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The ceramic filter amended with iron (Fe) has proven to be a potential low-cost method for arsenic (As) removal from groundwater. The presence of Fe, phosphate (P), and silicate (Si) significantly affects the As removal efficiency of the ceramic filter, which has not been passably investigated. The present research aimed to examine the effect of Fe, P, and (or) Si presence as single or in combination on As (III) removal from synthetics groundwater by a low-cost iron amended ceramic filter (IACF). Laboratory-scale filtration experiments at different compositions of Fe, P, Si, and As (III) were conducted by the IACF fabricated with a ceramic candle and iron netting box. Fe (II) in synthetic groundwater positively impacted As (III) removal. At a concentration of 2 mg/L of Fe (II), the As levels in the effluent decreased to less than the maximum contamination level (MCL) of 50 μg/L. Groundwater P concentration needed less than 3 mg/L or Si concentrations required less than 35 mg/L to effectively reduce As (III) to below the MCL at 5 mg/L of groundwater Fe (II). The cumulative effect of P and Si on As removal was found to be more significant than distinct contributions. The presence of 2 mg/L P and 35 mg/L or higher Si in the groundwater cumulatively reduced the As removal performance from 92% to 63%, and the MCL was not met. The negative impact of P and Si on As (III) removal followed the order of (P + Si) > P > Si. P competed with As for adsorption sites during the process, while Si inhibited the Fe release and floc formation, significantly reducing As removal performance. The study findings can potentially contribute to optimizing IACF as a low-cost method for As removal from groundwater.
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http://dx.doi.org/10.1002/wer.10942 | DOI Listing |
Environ Int
September 2025
Centre for Molecular Biosciences and Non-communicable Diseases Research, Xi'an University of Science and Technology, Xi'an 710054, China. Electronic address:
Background: Nutritional supplements and environments have been linked with food allergy (FA), but little research has explored their interactions on children's FA.
Objectives: To explore the associations between early-life nutritional supplements, household environmental factors (HEFs), and outdoor air pollutant (OAP) exposures, and their interactions on children's FAs.
Methods: We collected 20,730 surveyed questionnaires from five Chinese cities, covering data on individual characteristics, health outcomes, and HEFs.
J Colloid Interface Sci
August 2025
Faculty of Medicine, Pharmacy and Prevention, Department of Life Sciences and Biotechnology, University of Ferrara, Via L. Borsari 46, 44121 Ferrara, Italy. Electronic address:
Titanium dioxide nanoparticles (TiO NPs) are well suited for cosmetics and polymer films because they efficiently absorb UV light while remaining transparent to visible light. Their widespread use requires strategies for managing potential human and environmental risks. Implementing the Safe and Sustainable by Design (SSbD) methodology to advanced chemicals and materials is a major global challenge and a concept that is included in several EU research projects.
View Article and Find Full Text PDFRSC Adv
August 2025
Advanced Materials and Intelligent Technologies Higher Education and Industrial Cooperation Centre, University of Miskolc Miskolc H-3515 Hungary.
Microbial contamination in drinking water continues to be a significant global issue due to its direct effects on human health, particularly in areas with insufficient sanitation or deteriorating infrastructure. Conventional treatment systems frequently encounter challenges in fully eliminating pathogenic bacteria, underscoring the pressing necessity for innovative, energy-efficient filtration technology to ensure universal access to clean drinking water. In this regard, numerous reconsidered membrane technologies and filtration solutions have been developed and published recently.
View Article and Find Full Text PDFIndian J Orthop
August 2025
Department of Orthopaedic Surgery, PGIMER, Chandigarh, India.
Background: Biodegradable orthopaedic implants have emerged as an innovative alternative to traditional permanent metallic or inert polymer implants, aiming to provide mechanical support during critical healing phases and subsequently degrade in vivo. Their primary advantage lies in eliminating the need for a second surgery to remove hardware, thus potentially reducing patient morbidity and healthcare costs. Despite these benefits, challenges related to unpredictable degradation kinetics, mechanical strength, and biocompatibility have restricted their widespread clinical application.
View Article and Find Full Text PDFThis paper provides the design and study of a two-port silicon-graphene aerial in this regime. Some of the unique features of the designed aerial are (a) with the help of the antenna fusion approach, the designed aerial itself behaves as a bandpass filter in terms of the gain feature; (b) the metasurface lens placed above the two-port aerial enhances the gain (about 9.5 dBi) within the functioning band; and (c) the perturbed circular slot helps to generate circular waves within the working band (2.
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