Works matching Langmuir-Hinshelwood Model
Results: 553
Mixing Rules Formulation for a Kinetic Model of the Langmuir-Hinshelwood Semipredictive Type Applied to the Heterogeneous Photocatalytic Degradation of Multicomponent Mixtures.
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- International Journal of Photoenergy, 2014, p. 1, doi. 10.1155/2014/817538
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Langmuir‐hinshelwood model of soil phosphorus kinetics.
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- Communications in Soil Science & Plant Analysis, 1999, v. 30, n. 1/2, p. 109, doi. 10.1080/00103629909370188
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Langmuir-Hinshelwood-Hougen-Watson Heterogeneous Kinetics Model for the Description of Fe (II) Ion Exchange on Na-X Zeolite.
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- Engineering, Technology & Applied Science Research, 2022, v. 12, n. 5, p. 9265, doi. 10.48084/etasr.5161
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Dynamics of a depletion-type Gierer-Meinhardt model with Langmuir-Hinshelwood reaction scheme.
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- Discrete & Continuous Dynamical Systems - Series B, 2022, v. 27, n. 4, p. 2275, doi. 10.3934/dcdsb.2021132
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A rate-controlling step in langmuir-hinshelwood kinetic models.
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- Canadian Journal of Chemical Engineering, 2000, v. 78, n. 3, p. 513, doi. 10.1002/cjce.5450780310
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Study on reaction mechanism and Langmuir-Hinshelwood kinetic model of catalytic denitrification by Fe<sup>0</sup> and bimetallic catalyst.
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- Journal of Environmental Science & Health. Part A. Toxic/Hazardous Substances & Environmental Engineering, 2021, v. 56, n. 5, p. 501, doi. 10.1080/10934529.2021.1890496
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Phenomenological-based kinetics modelling of dehydrogenation of ethylbenzene to styrene over a Mg<sub>3</sub>Fe<sub>0.25</sub>Mn<sub>0.25</sub>Al<sub>0.5</sub> hydrotalcite catalyst.
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- Canadian Journal of Chemical Engineering, 2013, v. 91, n. 5, p. 924, doi. 10.1002/cjce.21698
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Ultrasound and UV stimulated heterogeneous catalytic oxidation of an azo dye: a synergistic effect.
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- Progress in Reaction Kinetics & Mechanism, 2017, v. 42, n. 3, p. 235, doi. 10.3184/146867817X14821527549095
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Kinetic Analysis of 4-Nitrophenol Reduction by "Water-Soluble" Palladium Nanoparticles.
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- Nanomaterials (2079-4991), 2020, v. 10, n. 6, p. 1169, doi. 10.3390/nano10061169
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3D‐foam‐structured nitrogen‐doped graphene‐Ni catalyst for highly efficient nitrobenzene reduction.
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- AIChE Journal, 2018, v. 64, n. 4, p. 1330, doi. 10.1002/aic.16016
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Kinetic Approach by Photocurrent Measurements to the Photoelectrocatalytic Oxidation of an Anionic Surfactant Using an S,N-TiO<sub>2</sub>/Ti Electrode: Distinguishing Between Direct and Indirect Mechanisms.
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- Topics in Catalysis, 2021, v. 64, n. 1/2, p. 26, doi. 10.1007/s11244-020-01404-x
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Optimized kinetic study of the isomerization reaction over composite catalysts by applying response surface methodology.
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- Journal of the Iranian Chemical Society, 2024, v. 21, n. 7, p. 1963, doi. 10.1007/s13738-024-03043-5
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Carbamazepine Degradation by Photolysis and Titanium Dioxide Photocatalysis.
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- Water Environment Research (10614303), 2012, v. 84, n. 7, p. 554, doi. 10.2175/106143012X13373550427273
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Protection Of Water Contaminated By Chemical And Microbial Contaminants For Agriculture: Application Of The Advanced Oxidation Process.
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- Algerian Journal of Environmental Science & Technology, 2017, v. 3, n. 1, p. 9
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Unified kinetics of n-heptane hydroisomerisation over various Pt/zeolite catalysts.
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- Progress in Reaction Kinetics & Mechanism, 2016, v. 41, n. 2, p. 177, doi. 10.3184/146867816X14646899008350
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Toxic Congo Red Dye Photodegradation Employing Green Synthesis of Zinc Oxide Nanoparticles Using Gum Arabic.
