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Roadmap for Biomass Technologies in the United States (2007).

Roadmap for Biomass Technologies in the United States (2007).
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Release: 2007
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Biomass resources are a sustainable and environmentally friendly feedstock that can contribute significantly to a diverse energy portfolio.


Roadmap for Biomass Technologies in the United States

Roadmap for Biomass Technologies in the United States
Author:
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Total Pages: 48
Release: 2002
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ISBN:

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The purpose of this document is to outline a research and development roadmap and identify public policy measures for promoting and developing environmentally desirable biobased fuels power and products. It represents the collective assessment and expertise of the Biomass Research and Development Technical Advisory Committee. The research strategies outlined in this road map will help achieve the goals established by the Committee in the Vision for Bioenergy and Biobased Products in the United States. The Committee represents experts from wide-ranging backgrounds relevant to biomass resources technologies and markets, A list of Committee members is provided in Appendix I. The Committee was established by the Biomass R & D Act of 2000 (RL. 106-224) Its responsibilities include advising the Secretaries of Energy and Agriculture on the technical focus and direction of requests for proposals issued under the Biomass R & D Initiative and evaluating and performing strategic planning on program activities relating to the Biomass Research and Development Initiative (P.L. 106-224, Sec 206). The Committee developed this roadmap at the request of the U.S. Department of Energy and the U.S. Department of Agriculture as a tool to assist in biomass-related research planning and program evaluation. Through the Roadmap for Biomass Technologies in the United States the Committee has provided direction to the Department of Energy the Department of Agriculture the Department of the Interior the Environmental Protection Agency the National Science Foundation and the Office of the Science and Technology Policy. The Roadmap was developed through a series of public meetings of the Biomass Research and Development Technical Advisory Committee.


Roadmap for Bioenergy and Biobased Products in the United States - Plant Science, Markets, Feedstock Systems, Harvesting and Treatment, Biorefinery, Oils, Sugars, and Protein Platforms

Roadmap for Bioenergy and Biobased Products in the United States - Plant Science, Markets, Feedstock Systems, Harvesting and Treatment, Biorefinery, Oils, Sugars, and Protein Platforms
Author: U. S. Department of Energy
Publisher:
Total Pages: 76
Release: 2017-12-10
Genre:
ISBN: 9781973509615

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The United States has become increasingly dependent on imported petroleum to meet its energy needs. A more diverse portfolio of feedstocks for our nation's energy and chemical supply must be found to reduce our dependence on fossil fuels and secure future domestic energy supply. Biomass resources are a sustainable and environmentally-friendly feedstock that can contribute significantly to a diverse energy portfolio. Electricity, transportation fuels, chemicals, and materials currently produced from petroleum and natural gas can instead be produced from biomass. The Roadmap for Bioenergy and Biobased Products in the United States identifies research and policy measures needed for converting our nation's biomass resources into economically and environmentally desirable biobased fuels, power, and products. It represents the collective assessment of the Biomass Research and Development Technical Advisory Committee, as well as experts from industry, academia, and government. The research strategies outlined in the Roadmap will help achieve the goals established by the Committee's Vision for Bioenergy and Biobased Products in the United States. Introduction * Biomass R&D Technical Advisory Committee * Roadmap Update Process * Roadmap Structure * Progress in Achieving 2002 Vision Goals * Key Recommendations for Achieving "Twenty in Ten" Goal * Feedstocks * Processing and Conversion * Infrastructure * End-Use Markets * Barriers to Vision Goals * Feedstock Barriers * Plant Science, Genetics and Genomics * Harvesting and Treatment * Resource Management and Sustainable Development * Economic Analysis * Processing and Conversion * Transportation, Storage and Distribution Infrastructure * End-Use Markets * Region-Specific Barriers * Additional Barriers * Research and Development Strategies * Feedstock Systems * Plant Science Genetics and Genomics * Harvesting & Treatment * Resource Management and Sustainable Development * Economic Analysis * Processing and Conversion * Analysis of Processes Found in Nature * Oils, Sugars, and Protein Platforms * New Approaches to Separations * Modular and Decentralized Preprocessing and Conversion Systems * Biodiesel Production * Conversion Processes * Transportation, Storage, and Distribution Infrastructure * Pipelines * Rail, Barge, and Highway * Systems Integration * End-Use Markets * Crosscutting Processes and Technologies * Biorefinery Demonstration and Deployment * Data and Information * Transportation Studies * Integrated Systems Analysis * Metrics Development * Other Analytical Studies * Policy and Other Enabling Measures * Feedstock Systems * Pre-Processing and Conversion * Infrastructure Systems * End-Use Markets * Crosscutting Measures


