Destabilized Borohydride as Potential Hydrogen Storage Materials

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ISBN 13 :
Total Pages : 124 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis Destabilized Borohydride as Potential Hydrogen Storage Materials by : Adeoloa Ahmed Ibikunle

Download or read book Destabilized Borohydride as Potential Hydrogen Storage Materials written by Adeoloa Ahmed Ibikunle and published by . This book was released on 2012 with total page 124 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Hydrogen Storage Materials

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ISBN 13 :
Total Pages : 336 pages
Book Rating : 4.:/5 (51 download)

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Book Synopsis Hydrogen Storage Materials by : R. G. Barnes

Download or read book Hydrogen Storage Materials written by R. G. Barnes and published by . This book was released on 1988 with total page 336 pages. Available in PDF, EPUB and Kindle. Book excerpt: Ames Laboratory, Iowa, USA

The Improved Hydrogen Release of Sodium Amide-sodium Borohydride System with Transition Metal Additions and Investigations of New Amide-borohydride Systems as Potential Hydrogen Storage Materials

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ISBN 13 :
Total Pages : 216 pages
Book Rating : 4.:/5 (13 download)

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Book Synopsis The Improved Hydrogen Release of Sodium Amide-sodium Borohydride System with Transition Metal Additions and Investigations of New Amide-borohydride Systems as Potential Hydrogen Storage Materials by : Cevriye Koz

Download or read book The Improved Hydrogen Release of Sodium Amide-sodium Borohydride System with Transition Metal Additions and Investigations of New Amide-borohydride Systems as Potential Hydrogen Storage Materials written by Cevriye Koz and published by . This book was released on 2009 with total page 216 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Hydrogen Storage Technology

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Publisher : Taylor & Francis
ISBN 13 : 143984108X
Total Pages : 480 pages
Book Rating : 4.4/5 (398 download)

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Book Synopsis Hydrogen Storage Technology by : Lennie Klebanoff

Download or read book Hydrogen Storage Technology written by Lennie Klebanoff and published by Taylor & Francis. This book was released on 2016-04-21 with total page 480 pages. Available in PDF, EPUB and Kindle. Book excerpt: Zero-carbon, hydrogen-based power technology offers the most promising long-term solution for a secure and sustainable energy infrastructure. With contributions from the world's leading technical experts in the field, Hydrogen Storage Technology: Materials and Applications presents a broad yet unified account of the various materials science, physi

Destabilized and Catalyzed Borohydride for Reversible Hydrogen Storage

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (873 download)

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Book Synopsis Destabilized and Catalyzed Borohydride for Reversible Hydrogen Storage by :

Download or read book Destabilized and Catalyzed Borohydride for Reversible Hydrogen Storage written by and published by . This book was released on 2012 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: A process of forming a hydrogen storage material, including the steps of: providing a first material of the formula M(BH.sub. 4).sub. X, where M is an alkali metal or an alkali earth metal, providing a second material selected from M(AlH.sub. 4).sub.x, a mixture of M(AlH.sub. 4).sub.x and MCl.sub.x, a mixture of MCl.sub.x and Al, a mixture of MCl.sub.x and AlH.sub. 3, a mixture of MH.sub.x and Al, Al, and AlH.sub. 3. The first and second materials are combined at an elevated temperature and at an elevated hydrogen pressure for a time period forming a third material having a lower hydrogen release temperature than the first material and a higher hydrogen gravimetric density than the second material.

Boron Hydrides, High Potential Hydrogen Storage Materials

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ISBN 13 : 9781616683610
Total Pages : 0 pages
Book Rating : 4.6/5 (836 download)

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Book Synopsis Boron Hydrides, High Potential Hydrogen Storage Materials by : Umit B. Demirci

Download or read book Boron Hydrides, High Potential Hydrogen Storage Materials written by Umit B. Demirci and published by . This book was released on 2010-07 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Boron hydrides are hydrogen storage materials which are the object of intensive investigation because they pose tangible solution to the hydrogen storage issue. This book reviews research on boron hydrides and gives a general view of the perspectives of application.

