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Design and Development of Supported Transition Metal Phosphide Catalysts for Syngas Conversion to Alcohols

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Release : 2021
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Book Synopsis Design and Development of Supported Transition Metal Phosphide Catalysts for Syngas Conversion to Alcohols by : Eduardo Valle (Researcher in chemical engineering)

Download or read book Design and Development of Supported Transition Metal Phosphide Catalysts for Syngas Conversion to Alcohols written by Eduardo Valle (Researcher in chemical engineering). This book was released on 2021. Available in PDF, EPUB and Kindle. Book excerpt: In attempts to address the threats of climate change, countries are making efforts to mitigate their emissions of greenhouse gases like carbon dioxide (CO2). The transition from economies driven by energy and chemicals derived from fossil fuel feedstocks to cleaner alternative fuels and technologies are met with great challenges. In the field of fuel and chemical production specifically, the transformation of carbon monoxide (CO) and CO2, produced through alternative technologies, to value added chemical products require catalysts that are active, selective, and stable. Current research efforts have focused on heavy characterization of catalysts in attempts of establishing a structure-activity correlation to help design and engineer the catalyst of the future. This thesis will focus on the design and characterization of two supported transition metal phosphide (TMP) catalysts, molybdenum phosphide (MoP) and ruthenium phosphide (RuP), and a bimetallic nickel iron (NiFe) catalyst. The first TMP, MoP, was specifically designed and optimized for the higher alcohol synthesis (HAS) reaction from synthesis gas (syngas) (CO/H2). Higher alcohols are defined as an alcohol group containing two or more carbon atoms., like ethanol. Through a systematic design approach, the optimal amount of potassium (K) promoter, P and Mo was determined and synthesized on three different supports: amorphous silica (SiO2), ordered silica (SBA-15), and mesoporous carbon (C). The different combinations led to contrasting catalytic performance with respect the HAS activity. The second TMP, RuP, was designed and optimized for the methanol synthesis (MS) reaction. Ru catalysts are known as Fischer-Tropsch synthesis (FTS) catalysts as they selectively produce hydrocarbons. This study was able to change the intrinsic catalytic nature of Ru through addition of P. Catalytic results showed that the presence of P transformed the Ru FTS catalyst to a MS catalyst. The NiFe catalyst was tested for the ethane dehydrogenation reaction, in which the essential feedstock chemical ethylene is produced. This catalyst was tested for direct ethane dehydrogenation, in which only ethane is fed to the reactor along with H2 to mitigate coking, and oxidative ethane dehydrogenation, where CO2 is fed to promote the reacting and mitigate coking. The catalysts were also synthesized on two different supports, SiO2 and C, to quantify support effects. The overall goal of these studies was to determine the influence that addition of promoters, like K, phosphides, and secondary metals have on catalytic properties and how we might use that to design catalysts with improved activity, selectivity, and stability.

Developing Methods to Inform Catalyst Design for the Electrochemical Oxidation of Methane and Alcohols

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Release : 2021
Genre : Alcohol
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Book Synopsis Developing Methods to Inform Catalyst Design for the Electrochemical Oxidation of Methane and Alcohols by : Michael James Boyd

