Influence of Phosphate on Arsenic Adsorption Behavior of Si-Fe-Mg Mixed Hydrous Oxide

Author:

Ahmed Marjjuk1ORCID,Kuwabara Tomoyuki2

Affiliation:

1. Graduate School of Natural Science and Technology, Shimane University, 1060 Nishikawatsu, Matsue 690-0823, Japan

2. Institute of Environmental Systems Science, Shimane University, 1060 Nishikawatsu, Matsue 690-0823, Japan

Abstract

The arsenic adsorption performance of silicon (Si), iron (Fe), and magnesium (Mg) mixed hydrous oxide containing a Si: Fe: Mg metal composition ratio of 0.05:0.9:0.05 (SFM05905) was investigated. SFM05905 was synthesized by the co-precipitation method. Batch experiments on arsenic adsorption were conducted at various temperatures and concentrations. Adsorption isotherms models were represented by a linearized equations and were insensitive to temperature change. The anion selectivity of SFM05905 at single component was high for arsenite (III), arsenate (V), and phosphate (PO4), indicating that PO4 inhibits arsenic adsorption. The adsorption amount of As (III), As (V), and PO4 were compared using a column packed with granular SFM05905, and an aqueous solution was passed by a combination of several anions that are single, binary, and ternary adsorbate systems. As (III) had the highest adsorption amount; however, As (III) and PO4 were affected by each other under the ternary mixing condition. Although the adsorption amount of As (V) was smaller than that of As (III), it was not affected by other adsorbates in the column experiments. Finally, although the adsorption of both arsenic continued, the adsorbed PO4 gradually desorbed.

Funder

JSPS KAKENHI

Publisher

MDPI AG

Reference44 articles.

1. Arsenic in the environment: Effects on human health and possible prevention;Singh;J. Environ. Biol.,2007

2. Arsenic toxicity, health hazards and removal techniques from water: An overview;Choong;Desalination,2007

3. Drinking water arsenic contamination, skin lesions, and malignancies: A systematic review of the global evidence;Karagas;Curr. Environ. Health Rep.,2015

4. Paradoxical effects of arsenic in the lungs;Ren;Environ. Health Prev. Med.,2021

5. Pathology related to chronic arsenic exposure;Centeno;Environ. Health Perspect.,2002

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