Handbook of Hydrogen Storage

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Publisher : John Wiley & Sons
ISBN 13 : 3527322736
Total Pages : 388 pages
Book Rating : 4.5/5 (273 download)

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Book Synopsis Handbook of Hydrogen Storage by : Michael Hirscher

Download or read book Handbook of Hydrogen Storage written by Michael Hirscher and published by John Wiley & Sons. This book was released on 2010-04-26 with total page 388 pages. Available in PDF, EPUB and Kindle. Book excerpt: Owing to the limited resources of fossil fuels, hydrogen is proposed as an alternative and environment-friendly energy carrier. However, its potential is limited by storage problems, especially for mobile applications. Current technologies, as compressed gas or liquefied hydrogen, comprise severe disadvantages and the storage of hydrogen in lightweight solids could be the solution to this problem. Since the optimal storage mechanism and optimal material have yet to be identified, this first handbook on the topic provides an excellent overview of the most probable candidates, highlighting both their advantages as well as drawbacks. From the contents: ¿ Physisorption ¿ Clathrates ¿ Metal hydrides ¿ Complex hydrides ¿ Amides, imides, and mixtures ¿ Tailoring Reaction Enthalpies ¿ Borazan ¿ Aluminum hydride ¿ Nanoparticles A one-stop reference on all questions concerning hydrogen storage for physical and solid state chemists, materials scientists, chemical engineers, and physicists.

Solid-State Hydrogen Storage

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Publisher : Woodhead Publishing
ISBN 13 :
Total Pages : 616 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Solid-State Hydrogen Storage by : Gavin Walker

Download or read book Solid-State Hydrogen Storage written by Gavin Walker and published by Woodhead Publishing. This book was released on 2008-09-30 with total page 616 pages. Available in PDF, EPUB and Kindle. Book excerpt: Hydrogen fuel cells are emerging as a major alternative energy source in transportation and other applications. Central to the development of the hydrogen economy is safe, efficient and viable storage of hydrogen. Solid-state hydrogen storage: Materials and chemistry reviews the latest developments in solid-state hydrogen storage. Part one discusses hydrogen storage technologies, hydrogen futures, hydrogen containment materials and solid-state hydrogen storage system design. Part two reviews the analysis of hydrogen interactions including structural characterisation of hydride materials, neutron scattering techniques, reliably measuring hydrogen uptake in storage materials and modelling of carbon-based materials for hydrogen storage. Part three analyses physically-bound hydrogen storage with chapters on zeolites, carbon nanostructures and metal-organic framework materials. Part four examines chemically-bound hydrogen storage including intermetallics, magnesium hydride, alanates, borohydrides, imides and amides, multicomponent hydrogen storage systems, organic liquid carriers, indirect hydrogen storage in metal ammines and technological challenges in hydrogen storage. With its distinguished editor and international team of contributors, Solid-state hydrogen storage: Materials and chemistry is a standard reference for researchers and professionals in the field of renewable energy, hydrogen fuel cells and hydrogen storage. Assesses hydrogen fuel cells as a major alternative energy source Discusses hydrogen storage technologies and solid-state hydrogen storage system design Explores the analysis of hydrogen interactions including reliably measuring hydrogen uptake in storage materials

Komentarij k protokolam vtorogo s"ezda Zagraničnoj Ligi Russ. Revoljucionnoj Social'demokratii

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (828 download)

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Book Synopsis Komentarij k protokolam vtorogo s"ezda Zagraničnoj Ligi Russ. Revoljucionnoj Social'demokratii by :

Download or read book Komentarij k protokolam vtorogo s"ezda Zagraničnoj Ligi Russ. Revoljucionnoj Social'demokratii written by and published by . This book was released on 1904 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Hydrogen Storage Materials

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Publisher : Trans Tech Publications Ltd
ISBN 13 : 303570435X
Total Pages : 332 pages
Book Rating : 4.0/5 (357 download)

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Book Synopsis Hydrogen Storage Materials by : R.G. Barnes

Download or read book Hydrogen Storage Materials written by R.G. Barnes and published by Trans Tech Publications Ltd. This book was released on 1988-01-01 with total page 332 pages. Available in PDF, EPUB and Kindle. Book excerpt: Materials Science Forum Vol. 31

Synthesis and Characterisation of Potential Hydrogen Storage Materials

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ISBN 13 : 9789155460204
Total Pages : 66 pages
Book Rating : 4.4/5 (62 download)

