Themed collection Sustainable Development Goal 6: Clean Water and Sanitation
Poly(2-methoxyethyl acrylate)-grafted microfiltration membranes exhibiting low-fouling properties in the presence of salt species
This study successfully demonstrated that membranes whose surfaces and pore walls were modified with poly(2-methoxyethyl acrylate) (PMEA) exhibit low-fouling properties against organic substances even in the presence of salt species.
RSC Appl. Interfaces, 2024,1, 677-683
https://doi.org/10.1039/D4LF00129J
Upcycled graphene nanoplatelets integrated fiber-based Janus membranes for enhanced solar-driven interfacial steam generation
Upcycled GNP derived from the pyrolysis of waste tires is used as a photothermal material. Finding the optimum GNP content for minimum cost and maximum evaporation rate can enhance the techno-economic aspect of the developed Janus membranes.
RSC Appl. Interfaces, 2024,1, 896-907
https://doi.org/10.1039/D4LF00082J
Bio-based electrospun polyamide membrane – sustainable multipurpose filter membranes for microplastic filtration
Electrospun nonwoven membranes from bio-based PA 6.9 can serve as efficient filters for the removal of microplastic from water and air as well as for the remediation of oily wastewater.
RSC Appl. Polym., 2024,2, 642-655
https://doi.org/10.1039/D3LP00201B
Dynamic quenching mechanism based optical detection of carcinogenic Cr(VI) in water and on economical paper test strips via a conjugated polymer
Highly selective and sensitive detection of Cr(VI) in water and on portable paper strips via a conjugated fluorescent polymer.
RSC Appl. Polym., 2024,2, 196-204
https://doi.org/10.1039/D3LP00195D
Al(III)-based MOF for the selective adsorption of phosphate and arsenate from aqueous solutions
Schematic representation of the application of DUT-5 to remove phosphate and arsenate from aqueous solutions.
RSC Appl. Interfaces, 2024,1, 147-154
https://doi.org/10.1039/D3LF00061C
About this collection
Welcome to our new collection dedicated to highlighting impactful work taking place across the world to meet the United Nations Global Sustainable Development Goals. Across the 17 Global Sustainability Goals, RSC Applied Polymers and RSC Applied Interfaces authors have been demonstrating how chemistry really can make the world a better place. This SDG collection focuses on Sustainable Development Goal 6: Clean Water and Sanitation. Articles in this collection showcase the efforts of our chemical scientists in meeting this global need, from providing innovative measures to detect and extract harmful chemicals from the worlds water sources, to developing sustainable methods in sanitation and waste management.
Keep an eye out for our other Sustainable Development Goals collections:
Sustainable Development Goal 3: Good Health and Well-Being
Sustainable Development Goal 7: Affordable and Clean Energy
Sustainable Development Goal 12: Responsible Production and Consumption
To find out more about the United Nations Global Sustainability Goals visit: https://sdgs.un.org/goals