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Development of Alternative Materials to Replace Precious Metals in Sustainable Catalytic Technologies

Development of Alternative Materials to Replace Precious Metals in Sustainable Catalytic Technologies
Author: Deeksha Jain
Publisher:
Total Pages:
Release: 2019
Genre: Electrocatalysis
ISBN:

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Mixed metal oxides for catalytic methane combustion: This project explores the development of mixed metal oxides containing Pd for catalytic oxidation of low concentration CH4 for ventilation air methane (VAM) mitigation technologies targeted towards reducing green-house gas emissions from coal mines. The aim here is to reduce the loading of Pd in the catalytic materials by designing a bifunctional catalyst using a transition metal as the main component and Pd as a promoter. Using the bifunctional catalyst is not only expected to enhance the activity towards CH4 combustion but is also expected to increase the tolerance of the catalyst towards poisoning by water, thereby increasing the economic feasibility of this technology. The studies are designed to provide key insights into catalyst chemistry using in-situ characterization techniques that can be leveraged to increase the efficiency of lean methane combustion technologies.


Catalysis for Sustainability

Catalysis for Sustainability
Author: Thomas P. Umile
Publisher: CRC Press
Total Pages: 210
Release: 2015-08-05
Genre: Nature
ISBN: 1466586869

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Catalysis for Sustainability: Goals, Challenges, and Impacts explores the intersection between catalytic science and sustainable technologies as a means to addressing current economic, social, and environmental problems. These problems include harnessing alternative energy sources, pollution prevention and remediation, and the manufacturing of comm


Development of Non-precious Metal Catalysts for the Oxygen Reduction Reaction

Development of Non-precious Metal Catalysts for the Oxygen Reduction Reaction
Author: Melissa Ellen Kreider
Publisher:
Total Pages:
Release: 2021
Genre:
ISBN:

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Eliminating greenhouse gas emissions to mitigate the effects of climate change is a global imperative. To achieve this goal, the world's dependence on fossil fuels must be ended and renewable energy technologies must be developed and deployed on a massive scale. The electrocatalytic oxygen reduction reaction (ORR) is an important limiting step in several promising technologies, including fuel cells, metal-air batteries, and the sustainable synthesis of hydrogen peroxide. Polymer electrolyte membrane fuel cells (PEMFCs) are a clean and efficient technology for converting chemical energy, e.g. in the form of hydrogen fuel, into electrical energy for transportation and backup power generation. The majority of the efficiency losses in a PEMFC are due to the sluggish kinetics of the ORR, requiring significant loadings of platinum-based catalysts at the cathode. The scarcity and high cost of platinum is therefore a limiting factor for the widespread development of PEMFC technologies. In this dissertation, we develop several low-cost, non-precious metal ORR catalysts for acidic and alkaline media, as well as techniques for understanding the relationship between performance and material properties. First, we investigate the performance of a thin film, carbon-free nickel nitride catalyst, finding substantial ORR activity in acidic and alkaline media. We identify significant surface oxidation with testing and air exposure. Utilizing electrochemical cycling and stability testing informed by Pourbaix diagrams, the role of surface oxidation in determining catalyst activity and stability is explored. This work demonstrates the importance of understanding material surface properties and stability. We next use a molybdenum (oxy)nitride thin film system to probe the role of structure and composition in ORR performance in acidic conditions. Using extensive materials characterization, the depth-dependent structure and composition of the films are determined, discovering the high O content in the bulk of films with a highly-defected structure. This bulk O content is found to be the strongest predictor of ORR activity. We use in situ characterization techniques to understand the material changes that occur during reaction, particularly those associated with potential-dependent catalytic behavior, finding that the catalyst surface undergoes distortion, amorphization, and O incorporation. We identify a potential window in which the intrinsic catalytic activity can be enhanced without the roughening or dissolution that lead to instability. This work demonstrates how ex situ and in situ techniques can be used to develop a rigorous understanding of a catalyst material, which can then be leveraged to optimize catalyst performance. Finally, we explore corrosion-resistant, conductive antimonates as a framework for enhancing the activity and stability of transition metal active sites. The antimonates are found to have superior intrinsic activity on a TM mass basis relative to the comparable oxides in alkaline electrolyte. Strategies for improving catalyst performance including electrode engineering and doping are investigated. Validating a theoretical prediction, a Mn-Cr antimonate solid solution is found to have enhanced mass activity compared to the pure Mn antimonate (on a TM basis). Further modifications of the antimonate framework are discussed, as well as strategies for materials discovery and development. In summary, this thesis addresses the challenge of PEMFC catalyst cost and performance through the discovery and development of non-precious metal ORR catalysts. Utilizing thorough materials and electrochemical characterization, we aim to develop fundamental understanding of these catalysts and strategies for improving their performance. For the ORR and beyond, this work demonstrates approaches to materials discovery and development that will be needed to advance and commercialize a wide variety of renewable energy technologies.