Download or read book Developing Methods to Inform Catalyst Design for the Electrochemical Oxidation of Methane and Alcohols written by Michael James Boyd. This book was released on 2021. Available in PDF, EPUB and Kindle. Book excerpt: As the production of natural gas and agricultural biomass/energy crops increases, new efficient and sustainable technologies will be required to convert these feedstock molecules into the same fuels and chemical we get from conventional petroleum today. Electrochemistry is a possible tool for the conversion of these species that can be coupled to renewable electricity. The discovery and development of selective and active electrocatalysts is one of the primary challenges in utilizing natural gas and biomass resources. But first there is a lack of fundamental understanding in (1) the reaction mechanism and (2) how operating conditions such as potential, electrolyte pH, mass transport, and time affect the the activity and selectivity of catalysts. To this end platinum was used as a model system to study electrochemical methane oxidation at room temperature and pressure. The experimental results on platinum combined with density functional theory calculations show that methane is first thermally activated at Pt (211) like step sites, then the resulting methyl intermediate is electrochemically oxidized to CO* which is in equilibrium with the final product CO2. The equilibrium can be shifted to favor complete oxidation by adjusting the applied electrochemical potential, specifically at potentials below 0.5 V vs. RHE CO* is the most thermodynamically stable species along the reaction pathway whereas above 0.5 V vs. RHE CO2 is now the most stable species. Important to note however is that since the kinetics for methane activation are very slow (barrier of ~0.95 eV) the platinum surface must be free of other adsorbed species, namely protons or hydroxides. Based on reaction mechanism for electrochemical methane oxidation on platinum it is unlikely that partial oxidation of methane on metallic electrodes well occur. For this reason we probed the activity of several transition metal oxide materials with the hope that they may be active for methane oxidation. Unfortunately our initial results suggest no significant methane oxidation occurs on these materials. In the case of biomass oxidation 1st row transition metal oxides have recently been shown to be quite selective in the conversion of alcohols to their corresponding carboxylic acids. Benzyl alcohol was used as a model molecule to study the reaction mechanism for alcohol oxidation on Ni(OH)2 electrodes as a function of potential and electrolyte pH. It was found that the active phase for alcohol oxidation is the metal oxy-hydroxide. The activity and selectivity were found to be heavily dependent on the electrolyte pH. Under strong alkaline conditions (> pH 13) high current densities and complete oxidation of benzyl alcohol to benzoate was favored whereas at more moderately alkaline conditions low current densities and partial oxidation to benzaldehyde was favored. Based on these results we hypothesize that a significant concentration of OH- in solution is required to activated the intermediate product benzaldehyde. The activity of several novel Ni materials was also probed for benzyl alcohol oxidation. Ni-doped nitrided carbons which have single atom nickel active sites were found to be selective for partial oxidation, however further optimization of the catalyst synthesis is required to increase the activity to compete with the bulk Ni(OH)2 electrodes. In conclusion, this dissertation presents a variety of experimental work focused on identifying the reaction mechanism for several oxidation reactions and provides key understanding that can be used towards the development of new electrocatalysts for the oxidation of hydrocarbons and alcohols.

Design of Transition Metals Carbide (TMCs) and Transition Metal Phosphide (TMPs) Catalysts for Gas Phase CO2 Conversion

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Release : 2022
Genre :
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Book Synopsis Design of Transition Metals Carbide (TMCs) and Transition Metal Phosphide (TMPs) Catalysts for Gas Phase CO2 Conversion by : Qi Zhang

Download or read book Design of Transition Metals Carbide (TMCs) and Transition Metal Phosphide (TMPs) Catalysts for Gas Phase CO2 Conversion written by Qi Zhang. This book was released on 2022. Available in PDF, EPUB and Kindle. Book excerpt:

Alcohols Conversion Over Transition Metal Based Catalyts

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Release : 2017
Genre : Alcohols
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Book Synopsis Alcohols Conversion Over Transition Metal Based Catalyts by : Mthobisi Sbonelo Ndebele

Download or read book Alcohols Conversion Over Transition Metal Based Catalyts written by Mthobisi Sbonelo Ndebele. This book was released on 2017. Available in PDF, EPUB and Kindle. Book excerpt:

Design and Development of Novel Organoselenide-based Transition Metal Catalysts and Their Utility in Carbon-carbon and Carbon-heteroatom Bond Formation Reactions

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Release : 2005
Genre : Transition metal catalysts
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Book Synopsis Design and Development of Novel Organoselenide-based Transition Metal Catalysts and Their Utility in Carbon-carbon and Carbon-heteroatom Bond Formation Reactions by : Elizabeth Pearl Kinney

Download or read book Design and Development of Novel Organoselenide-based Transition Metal Catalysts and Their Utility in Carbon-carbon and Carbon-heteroatom Bond Formation Reactions written by Elizabeth Pearl Kinney. This book was released on 2005. Available in PDF, EPUB and Kindle. Book excerpt:

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