentration below100 mg/L and pH 4.5. Copper removal using the char tended to follow the pseudo second order kinetic model. Langmuir isothermal model was shown to be the closest fitting isothermusing the linearized Langmuir equation. However, the variety of feedstock used to produce the char led to a variation in results compared to other studies of more specific feedstocks. (c) 2019 The Author(s). Published by Elsevier B.V.
机译:需要一种可持续的方法来生产过滤材料,以去除水中发现的各种污染物,包括有机化合物,重金属以及其他有害的无机和生物污染物。这项研究的重点是使用一种新型的基于热管的热解反应器,利用混合市政废弃材料(MMDM)的热解过程中得到的非活性炭,从铜水溶液中去除Cu(II)。通过在30℃的恒定温度下将焦炭添加到各种浓度(50-250 mg / L)的铜溶液中来进行吸附实验。还研究了在pH 3的范围内pH对铜吸附到炭上的影响。到6。发现使用焦炭去除铜在很大程度上取决于pH,观察到吸附在pH低于4.5时降低。但是,初始铜浓度对高浓度溶液(高于100 mg / L)下的铜吸附几乎没有影响。总体而言,当使用浓度低于100 mg / L且pH> 4.5的铜溶液时,生物炭显示出有效的铜吸附能力(4-5 mg / g)。使用炭去除铜的趋势倾向于遵循伪二级动力学模型。结果表明,Langmuir等温模型是线性线性Langmuir方程的最合适的等温线。但是,与其他针对更具体原料的研究相比,用于生产炭的原料种类繁多,导致结果有所不同。 (c)2019作者。由Elsevier B.V.发布

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