当前位置: X-MOL 学术Process Saf. Environ. Prot. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Improving the surface properties of adsorbents by surfactants and their role in the removal of toxic metals from wastewater: A review study
Process Safety and Environmental Protection ( IF 7.8 ) Pub Date : 2021-02-09 , DOI: 10.1016/j.psep.2021.02.003
Sajad Tamjidi , Bahareh Kamyab Moghadas , Hossein Esmaeili , Farideh Shakerian Khoo , Gholamhossein Gholami , Mansoure Ghasemi

Heavy metals are pollutants that are naturally produced by human activities. Due to heavy metals' amount and toxicity in aqueous media, they are considered extremely harmful to human life. Therefore, it is necessary to find effective and efficient methods, as a severe challenge for reducing these pollutants to a permissible level. Among the various removal methods, the adsorption process has received much attention due to its benefits like low cost, ease of operation, high selectivity, and high removal efficiency. So far, various adsorbents such as activated carbon, agricultural waste, minerals, nanoparticles, and other inexpensive adsorbents have been used. Surface modification of these adsorbents by surfactants improves the adsorption properties, and as a result, enhances the adsorption capacity of adsorbents. This research has tried to discuss the use of surfactant-modified adsorbents to remove metal ions from aqueous media. In this study, heavy metals and various methods for removing them will also be studied. Also, isotherm, thermodynamic and kinetic behaviors of the sorption process are considered. The addition of anionic and cationic surfactants to the adsorbents can strongly alter the adsorbent's surface charge and directly affect the optimal pH value. Also, the maximum sorption efficiency using surfactant-modified adsorbents has been obtained at low temperatures (25 °C), which can be economically viable. According to previous studies, two surfactants such as SDS and CTAB, have shown a high ability to improve the adsorption efficiency and adsorption capacity of adsorbents. To this end, DNPH/SDS/Fe3O4 and CTAB/yeast adsorbents showed the highest removal efficiency (99.5%), which were able to remove Cr(VI) and CrO42− ions, respectively. Moreover, both adsorbents showed significant adsorption capacity.



中文翻译:

表面活性剂改善吸附剂的表面性质及其在去除废水中有毒金属中的作用:综述研究

重金属是人类活动自然产生的污染物。由于重金属的含量和在水性介质中的毒性,它们被认为对人类生命极为有害。因此,有必要找到有效和高效的方法,作为将这些污染物减少到允许水平的严峻挑战。在各种去除方法中,由于其低成本,易操作,高选择性和高去除效率等优点,吸附工艺受到了广泛的关注。迄今为止,已经使用了各种吸附剂,例如活性炭,农业废料,矿物,纳米颗粒和其他廉价的吸附剂。通过表面活性剂对这些吸附剂进行的表面改性提高了吸附性能,结果,增强了吸附剂的吸附能力。这项研究试图讨论使用表面活性剂改性的吸附剂从水性介质中去除金属离子的方法。在这项研究中,还将研究重金属及其去除方法。另外,还考虑了吸附过程的等温线,热力学和动力学行为。向吸附剂中添加阴离子和阳离子表面活性剂会极大地改变吸附剂的表面电荷,并直接影响最佳pH值。而且,已经在低温(25℃)下获得了使用表面活性剂改性的吸附剂的最大吸附效率,这在经济上是可行的。根据先前的研究,两种表面活性剂(例如SDS和CTAB)已显示出提高吸附剂的吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe 重金属及其去除方法也将进行研究。另外,还考虑了吸附过程的等温线,热力学和动力学行为。向吸附剂中添加阴离子和阳离子表面活性剂会极大地改变吸附剂的表面电荷,并直接影响最佳pH值。而且,已经在低温(25℃)下获得了使用表面活性剂改性的吸附剂的最大吸附效率,这在经济上是可行的。根据先前的研究,两种表面活性剂(如SDS和CTAB)显示出提高吸附剂吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe 重金属及其去除方法也将进行研究。另外,还考虑了吸附过程的等温线,热力学和动力学行为。向吸附剂中添加阴离子和阳离子表面活性剂会极大地改变吸附剂的表面电荷,并直接影响最佳pH值。而且,已经在低温(25℃)下获得了使用表面活性剂改性的吸附剂的最大吸附效率,这在经济上是可行的。根据先前的研究,两种表面活性剂(如SDS和CTAB)显示出提高吸附剂吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe 向吸附剂中添加阴离子和阳离子表面活性剂会极大地改变吸附剂的表面电荷,并直接影响最佳pH值。而且,已经在低温(25℃)下获得了使用表面活性剂改性的吸附剂的最大吸附效率,这在经济上是可行的。根据先前的研究,两种表面活性剂(如SDS和CTAB)显示出提高吸附剂吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe 向吸附剂中添加阴离子和阳离子表面活性剂会极大地改变吸附剂的表面电荷,并直接影响最佳pH值。而且,已经在低温(25℃)下获得了使用表面活性剂改性的吸附剂的最大吸附效率,这在经济上是可行的。根据先前的研究,两种表面活性剂(如SDS和CTAB)显示出提高吸附剂吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe 两种表面活性剂(如SDS和CTAB)显示出提高吸附剂吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe 两种表面活性剂(如SDS和CTAB)均具有提高吸附剂的吸附效率和吸附能力的高能力。为此,DNPH / SDS / Fe3 O 4和CTAB /酵母吸附剂显示出最高的去除效率(99.5%),能够分别去除Cr(VI)和CrO 4 2-离子。而且,两种吸附剂均显示出显着的吸附能力。

更新日期:2021-02-09
down
wechat
bug