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Adsorption and kinetics study of manganesse (II) in waste water using vertical column method by sugar cane bagasse

机译:甘蔗法用甘蔗法用垂直柱法在废水中锰(II)的吸附和动力学研究

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Removal of heavy metal content in wastewater has been largely done by various methods. One effective and efficient method is the adsorption method. This study aims to reduce manganese (II) content in wastewater based on column adsorption method using absorbent material from bagasse. The fixed variable consisted of 50 g adsorbent, 10 liter adsorbate volume, flow rate of 7 liters / min. Independent variable of particle size with variation 10 - 30 mesh and contact time with variation 0 - 240 min and respon variable concentration of adsorbate (ppm), pH and conductivity. The results showed that the adsorption process of manganese metal is influenced by particle size and contact time. The adsorption kinetics takes place according to pseudo-second order kinetics with an equilibrium adsorption capacity (qe: mg / g) for 10 mesh adsorbent particles: 0.8947; 20 mesh adsorbent particles: 0.4332 and 30 mesh adsorbent particles: 1.0161, respectively. Highest removal efficience for 10 mesh adsorbent particles: 49.22% on contact time 60 min; 20 mesh adsorbent particles: 35,25% on contact time 180 min and particle 30 mesh adsorbent particles: 51,95% on contact time 150 min.
机译:除雾废水中的重金属含量在很大程度上通过各种方法进行。一种有效和有效的方法是吸附方法。本研究旨在基于使用Bagasse的吸收材料的柱吸附方法减少废水中的锰(II)含量。固定变量由50g吸附剂,10升吸附体积,7升/分钟的流速。粒度的独立变量10-30目和与变化的接触时间0-240分钟,并受到吸附剂(ppm),pH和电导率的可变浓度。结果表明,锰金属的吸附过程受粒径和接触时间的影响。吸附动力学根据伪二次订单动力学进行,具有10目吸附剂颗粒的平衡吸附能力(QE:Mg / g):0.8947; 20目吸附剂颗粒:0.4332和30目吸附剂颗粒:1.0161分别。 10目吸附剂颗粒的最高除去功效:接触时间60分钟49.22%; 20目吸附剂颗粒:35,25%在接触时间180分钟和颗粒30目吸附剂颗粒:51,95%的接触时间150分钟。

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