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1-Propanol --- Liver --- Lipid Peroxidation --- Disulfiram --- Proteins --- Cytotoxins --- pharmacology --- drug effects --- metabolism
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Environmental protection. Environmental technology --- Toxicology --- Isopropyl alcohol --- Butanone --- Hexone --- Alcohol, Propyl --- Environmental pollutants --- Ketones --- Physiological effect --- toxicity --- pharmacodynamics --- Toxicity --- Methyl ethyl ketone --- 1-Propanol --- Toxicology. --- Physiological effect. --- toxicity. --- pharmacodynamics. --- Environmental Pollutants
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541.121 <083> --- Vapor-liquid equilibrium --- -Equilibrium, Vapor-liquid --- Liquid-vapor equilibrium --- Phase rule and equilibrium --- Chemical statics in general. Equilibrium in general--Tabellen. Lijsten. Indices --(niet-bibliografische) --- Tables --- -Chemical statics in general. Equilibrium in general--Tabellen. Lijsten. Indices --(niet-bibliografische) --- 541.121 <083> Chemical statics in general. Equilibrium in general--Tabellen. Lijsten. Indices --(niet-bibliografische) --- -541.121 <083> Chemical statics in general. Equilibrium in general--Tabellen. Lijsten. Indices --(niet-bibliografische) --- Equilibrium, Vapor-liquid --- -Tables --- ETHANOL --- METHANOL --- 1-PROPANOL --- ORGANIC COMPOUNDS --- VAPOR-LIQUID EQUILIBRIUM --- PROPERTIES
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The future of the precious metals is shiny and resistant. Although expensive and potentially replaceable by transition metal catalysts, precious metal implementation in research and industry shows potential. These metals catalyze oxidation and hydrogenation due to their dissociative behavior toward hydrogen and oxygen, dehydrogenation, isomerization, and aromatization, etc. The precious metal catalysts, especially platinum-based catalysts, are involved in a variety of industrial processes. Examples include Pt–Rh gauze for nitric acid production, the Pt/Al2O3 catalyst for cyclohexane and propylene production, and Pd/Al2O3 catalysts for petrochemical hydropurification reactions, etc. A quick search of the number of published articles in the last five years containing a combination of corresponding “metals” (Pt, Pd, Ru, Rh and Au) and “catalysts” as keywords indicates the importance of the Pt catalysts, but also the continuous increase in the contribution of Pd and Au. This Special Issue reveals the importance of precious metals in catalysis and focuses on mono- and bi-metallic formulations of any supported precious metals and their promotional catalytic effect of other transition metals. The application of precious metals in diverse reactions, either homogeneous or heterogeneous, and studies of the preparation, characterization, and applications of the supported precious metal catalysts, are presented.
sustainable ammonia synthesis --- Pt3Sn alloy --- alkenols --- n/a --- PtSn alloy --- propane dehydrogenation --- chelate --- photodegradation --- gold nanoparticles --- photochemical --- alkynols --- triple bond electron charge --- palladium catalyst --- Pt/Al2O3 --- 2-methyl-3-butyn-2-ol --- hydrogen storage --- X-ray crystallography --- ruthenium --- platinum dispersion --- gold catalysts --- reduction temperature --- DOC --- palladium --- renewable hydrogen --- 1-propanol --- 4-hydroxyproline --- glycerol --- 2-?-benzylproline --- proline --- hydrogen bonding --- oxidative coupling --- glucose oxidation --- stabilizing agent --- titania --- 4-fluoroproline --- turnover frequency --- porous carbons --- Pt–Sn/Al2O3 --- P25@Pd --- catalyst synthesis --- 2-propanol --- amino acid --- azetidine --- precious metals --- clay --- gas phase hydrogenation --- CNTs --- 3-butyn-2-ol --- Pd/Al2O3 --- heterogeneous enantioselective hydrogenation --- XPS --- microwave --- caesium --- perovskite --- CO oxidation --- Au–TiO2 --- dodecahydro-N-ethylcarbazole --- phenol photo-degradation --- pipecolinic acid --- 3-butyn-1-ol --- acetophenone --- drying --- palladium catalysts --- N-methylproline --- dehydrogenation --- PVA --- aging --- hydrodechlorination --- hydrogenolysis --- dispersion --- direct reduction --- core-shell --- Pt-Sn/Al2O3 --- Au-TiO2
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This book introduces the recent technologies introduced for gases capture including CO2, CO, SO2, H2S, NOx, and H2. Various processes and theories for gas capture and removal are presented. The book provides a useful source of information for engineers and specialists, as well as for undergraduate and postgraduate students in the fields of environmental and chemical science and engineering.
