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温和合成一种 Zn(II) 金属有机聚合物及其与活性炭的杂化:应用于超声化学法作为抗菌剂和水处理:优化、动力学和等温研究。

Mild synthesis of a Zn(II) metal organic polymer and its hybrid with activated carbon: Application as antibacterial agent and in water treatment by using sonochemistry: Optimization, kinetic and isotherm study.

机构信息

Department of Chemistry, Yasouj University, Yasouj 75918-74831, Iran.

Department of Chemistry, Yasouj University, Yasouj 75918-74831, Iran.

出版信息

Ultrason Sonochem. 2018 Mar;41:389-396. doi: 10.1016/j.ultsonch.2017.09.056. Epub 2017 Oct 1.

Abstract

In this work, a room temperature and short method (30min) for synthesis of nanosized rod-like metal organic polymer (MOP) has been described. Reaction of 1,4-phenylenedioxy diacetic acid with zinc salt leads to the formation of [Zn(CHO)(HO)] and subsequently was loaded on activated carbon following sonication and structurally characterized by FTIR, SEM, EDX and XRD analysis. The combination of this new composite with sonication was applied for rapid and efficient adsorption of Bromocresol Purple (BCP). Effects of initial BCP concentration, mass of adsorbent and sonication time on response were investigated and optimized by central composite design (CCD). Analysis of variation (ANOVA) was adapted to experimental data to find best optimum conditions which was set at 15.22mgL, 2.41min, 0.02g and 0.009mg for initial BCP concentration, sonication time and adsorbent mass, respectively. Conduction of similar experiments at specified condition permit achievement of 98.69% removal percentage. 1,4-phenylenedioxy diacetic acid and Zn(NO3).4HO which have applied for preparation of MOP are interesting antibacterial properties and accordingly MOP was screened in vitro for their antibacterial actively against Proteus vulgaris bacteria and experimental results reveal this MOP was able to inhibit growth of the tested bacteria. The experimental data were best fitted by pseudo-second order and Langmuir for kinetic model and the adsorption equilibrium isotherm, respectively.

摘要

在这项工作中,描述了一种在室温下、短时间(30 分钟)合成纳米棒状金属有机聚合物(MOP)的方法。1,4-苯二氧二乙酸与锌盐反应生成[Zn(CHO)(HO)],随后在超声作用下负载在活性炭上,并通过 FTIR、SEM、EDX 和 XRD 分析进行结构表征。将这种新型复合材料与超声相结合,用于快速有效地吸附溴甲酚紫(BCP)。通过中心复合设计(CCD)研究了初始 BCP 浓度、吸附剂质量和超声时间对响应的影响,并进行了优化。采用方差分析(ANOVA)对实验数据进行分析,以找到最佳优化条件,初始 BCP 浓度、超声时间和吸附剂质量分别设定为 15.22mg/L、2.41min、0.02g 和 0.009mg。在指定条件下进行类似的实验,可以达到 98.69%的去除率。用于制备 MOP 的 1,4-苯二氧二乙酸和 Zn(NO3)。4HO 具有有趣的抗菌性能,因此 MOP 被筛选为对普通变形杆菌的体外抗菌活性,实验结果表明,这种 MOP 能够抑制测试细菌的生长。实验数据分别通过准二级动力学模型和 Langmuir 吸附等温线拟合最好。

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