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负载氢氧化铜纳米颗粒的活性炭对染料的超声辅助竞争吸附的多响应优化:中心复合设计

Multi-response optimization of ultrasound assisted competitive adsorption of dyes onto Cu (OH)-nanoparticle loaded activated carbon: Central composite design.

作者信息

Dashamiri Somayeh, Ghaedi Mehrorang, Asfaram Arash, Zare Fahimeh, Wang Shaobin

机构信息

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

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

出版信息

Ultrason Sonochem. 2017 Jan;34:343-353. doi: 10.1016/j.ultsonch.2016.06.007. Epub 2016 Jun 6.

DOI:10.1016/j.ultsonch.2016.06.007
PMID:27773255
Abstract

This paper focuses on the development of an effective methodology to obtain the optimum removal conditions assisted by ultrasonics to maximize the simultaneous removal of dyes, eosin Y (EY), methylene blue (MB) and phenol red (PR), by Cu(OH)-NP-AC in aqueous solution using response surface methodology (RSM). The effects of variables such as pH, initial dyes concentrations (mgL), and amount of sorbent (mg) and sonication time (min) on the dyes removal were studied. A central composite design (CCD) was applied to evaluate the interactive effects of adsorption variables. A good correlation (with R>0.940) between the statistical model and experiment was found for dyes removal from aqueous wastewater using the adsorbent. The optimum removal (99.20%±1.48) was thus obtained at pH 6.0, ultrasound time 2.5min, adsorbent mass 20mg and initial dye concentration at 5mgL for MB and EY and 12.5mgL for PR. The maximum adsorption capacity (Q) was calculated from the Langmuir isotherm as 32.9, 26.4 and 38.5mgg for the MB, EY and PR, respectively for the 0.015g of sorbent. The adsorption kinetic data of the dyes were analyzed and was found fitting well in a pseudo-second-order equation. Adsorption isotherms and separation factors showed that the adsorbent displays a high selectivity toward one dye in a three-component system with an affinity order of PR>MB>EY. On the other hand, acoustic waves emitted by the cavitation bubbles render a direct effect on the process. This is attributed to the discrete nature and high pressure amplitude of the waves, which creates excessively high convection in the medium, causing adsorption of the pollutants. The chemical nature of the pollutants influences the enhancement effect of ultrasound.

摘要

本文着重于开发一种有效的方法,借助超声获得最佳去除条件,以实现使用氢氧化铜纳米颗粒负载活性炭(Cu(OH)-NP-AC)在水溶液中同时最大化去除染料(曙红Y(EY)、亚甲基蓝(MB)和酚红(PR)),采用响应面法(RSM)进行研究。研究了诸如pH值、初始染料浓度(mg/L)、吸附剂用量(mg)和超声处理时间(min)等变量对染料去除的影响。应用中心复合设计(CCD)来评估吸附变量的交互作用。对于使用该吸附剂从水性废水中去除染料,发现统计模型与实验之间具有良好的相关性(R>0.940)。因此,在pH值为6.0、超声时间为2.5分钟、吸附剂质量为20mg且MB和EY的初始染料浓度为5mg/L、PR的初始染料浓度为12.5mg/L时,获得了最佳去除率(99.20%±1.48)。根据朗缪尔等温线计算得出,对于0.015g吸附剂,MB、EY和PR的最大吸附容量(Q)分别为32.9、26.4和38.5mg/g。对染料的吸附动力学数据进行了分析,发现其很好地符合准二级方程。吸附等温线和分离因子表明,在三元体系中,该吸附剂对一种染料具有高选择性,其亲和顺序为PR>MB>EY。另一方面,空化气泡发出的声波对该过程产生直接影响。这归因于声波的离散性质和高压振幅,其在介质中产生过高的对流,导致污染物的吸附。污染物的化学性质影响超声的增强效果。

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