Insight into the environmental fate, hazard, detection, and sustainable degradation technologies of chlorpyrifos-an organophosphorus pesticide.

Pankaj Kumar, Muhammad Arshad, Amel Gacem, Sunil Soni, Snigdha Singh, Manoj Kumar, Virendra Kumar Yadav, Mohd Tariq, Ramesh Kumar, Deepankshi Shah, Shivraj Gangadhar Wanale, Mohammed Khaloofah Mola Al Mesfer, Javed Khan Bhutto, Krishna Kumar Yadav

Journal: Environmental science and pollution research international 2023;30(50):108347-108369

PMID: 37755596

Abstract

Pesticides play a critical role in terms of agricultural output nowadays. On top of that, pesticides provide economic support to our farmers. However, the usage of pesticides has created a public health issue and environmental hazard. Chlorpyrifos (CPY), an organophosphate pesticide, is extensively applied as an insecticide, acaricide, and termiticide against pests in various applications. Environmental pollution has occurred because of the widespread usage of CPY, harming several ecosystems, including soil, sediment, water, air, and biogeochemical cycles. While residual levels in soil, water, vegetables, foodstuffs, and human fluids have been discovered, CPY has also been found in the sediment, soil, and water. The irrefutable pieces of evidence indicate that CPY exposure inhibits the choline esterase enzyme, which impairs the ability of the body to use choline. As a result, neurological, immunological, and psychological consequences are seen in people and the natural environment. Several research studies have been conducted worldwide to identify and develop CPY remediation approaches and its derivatives from the environment. Currently, many detoxification methods are available for pesticides, such as CPY. However, recent research has shown that the breakdown of CPY using bacteria is the most proficient, cost-effective, and sustainable. This current article aims to outline relevant research events, summarize the possible breakdown of CPY into various compounds, and discuss analytical summaries of current research findings on bacterial degradation of CPY and the potential degradation mechanism.

© 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Address: Department of Environmental Science, Parul Institute of Applied Sciences, Parul University, Vadodara, Gujarat, 391760, India.; Department of Chemical Engineering, College of Engineering, King Khalid University, P.O. Box 960, Abha, 61421, Saudi Arabia.; Department of Physics, Faculty of Sciences, University 20 Août 1955, Skikda, Algeria.; School of Environment and Sustainable Development, Central University of Gujarat, Gandhinagar, Gujarat, 382030, India.; Environment and Biofuel Research Laboratory, Department of Hydro and Renewable Energy, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247667, India.; Department of Life Sciences, Hemchandracharya North Gujarat University, Patan, Gujarat, 384265, India.; Department of Life Science, Parul Institute of Applied Sciences, Parul University, Vadodara, Gujarat, 391760, India.; Department of Environmental Science, School of Earth Sciences, Central University of Rajasthan, Ajmer, 305817, India.; School of Chemical Sciences, Swami Ramanand Teerth Marathwada University, Nanded, Maharashtra, India.; Department of Electrical Engineering, College of Engineering, King Khalid University, Abha, Saudi Arabia.; Faculty of Science and Technology, Madhyanchal Professional University, Ratibad, Bhopal, Madhya Pradesh, 462044, India. [email protected].; Environmental and Atmospheric Sciences Research Group, Scientific Research Center, Al-Ayen University, Thi-Qar, Nasiriyah, 64001, Iraq. [email protected].

Link outs

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.