Construction of a Novel Highly Porous Biobr/Csxwo3@Sio2 Composite Aerogel: Adsorption/Self-Heating Photocatalytic Synergistic Degradation of Antibiotics and Mechanism Study

Author:

Li Tianci,Liu Jingxiao,Shi Fei,Song Xiaoying,Zhang Haoyuan,Zhang Haojie,Ma Chuangchuang,Zhu Keya,Liu Junyan

Publisher

Elsevier BV

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference60 articles.

1. A comprehensive review on catalysts for electrocatalytic and photoelectrocatalytic degradation of antibiotics;S Q Wu;Chem. Eng. J,2020

2. A review on removing antibiotics and antibiotic resistance genes from wastewater by constructed wetlands: Performance and microbial response;X H Liu;Environ. Pollut,2019

3. Antibiotics and antibiotic resistance genes in global lakes: A review and meta-analysis;Y Y Yang;Environ Int,2018

4. A review on exploration of Fe 2 O 3 photocatalyst towards degradation of dyes and organic contaminants-ScienceDirect;A Cnch;J. Environ. Manage,2019

5. Enhanced photocatalytic activity of amesoporous TiO 2 aerogel decorated onto three-dimensional carbon foam;V G Parale;J. Mol. Liq,2019

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