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- Water (20734441), 2024, v. 16, n. 15, p. 2202, doi. 10.3390/w16152202
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Kinetic Modeling of the Photocatalytic Degradation of Air-Borne Pollutants.
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- AIChE Journal, 2004, v. 50, n. 5, p. 1017, doi. 10.1002/aic.10097
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Photodegradation Kinetics of Toluene in Indoor Air at Different Humidities Using UVA, UVC and UVLED Light Sources in the Presence of Silver Titanium Dioxide.
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- Indoor & Built Environment, 2010, v. 19, n. 5, p. 503, doi. 10.1177/1420326X10378799
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Theoretical and Experimental Study of the Photocatalytic Properties of ZnO Semiconductor Nanoparticles Synthesized by Prosopis laevigata.
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- Materials (1996-1944), 2023, v. 16, n. 18, p. 6169, doi. 10.3390/ma16186169
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Green synthesis and catalytic application of curcumin stabilized silver nanoparticles.
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- Journal of Chemical Sciences, 2016, v. 128, n. 12, p. 1871, doi. 10.1007/s12039-016-1189-7
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Synthesis, structural, and opto-electrochemical properties of cobalt aluminate type spinel and its use with ZnO for Cr(VI) photoreduction.
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- Environmental Science & Pollution Research, 2022, v. 29, n. 8, p. 12237, doi. 10.1007/s11356-021-16625-0
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Kinetic Model and Mechanism of Hydrogenation of Unsaturated Carbocyclic Compounds Based on Norbornadiene.
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- Kinetics & Catalysis, 2022, v. 63, n. 2, p. 234, doi. 10.1134/S0023158422020136
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Kinetic study of spiramycin removal from aqueous solution using heterogeneous photocatalysis.
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- Kinetics & Catalysis, 2016, v. 57, n. 2, p. 200, doi. 10.1134/S0023158416020087
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Modeling and Optimization: Isomerization Reaction Rate using Response Surface Methodology with Two Kinetic Model Over Bi-Porous Catalysts.
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- Journal of Chemical & Petroleum Engineering, 2024, v. 58, n. 1, p. 1, doi. 10.22059/jchpe.2023.346017.1398
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Photocatalytic Degradation of Diazo Dye over Suspended and Immobilized TiO 2 Catalyst in Swirl Flow Reactor: Kinetic Modeling.
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- Processes, 2021, v. 9, n. 10, p. 1741, doi. 10.3390/pr9101741
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Removal of a Commercial Dye, Alizarin Red, by Solar Photocatalysis Involving the Heterosystem ZnO-SnO<sub>2</sub>.
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- Theoretical & Experimental Chemistry, 2018, v. 53, n. 6, p. 417, doi. 10.1007/s11237-018-9540-3
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Kinetic modeling of dual-stage oxidative extractive denitrogenation of model fuel.
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- Chemical Engineering Communications, 2024, v. 211, n. 10, p. 1572, doi. 10.1080/00986445.2024.2362814
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PHOTOCATALYTIC DEGRADATION OF METRONIDAZOLE USING BIOI- MWCNT COMPOSITES: SYNTHESIS, CHARACTERIZATION, AND OPERATIONAL PARAMETERS.
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- Sigma: Journal of Engineering & Natural Sciences / Mühendislik ve Fen Bilimleri Dergisi, 2019, v. 37, n. 4, p. 1231
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Decolorization and Detoxification of Acid Orange 7 by Zero-Valent Iron with UV Light.
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- Journal of the Chemical Society of Pakistan, 2017, v. 39, n. 5, p. 812
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Pt-NiO-AlO/G derived from graphene-supported layered double hydroxide as efficient catalyst for p-nitrophenol reduction.
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- Research on Chemical Intermediates, 2017, v. 43, n. 10, p. 5829, doi. 10.1007/s11164-017-2965-9
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Photodegradation of Rhodamine B using gallium hybrids as an efficient photocatalyst.
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- Environmental Monitoring & Assessment, 2023, v. 195, n. 9, p. 1, doi. 10.1007/s10661-023-11683-y
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HCrO24 Reduction on the Novel Heterosystem La2CuO4/SnO2 Under Solar Light.
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- Environmental Progress & Sustainable Energy, 2015, v. 34, n. 3, p. 744, doi. 10.1002/ep.12058
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High Photocatalytic Activity of the Heterojunction Photocatalyst CoFe<sub>2</sub>O<sub>4</sub>/AgCl for Efficient Photodegradation of Solophenyl Red 3BL Dye in Water.
