Aziz Faissal, Achaby Mounir El, Lissaneddine Amina, Aziz Khalid, Ouazzani Naaila, Mamouni Rachid, Mandi Laila
Laboratory of Hydrobiology, Ecotoxicology, Sanitation & Global Changes (LHEAG, URAC 33), Semlalia Faculty of Sciences, Cadi Ayyad University, Marrakech, Morocco.
National Centre for Research and Study on Water and Energy (CNEREE), Cadi Ayyad University, Marrakech, Morocco.
Saudi J Biol Sci. 2020 Oct;27(10):2499-2508. doi: 10.1016/j.sjbs.2019.11.019. Epub 2019 Nov 25.
The sorption capacity of cadmium (Cd (II)) on three new generated nanocomposite beads sodium alginate (SA) based; SA-Clay (SA-C) beads, SA-Phosphate (SA-P) beads, and SA- Activated Charcoal (SA-Ch) beads was investigated in a batch scale, then a continuous flow reactor. The highest adsorption capacity (137 mg/g) was obtained for SA-Ch using 1000 mg/L of initial Cd (II). The isotherm results showed that the adsorption equilibrium is compatible with the Langmuir isotherm and the sorption capacity of SA-Nano-adsorbent beads is very high. The models used for representing kinetic data was given that the removal of Cd (II) be well-fitted by second-order reaction kinetics. For the fixed bed column treatment, the maximum breakthrough times were 30, 38, and 48 h respectively for the SA-C, SA-P, and SA-Ch. According to the obtained results, it was concluded that SA-Nano-adsorbent bead is an excellent designed material as a nanocomposite for cadmium elimination from wastewater in a continuous treatment process.
研究了三种新制备的基于海藻酸钠(SA)的纳米复合珠(SA-粘土(SA-C)珠、SA-磷酸盐(SA-P)珠和SA-活性炭(SA-Ch)珠)对镉(Cd(II))的吸附容量,先是在间歇规模下进行研究,然后在连续流动反应器中进行研究。使用1000mg/L的初始Cd(II)时,SA-Ch获得了最高吸附容量(137mg/g)。等温线结果表明,吸附平衡符合朗缪尔等温线,SA-纳米吸附剂珠的吸附容量非常高。用于表示动力学数据的模型表明,Cd(II)的去除符合二级反应动力学。对于固定床柱处理,SA-C、SA-P和SA-Ch的最大穿透时间分别为30、38和48小时。根据所得结果得出结论,SA-纳米吸附剂珠是一种设计优良的材料,作为纳米复合材料可在连续处理过程中从废水中去除镉。