hydrogen and clay

hydrogen has been researched along with clay in 13 studies

Research

Studies (13)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's2 (15.38)18.2507
2000's4 (30.77)29.6817
2010's7 (53.85)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Navarro-González, R; Negrón-Mendoza, A; Ponnamperuma, C; Ramos, S1
Hayes, JM; Kenig, F; Popp, BN; Summons, RE1
Ishikawa, H; Miyake, J; Nakamura, C; Qian, DJ; Wenk, SO; Zorin, N1
Barton, GW; Holt, PK; Mitchell, CA1
Gao, P; Li, MK; Yue, PL; Zhang, W1
Eroğlu, E; Eroğlu, I; Gündüz, U; Yücel, M1
Akkermans, G; Cavegn, M; Douglas, R; Kuentz, M1
Charlet, L; Didier, M; Giffaut, E; Greneche, JM; Leone, L1
Li, L; Shen, B; Tang, X; Wang, C1
dos Reis, CM; Silva, EL1
Jung, JS; Lee, KY; Lee, SY; Moon, DJ; Yang, EH1
Andersson, AF; Bagnoud, A; Bernier-Latmani, R; Chourey, K; de Bruijn, I; Hettich, RL; Leupin, OX; Schwyn, B1
Choi, H; Han, SS; Kim, A; Kim, JY; Kumar, A; Matari, IAI; Suk, YJ1

Other Studies

13 other study(ies) available for hydrogen and clay

ArticleYear
Radiolysis of aqueous solutions of acetic acid in the presence of Na-montmorillonite.
    Sciences geologiques: Memoire, 1990, Volume: 85

    Topics: Acetates; Acetic Acid; Aluminum Silicates; Bentonite; Carbon Dioxide; Carbon Monoxide; Carboxylic Acids; Chemical Phenomena; Chemistry; Clay; Cobalt Radioisotopes; Computer Simulation; Free Radicals; Gamma Rays; Geological Phenomena; Geology; Hydrogen; Methane; Models, Chemical; Radiochemistry; Spectroscopy, Fourier Transform Infrared

1990
Isotopic biogeochemistry of the Oxford Clay Formation (Jurassic), UK.
    Journal of the Geological Society, 1994, Volume: 151

    Topics: Alkanes; Aluminum Silicates; Animals; Biomass; Carbon; Carbon Isotopes; Clay; Diterpenes; Eukaryota; Fossils; Geologic Sediments; Hydrogen; Mollusca; Oceans and Seas; Oxygen; Paleontology; Plants; Terpenes; United Kingdom

1994
A hydrogen biosensor made of clay, poly(butylviologen), and hydrogenase sandwiched on a glass carbon electrode.
    Biosensors & bioelectronics, 2002, Volume: 17, Issue:9

    Topics: Aluminum Silicates; Biosensing Techniques; Carbon; Carbon Monoxide; Clay; Coated Materials, Biocompatible; Electrodes; Enzyme Stability; Enzymes, Immobilized; Equipment Design; Glass; Hydrogen; Hydrogen-Ion Concentration; Hydrogenase; Materials Testing; Methane; Methanol; Oxidation-Reduction; Polymers; Sensitivity and Specificity; Temperature; Viologens

2002
Deciphering the science behind electrocoagulation to remove suspended clay particles from water.
    Water science and technology : a journal of the International Association on Water Pollution Research, 2004, Volume: 50, Issue:12

    Topics: Aluminum; Aluminum Silicates; Bioreactors; Clay; Electrochemistry; Facility Design and Construction; Hydrogen; Models, Theoretical; Sewage; Time Factors; Water Pollutants; Water Purification

2004
Exfoliated Pt-clay/Nafion nanocomposite membrane for self-humidifying polymer electrolyte fuel cells.
    Langmuir : the ACS journal of surfaces and colloids, 2008, Mar-18, Volume: 24, Issue:6

    Topics: Aluminum Silicates; Clay; Electric Power Supplies; Electrodes; Electrolytes; Fluorocarbon Polymers; Humidity; Hydrogen; Membranes, Artificial; Nanoparticles; Oxygen; Particle Size; Platinum; Protons; Sensitivity and Specificity; Surface Properties; Water

2008
Effect of clay pretreatment on photofermentative hydrogen production from olive mill wastewater.
    Bioresource technology, 2008, Volume: 99, Issue:15

    Topics: Aluminum Silicates; Clay; Fermentation; Food Industry; Hydrogen; Industrial Waste; Olea; Photochemistry; Water Pollutants

2008
Study of an ultrasound-based process analytical tool for homogenization of nanoparticulate pharmaceutical vehicles.
    Journal of pharmaceutical sciences, 2011, Volume: 100, Issue:8

    Topics: Aluminum Silicates; Cellulose; Clay; Gels; Kinetics; Models, Chemical; Nanoparticles; Particle Size; Pharmaceutical Vehicles; Polysaccharides, Bacterial; Quality Control; Silicon Dioxide; Technology, Pharmaceutical; Ultrasonography; Viscosity

2011
Adsorption of hydrogen gas and redox processes in clays.
    Environmental science & technology, 2012, Mar-20, Volume: 46, Issue:6

    Topics: Adsorption; Aluminum Silicates; Bentonite; Clay; Hot Temperature; Hydrogen; Iron; Oxidation-Reduction; Radioactive Waste; Spectroscopy, Mossbauer; Stainless Steel

2012
Halloysite-nanotubes supported FeNi alloy nanoparticles for catalytic decomposition of toxic phosphine gas into yellow phosphorus and hydrogen.
    Chemosphere, 2013, Volume: 91, Issue:9

    Topics: Alloys; Aluminum Silicates; Boron; Catalysis; Clay; Ferrosoferric Oxide; Gases; Hydrogen; Metal Nanoparticles; Nanotubes; Nickel; Phosphines; Phosphorus; Temperature

2013
Simultaneous coproduction of hydrogen and ethanol in anaerobic packed-bed reactors.
    BioMed research international, 2014, Volume: 2014

    Topics: Aluminum Silicates; Anaerobiosis; Bioreactors; Clay; Ethanol; Fermentation; Glucose; Hydrogen; Hydrogen-Ion Concentration; Wastewater

2014
Hydrogenolysis of Glycerol to 1,2-Propanediol Over Clay Based Catalysts.
    Journal of nanoscience and nanotechnology, 2015, Volume: 15, Issue:11

    Topics: Aluminum Silicates; Catalysis; Clay; Glycerol; Hydrogen; Hydrogen Bonding; Materials Testing; Metal Nanoparticles; Nanopores; Particle Size; Porosity; Propylene Glycol

2015
Reconstructing a hydrogen-driven microbial metabolic network in Opalinus Clay rock.
    Nature communications, 2016, 10-14, Volume: 7

    Topics: Aluminum Silicates; Autotrophic Processes; Bacteria; Carbon Cycle; Clay; Ecosystem; Geography; Heterotrophic Processes; Hydrogen; Metabolic Networks and Pathways; Metagenomics; Microbial Consortia; Radioactive Waste; RNA, Ribosomal, 16S; Soil Microbiology; Switzerland

2016
Development of halloysite nanotube/carboxylated-cellulose nanocrystal-reinforced and ionically-crosslinked polysaccharide hydrogels.
    Materials science & engineering. C, Materials for biological applications, 2019, Volume: 104

    Topics: Cell Line; Cellulose; Clay; Compressive Strength; Fibroblasts; Humans; Hydrogels; Nanoparticles; Nanotubes; Polysaccharides; Polysaccharides, Bacterial; Porosity; Skin; Tissue Engineering

2019