2005Journal of Japan Society on Water EnvironmentOpen access

Degradation of Pesticides by Chlorination According to Their Basic Structures

Takako Arai, Motoyuki Kamata, Dai SIMAZAKI, Mari Asami, Takako Aizawa

Open full text 4 citations

Abstract

One hundred and one pesticides listed as “Complementary Items for Setting the Targets for Water Quality Management in Japan” were divided into 16 groups on the basis of their structures. The degradation of 96 pesticides and 5 oxidation by-products in chlorination was studied to determine the potential of the purification process. Pesticides containing sulfur (S) were easily degraded; for 38 pesticides out of 46 examined pesticides, only 50 % or less of their original concentration remained after 4 hours. On the other hand, pesticides without S were hardly degraded; for 45 pesticides out of 50 examined pesticides, more than 50 % of their original concentration remained even after 24 hours. Thus, the potential for degradation of the pesticides by chlorination can be approximated by the presence or absence of S in their chemical formulae. Oxons (P=O), which are oxidation by-products of organophosphate pesticides containing P=S, were hardly degraded. Therefore, oxons may remain in chlorinated water for a long time.

Open-access reader

About this research paper

What this paper is about

One hundred and one pesticides listed as “Complementary Items for Setting the Targets for Water Quality Management in Japan” were divided into 16 groups on the basis of their structures. The degradation of 96 pesticides and 5 oxidation by-products in chlorination was studied to determine the potential of the purification process. Pesticides containing sulfur (S) were easily degraded; for 38 pesticides out of 46 examined pesticides, only 50 % or less of their original concentration remained after 4 hours. On the other hand, pesticides without S were hardly degraded; for 45 pesticides out of 50 examined pesticides, more than 50 % of their original concentration remained even after 24 hours. Thus, the potential for degradation of the pesticides by chlorination can be approximated by the presence or absence of S in their chemical formulae. Oxons (P=O), which are oxidation by-products of organophosphate pesticides containing P=S, were hardly degraded. Therefore, oxons may remain in chlorinated water for a long time.

Why it matters

OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

One hundred and one pesticides listed as “Complementary Items for Setting the Targets for Water Quality Management in Japan” were divided into 16 groups on the basis of their structures. The degradation of 96 pesticides and 5 oxidation by-products in chlorination was studied to determine the potential of the purification process. Pesticides containing sulfur (S) were easily degraded; for 38 pesticides out of 46 examined pesticides, only 50 % or less of their original concentration remained after 4 hours. On the other hand, pesticides without S were hardly degraded; for 45 pesticides out of 50 examined pesticides, more than 50 % of their original concentration remained even after 24 hours. Thus, the potential for degradation of the pesticides by chlorination can be approximated by the presence or absence of S in their chemical formulae. Oxons (P=O), which are oxidation by-products of organophosphate pesticides containing P=S, were hardly degraded. Therefore, oxons may remain in chlorinated water for a long time.

Key concepts: Pesticide, Degradation (telecommunications), Chemistry, Environmental chemistry, Pesticide degradation, Pesticide residue, Sulfur, Organic chemistry

Related papers

Back to paper searchBrowse research topicsOriginal source
Degradation of Pesticides by Chlorination According to Their Basic Structures — Research Paper | ScholarLens