in situ gasification chemical looping combustion --- high-flux circulating fluidized bed --- counter-flow moving bed --- gas leakage --- coupling mechanism --- carbon capture and utilization --- biogas upgrading --- calcium carbonate precipitation --- chemical absorption --- gas pressure --- gas content --- gas basic parameters --- rapid estimation technology --- supercritical water oxidation --- high-pressure separation --- oxygen recovery --- energy recovery --- economic analysis --- coal-direct chemical looping combustion --- theoretical methodology --- high-flux --- pressure gradient --- gas mole fraction --- activity --- UNIFAC --- phase equilibrium --- threshold value --- CO2 capture --- calcium looping --- chemical sorption --- anti-attrition --- pore-former particle size --- Reaction --- kinetics --- carbon dioxide --- N-methyldiethanolamine --- L-Arginine --- stopped flow technique --- carbon capture --- CO2 sequestration --- steel-making waste --- steel slag --- H2S absorption --- amine solutions --- glycols --- desulfurization --- aqueous and non-aqueous solutions --- gas diffusion --- unipore diffusion model --- bidisperse diffusion model --- dispersive diffusion model --- refinery plants --- industrial gas streams --- petrochemical processes --- waste gases --- activated carbons --- catalytic activation --- physicochemical structure --- SO2 adsorption --- optimal conceptual design --- market prediction --- economic uncertainty --- environmental impact --- carbon dioxide separation --- Aspen Plus --- CCGT --- Taguchi --- Minitab --- optimization --- 2-Amino-2-Methyl-1-Propanol --- modelling and Simulation --- post-combustion capture --- exergy analysis --- flowsheeting configurations --- nanofluids --- absorption intensification --- mass transfer coefficient --- bubble column --- global warming --- membrane contactor --- removal of NO2 and CO2 --- coke oven --- carbonaceous deposits --- spectral analysis --- mechanism --- arsenene --- doping --- first principles study --- gas adsorption --- two-dimensional --- waste polyurethane foam --- physical activation --- high selectivity --- ultra-micropore --- mechanical activation --- iron ore --- carbonation --- calcination --- recyclability --- mechanochemical reactions --- carbonation kinetics --- MXene --- gas separation --- Knudsen diffusion --- molecular sieving --- transport mechanism --- spiral nozzle --- gas absorption --- spray atomization --- droplet size --- droplet velocity --- gas emission --- capture --- CO2
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This book introduces the recent technologies introduced for gases capture including CO2, CO, SO2, H2S, NOx, and H2. Various processes and theories for gas capture and removal are presented. The book provides a useful source of information for engineers and specialists, as well as for undergraduate and postgraduate students in the fields of environmental and chemical science and engineering.
