Literature DB >> 21777934

Magnetic binary oxide particles (MBOP): a promising adsorbent for removal of As (III) in water.

Rajesh M Dhoble1, Sneha Lunge, A G Bhole, Sadhana Rayalu.   

Abstract

Magnetic binary oxide particles (MBOP) synthesized using chitosan template has been investigated for uptake capacity of arsenic (III). Batch experiments were performed to determine the rate of adsorption and equilibrium isotherm and also effect of various rate limiting factors including adsorbent dose, pH, optimum contact time, initial adsorbate concentration and influence of presence cations and anions. It was observed that uptake of arsenic (III) was independent of pH of the solution. Maximum adsorption of arsenic (III) was ∼99% at pH 7.0 with dose of adsorbent 1 g/L and initial As (III) concentration of 1.0 mg/L at optimal contact time of 14 h. The adsorption equilibrium data fitted well to Langmuir and Freundlich isotherm. The maximum adsorption capacity of adsorbent was 16.94 mg/g. With increase in concentration of Ca2+, Mg2+ from 50 mg/L to 600 mg/L, adsorption of As (III) was significantly reduced while for Fe3+ the adsorption of arsenic (III) was increased with increase in concentration. Temperature study was carried out at 293 K, 303 K and 313 K reveals that the adsorption process is exothermic nature. A distinct advantage of this adsorbent is that adsorbent can readily be isolated from sample solutions by application of an external magnetic field. Saturation magnetization is a key factor for successful magnetic separation was observed to be 18.78 emu/g which is sufficient for separation by conventional magnate.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21777934     DOI: 10.1016/j.watres.2011.06.016

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  10 in total

1.  Microwave-hydrothermal method for the synthesis of composite materials for removal of arsenic from water.

Authors:  Ivan Andjelkovic; Bojan Jovic; Milica Jovic; Marijana Markovic; Dalibor Stankovic; Dragan Manojlovic; Goran Roglic
Journal:  Environ Sci Pollut Res Int       Date:  2015-08-28       Impact factor: 4.223

2.  Development of bark-based magnetic iron oxide particle (BMIOP), a bio-adsorbent for removal of arsenic (III) from water.

Authors:  Rajesh Manoharrao Dhoble; Pratap Reddy Maddigapu; Anand Govind Bhole; Sadhana Rayalu
Journal:  Environ Sci Pollut Res Int       Date:  2018-05-07       Impact factor: 4.223

3.  Behavior and mechanism of arsenate adsorption on activated natural siderite: evidences from FTIR and XANES analysis.

Authors:  Kai Zhao; Huaming Guo
Journal:  Environ Sci Pollut Res Int       Date:  2013-09-07       Impact factor: 4.223

Review 4.  Removal of As(III) and As(V) from water by chitosan and chitosan derivatives: a review.

Authors:  Xianli Wang; Yukun Liu; Jingtang Zheng
Journal:  Environ Sci Pollut Res Int       Date:  2016-04-20       Impact factor: 4.223

5.  Low-cost magnetic adsorbent for As(III) removal from water: adsorption kinetics and isotherms.

Authors:  Sarita Kango; Rajesh Kumar
Journal:  Environ Monit Assess       Date:  2015-12-28       Impact factor: 2.513

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Authors:  Jie Zhang; Junsheng Li; Guoxia Huang; Liujuan Yan
Journal:  Heliyon       Date:  2022-06-02

7.  The role of Mn oxide doping in phosphate removal by Al-based bimetal oxides: adsorption behaviors and mechanisms.

Authors:  Kun Wu; Ting Liu; Chao Ma; Bing Chang; Rong Chen; Xiaochang Wang
Journal:  Environ Sci Pollut Res Int       Date:  2013-07-02       Impact factor: 4.223

8.  Arsenic Removal Using "Green" Renewable Feedstock-Based Hydrogels: Current and Future Perspectives.

Authors:  Shabnam Pathan; Suryasarathi Bose
Journal:  ACS Omega       Date:  2018-05-31

9.  Iron oxide coated hollow poly(methylmethacrylate) as an efficient adsorption media for removal of arsenic from water.

Authors:  Dhiraj Dutta; J P Borah; Amrit Puzari
Journal:  RSC Adv       Date:  2021-04-12       Impact factor: 3.361

10.  Arsenic(III) Removal by Nanostructured Dialdehyde Cellulose-Cysteine Microscale and Nanoscale Fibers.

Authors:  Hui Chen; Sunil K Sharma; Priyanka R Sharma; Heidi Yeh; Ken Johnson; Benjamin S Hsiao
Journal:  ACS Omega       Date:  2019-12-10
  10 in total

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