Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Zif-8-Derived Photocatalyst Membrane for Water Decontamination: From Static Adsorption-Degradation to Dynamic Flow Removal

View through CrossRef
Photocatalysis has been considered a promising method for environmental purification. However, powder nanomaterials are not suitable for large-scale application due to the limit of low recyclability and energy-intensive operation. Integrating and depositing powder photocatalysts on monolithic substrates may solve these issues. In this study, a ZIF-8 photocatalyst membrane and its derived product (ZnS photocatalyst membrane) was constructed by a facile in-situ treatment of cellulose-based substrate (take filter paper as an example). Both the two nanomaterials were confirmed to be tightly anchored to filter paper with the aid of chemical interaction. Under visible light irradiation, excellent dynamic-flow photocatalytic removal efficiencies of methylene blue (MB) degradation (97% within 80 min, k = 0.042 min -1 ) and Cr(VI) reduction (100% within 60 min, k = 0.116 min -1 ) were achieved by the prepared ZIF-8 photocatalyst membrane and its derived ZnS photocatalyst, respectively. Considering the high MB adsorption capacity and facile regeneration process of ZIF-8 photocatalyst membrane, the adsorption-degradation strategy was promising for its universal applications. The MB degradation pathway and photocatalytic mechanism were also explored. Ultimately, a comprehensive discussion on the advantages and implications of prepared photocatalyst membranes for photocatalytic water treatment was rationally proposed. This study provided a promising method for water decontamination and demonstrated the significant superiority of monolithic membrane for photocatalytic water treatment.
Title: Zif-8-Derived Photocatalyst Membrane for Water Decontamination: From Static Adsorption-Degradation to Dynamic Flow Removal
Description:
Photocatalysis has been considered a promising method for environmental purification.
However, powder nanomaterials are not suitable for large-scale application due to the limit of low recyclability and energy-intensive operation.
Integrating and depositing powder photocatalysts on monolithic substrates may solve these issues.
In this study, a ZIF-8 photocatalyst membrane and its derived product (ZnS photocatalyst membrane) was constructed by a facile in-situ treatment of cellulose-based substrate (take filter paper as an example).
Both the two nanomaterials were confirmed to be tightly anchored to filter paper with the aid of chemical interaction.
Under visible light irradiation, excellent dynamic-flow photocatalytic removal efficiencies of methylene blue (MB) degradation (97% within 80 min, k = 0.
042 min -1 ) and Cr(VI) reduction (100% within 60 min, k = 0.
116 min -1 ) were achieved by the prepared ZIF-8 photocatalyst membrane and its derived ZnS photocatalyst, respectively.
Considering the high MB adsorption capacity and facile regeneration process of ZIF-8 photocatalyst membrane, the adsorption-degradation strategy was promising for its universal applications.
The MB degradation pathway and photocatalytic mechanism were also explored.
Ultimately, a comprehensive discussion on the advantages and implications of prepared photocatalyst membranes for photocatalytic water treatment was rationally proposed.
This study provided a promising method for water decontamination and demonstrated the significant superiority of monolithic membrane for photocatalytic water treatment.

Related Results

Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct Introduction Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Immobilization of Xylanase into Zeolitic Imidazolate Framework-67 (ZIF-67) and Manganese-Doped ZIF-67 (Mn/ZIF-67): A Comparison Study
Immobilization of Xylanase into Zeolitic Imidazolate Framework-67 (ZIF-67) and Manganese-Doped ZIF-67 (Mn/ZIF-67): A Comparison Study
AbstractIt has been discovered that metal–organic frameworks (MOFs) have desirable qualities for the immobilization of enzymes, including a high surface area, significant interior ...
Multiscale modeling of metal-organic framework/polymer composites
Multiscale modeling of metal-organic framework/polymer composites
Modélisation multi-échelle des composites réseau métallo-organique/polymère Dans cette contribution, des champs de force à gros grains (CG) ont été développés pour ...
Enzymes@ZIF-8 Nanocomposites with Protection Nanocoating: Stability and Acid-Resistant Evaluation
Enzymes@ZIF-8 Nanocomposites with Protection Nanocoating: Stability and Acid-Resistant Evaluation
Zeolitic imidazole framework-8 (ZIF-8) with tunable pore sizes and high surface areas have recently emerged as a promising support for immobilizing enzymes. However, the instabilit...
Procedure for Western blot v1
Procedure for Western blot v1
Goal: This document has the objective of standardizing the protocol for Western blot. This technique allows the detection of specific proteins separated on polyacrylamide gel and t...
Study on Glyphosate Adsorption onto ZIF-8 Modified with Fe<sub>3</sub>O<sub>4</sub> Nanoparticles
Study on Glyphosate Adsorption onto ZIF-8 Modified with Fe<sub>3</sub>O<sub>4</sub> Nanoparticles
Glyphosate (GLYPi) is an organophosphorus herbicide that behaves as an anionic substance in the aqueous phase. Even though it is stated as safe and non-toxic, the widespread use of...

Back to Top