The degradation of a nonylphenol isomer in water and soil of typical sewage irrigation area in China

Author:

Liu Min12ORCID,Zhao Liangyuan12,Deng Wei12,Zhang Caixiang3,Liao Xiaoping4,Huang Huawei12,Han Cheng12,Hu Yuan12,Wu Mengmeng5

Affiliation:

1. Basin Water Environmental Research Department Yangtze River Scientific Research Institute Wuhan People's Republic of China

2. Key Lab of Basin Water Resource and Eco‐environmental Science in Hubei Province Yangtze River Scientific Research Institute Wuhan People's Republic of China

3. State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan People's Republic of China

4. School of Chemistry and Environmental Engineering Wuhan Institute of Technology Wuhan People's Republic of China

5. Yangtze River Survey Technology Research Institute Ministry of Water Resources Wuhan People's Republic of China

Abstract

AbstractNonylphenols (NPs), one of the known endocrine disrupting organic pollutants, had received full attention for their estrogenic potency and ubiquitous distribution in the environment. Due to its chemical properties and compositions of technical nonylphenols (tNPs), which was persistent and soil environments for a long time and affect the ecosystem vigorously, degradation behaviour of a nonylphenol isomer (NP38) and the para‐substituded nonylphenols (4‐NPs) in water and soil was compared in this study. The results showed that the 4‐NPs and NP38 could be degraded under the mercury lamp in ultrapure water, 90% of 4‐NPs and NP38 were photodegradated in 2 h, but the removal rate of the 4‐NPs was slightly faster than the NP38. The NP38 was almost completely decay under the UV in 120 min. The active species (NO3 and Fe3+) were benefit for the photogradation of NP38 and presented higher efficiency under the higher concentration. The biodegradable curves of the 4‐NPs and NP38 in the SS (The soil from sewage irrigation area) were similar, 84% of the NP38 was removed after 20 days later in SS, the 62.25% of the NP38 was remained after 60 days later in CS (the soil was from the groundwater irrigation area), but the removal rate of the NP38 was nearly two times to the 4‐NPs in the CS, and the structure of the nonylphenol isomers with α‐quaternary had influenced on its degradation in soils. The study was helpful for better understanding the migration and transformation behaviour of NPs and provided scientific basis for accurate assessment of environmental risk of NPs from the sewage irrigation area.

Funder

Central Public-interest Scientific Institution Basal Research Fund, Chinese Academy of Fishery Sciences

National Key Research and Development Program of China

Publisher

Wiley

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