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Book Synopsis Synthesis and Characterisation of Potential Hydrogen Storage Materials by : Emil Johansson

Download or read book Synthesis and Characterisation of Potential Hydrogen Storage Materials written by Emil Johansson and published by . This book was released on 2004 with total page 66 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Low-Cost Precursors to Novel Hydrogen Storage Materials

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (873 download)

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Book Synopsis Low-Cost Precursors to Novel Hydrogen Storage Materials by :

Download or read book Low-Cost Precursors to Novel Hydrogen Storage Materials written by and published by . This book was released on 2010 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: From 2005 to 2010, The Dow Chemical Company (formerly Rohm and Haas Company) was a member of the Department of Energy Center of Excellence on Chemical Hydrogen Storage, which conducted research to identify and develop chemical hydrogen storage materials having the potential to achieve DOE performance targets established for on-board vehicular application. In collaboration with Center co-leads Los Alamos National Laboratory (LANL) and Pacific Northwest National Laboratory (PNNL), and other Center partners, Dow's efforts were directed towards defining and evaluating novel chemistries for producing chemical hydrides and processes for spent fuel regeneration. In Phase 1 of this project, emphasis was placed on sodium borohydride (NaBH4), long considered a strong candidate for hydrogen storage because of its high hydrogen storage capacity, well characterized hydrogen release chemistry, safety, and functionality. Various chemical pathways for regenerating NaBH4 from spent sodium borate solution were investigated, with the objective of meeting the 2010/2015 DOE targets of $2-3/gal gasoline equivalent at the pump ($2-3/kg H2) for on-board hydrogen storage systems and an overall 60% energy efficiency. With the September 2007 No-Go decision for NaBH4 as an on-board hydrogen storage medium, focus was shifted to ammonia borane (AB) for on-board hydrogen storage and delivery. However, NaBH4 is a key building block to most boron-based fuels, and the ability to produce NaBH4 in an energy-efficient, cost-effective, and environmentally sound manner is critical to the viability of AB, as well as many leading materials under consideration by the Metal Hydride Center of Excellence. Therefore, in Phase 2, research continued towards identifying and developing a single low-cost NaBH4 synthetic route for cost-efficient AB first fill, and conducting baseline cost estimates for first fill and regenerated AB using a variety of synthetic routes. This project utilized an engineering-guided R & D approach, which involved the rapid down-selection of a large number of options (chemical pathways to NaBH4) to a smaller, more manageable number. The research began by conducting an extensive review of the technical and patent literature to identify all possible options. The down-selection was based on evaluation of the options against a set of metrics, and to a large extent occurred before experimentation was initiated. Given the vast amount of literature and patents that has evolved over the years, this approach helped to focus efforts and resources on the options with the highest technical and commercial probability of success. Additionally, a detailed engineering analysis methodology was developed for conducting the cost and energy-efficiency calculations. The methodology utilized a number of inputs and tools (Aspen PEA{trademark}, FCHTool, and H2A). The down-selection of chemical pathways to NaBH4 identified three options that were subsequently pursued experimentally. Metal reduction of borate was investigated in Dow's laboratories, research on electrochemical routes to NaBH4 was conducted at Pennsylvania State University, and Idaho National Laboratory researchers examined various carbothermal routes for producing NaBH4 from borate. The electrochemical and carbothermal studies did not yield sufficiently positive results. However, NaBH4 was produced in high yields and purities by an aluminum-based metal reduction pathway. Solid-solid reactive milling, slurry milling, and solution-phase approaches to metal reduction were investigated, and while both reactive milling and solution-phase routes point to fully recyclable processes, the scale-up of reactive milling processes to produce NaBH4 is expected to be difficult. Alternatively, a low-cost solution-phase approach to NaBH4 has been identified that is based on conventional process unit operations and should be amenable to scale-up. Numerous advances in AB synthesis have been made in recent years to improve AB yields and purities. Process analysis of several leading routes to AB (Purdue's formate-based metathesis route and PNNL's NH4BH4-based route) indicated the cost to produce first-fill AB to be on the order of $9-10/kg AB, assuming a NaBH4 cost of $5/kg for a 10,000 metric tons/year sized AB plant. The analysis showed that the dominant cost component for producing first-fill AB is the cost of the NaBH4 raw material. At this AB cost and assuming 2.5 moles hydrogen released per mole of AB, it may be possible to meet DOE's 2010 storage system cost target, but the 2015 target will likely require lower cost AB and demonstrates the importance of having a low-cost route to NaBH4. Substantial progress has also been made to define feasible pathways for the regeneration of spent ammonia borane fuel.

