Graphene oxide (GO)-based membranes hold significant promise for applications ranging from energy storage to protective coatings, to saline water and produced water treatment, owing to their chemical stability and unique barrier properties achieving a high selectivity for water permeation. However, unmodified GO membranes are not stable when submerged in liquid water, creating challenges with their commercial utilization in aqueous filtration and pervaporation applications. To mitigate this, we develop an approach to modify GO membranes through a combination of low temperature thermal reduction and metal cation crosslinking. We demonstrate that Zn-rGO and Fe-rGO membranes had the highest permeation flux of 8.3 ± 1.5 l mhand 7.0 ± 0.4 l mh, for saline water separation, respectively, when thermally reduced after metal cross-linking; These membranes maintained a high flux of 7.5 ± 0.7 l mh, and 5.5 ± 0.3 l mhfor produced water separation, respectively. All the membranes had a salt rejection higher than 99%. Fecrosslinked membranes presented the highest organic solute rejections for produced water of 69%. Moreover, long term pervaporation testing was done for the Zn-rGO membrane for 12 h, and only a minor drop of 6% in permeation flux was observed, while Zn-GO had a drop of 24%. Both modifiers significantly enhanced the stability with Fe-rGO membranes displaying the highest mechanical abrasion resistance of 95% compared to non-reduced and non-crosslinked GO. Improved stability for all samples also led to higher selectivity to water over organic contaminants and only slightly reduced water flux across the membrane.
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http://dx.doi.org/10.1088/1361-6528/ad41e8 | DOI Listing |
Sci Rep
January 2025
Department of Health Hazards Surveillance, Hangzhou Center for Disease Control and Prevention (Hangzhou Health Supervision Institution), Hangzhou, 310021, China.
Disinfection is a critical process to ensure the safety of drinking water. To curb the spread of various bacteria and viruses, disinfectants are extensively employed in communities, hospitals, sewage treatment plants, and other settings. However, disinfectants can produce disinfection by-products (DBPs) that threaten human health.
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January 2025
College of Natural and Computational Sciences, University of Gondar, P.O. Box 196, Gondar, Ethiopia.
The conversion of water hyacinth into biochar offers a sustainable solution to mitigate its proliferation and enhances its potential as a soil amendment for agriculture. This study examined the physicochemical properties of water hyacinth biochar (WHBC) and its impact on soil fertility. Water hyacinth (Eichhornia crassipes) was pyrolyzed at 300 °C for 40 minute with restricted airflow (2-3 m/s), producing biochar with desirable properties and a yield of 44.
View Article and Find Full Text PDFEcotoxicology
January 2025
Department of Wildlife Ecology and Conservation, University of Florida, Gainesville, FL, USA.
Songbird reproductive success can decline from consuming mercury-contaminated aquatic insects, but assessments of hydrologic conditions influencing songbird mercury exposure are lacking. We monitored breast feather total mercury (THg) concentrations and reproductive success in the U.S.
View Article and Find Full Text PDFClin Cancer Res
January 2025
The University of Texas MD Anderson Cancer Center, Houston, TX, United States.
Background: KRAS inhibitors are revolutionizing the treatment of NSCLC, but clinico-genomic determinants of treatment efficacy warrant continued exploration.
Methods: Patients with advanced KRASG12C-mutant NSCLC treated with adagrasib (KRYSTAL-1-NCT03785249) were included in the analysis. Pre-treatment NGS data were collected per protocol.
Food Sci Nutr
January 2025
Department of Animal Science, Azadshahr Branch Islamic Azad University Azadshahr Iran.
Wheat gluten is a by-product of the wheat starch industry, rich in bioactive peptides. Spray drying is an effective method for improving the stability of bioactive compounds. So, the aim of this study was to produce gluten hydrolysate by different proteases (alcalase, pancreatin, and trypsin) at different times (40-200 min).
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