History of engineering & technology --- in situ gasification chemical looping combustion --- high-flux circulating fluidized bed --- counter-flow moving bed --- gas leakage --- coupling mechanism --- carbon capture and utilization --- biogas upgrading --- calcium carbonate precipitation --- chemical absorption --- gas pressure --- gas content --- gas basic parameters --- rapid estimation technology --- supercritical water oxidation --- high-pressure separation --- oxygen recovery --- energy recovery --- economic analysis --- coal-direct chemical looping combustion --- theoretical methodology --- high-flux --- pressure gradient --- gas mole fraction --- activity --- UNIFAC --- phase equilibrium --- threshold value --- CO2 capture --- calcium looping --- chemical sorption --- anti-attrition --- pore-former particle size --- Reaction --- kinetics --- carbon dioxide --- N-methyldiethanolamine --- L-Arginine --- stopped flow technique --- carbon capture --- CO2 sequestration --- steel-making waste --- steel slag --- H2S absorption --- amine solutions --- glycols --- desulfurization --- aqueous and non-aqueous solutions --- gas diffusion --- unipore diffusion model --- bidisperse diffusion model --- dispersive diffusion model --- refinery plants --- industrial gas streams --- petrochemical processes --- waste gases --- activated carbons --- catalytic activation --- physicochemical structure --- SO2 adsorption --- optimal conceptual design --- market prediction --- economic uncertainty --- environmental impact --- carbon dioxide separation --- Aspen Plus --- CCGT --- Taguchi --- Minitab --- optimization --- 2-Amino-2-Methyl-1-Propanol --- modelling and Simulation --- post-combustion capture --- exergy analysis --- flowsheeting configurations --- nanofluids --- absorption intensification --- mass transfer coefficient --- bubble column --- global warming --- membrane contactor --- removal of NO2 and CO2 --- coke oven --- carbonaceous deposits --- spectral analysis --- mechanism --- arsenene --- doping --- first principles study --- gas adsorption --- two-dimensional --- waste polyurethane foam --- physical activation --- high selectivity --- ultra-micropore --- mechanical activation --- iron ore --- carbonation --- calcination --- recyclability --- mechanochemical reactions --- carbonation kinetics --- MXene --- gas separation --- Knudsen diffusion --- molecular sieving --- transport mechanism --- spiral nozzle --- gas absorption --- spray atomization --- droplet size --- droplet velocity --- gas emission --- capture --- CO2
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This book introduces the recent technologies introduced for gases capture including CO2, CO, SO2, H2S, NOx, and H2. Various processes and theories for gas capture and removal are presented. The book provides a useful source of information for engineers and specialists, as well as for undergraduate and postgraduate students in the fields of environmental and chemical science and engineering.
History of engineering & technology --- in situ gasification chemical looping combustion --- high-flux circulating fluidized bed --- counter-flow moving bed --- gas leakage --- coupling mechanism --- carbon capture and utilization --- biogas upgrading --- calcium carbonate precipitation --- chemical absorption --- gas pressure --- gas content --- gas basic parameters --- rapid estimation technology --- supercritical water oxidation --- high-pressure separation --- oxygen recovery --- energy recovery --- economic analysis --- coal-direct chemical looping combustion --- theoretical methodology --- high-flux --- pressure gradient --- gas mole fraction --- activity --- UNIFAC --- phase equilibrium --- threshold value --- CO2 capture --- calcium looping --- chemical sorption --- anti-attrition --- pore-former particle size --- Reaction --- kinetics --- carbon dioxide --- N-methyldiethanolamine --- L-Arginine --- stopped flow technique --- carbon capture --- CO2 sequestration --- steel-making waste --- steel slag --- H2S absorption --- amine solutions --- glycols --- desulfurization --- aqueous and non-aqueous solutions --- gas diffusion --- unipore diffusion model --- bidisperse diffusion model --- dispersive diffusion model --- refinery plants --- industrial gas streams --- petrochemical processes --- waste gases --- activated carbons --- catalytic activation --- physicochemical structure --- SO2 adsorption --- optimal conceptual design --- market prediction --- economic uncertainty --- environmental impact --- carbon dioxide separation --- Aspen Plus --- CCGT --- Taguchi --- Minitab --- optimization --- 2-Amino-2-Methyl-1-Propanol --- modelling and Simulation --- post-combustion capture --- exergy analysis --- flowsheeting configurations --- nanofluids --- absorption intensification --- mass transfer coefficient --- bubble column --- global warming --- membrane contactor --- removal of NO2 and CO2 --- coke oven --- carbonaceous deposits --- spectral analysis --- mechanism --- arsenene --- doping --- first principles study --- gas adsorption --- two-dimensional --- waste polyurethane foam --- physical activation --- high selectivity --- ultra-micropore --- mechanical activation --- iron ore --- carbonation --- calcination --- recyclability --- mechanochemical reactions --- carbonation kinetics --- MXene --- gas separation --- Knudsen diffusion --- molecular sieving --- transport mechanism --- spiral nozzle --- gas absorption --- spray atomization --- droplet size --- droplet velocity --- gas emission --- capture --- CO2
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Nicholas Basta, Chemical Engineering, December 1992
Chemistry, Technical --- Chemistry [Technical ] --- Encyclopedias --- Chemical technologies --- Chemistry, Technical. --- ENCYCLOPEDIAS --- Chemical technology --- Industrial chemistry --- Technical chemistry --- Chemistry --- Technology --- Chemical engineering --- Monograph --- Chemical Engineering --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Optical detectors. --- Patents. --- Petroleum. --- Gases. --- Materials. --- Microbiology. --- Nanoparticles. --- Optical rotation. --- Aquaculture --- Coal. --- Coating processes. --- Coatings. --- Colloids. --- Combustion --- Glass. --- Information science. --- Infrared spectroscopy. --- Insects. --- Ion exchange. --- Iron compounds. --- Ketones. --- Laboratories. --- Raman spectroscopy. --- Rare earth metal compounds. --- Immunoassay. --- Immunochemistry. --- Carbohydrates. --- Heat --- Mass transfer. --- Disinfection. --- Transmission. --- Computer software. --- Cosmetics. --- Databases. --- Composites --- Ceramics. --- Fuel. --- Genetic engineering. --- Heat exchangers. --- Nuclear fusion. --- Digestive System. --- Growth Substances. --- Géotextiles --- Lasers. --- Lead compounds. --- Lead. --- Light. --- Liquids. --- Manganese compounds. --- Mass spectrometry. --- Nuclear magnetic resonance. --- Marketing --- Actinide elements. --- Adsorption --- Aérosols --- Pollution atmosphérique --- Chemistry, Forensic. --- Flotation. --- Fluid mechanics. --- Fluidization. --- Fluorine compounds. --- Fluorine. --- Food additives. --- Food contamination. --- Food handling. --- Fuel cells. --- Digestive System --- Growth Substances --- Disinfection --- Benzene, ethenyl --- Benzene, ethenyl, polymers --- Butanedioic acid --- Dyes --- Microgravity --- Particle size --- Pesticides --- Silicon compounds --- Silk --- Silver --- Silver compounds --- Soaps --- Sodium --- Sodium compounds --- Soil --- Sol-gel processing --- Solar energy --- Solders --- Solvents --- Soybeans --- Spectroscopy --- Sprays --- Stains (coloring materials) --- Starches --- Steam --- Steel --- Steroids --- Stimulants (nervous systems) --- Strontium --- Strontium compounds --- Styrene-butadiene rubber --- Fungicides --- Furnaces --- Gallium --- Gallium compounds --- Gasoline --- Gelatins --- Gemstones --- Geothermal energy --- Germanium --- Germanium compounds --- Glycerol --- Glycols --- Gold --- Gold compounds --- Grignard reaction --- Gums --- Hafnium --- Hafnium compounds --- Hair preparations --- Hardness (mechanical) --- Heat resistant materials --- Heat stabilizers --- Metallic glasses --- Natural gas --- Safety --- Synthetic fuels --- Waters, natural --- 1,3-butadiene, 2-methyl --- Biocides --- Butanedioic acid, methylene --- -Catalysis --- Electric insulators --- Ethenone derivatives --- Hypoglycemic agents --- Imines --- Incinerators --- Inclusion compounds --- Indium --- Indium compounds --- Indole derivatives --- Industrial hygiene --- Inks --- Inorganic polymers --- Integrated circuits --- Iodine --- Iodine compounds --- Ion implantation --- Ionomers --- Iron --- Isocyanates --- Plastics, laminated --- Reaction kinetics --- Sound insulators --- Thermal insulators --- 2-butenedioic acid (z) --- Brown coal --- Esr (electron spin resonance) --- Latex --- Leather --- Lecithins --- Lignins --- Lime --- Limestone --- Liquefied petroleum gases --- Liquid crystals --- Lithium --- Lithium compounds --- Lubricants --- Lubrication --- Luminescent materials --- Machining --- Magnesium --- Magnesium compounds --- Magnetic substances --- Magnetohydrodynamics --- Malt --- Manganese --- Propanedioic acid --- 1,2,3-propanetricarboxylic acid, 2-hydroxy --- -2-propenoic acid, 3-phenyl --- Chloro hydrocarbons --- Chlorosulfuric acid --- Chocolate --- Choline --- Chromatography --- Chromium --- Chromium compounds --- Chromophores --- Cobalt --- Cobalt compounds --- Coffee (beverage) --- Color --- Coloring materials --- Hydroxy compounds --- Phenols --- Photography --- 2h-1-benzopyran-2-one --- Antifoaming agents --- Benzene, 1-methylethyl --- Contact lenses --- Contraceptive agents --- Controlled-release drug delivery systems --- Coordination compounds --- Copper --- Copper compounds --- Corrosion --- Cotton fibers --- Cryogenics --- Crystallization --- Cyanamide derivatives --- Cyanides (inorganic) --- Cyanine dyes --- Cyanohydrins --- Cyanuric acid --- Cyclohexane derivatives --- Cyclopentadiene --- Dairy products --- Dental materials --- Detergency --- Drying agents --- Laboratory experiment --- Nitriles --- 2-propanone --- 2-propenal --- Ablative materials --- Abrasives --- Absorption --- Acetic acid --- Acrylic polymers --- Adhesives --- Aeration --- Air conditioning --- Alcohols --- Aldehydes --- Alkali metal hydroxides --- Alkaloids --- Ethyne derivatives --- Hexanedioic acid --- Polyoxymethylenes --- Adrenal cortex hormones --- Aerogels --- Benzene, dimethyl --- Biopolymers --- Bioremediation --- Chirality --- Condensation (physical) --- Furans --- Microemulsions --- Molecular modeling --- Molecular recognition --- Photoresists --- Purity --- Recycling of polymeric materials --- Semiconductor compounds --- Separation --- Surface analysis --- Thermography --- Urea --- Water-soluble polymers --- Weighing --- Welding --- Wine --- Wood --- ANTIBIOTICS --- ANTI-OBESITY AGENTS --- ANTIFREEZE --- ANTIMONY --- ANTIMONY COMPOUNDS --- ANTIOXIDANTS --- ANTIOZONANTS --- PARASITICIDES --- ANTISTATIC AGENTS --- VIRUCIDES --- AQUACULTURE --- ARSENIC --- ARSENIC COMPOUNDS --- ASBESTOS --- ASPHALT --- AIR POLLUTION --- INSTRUMENTATION --- JET AIRCRAFT FUEL --- DYES --- BAKERY PRODUCTS --- BARIUM --- BARIUM COMPOUNDS --- POLYMERS --- PERMEABILITY --- FUEL CELLS --- PROPERTIES --- 9,10-anthracenedione --- Alcohols, compounds, metal salts --- Alkyd resins --- Alkylation --- Allylic compounds --- Aluminum --- Aluminum compounds --- Amides --- Amines --- Amino acids --- Amino alcohols --- Aminoplasts --- Ammonia --- Ammonium