Characterization and High Throughput Analysis of Metal Hydrides for Hydrogen Storage

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ISBN 13 :
Total Pages : 198 pages
Book Rating : 4.:/5 (769 download)

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Book Synopsis Characterization and High Throughput Analysis of Metal Hydrides for Hydrogen Storage by : Steven James Barcelo

Download or read book Characterization and High Throughput Analysis of Metal Hydrides for Hydrogen Storage written by Steven James Barcelo and published by . This book was released on 2009 with total page 198 pages. Available in PDF, EPUB and Kindle. Book excerpt: Efficient hydrogen storage is required for fuel cell vehicles to be competitive with those driven by internal combustion engines. Current methods of storage such as compressed gas and liquid hydrogen cannot meet this standard, so novel hydrogen storage materials such as metal hydrides are required. No simple metal hydride meets the required specifications. Research is required to find new materials or improve existing materials. This thesis describes the research practices necessary to achieve legitimate and repeatable results in laboratories across the world. Examples of experiments using these techniques are presented, such as a high throughput technique to optimize materials systems with up to three components such as calcium borohydride with titanium catalyst and magnesium hydride with nickel and aluminum as destabilizing elements and catalysts. Thin films composed of gradients of each material were deposited by sputtering, creating a single thin film sample covering all potential material combinations. Optical properties of the samples under hydrogen pressure were monitored to identify the regions with largest and fastest hydrogen uptake. In the Ca-B-Ti system, titanium did not sufficiently catalyze the borohydride formation reaction at low temperature. Substantial hydrogen uptake was shown in the Mg-Ni region of the Mg-Ni-Al films. Al did not participate in the reaction at low temperature. Further investigation of the role of catalysts and destabilizing elements in improving hydrogen storage performance through X-ray Absorption and Emission Spectroscopy measurements of the Mg-Ni system during hydrogenation is presented. Typical X-ray spectroscopy measurements use a synchrotron radiation source and require ultra high vacuum conditions. For these experiments we designed a chamber which can be inserted into a vacuum chamber allowing in situ measurements of a sample under hydrogen pressure, providing information on the role of Ni in hydrogen absorption of Mg-Ni mixtures. Finally, another technique for improving hydrogen storage performance is presented which focuses on promising materials studied using the high throughput technique. TiO2 powder was ball milled together with NaBH4, and gravimetric analysis shows a 50% improvement in the kinetics of the hydrogen desorption reaction and a reduction in desorption temperature of 60 oC.

Hydrogen Storage

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Publisher : BoD – Books on Demand
ISBN 13 : 9535107313
Total Pages : 282 pages
Book Rating : 4.5/5 (351 download)

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Book Synopsis Hydrogen Storage by : Jianjun Liu

Download or read book Hydrogen Storage written by Jianjun Liu and published by BoD – Books on Demand. This book was released on 2012-09-05 with total page 282 pages. Available in PDF, EPUB and Kindle. Book excerpt: Hydrogen, as an energy carrier, is widely regarded as a potential cost effective, renewable, and clean energy alternative to petroleum in order to mitigate energy shortage and global climate warming issues that the world is currently facing. However, storage of hydrogen is a substantial challenge, especially for applications in vehicles with fuel cells that use proton-exchange membranes (PEMs). Therefore, scientific community has started focusing their research activities on developing advanced hydrogen storage materials through nanotechnology. The book presents a wide variety of nanostructured materials used for application in hydrogen storage, covering chemical and physical storage approaches. The research topics include computational design, synthesis, processing, fabrication, characterization, properties and applications of nanomaterials in hydrogen storage systems.