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- Water, Air & Soil Pollution, 2022, v. 233, n. 8, p. 1, doi. 10.1007/s11270-022-05812-5
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Kinetic modeling and study of H-ZSM-5 coated silicon carbide ceramic foam in toluene methylation to produce xylene.
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- Applied Petrochemical Research, 2017, v. 7, n. 2-4, p. 131, doi. 10.1007/s13203-017-0185-2
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Photocatalytic efficiency of titania photocatalysts in saline waters.
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- Journal of the Serbian Chemical Society, 2014, v. 79, n. 9, p. 1127, doi. 10.2298/JSC131114020A
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Kinetics of Hydrogen Evolution during Ammonia Borane Hydrolysis with Cobalt-Based Catalysts.
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- Journal of Surface Investigation: X-Ray, Synchrotron & Neutron Techniques, 2023, v. 17, n. 5, p. 1001, doi. 10.1134/S102745102305004X
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A Kinetic Model and Mechanism for Liquid-Phase Heterogeneous Hydrogenation of Dicyclopentadiene.
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- Petroleum Chemistry, 2023, v. 63, n. 8, p. 959, doi. 10.1134/S0965544123060099
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Kinetic Model and Mechanism of Heterogeneous Hydrogenation of Strained Polycyclic Compounds Derived from 5-Vinyl-2-norbornene.
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- Petroleum Chemistry, 2023, v. 63, n. 3, p. 277, doi. 10.1134/S0965544123010073
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Kinetics of the esterification of acetic acid with 2-propanol: Impact of different acidic cation exchange resins on reaction mechanism.
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- International Journal of Chemical Kinetics, 2006, v. 38, n. 10, p. 593, doi. 10.1002/kin.20193
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Redundancy-Free Models for Mathematical Descriptions of Three-Phase Catalytic Hydrogenation of Cinnamaldehyde.
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- Catalysts (2073-4344), 2021, v. 11, n. 2, p. 207, doi. 10.3390/catal11020207
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Improving the Degradation Kinetics of Industrial Dyes with Chitosan/TiO 2 /Glycerol Films for the Sustainable Recovery of Chitosan from Waste Streams.
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- Sustainability (2071-1050), 2023, v. 15, n. 8, p. 6979, doi. 10.3390/su15086979
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Reaction Kinetics of Cinnamaldehyde Hydrogenation over Pt/SiO<sub>2</sub>: Comparison between Bulk and Intraparticle Diffusion Models.
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- International Journal of Chemical Engineering (1687806X), 2022, p. 1, doi. 10.1155/2022/8303874
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Synergistic Effect of NiAl-Layered Double Hydroxide and Cu-MOF for the Enhanced Photocatalytic Degradation of Methyl Orange and Antibacterial Properties.
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- Catalysts (2073-4344), 2024, v. 14, n. 10, p. 719, doi. 10.3390/catal14100719
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Enhancing photocatalytic activity of titanium dioxide through incorporation of MIL‐53(Fe) toward degradation of organic dye.
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- Journal of the Chinese Chemical Society, 2019, v. 66, n. 1, p. 81, doi. 10.1002/jccs.201800216
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The isothermal studies of char-CO gasification using the high-pressure thermo-gravimetric method.
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- Journal of Thermal Analysis & Calorimetry, 2015, v. 120, n. 3, p. 1877, doi. 10.1007/s10973-015-4476-5
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An integrated approach for parameter estimation of a propyl propionate synthesis model.
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- Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A, 2024, v. 202, p. 317, doi. 10.1016/j.cherd.2023.12.037
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Response surface optimization, kinetic study and process design of n-butyl levulinate synthesis.
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- Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A, 2018, v. 137, p. 577, doi. 10.1016/j.cherd.2018.07.036
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Modeling of a continuous photocatalytic reactor for isovaleraldehyde oxidation: Effect of different operating parameters and chemical degradation pathway.
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- Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers Part A, 2013, v. 91, n. 7, p. 1307, doi. 10.1016/j.cherd.2013.02.020
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Spillover in monomer-monomer reactions on supported catalysts: dynamic mean-field study.
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- Journal of Mathematical Chemistry, 2014, v. 52, n. 5, p. 1350, doi. 10.1007/s10910-014-0315-3
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A review of the influence of humidity on photocatalytic decomposition of gaseous pollutants on TiO<sub>2</sub>‐based catalysts.
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- Canadian Journal of Chemical Engineering, 2020, v. 98, n. 1, p. 263, doi. 10.1002/cjce.23652
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