Ionics, Journal Year: 2024, Volume and Issue: 30(6), P. 3443 - 3454
Published: April 10, 2024
Language: Английский
Ionics, Journal Year: 2024, Volume and Issue: 30(6), P. 3443 - 3454
Published: April 10, 2024
Language: Английский
Environmental Science and Pollution Research, Journal Year: 2022, Volume and Issue: 29(46), P. 69241 - 69274
Published: Aug. 15, 2022
Language: Английский
Citations
135Chemosphere, Journal Year: 2022, Volume and Issue: 299, P. 134418 - 134418
Published: March 26, 2022
Language: Английский
Citations
79Progress in Organic Coatings, Journal Year: 2023, Volume and Issue: 183, P. 107787 - 107787
Published: July 8, 2023
Language: Английский
Citations
72Ceramics International, Journal Year: 2022, Volume and Issue: 48(20), P. 29589 - 29600
Published: July 2, 2022
Language: Английский
Citations
71International Journal of Biological Macromolecules, Journal Year: 2023, Volume and Issue: 230, P. 123238 - 123238
Published: Jan. 11, 2023
Language: Английский
Citations
60Environmental Science & Technology, Journal Year: 2023, Volume and Issue: 57(12), P. 4701 - 4719
Published: March 13, 2023
High-frequency water quality measurements in streams and rivers have expanded scope sophistication during the last two decades. Existing technology allows situ automated of constituents, including both solutes particulates, at unprecedented frequencies from seconds to subdaily sampling intervals. This detailed chemical information can be combined with hydrological biogeochemical processes, bringing new insights into sources, transport pathways, transformation processes particulates complex catchments along aquatic continuum. Here, we summarize established emerging high-frequency technologies, outline key hydrochemical data sets, review scientific advances focus areas enabled by rapid development rivers. Finally, discuss future directions challenges for using bridge management gaps promoting a holistic understanding freshwater systems catchment status, health, function.
Language: Английский
Citations
54Geosystems and Geoenvironment, Journal Year: 2023, Volume and Issue: 2(4), P. 100210 - 100210
Published: May 20, 2023
Different natural and anthropogenic processes cause pollution of various water bodies worldwide creating numerous health problems for humans. This causes serious concern as is a basic necessity to all living beings, needs be adequately monitored managed prevent its contamination. If found contaminated, the cleaned using suitable treatment methods keeping in view WHO regulations before it intended purpose (drinking, irrigation, etc.). Application different ICP-MS techniques such classical ICP-MS, ICP-MS/MS, ICP-TOF-MS, HR-ICP-MS, MH-ICP-MS, MC-ICP-MS qualitative quantitative determination toxic metals, isotopes and, metal species, effective monitoring other pollutants drinking water, surface groundwater, industrial effluents, used aquaculture industries focal point this article. In general, concentrations major, minor, trace element composition samples are influenced mainly by bedrock geology emergence, well residence time depth aquifer. For better management resources, necessary have comprehensive understanding quality (with respect physical, chemical, biological) requirements, sustainability groundwater from particular source. Identifying sources contamination, risks associated, application technique(s) supplied public consumption. It also intensify our studies on species (e.g., As3+, Cr6+ methyl mercury) their effects human health, regulatory limits water.
Language: Английский
Citations
51Environmental Science & Technology, Journal Year: 2024, Volume and Issue: 58(6), P. 2636 - 2651
Published: Feb. 1, 2024
Ensuring water quality and safety requires the effective detection of emerging contaminants, which present significant risks to both human health environment. Field deployable low-cost sensors provide solutions detect contaminants at their source enable large-scale monitoring management. Unfortunately, availability utilization such remain limited. This Perspective examines current sensing technologies for detecting analyzes critical barriers, as high costs, lack reliability, difficulties in implementation real-world settings, stakeholder involvement sensor design. These technical nontechnical barriers severely hinder progression from proof-of-concepts negatively impact user experience factors ease-of-use actionability using data, ultimately affecting successful translation widespread adoption these technologies. We examples specific systems explore key strategies address remaining scientific challenges that must be overcome translate into field improving sensitivity, selectivity, robustness, performance environments. Other aspects tailoring research meet end-users' requirements, integrating cost considerations consumer needs early prototype design, establishing standardized evaluation validation protocols, fostering academia-industry collaborations, maximizing data value by sharing initiatives, promoting workforce development are also discussed. The describes a set guidelines development, translation, swiftly accurately detect, analyze, track, manage contamination.
Language: Английский
Citations
27Clean Technologies and Environmental Policy, Journal Year: 2024, Volume and Issue: 26(9), P. 2777 - 2799
Published: March 3, 2024
Language: Английский
Citations
16Materials, Journal Year: 2022, Volume and Issue: 15(15), P. 5392 - 5392
Published: Aug. 5, 2022
Water contamination is one of the most urgent concerns confronting world today. Heavy metal poisoning aquatic systems has piqued interest various researchers due to high toxicity and carcinogenic consequences it on living organisms. Due their exceptional attributes such as strong reactivity, huge surface area, outstanding mechanical properties, nanomaterials are being produced employed in water treatment. In this review, recent advances use nanoadsorptive membrane for wastewater treatment heavy removal extensively discussed. These materials include carbon-based nanostructures, nanoparticles, oxide nanocomposites, layered double hydroxide-based compounds. Furthermore, relevant properties nanostructures implications performance highlighted. The hydrophilicity, pore size, skin thickness, porosity, roughness these can help permeability membrane. Other charge modification strength improve adsorption effectiveness membranes during Various nanocomposite fabrication techniques also reviewed. This study important because gives information roles
Language: Английский
Citations
61