Materials for the Hydrogen Economy

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Publisher : CRC Press
ISBN 13 : 142000607X
Total Pages : 354 pages
Book Rating : 4.4/5 (2 download)

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Book Synopsis Materials for the Hydrogen Economy by : Russell H. Jones

Download or read book Materials for the Hydrogen Economy written by Russell H. Jones and published by CRC Press. This book was released on 2007-12-22 with total page 354 pages. Available in PDF, EPUB and Kindle. Book excerpt: Hydrogen offers a promising alternative for supplying clean and sustainable energy to meet increasing demands worldwide. However, materials are key to transforming the technology into a viable industry. Materials for the Hydrogen Economy describes the technical challenges and the current efforts in developing materials possessing the properties req

Electrochemical Energy Storage

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Publisher : John Wiley & Sons
ISBN 13 : 1118998146
Total Pages : 96 pages
Book Rating : 4.1/5 (189 download)

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Book Synopsis Electrochemical Energy Storage by : Jean-Marie Tarascon

Download or read book Electrochemical Energy Storage written by Jean-Marie Tarascon and published by John Wiley & Sons. This book was released on 2015-02-23 with total page 96 pages. Available in PDF, EPUB and Kindle. Book excerpt: The electrochemical storage of energy has become essential in assisting the development of electrical transport and use of renewable energies. French researchers have played a key role in this domain but Asia is currently the market leader. Not wanting to see history repeat itself, France created the research network on electrochemical energy storage (RS2E) in 2011. This book discusses the launch of RS2E, its stakeholders, objectives, and integrated structure that assures a continuum between basic research, technological research and industries. Here, the authors will cover the technological advances as well as the challenges that must still be resolved in the field of electrochemical storage, taking into account sustainable development and the limited time available to us.

Chemical Hydrogen Storage Using Polyhedral Borane Anions and Aluminum-Ammonia-Borane Complexes

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ISBN 13 :
Total Pages : 26 pages
Book Rating : 4.:/5 (727 download)

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Book Synopsis Chemical Hydrogen Storage Using Polyhedral Borane Anions and Aluminum-Ammonia-Borane Complexes by :

Download or read book Chemical Hydrogen Storage Using Polyhedral Borane Anions and Aluminum-Ammonia-Borane Complexes written by and published by . This book was released on 2010 with total page 26 pages. Available in PDF, EPUB and Kindle. Book excerpt: Phase 1. Hydrolysis of borohydride compounds offer the potential for significant hydrogen storage capacity, but most work to date has focused on one particular anion, BH4-, which requires high pH for stability. Other borohydride compounds, in particular polyhedral borane anions offer comparable hydrogen storage capacity without requiring high pH media and their long term thermal and hydrolytic stability coupled with non-toxic nature make them a very attractive alternative to NaBH4. The University of Missouri project provided the overall program focal point for the investigation of catalytic hydrolysis of polyhedral borane anions for hydrogen release. Due to their inherent stability, a transition metal catalyst was necessary for the hydrolysis of polyhedral borane anions. Transition metal ions such as cobalt, nickel, palladium and rhodium were investigated for their catalytic activity in the hydrolysis of nido-KB11H14, closo-K2B10H10, and closo-K2B12H12. The rate of hydrolysis follows first-order kinetics with respect to the concentration of the polyhedral borane anion and surface area of the rhodium catalyst. The rate of hydrolysis depends upon a) choice of polyhedral borane anion, c) concentration of polyhedral borane anion, d) surface area of the rhodium catalyst and e) temperature of the reaction. In all cases the yield of hydrogen was 100% which corresponds to ~7 wt% of hydrogen (based on material wt%). Phase 2. The phase 2 of program at the University of Missouri was focused upon developing aluminum ammonia-boranes (Al-AB) as chemical hydrogen storage materials, specifically their synthesis and studies of their dehydrogenation. The ammonia borane molecule (AB) is a demonstrated source of chemically stored hydrogen (19.6 wt%) which meets DOE performance parameters except for its regeneration from spent AB and elemental hydrogen. The presence of an aluminum center bonded to multiple AB residues might combine the efficiency of AB dehydrogenation with an aluminum mediated hydrogenation process leading to reversibility. The Al-AB complexes have comparable hydrogen capacity with other M-AB and have potential to meet DOE's 2010 and 2015 targets for system wt%.