Literature DB >> 17587496

Dimethoate and atrazine retention from aqueous solution by nanofiltration membranes.

A L Ahmad1, L S Tan, S R Abd Shukor.   

Abstract

In order to produce sufficient food supply for the ever-increasing human population, pesticides usage is indispensable in the agriculture sector to control crop losses. However, the effect of pesticides on the environment is very complex as undesirable transfers occur continually among different environmental sections. This eventually leads to contamination of drinking water source especially for rivers located near active agriculture practices. This paper studied the application of nanofiltration membrane in the removal of dimethoate and atrazine in aqueous solution. Dimethoate was selected as the subject of study since it is being listed as one of the pesticides in guidelines for drinking water by World Health Organization. Nevertheless, data on effectiveness of dimethoate rejection using membranes has not been found so far. Meanwhile, atrazine is classified as one of the most commonly used pesticides in Malaysia. Separation was done using a small batch-type membrane separation cell with integrated magnetic stirrer while concentration of dimethoate and atrazine in aqueous solution was analyzed using high performance liquid chromatography (HPLC). Four nanofiltration membranes NF90, NF200, NF270 and DK were tested for their respective performance to separate dimethoate and atrazine. Of all four membranes, NF90 showed the best performance in retention of dimethoate and atrazine in water.

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Year:  2007        PMID: 17587496     DOI: 10.1016/j.jhazmat.2007.05.047

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  10 in total

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2.  Membrane-based separation of potential emerging pollutants.

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9.  Viscose-Derived Activated Carbons Fibers as Highly Efficient Adsorbents for Dimethoate Removal from Water.

Authors:  Ana Jocić; Stefan Breitenbach; Danica Bajuk-Bogdanović; Igor A Pašti; Christoph Unterweger; Christian Fürst; Tamara Lazarević-Pašti
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10.  Predominant Mechanisms in the Treatment of Wastewater Due to Interaction of Benzaldehyde and Iron Slag Byproduct.

Authors:  Ayad A H Faisal; Saif S Alquzweeni; Laith A Naji; Mu Naushad
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  10 in total

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