Skip navigation
  • 中文
  • English

DSpace CRIS

  • DSpace logo
  • Home
  • Research Outputs
  • Researchers
  • Organizations
  • Projects
  • Explore by
    • Research Outputs
    • Researchers
    • Organizations
    • Projects
  • Academic & Publications
  • Sign in
  • 中文
  • English
  1. CYCU Scholars
  2. 工學院
  3. 環境工程學系
Please use this identifier to cite or link to this item: https://scholars.lib.cycu.edu.tw/handle/123456789/2827
Title: Adsorption mechanism of hexavalent chromium onto layered double hydroxides-based adsorbents: A systematic in-depth review
Authors: Hai Nguyen Tran
Dong Thanh Nguyen
Giang Truong Le
Tomul, Fatma
Lima, Eder C.
Woo, Seung Han
Sarmah, Ajit K.
Hung Quang Nguyen
Phuong Tri Nguyen
Dinh Duc Nguyen
Tien Vinh Nguyen
Vigneswaran, Saravanamuth
Vo, Dai-Viet N.
Chao,Huan-Ping 
Keywords: Zero-valent Iron;Agricultural By-products;Methyl-orange Dye;Aqueous-solutions;Efficient Removal;Anion-exchange;Cr(vi) Removal;Vi Removal;Biosorption;Reduction;Hexavalent Chromium;Layered Double Hydroxides;Adsorption-coupled Reduction;Anion Exchange;Isomorphic Substitution;Critical Review
Issue Date: 2019
Publisher: Elsevier Science Bv
Journal Volume: 373
Start page/Pages: 258-270
Source: Journal Of Hazardous Materials
Abstract: 
An attempt has been made in this review to provide some insights into the possible adsorption mechanisms of hexavalent chromium onto layered double hydroxides-based adsorbents by critically examining the past and present literature. Layered double hydroxides (LDH) nanomaterials are typical dual-electronic adsorbents because they exhibit positively charged external surfaces and abundant interlayer anions. A high positive zeta potential value indicates that LDH has a high affinity to Cr(VI) anions in solution through electrostatic attraction. The host interlayer anions (i.e., Cl-, NO3-, SO42-, and CO32-) provide a high anion exchange capacity (53-520 meq/100 g) which is expected to have an excellent exchangeable capacity to Cr(VI) oxyanions in water. Regarding the adsorption-coupled reduction mechanism, when Cr(VI) anions make contact with the electrondonor groups in the LDH, they are partly reduced to Cr(III) cations. The reduced Cr(III) cations are then adsorbed by LDH via numerous interactions, such as isomorphic substitution and complexation. Nonetheless, the adsorption-coupled reduction mechanism is greatly dependent on: (1) the nature of divalent and trivalent salts utilized in LDH preparation, and the types of interlayer anions (i.e., guest intercalated organic anions), and (3) the adsorption experiment conditions. The low Brunauer-Emmett-Teller specific surface area of LDH (1.80-179 m(2)/g) suggests that pore filling played an insignificant role in Cr(VI) adsorption. The Langmuir maximum adsorption capacity of LDH (Q(max)(o)) toward Cr(VI) was significantly affected by the natures of used inorganic salts and synthetic methods of LDH. The Q(max)(o)values range from 16.3 mg/g to 726 mg/g. Almost all adsorption processes of Cr(VI) by LDH-based adsorbent occur spontaneously (Delta G degrees < 0) and endothermically (SW > 0) and increase the randomness (Delta S degrees > 0) in the system. Thus, LDH has much potential as a promising material that can effectively remove anion pollutants, especially Cr(VI) anions in industrial wastewater.
URI: https://scholars.lib.cycu.edu.tw/handle/123456789/2827
ISSN: 0304-3894
DOI: 10.1016/j.jhazmat.2019.03.018
Appears in Collections:環境工程學系

Show full item record

WEB OF SCIENCETM
Citations

148
Last Week
3
Last month
checked on Oct 29, 2023

Page view(s)

8
checked on Dec 31, 2023

Google ScholarTM

Check

Altmetric

Altmetric

Related Items in TAIR


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Explore by
  • Academic & Publications
  • Research Outputs
  • Researchers
  • Organizations
  • Projects

Build with DSpace-CRIS - Extension maintained and optimized by Logo 4SCIENCE Feedback