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Recovery of Acrylic Acid Using Calcium Peroxide Nanoparticles: Synthesis, Characterisation, Batch Study, Equilibrium, and Kinetics

机译:使用钙过氧化物纳米粒子的丙烯酸回收:合成,表征,批量研究,平衡和动力学

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Recovery of acrylic acid from aqueous solution using low-cost CaO2 nanoparticles was investigated. CaO2 nanoparticles were synthesized by co-precipitation technique and characterised using XRD and FTIR. A mechanism was proposed for adsorption of acrylic acid onto CaO2 nanoparticles based on FTIR analysis. Acrylic acid recovery is highly dependent on contact time, CaO2 nanoparticle dosage, initial acrylic concentration, and temperature. Langmuir, Freundlich, Dubinin-Radushkevich, Tempkin, Hill, Redlich-Peterson, Sips and Toth isotherms were used and well represented by Redlich-Peterson isotherm (R-2 = 0.9998) as compared to other isotherms. Kinetic studies revealed pseudo-second-order kinetics (k(2) = 1.962.10-4 g mg(-1) min(-1)) for adsorption of acrylic acid onto CaO2 nanoparticles. CaO2 nanoparticles exhibited high acrylic acid recovery over varied concentration ranges. The acrylic acid can be regenerated by desorption from the surface of adsorbent and utilised for numerous applications. The presented results may be useful for the design of adsorption system using nanoparticles, which can be extended to other systems.
机译:研究了使用低成本CaO2纳米颗粒从水溶液中回收丙烯酸。通过共沉淀技术合成CaO2纳米粒子,并使用XRD和FTIR来表征。提出了一种基于FTIR分析的CaO2纳米粒子在CaO2纳米粒子上吸附一种机理。丙烯酸回收率高度依赖于接触时间,CaO2纳米颗粒剂量,初始丙烯酸浓度和温度。 Langmuir,Freundlich,Dubinin-Radushkevich,Tempkin,Hill,Redlich-Peterson,Sips和Toth Isotherms被使用,并与其他等温线相比,redlich-peterson等温线(R-2 = 0.9998)良好。动力学研究揭示了伪二阶动力学(K(2)= 1.962.10-4g mg(-1)min(-1)),用于吸附丙烯酸在CaO2纳米粒子上。 CaO2纳米颗粒在各种浓度范围内表现出高丙烯酸回收。丙烯酸可以通过吸附剂表面的解吸再生,并用于许多应用。所呈现的结果对于使用纳米颗粒的吸附系统设计,可以扩展到其他系统。

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