Modification of microfiltration process using cellulosic fabric treated with zinc oxide nanoparticles as a pioneering gravity-driven filter for biofouling mitigation in water …

MM Khalaf, M Gouda, MF Abou Taleb… - Journal of …, 2024 - Elsevier
This study aims to functionalize scoured cotton fabrics (SCF) with zinc oxide nanoparticles
(ZnONPs). The functionalized SCF was used to prevent microbial growth on surfaces and …

Cationic cellulose filter papers modified with ZnO/Ag/GO nanocomposite as point of use gravity-driven filters for bacterial removal from water

SB Ghaffari, MH Sarrafzadeh - Scientific Reports, 2023 - nature.com
The surface modification of filters with large pore sizes for the development of low-cost
gravity-driven point-of-use (POU) technologies for water disinfection can be an effective …

Preparation and characterization of polyvinyl chloride membranes decorated with designed novel zinc oxide particles for mitigating uncontrollable agglomeration

BM Erdugan, E Demirel, E Suvaci - Journal of Environmental Chemical …, 2022 - Elsevier
The use of nanomaterials in the fabrication of polymeric composite membranes has a great
potential for improving separation performance by altering the membrane characteristics …

Optimized anti-biofouling performance of bactericides/cellulose nanocrystals composites modified PVDF ultrafiltration membrane for micro-polluted source water …

G Zhang, J Lv, F Yang - Water Science and Technology, 2019 - iwaponline.com
The covalently functionalized cellulose nanocrystal (CNC) composites were synthesized by
bonding common bactericides, such as dodecyl dimethyl benzyl ammonium chloride …

Micro fine particles deposition on gravity-driven ultrafiltration membrane to modify the surface properties and biofilm compositions: Water quality improvement and …

D Song, W Zhang, W Cheng, B Jia, P Wang… - Chemical Engineering …, 2020 - Elsevier
Micro fine particles (micro fine powdered activated carbon (MFPAC) or micro fine powdered
zeolite (MFPZ)) were deposited on hydrophobic polyvinylidene fluoride (PVDF) membrane …

Multifunctional finishing of cotton fabric using zinc oxide nanoparticles synthesized by bio-reduction method

K Nivedha, K Kalaiarasi, M Poonkothai… - Biomass Conversion …, 2024 - Springer
Biological reductant are being explored globally to minimize the impacts of toxic chemicals
used in nanoparticle synthesis. Incorporating nanoparticles (NPs) into textile fabrics offers a …

A novel semi-dry method for rapidly synthesis ZnO nanorods on SiO2@ PTFE nanofiber membrane for efficient air cleaning

X Zhu, S Feng, Y Rao, S Ju, Z Zhong, W Xing - Journal of Membrane …, 2022 - Elsevier
Particulate matter including dust and airborne microorganisms has severe effect on indoor
air quality and thus be injurious to human health. In this research, inspired by corals, a …

Polyvinylidene Difluoride (PVDF) hollow fiber membrane incorporated with antibacterial and anti-fouling by Zinc Oxide for water and wastewater treatment

R Kamaludin, L Abdul Majid, MHD Othman, S Mansur… - Membranes, 2022 - mdpi.com
The addition of antibacterial material to hollow fiber membranes improves the membrane
anti-biofouling characteristics. Antibacterial membranes were fabricated in this study to …

Concurrent filtration and inactivation of bacteria using poly (vinyl alcohol-co-ethylene) nanofibrous membrane facilely modified using chitosan and graphene oxide

K Liu, P Cheng, Y Wang, W Zhong, Z Lu, M Li… - Environmental …, 2017 - pubs.rsc.org
Integrating multiple nanoscale components with antibacterial properties into a single
membrane filter is indispensable for efficient application in water treatment. Herein, we …

Amoxicillin removal using polyethersulfone hollow fiber membranes blended with ZIF-L nanoflakes and cGO nanosheets: Improved flux and fouling-resistance

A Modi, J Bellare - Journal of Environmental Chemical Engineering, 2020 - Elsevier
The removal of pharmaceutical compounds (eg, amoxicillin) from water sources using
membrane technology has gained significant attention. In this study, the removal of …