Showing 1,401 - 1,420 results of 7,249 for search '"metals"', query time: 0.09s Refine Results
  1. 1401

    Loading of Iron (II, III) Oxide Nanoparticles in Cryogels Based on Microfibrillar Cellulose for Heavy Metal Ion Separation by Jinhua Yan, Huanlei Yang, Juliana C. da Silva, Orlando J. Rojas

    Published 2020-01-01
    “…The results indicate the potential of the introduced bicomponent cryogels for nanoparticle loading, leading to a remarkably high metal ion sorption capacity.…”
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    Article
  2. 1402

    Strongly coordinating mediator enables single-step resource recovery from heavy metal-organic complexes in wastewater by Wei Shi, Jiayi Li, Fei Gao, Lijun Meng, Xiao Su, Zhiwei Wang

    Published 2024-12-01
    “…Abstract Heavy metals complexed with organic ligands are among the most critical carcinogens threatening global water safety. …”
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    Article
  3. 1403

    Ecological and energy aspects of choice of tail units of sewage waterpurifying schemes at treatment of metal in machine construction technologies by A. P. Nesenchuk, V. M. Kopko, T. V. Ryzhova, N. A. Mandel, R. B. Vais, N. G. Malkevich

    Published 2001-08-01
    “…Saving of natural and energy resources at application of thermal technologies of pickling production sewage purifying schemes during metal treatment in machine construction technologies.…”
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    Article
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    Impact of heavy metal pollution on the use of fishing pond land, a former site of used battery smelting by E. Riani, N.A. Butet, M. Ansori, M.R. Cordova

    Published 2024-10-01
    “…Water hyacinth plants that live in ponds are densely cultivated and contaminated with heavy metals. They can become heavy metal phytoremediators on the land where traditional used battery burning was performed. …”
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    Article
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    Recent Progress in Enzyme Immobilization to Metal–Organic Frameworks to Enhance the CO<sub>2</sub> Conversion Efficiency by Yunhan Cao, Pengyan Yang, Rui Zhao, Fenghuan Wang

    Published 2025-01-01
    “…However, free enzymes are prone to inactivation and denaturation under reaction conditions, which limit their practical applications. Metal–organic frameworks (MOFs) serve as effective carriers for enzyme immobilization, offering porous crystalline structures that enhance enzyme stability. …”
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    Article
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    Fuel Cell Electrodes Based on Carbon Nanotube/Metallic Nanoparticles Hybrids Formed on Porous Stainless Steel Pellets by S. M. Khantimerov, E. F. Kukovitsky, N. A. Sainov, N. M. Suleimanov

    Published 2013-01-01
    “…The preparation of carbon nanotube/metallic particle hybrids using pressed porous stainless steel pellets as a substrate is described. …”
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    Characterization of Layer Number of Two-Dimensional Transition Metal Diselenide Semiconducting Devices Using Si-Peak Analysis by Xian Zhang

    Published 2019-01-01
    “…Atomically thin materials such as semiconducting transition metal diselenide materials, like molybdenum diselenide (MoSe2) and tungsten diselenide (WSe2), have received intensive interests in recent years due to their unique electronic structure, bandgap engineering, ambipolar behavior, and optical properties and have motivated investigations for the next-generation semiconducting electronic devices. …”
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  16. 1416

    Comparative Study on the Adsorption Kinetics and Thermodynamics of Metal Ions onto Acid Activated Low Cost Pandanus Carbon by R. Sudha, K. Kalpana, T. Rajachandrasekar, S. Arivoli

    Published 2007-01-01
    “…The operating variables studied were initial metal ion concentration, pH, and temperature and contact time. …”
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    Chemical structure–property relationships of photocurable monomers/macromers: Potential binder candidates for ceramic/metal vat photopolymerization by Setareh Zakeri, Antonia Ressler, Piie Konnunaho, Teemu Sandblom, Joshua Cunningham, Milla Rinne, Matti Järveläinen, Anastasia Elias, Erkka J. Frankberg, Erkki Levänen

    Published 2025-02-01
    “…Successful ceramic/metal vat photopolymerization (VPP) depends on the precise optimization of photocurable polymers to achieve ideal component properties. …”
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    Article
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