Catalysis by Precious Metals, Past and Future

Catalysis by Precious Metals, Past and Future
Author: Marcela Martinez Tejada
Publisher: MDPI
Total Pages: 204
Release: 2020-04-15
Genre: Technology & Engineering
ISBN: 3039287222

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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 Chemistry

Sustainable Chemistry
Author: Michael North
Publisher: Royal Society of Chemistry
Total Pages: 506
Release: 2016
Genre: Business & Economics
ISBN: 1782626387

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Focussing on catalysis through non-endangered metals, this book is an important reference for researchers working in catalysis and green chemistry.


Catalysis without Precious Metals

Catalysis without Precious Metals
Author: R. Morris Bullock
Publisher: John Wiley & Sons
Total Pages: 296
Release: 2011-08-02
Genre: Science
ISBN: 3527632409

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Written for chemists in industry and academia, this ready reference and handbook summarizes recent progress in the development of new catalysts that do not require precious metals. The research thus presented points the way to how new catalysts may ultimately supplant the use of precious metals in some types of reactions, while highlighting the remaining challenges. An essential copanion for organic and catalytic chemists, as well as those working with/on organometallics and graduate students. From the contents: * Catalysis Involving the H' Transfer Reactions of First-Row Transition Metals * Catalytic Reduction of Dinitrogen to Ammonia by Molybdenum Complexes * Molybdenum and Tungsten Catalysts for Hydrogenation, Hydrosilylation and Hydrolysis * Iron in Catalytic Alkene and Carbonyl Hydrogenation Reactions * Olefin Oligomerizations and Polymerizations Catalyzed by Iron and Cobalt Complexes * Cobalt and Nickel Catalyzed Reactions Involving C-H and C-N Activation Reactions * Development of Molecular Electrocatalysts for H2 Oxidation and Production Based on Inexpensive Metals * Nickel-Catalyzed Reductinve Couplings and Cyclizations * Copper-Catalyzed Ligand Promoted Ullmann-Type Coupling Reactions * Copper-Catalyzed Azide-Alkyne Cycloaddition * "Frustrated Lewis Pairs": A Metal-Free Strategy for Hydrogenation Catalysis


Strategically important metals

Strategically important metals
Author: Great Britain: Parliament: House of Commons: Science and Technology Committee
Publisher: The Stationery Office
Total Pages: 150
Release: 2011-05-17
Genre: Business & Economics
ISBN: 9780215559531

