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A new route to fabricate high-efficient porous silicate adsorbents by simultaneous inorganic-organic functionalization of low-grade palygorskite clay for removal of Congo red
Department甘肃省黏土矿物应用重点实验室
Dong WK (董文凯)1,2; Lu YS (卢予沈)1,2; Wang WB (王文波)1,3; Zong L (宗莉)1,3; Zhu YF (朱永峰)1,3; Kang YR (康玉茹)1,3; Wang AQ (王爱勤)1,3
2019-03
Source PublicationMicroporous and Mesoporous Materials
Volume277Issue:Pages:267-276
Abstract

A series of porous quaternized silicate (QS) adsorbents with superior adsorption capabilities for anionic dye Congo Red (CR) were prepared by synchronous inorganic and organic functionalization of natural low-grade palygorskite (Pal) via a facile one-pot hydrothermal process. The Pal and its associated minerals were restructured as new porous silicate adsorbents under the action of the inorganic salts of sodium silicate and magnesium sulfate, and simultaneously the quaternary ammonium groups were in-situ introduced into the silicates using cetyltrimethylammonium bromide (CTAB) or dodecyltrimethylammonium bromide (DTAB) as donors of quaternary ammonium groups. The adsorption capacities of the QS adsorbents enhanced as the increment of quaternization degree until equilibrium is reached. The silicate adsorbents with the organification degree of 16.46% (for CTA-QS-1.2) and 13.32% (for DTA-QS-1.2) showed the best adsorption capacities of 664.29 ± 3.92 mg/g and 684.01 ± 8.50 mg/g for CR, respectively, which are far away higher than that of raw Pal (51.22 ± 2.85 mg/g), the magnesium silicate adsorbents without quaternization (78.69 ± 0.54 mg/g), and the CTAB-modified Pal prepared by commonly used method (145.10 ± 3.61 mg/g). The fitting results of thermodynamics and kinetic models revealed that the adsorption process of the silicate adsorbents for CR obeys Freundlich and pseudo-second-order models very well, which suggests a chemical interaction and multilayer adsorption mechanism. In addition, the electrostatic attraction and hydrogen-bonding interaction contribute more to the adsorption capability than specific surface area. This paper provides a new route to fabricate high-efficient silicate adsorbent by restructure of naturally abundant low-cost Pal clay for deep decontamination of anionic dye-polluted water.

KeywordPalygorskite Porous Adsorbent Quaternization Congo Red Adsorption
Subject Area无机非金属材料 ; 复合材料
MOST Discipline Catalogue工学::材料科学与工程(可授工学、理学学位)
DOI10.1016/j.micromeso.2018.11.013
Indexed BySCI
If3.649
Language英语
compositor第一作者单位
Citation statistics
Cited Times:48[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.licp.cn/handle/362003/24250
Collection甘肃省黏土矿物应用研究重点实验室
Corresponding AuthorWang WB (王文波); Wang AQ (王爱勤)
Affiliation1.Key Laboratory of Clay Mineral Applied Research of Gansu Province, Center of Eco-material and Green Chemistry, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, PR China
2.University of the Chinese Academy of Sciences, Beijing, 100049, PR China
3.Center of Xuyi Palygorskite Applied Technology, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Xuyi, 211700, PR China
Recommended Citation
GB/T 7714
Dong WK ,Lu YS ,Wang WB ,et al. A new route to fabricate high-efficient porous silicate adsorbents by simultaneous inorganic-organic functionalization of low-grade palygorskite clay for removal of Congo red[J]. Microporous and Mesoporous Materials,2019,277(无):267-276.
APA Dong WK .,Lu YS .,Wang WB .,Zong L .,Zhu YF .,...&Wang AQ .(2019).A new route to fabricate high-efficient porous silicate adsorbents by simultaneous inorganic-organic functionalization of low-grade palygorskite clay for removal of Congo red.Microporous and Mesoporous Materials,277(无),267-276.
MLA Dong WK ,et al."A new route to fabricate high-efficient porous silicate adsorbents by simultaneous inorganic-organic functionalization of low-grade palygorskite clay for removal of Congo red".Microporous and Mesoporous Materials 277.无(2019):267-276.
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