响应面法模拟及优化粘土吸附水中H2PO4-、NO3-和Cd2+的同时去除

Adjoumani Yao Joseph, Abro Koutouan Désiré Martial, Gueu Soumahoro, Yao Kouassi Benjamin
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引用次数: 0

摘要

本文研究了在蒙脱石粘土上吸附同时去除硝酸磷酸二氢和镉离子的模拟和优化。研究了污染物浓度和滞留时间两个参数。实验范围分别为20 ~ 100 mg。L-1, 8到16小时。试验用3g粘土在25ml pH值为5的混合溶液中进行。本研究采用响应面法(RSM),使用NEMROD软件。首先使用中心复合设计(CCD)来建立控制过程的数学模型。使用德林格的整体功能的愿望允许建立吸附的最佳条件。因此,当污染物浓度为43 mg时,每种离子的最大减排率都已获得。L-1,吸附时间为15小时。对硝酸盐、磷酸二氢和镉离子的纯化率分别为30.6%、68.1%和69.07%。值得注意的是,粘土可以作为一种吸附剂,同时去除废水中的多种污染物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Optimization of Simultaneous Removal of Ions (H2PO4-, NO3- and Cd2+) by Adsorption on Clay in Aqueous Solution by Using Response Surface Methodology
This paper deals with the modeling and optimization of the simultaneous elimination of dihydrogen phosphate nitrate and cadmium ions in an aqueous solution using adsorption on a smectite clay. Pollutant concentration and retention time are the two parameters studied. The experimental domains investigated are respectively from 20 to 100 mg.L-1 and from 8 to 16 hours. The tests were conducted with 3g of clay in a 25 mL mixture solution at pH 5. This study has been carried out with Response Surface Methodology (RSM), using NEMROD software. A central composite Design (CCD) was used first to establish a mathematical model that governs the process. The use of Derringer’s overall function of desirability permitted to establish optimal conditions of adsorption. Thus, maximum abatement rates both for each ion have been obtained when the pollutant concentration was 43 mg.L-1 with an adsorption duration of 15 hours. The results of the purification rates were 30.6 %, 68.1 %, and 69.07 %, respectively for nitrate, dihydrogenophosphate, and cadmium ions. It is noticeable that clay can be used as an adsorbent for wastewater depollution from many pollutants at a time.
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