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Inorganic fouling on the membrane surface is one of the major prevalent issues affecting the performance and cost of reverse osmosis system. Chemical dosage is a widely adopted method for the inhibition of inorganic scale on the membrane surface. In this study, CO was used to control inorganic scale formation on surface of reverse osmosis (RO) membrane in wastewater reclamation. The pH of influent could be lowered by purging CO. It caused an increase in solubility of inorganic salts in water resulting in discharge of principle ions in concentrate stream. A pilot plant study was conducted with four different RO modules including control, with dosage of antiscalant, with purging CO and with co-addition of antiscalant and CO. The effectiveness of CO purging was assessed on the basis of operational analysis, in-line analysis and morphological results. Ryznar stability index was used to determine the scaling potential of system. The examined data indicated that CO purging was successful to inhibit scale formation on the membrane surface. Moreover, CO was found more eco-friendly than antiscalant, as no by-products were generated in concentrate stream.
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http://dx.doi.org/10.1007/s11356-017-9008-3 | DOI Listing |
Biofouling
September 2025
DuPont, DuPont Water Solutions, Freienbach, Switzerland.
Imaging techniques are important for biofilm studies. Biofilm samples should ideally be visualised with minimal sample preparation so as not to alter their original structure. However, this can be challenging and resource-intensive in most cases.
View Article and Find Full Text PDFFront Chem
August 2025
Departamento de Ingeniería en Metalurgia, Universidad de Atacama, Copiapó, Chile.
The growing global demand for clean and sustainable energy has intensified the development of novel technologies capable of harnessing naturally available resources. Among these, blue energy, referring to the power generated from the mixing of waters with different salinities, has emerged as a promising yet underutilized source. This perspective presents a comprehensive synthesis of recent advances in electrochemical harvesting systems, with a particular focus on Mixing Entropy Batteries (MEBs) as efficient, membrane-free devices for salinity gradient energy recovery.
View Article and Find Full Text PDFNat Commun
September 2025
Department of Civil & Environmental Engineering, University of California, Los Angeles, CA, USA.
In this study, we present a class of thin-film crosslinked (TFX) composite reverse osmosis (RO) membranes that resist physical compaction at ultrahigh pressures (up to 200 bar). Since RO membranes experience compaction at virtually all pressure ranges, the ability to resist compaction has widespread implications for RO membrane technology. The process described herein involves crosslinking a phase inverted porous polyimide (PI) support membrane followed by interfacial polymerization of a polyamide layer, thereby forming a fully thermoset composite membrane structure.
View Article and Find Full Text PDFWater Res
August 2025
Orange County Water District, 18700 Ward St, Fountain Valley, CA 92708, USA.
N-nitrosodimethylamine (NDMA) is a carcinogen of significant concern in potable water treatment but real-time monitoring of NDMA is not yet feasible with current analytical techniques or mechanistic models. Measuring NDMA and its precursors is time- and labor-intensive which often results in conservative, energy-intensive NDMA treatment approaches, such as operating UV at the maximum dose, to remove NDMA under all possible conditions. To reduce the energy required for NDMA treatment, data-driven modeling was used to simulate an NDMA soft sensor for real-time UV dose control.
View Article and Find Full Text PDFZoo Biol
August 2025
Scientific Services, Ezemvelo KZN Wildlife, Pietermaritzburg, South Africa.
The Pickersgill's reed frog, Hyperolius pickersgilli (Raw 1982), is an Endangered frog species endemic to a narrow central coastal region of KwaZulu-Natal, South Africa. The Johannesburg Zoo's Amphibian Research Project breeds H. pickersgilli for release to the wild.
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