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首页> 外文期刊>Journal of Molecular Liquids >Modification of activated carbon with magnetic Fe3O4 nanoparticle composite for removal of ceftriaxone from aquatic solutions
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Modification of activated carbon with magnetic Fe3O4 nanoparticle composite for removal of ceftriaxone from aquatic solutions

机译:用磁Fe3O4纳米粒子复合材料改性去除水生溶液中的头孢曲松

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摘要

Recently, Antibiotics have been extensively applied in various industries including agricultural, pharmaceutical and veterinary. Great concerns of antibiotics are about discharge into environment, especially water sources supplied for water demand over the world. The present study was developed to investigate the performance of powder activated carbon modified with magnetite nanoparticles (PAC-MNPs) in removal of Ceftriaxone from aquatic solutions with response surface methodology (RSM). A co-precipitation was applied to synthesize magnetized powdered activated carbon and its characteristics were analyzed with TEM, SEM and XRD. The effects of independent parameters pH (3-11), initial Ceftriaxone values (10-100 mg/L), temperature (298-313 K), and adsorbent dosage (1.05-2 g/L) on removal efficiency were analyzed by RSM based Box-Benhken Design (BBD). The optimum conditions for maximum removal of Ceftriaxone (97.18% with desirability of 0.9720) were recorded from desirability function (DF) at pH: 3.14, contact time: 90 min, adsorbent dosage: 1.99 g/L, initial concentration: 10 mg/L and temperature: 298 K. The survey of isotherms and Kinetics indicated that the experimental data are fitted to Langmuir and second-pseudo-order models. Thermodynamic studies revealed that the CTX removal was spontaneous and exothermic. Regeneration experiments were performed for 6 cycles and the results indicate a removal efficiency loss of 10%. (C) 2018 Published by Elsevier B.V.
机译:最近,抗生素已广泛应用于各种行业,包括农业,制药和兽医。抗生素的大部分令人震惊的是进入环境,特别是对世界供水供应的水源。开发了本研究以研究用磁铁矿纳米颗粒(PAC-MNP)改性粉末活性炭的性能,以通过响应面法(RSM)从水生溶液中除去头孢菌溶液。将共沉淀用于合成磁化粉末活性炭,用TEM,SEM和XRD分析其特征。通过RSM分析了独立参数pH(3-11),初始头孢曲松值(10-100mg / L),温度(298-313k)和吸附剂剂量(1.05-2g / L)的效果进行了RSM分析了去除效率的影响基于Box-Benhken设计(BBD)。在pH:3.14的期望功能(DF)中,记录最大地去除头孢曲松的最佳条件(具有0.9720的可取性为0.9720),接触时间:90分钟,吸附剂剂量:1.99g / L,初始浓度:10 mg / L.温度:298 K.等温和动力学的调查表明,实验数据适用于Langmuir和第二伪级模型。热力学研究表明,CTX去除是自发性和放热的。进行6个循环的再生实验,结果表明除去效率损失10%。 (c)2018由elestvier b.v出版。

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