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首页> 外文期刊>Chemistry central journal >Removal of the hazardous, volatile, and organic compound benzene from aqueous solution using phosphoric acid activated carbon from rice husk
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Removal of the hazardous, volatile, and organic compound benzene from aqueous solution using phosphoric acid activated carbon from rice husk

机译:使用稻壳中的磷酸活性炭去除水溶液中的有害,挥发性和有机化合物苯

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Background Benzene is one of the most hazardous organic pollutants in groundwater. The removal of benzene from water is very important from a health point of view and for environmental protection. In this study, benzene adsorption kinetics was investigated using phosphoric acid activated carbon, prepared from rice husk. Results An initial rapid uptake of benzene was observed and became almost constant after 40 minutes of contact. Kinetic data was analyzed using pseudo first order, pseudo second order, and Elovich equations. Kinetic data was well fitted to pseudo-second order models (R2?=?0.98), indicating chemisorption. Results from intraparticle diffusion and Boyed models indicate that particle diffusion is the most probable operating mechanism and does not control the kinetics of benzene sorption. A comparative study on the benzene adsorption revealed that the rice husk carbon (RHC) had better benzene adsorption capacity (365 mg/g) as compared to other adsorbents. Conclusions In conclusion, we have demonstrated that rice husk carbons are efficient benzene adsorbents and that they possess a good potential for benzene removal in wastewater treatment.
机译:背景技术苯是地下水中最危险的有机污染物之一。从健康角度和环境保护的角度来看,从水中去除苯非常重要。在这项研究中,使用稻壳制得的磷酸活性炭研究了苯的吸附动力学。结果观察到苯的初始快速吸收,并且在接触40分钟后几乎保持恒定。使用伪一阶,伪二阶和Elovich方程分析动力学数据。动力学数据很好地拟合到伪二级模型(R 2≥0.98),表明化学吸附。粒子内扩散和博伊德模型的结果表明,粒子扩散是最可能的操作机制,并不控制苯吸附的动力学。对苯吸附的比较研究表明,与其他吸附剂相比,稻壳碳(RHC)具有更好的苯吸附能力(365 mg / g)。结论总之,我们已经证明稻壳碳是有效的苯吸附剂,并且它们在废水处理中具有良好的除苯潜力。

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