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Although most strategic metal reserves are unlikely to run out over the coming decades the perception of scarcity of certain minerals and metals may lead to increased speculation and volatility in price and supply. Strategically important metals are vital to advanced manufacturing, low-carbon technologies and other growing industries and the Government should provide reliable information on potential resource risks in a coordinated and coherent way. The UK also exports large quantities of scrap metal and waste electrical and electronic equipment (WEEE), often to developing countries. This metal not only is a potential resource for the UK but it is also an example of the UK exporting its environmental problems elsewhere. There are also concerns about the illegal export of WEEE, which is often labelled as second hand equipment for re-use, and calls for safeguards to be put in place. Despite a rate of 90% (by weight) metal recycling in the UK, it is of great concern that some strategic metals are likely to be lost in the 10% not being recycled. The report recommends: Improving existing legislation to ensure companies implement requirements on reporting non-financial information, such as human rights and health and safety issues; an evaluation by the Government of the potential for introducing similar legislation to that in the US whereby companies are required to produce detailed reports on 'conflict minerals' that they use. This report also brings the alleged activities of large dealers on the London Metals Exchange to the attention of the Office of Fair Trading. Finally, the report looks at domestic extraction and says planning regulations should not unnecessarily restrict the use of significant potential reserves and that domestic mining could alleviate risks associated with sourcing metals from external supply monopolies. In parallel the Government has to invest in research to ensure that future domestic mining has the least possible environmental impact


Catalytic Process Development for Renewable Materials

Catalytic Process Development for Renewable Materials
Author: Pieter Imhof
Publisher: John Wiley & Sons
Total Pages: 388
Release: 2013-02-28
Genre: Science
ISBN: 3527656650

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Green, clean and renewable are the hottest keywords for catalysis and industry. This handbook and ready reference is the first to combine the fields of advanced experimentation and catalytic process development for biobased materials in industry. It describes the entire workflow from idea, approach, research, and process development, right up to commercialization. A large part of the book is devoted to the use of advanced technologies and methodologies like high throughput experimentation, as well as reactor and process design models, with a wide selection of real-life examples included at each stage. The contributions are from authors at leading companies and institutes, providing firsthand information and knowledge that is hard to find elsewhere. This work is aimed at decision makers, engineers and chemists in industry, chemists and engineers working with/on renewables, chemists in the field of catalysis, and chemical engineers.


Electrocatalytic Materials

Electrocatalytic Materials
Author: Santanu Patra
Publisher: Springer
Total Pages: 0
Release: 2025-01-05
Genre: Technology & Engineering
ISBN: 9783031659010

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This handbook focuses on electrocatalytic materials, a field that has experienced significant advancements in recent decades, primarily driven by nanoscale catalyst design improvements. These advancements have been crucial in the development and enhancement of alternative energy technologies relying on electrochemical reactions. Electrocatalytic materials play a vital role in reducing over-potentials required for electrochemical device operation. As a prominent subset of catalysts, they facilitate essential reactions for energy conversion and storage through electron transfer processes. However, studying electrocatalytic materials presents challenges due to complex reaction networks, diverse selectivity possibilities, and intricate reaction mechanisms. This book offers an extensive description of electrocatalysis and the materials used in electrocatalytic processes. It covers cutting-edge studies and in-depth discussions on the applications of electrocatalytic materials in energy conversion and storage (including fuel cells, water splitting, batteries, etc.), sensors, and other potential applications. It also addresses the broader implications of electrocatalysis in academia and industry. Each section of the book highlights the latest developments, contemporary challenges, and state-of-the-art investigations aimed at producing valuable outcomes for end users. With contributions from diverse experts, this comprehensive resource is essential for researchers, scientists, industrialists, educators, and students.


Sustainable Synthesis of Pharmaceuticals

Sustainable Synthesis of Pharmaceuticals
Author: Mariette M Pereira
Publisher: Royal Society of Chemistry
Total Pages: 233
Release: 2018-03-26
Genre: Science
ISBN: 1788014413

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There is a growing interest in the development of sustainable processes for the synthesis of pharmaceuticals and this book bridges the divide between industrial examples and the fundamental chemistry. It explains the basic principles of using transition metal catalysis with several green approaches for the synthesis of pharmaceuticals. The topic is an important one for green chemistry and the chapters in this book on hydroformylation, green oxidation and olefin metathesis will also be of interest to both medicinal and organic chemists. Written by leading experts in the field, it provides a valuable and easy tool for scientists and industrialists who require information regarding this topic.