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Study on using modified laterite in the heterogeneous Fenton process for removing dye compound

Huy-Dinh Vu 1, * ORCID logo
Thom Thi Dang 2
The-Anh Dang 3
  1. Department of Chemistry, Viet Nam National University of Forestry, Hanoi, Viet Nam
  2. Institute of Environmental Technology, Vietnam Academy of Science and Technology
  3. Department of Chemistry, VietNam National University of Forestry, Hanoi, Viet Nam
Correspondence to: Huy-Dinh Vu, Department of Chemistry, Viet Nam National University of Forestry, Hanoi, Viet Nam. ORCID: https://orcid.org/0000-0003-1630-2188. Email: [email protected].
Volume & Issue: Vol. 3 No. 2 (2019) | Page No.: 56-65 | DOI: 10.32508/stdjsee.v3i2.465
Published: 2019-11-26

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This article is published with open access by Viet Nam National University Ho Chi Minh City, Viet Nam. This article is distributed under the terms of the Creative Commons Attribution License (CC-BY 4.0) which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited. 

Abstract

In this work, was modified by iron (III) sulfate (Lat-Fe), and it was used in heterogeneous Fenton for the removal of Reactive Yellow 160 dye (RY 160). Properties of chemical composition, surface morphology and specific surface area of modified were characterized by Energy X-ray spectroscopy (EDX), scanning electron microscopes (SEM) and BET method and that was assessed effectively to apply in the heterogeneous Fenton process. Experimental investigations about conditions such as pH, H2O2 concentration, and modified materials were conducted to look for the suitable conditions for removing dye compound by Fenton process. Studied results showed that modified by procedure without iron Fe3+ had not catalyzed activation in Fenton process. However, using modified by iron (III) sulfate (Lat-Fe) get good results in the heterogeneous Fenton process for removing Reactive Yellow 160 dye. Removing Reactive Yellow 160 dye (RY 160) with initial concentration of 50ppm with investigated optimal conditions of Lat-Fe: 1,25g/L, H2O2 2,45 , pH 7 at 30oC get 70% of removal efficiency in 120 minutes.

 

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