An integrated Metagenomic-Pangenomic strategy revealed native microbes and magnetic biochar cooperation in plasticizer degradation
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,Environmental Chemistry,General Chemistry
Reference76 articles.
1. Comprehensive insight from phthalates occurrence: from health outcomes to emerging analytical approaches;Luís;Toxics,2021
2. Physical and chemical modifications of poly (vinyl chloride) materials to prevent plasticizer migration-Still on the run;Ma;React. Funct. Polym.,2020
3. Surveillance of plasticizers, bisphenol A, steroids and caffeine in surface water of river Ganga and Sundarban wetland along the Bay of Bengal: occurrence, sources, estrogenicity screening and ecotoxicological risk assessment;Chakraborty;Water Res.,2021
4. A model for phthalic acid esters’ biodegradability and biotoxicity multi-effect pharmacophore and its application in molecular modification;Zhou;J. Environ. Sci. Health A,2021
5. Retention and release of diethyl phthalate in biochar-amended vegetable garden soils;Zhang;J. Soil. Sediment.,2014
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