Insights into the effect of parameters and pathway of visible-light photodegradation of glyphosate and diazinon by C-TiO2/clinoptilolite nanocomposite
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy,General Chemical Engineering,General Chemistry
Reference95 articles.
1. The degradation of chlorpyrifos and diazinon in aqueous solution by ultrasonic irradiation: effect of parameters and degradation pathway;Zhang;Chemosphere,2011
2. Simultaneous electrochemical degradation of organophosphorus pesticides and recovery of phosphorus: Synergistic effect of anodic oxidation and cathodic precipitation;Ning;J. Taiwan Inst. Chem. Eng.,2021
3. Introduction to the special issue: developments in soil organic phosphorus cycling in natural and agricultural ecosystems;Turner;Geoderma,2015
4. Microbial vanadate reduction coupled to co-metabolic phenanthrene biodegradation in groundwater;Shi;Water Res.,2020
5. An activated carbon fiber cathode for the degradation of glyphosate in aqueous solutions by the Electro-Fenton mode: optimal operational conditions and the deposition of iron on cathode on electrode reusability;Lan;Water Res.,2016
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