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The Potential Use of Pressmud as Reactive Material for Cd~(2+) Removal: Adsorption Equilibrium, Kinetics, Desorption, and Bioaccessibility

机译:潜在使用压模作为CD〜(2+)去除的反应材料:吸附平衡,动力学,解吸和生物可接受性

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Pressmud is one of the most abundant wastes produced in the sugarcane industry; however, far too little attention has been paid to it as a reactive material for pollutant removal. This paper investigates the potential use of the composted pressmud for Cd(2+)removal and considers the possible remobilization of the ion after the use and subsequent disposal of this material. Characterization and adsorption analyses (batch equilibrium and kinetic) were carried out in addition to desorption and bioaccessibility assays. The pressmud revealed promising adsorption characteristics, including a high specific surface area (SSA) (236.1 m(2) g(-1)) and the presence of oxygen surface functional groups. The batch equilibrium data exhibit a better fit with the Langmuir isotherm model, assuming a monolayer adsorption capacity of 12.063 mg g(-1), and for kinetic data, the pseudosecond-order model satisfactorily suited the adsorption. The equilibrium time was attained rapidly at lower concentrations (within 30 min), increasing to 180 min at 500 mg L-1, due to the contribution of the intraparticle diffusion process. According to the desorption and bioaccessibility tests, pressmud is capable of maintaining the element at the binding sites, although the Cd(2+)adsorbed by the material is almost in its bioaccessible form, which supports the need of the correct handling after use. The results indicate that pressmud may be a promising reactive material for Cd(2+)adsorption, identifying upcycling opportunities for this low-cost and renewable waste.
机译:Pressmud是甘蔗工业中生产的最丰富的废物之一;然而,作为污染物去除的反应材料,它的注意力太少。本文研究了堆肥基因CD(2+)去除的潜在用途,并考虑了在使用后和随后处理这种材料后的离子的热量。除了解吸和生物可接定测定外,还进行表征和吸附分析(批算平衡和动力学)。该压力机揭示了有前景的吸附特性,包括高比表面积(SSA)(236.1M(2)G(-1))和氧表面官能团的存在。批量平衡数据表现出与Langmuir等温线的更好的配合,假设单层吸附容量为12.063mg(-1),并且对于动力学数据,伪级阶模型令人满意地适合吸附。由于粒前扩散过程的贡献,在较低浓度(30分钟内)以较低浓度(30分钟内)迅速达到平衡时间,以500mg L-1增加180分钟。根据解吸和生物可接近性试验,压模能够在粘合位点保持元素,尽管由材料吸附的CD(2+)几乎处于其生物可接近的形式,其支持使用后正确处理。结果表明,压力机可以是用于CD(2+)吸附的有前途的反应性材料,鉴定这种低成本和可再生废物的升高机会。

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