compounds --- Analgesics --- Analytical chemistry --- Anesthetics --- Antibacterial agents --- Antibiotics --- Bronchodilator agents --- Senescence --- POWER --- PRESSURE --- PRINTING --- PROCESS CONTROL AND DYNAMICS --- ENERGY CONSERVATION --- PRODUCT LIABILITY --- 1-PROPANOL --- 2-PROPANOL --- OXIRANE, METHYL --- PROSTAGLANDINS --- PROSTHETIC DEVICES --- PROTEINS --- PSYCHOTROPIC DRUGS --- PULP (CELLULOSE) --- PUMPS --- PYRAZOLE DERIVATIVES --- PYRIDINE DERIVATIVES --- PYROTECHNIC COMPOSITIONS --- PYRROLE DERIVATIVES --- QUALITY CONTROL --- QUATERNARY AMMONIUM COMPOUNDS --- QUINOLINE DERIVATIVES --- QUINONES --- CROSSLINKING AGENTS --- RADIATION --- ISOTOPE INDICATORS --- RADIOELEMENTS --- RADIOGRAPHY, CONTRAST AGENTS --- PHARMACEUTICALS, RADIO --- RADIOPROTECTANTS --- REACTORS --- COATINGS --- RECYCLING --- CHEMICAL AND PHYSICAL EFFECTS --- MATCHES --- MATERIALS --- STANDARDS --- MEAT PRODUCTS --- DIAGNOSIS --- DIAGNOSTIC IMAGING --- MEMBRANES --- MEMORY, BIOLOGICAL --- MERCURY --- MERCURY COMPOUNDS --- ANODES --- METALS --- METALLURGY --- COMPOSITES --- SURFACE (CHEMISTRY AND PHYSICS) --- 2-PROPENOIC ACID, 2-METHYL --- METHANOL --- MICA-GROUP MINERALS --- POLYSACCHARIDES, BACTERIAL --- METABOLISM (MICROBIAL) --- MICROENCAPSULATION --- MICROSCOPY --- MICROWAVE --- MILK --- DAIRY PRODUCTS --- MINERAL ELEMENTS --- NUTRIENTS --- MINERALS --- MIXING --- MOLECULAR SIEVES --- MOLYBDENUM --- MOLYBDENUM COMPOUNDS --- NAPHTHALENE DERIVATIVES --- NAPHTHENIC ACIDS --- NEUROHORMONES --- NEUROTRANSMITTER AGONISTS --- NEUROTRANSMITTER ANTAGONISTS --- PREPARATION --- 1,2-benzenedicarboxylic acid --- Carbonic dichloride --- Disperse systems --- Paper --- Perchloric acid --- Perfumes --- Peroxides --- Pharmaceutical preparations --- Phenolic resins --- Phosphates --- Phosphine derivatives --- Phosphoric acid --- Phosphorus --- Phosphorus compounds --- Photochemistry --- Photoconductivity --- Photoelectric devices --- Phthalocyanine compounds --- Pigments --- THIOGLYCOLIC ACID --- THIOLS --- THIOPHENE DERIVATIVES --- THIOSULFATES --- THORIUM --- THORIUM COMPOUNDS --- THYROID GLAND --- THYROID HORMONES --- TIN --- TIN ALLOYS --- TIN COMPOUNDS --- TIRES --- TITANIUM --- TITANIUM ALLOYS --- TITANIUM COMPOUNDS --- TOLUENE --- TOXICOLOGY --- TRACE ELEMENTS --- TRANSPORTATION --- TUNGSTEN --- TUNGSTEN ALLOYS --- TUNGSTEN COMPOUNDS --- ULTRAFILTRATION --- UNITS OF MEASUREMENT --- URANIUM --- URANIUM COMPOUNDS --- THALLIUM COMPOUNDS --- POLYURETHANES --- VACCINES --- VACUUM --- VANADIUM --- VANADIUM ALLOYS --- VANADIUM COMPOUNDS --- VANILLIN --- VETERINARY MEDICINE --- VINEGAR --- VINYL COMPOUNDS --- VINYL POLYMERS --- ANALYSIS --- 1,1'-biphenyl, deriv --- Alcoholic beverages --- Alkadienes --- Aromatic hydrocarbons --- Bearings --- Beer --- Benzene --- Beryllium --- Biotechnology --- Bismuth --- Bleaching agents --- Blood --- Boron --- Bromine --- Cadmium --- Calcium --- Carbides --- Carbon --- Construction materials --- Friction materials --- Alditols --- Films (physical chemistry) --- S-substitution --- Sulfamic acid --- Sulfolane --- Sulfonation --- Sulfonic acids --- Sulfoxides --- Sulfur --- Sulfur compounds --- Sulfuric acid --- Supercritical fluids --- Surfactants --- Sutures --- Sweetening agents --- Talc --- Tall oil --- Tanks (containers) --- Tantalum --- Tantalum compounds --- Tar --- Tea --- Tellurium --- Tellurium compounds --- Temperature sensors --- Terpenes --- Textiles --- Thallium --- Thallium compounds --- Thermodynamics --- Thermoelectricity --- Anemometers --- Blood chemical analysis --- Flavoring agents --- Flocculating agents --- Fluorescent brighteners --- Foams --- Formaldehyde --- Formic acid --- Fractionation --- Fracture (materials) --- Friedel-crafts reaction --- Fruit and vegetable juices --- Plastics, cellular --- Viscosimeters
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