The Role of Green Chemistry in Biomass Processing and Conversion

The Role of Green Chemistry in Biomass Processing and Conversion
Author: Haibo Xie
Publisher: John Wiley & Sons
Total Pages: 424
Release: 2012-11-21
Genre: Science
ISBN: 111844941X

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Sets the stage for the development of sustainable, environmentally friendly fuels, chemicals, and materials Taking millions of years to form, fossil fuels are nonrenewable resources; it is estimated that they will be depleted by the end of this century. Moreover, the production and use of fossil fuels have resulted in considerable environmental harm. The generation of environmentally friendly energy from renewable sources such as biomass is therefore essential. This book focuses on the integration of green chemistry concepts into biomass processes and conversion in order to take full advantage of the potential of biomass to replace nonsustainable resources and meet global needs for fuel as well as other chemicals and materials. The Role of Green Chemistry in Biomass Processing and Conversion features contributions from leading experts from Asia, Europe, and North America. Focusing on lignocellulosic biomass, the most abundant biomass resource, the book begins with a general introduction to biomass and biorefineries and then provides an update on the latest advances in green chemistry that support biomass processing and conversion. Next, the authors describe current and emerging biomass processing and conversion techniques that use green chemistry technologies, including: Green solvents such as ionic liquids, supercritical CO2, and water Sustainable energy sources such as microwave irradiation and sonification Green catalytic technologies Advanced membrane separation technologies The last chapter of the book explores the ecotoxicological and environmental effects of converting and using fuels, chemicals, and materials from biomass. Recommended for professionals and students in chemical engineering, green chemistry, and energy and fuels, The Role of Green Chemistry in Biomass Processing and Conversion sets a strong foundation for the development of a competitive and sustainable bioeconomy. This monograph includes a Foreword by James Clark (University of York, UK).


Biomass

Biomass
Author: Shi Yuanchun
Publisher: Lexington Books
Total Pages: 531
Release: 2013-11-14
Genre: Science
ISBN: 0739173723

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After addressing the basic knowledge of bioenergy and its development in the United States, the European Union, and Brazil, this book places emphasis on the introduction of China’s bioresources, its development since 2001, and the difficulties it encountered. In the concluding chapter, Shi presents his ideas about a ‘Green Civilization.’ This book analyzes bioenergy from a natural science perspective, but is also accessible to the social scientist interested in sustainable development.


Plant Biotechnology for Sustainable Production of Energy and Co-products

Plant Biotechnology for Sustainable Production of Energy and Co-products
Author: Peter N. Mascia
Publisher: Springer Science & Business Media
Total Pages: 462
Release: 2010-09-15
Genre: Science
ISBN: 3642134408

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This book is a collection of chapters concerning the use of biomass for the sustainable production of energy and chemicals–an important goal that will help decrease the production of greenhouse gases to help mitigate global warming, provide energy security in the face of dwindling petroleum reserves, improve balance of payment problems and spur local economic development. Clearly there are ways to save energy that need to be encouraged more. These include more use of energy sources such as, among others, manure in anaerobic digesters, waste wood in forests as fuel or feedstock for cellulosic ethanol, and conservation reserve program (CRP) land crops that are presently unused in the US. The use of biofuels is not new; Rudolf Diesel used peanut oil as fuel in the ?rst engines he developed (Chap. 8), and ethanol was used in the early 1900s in the US as automobile fuel [Songstad et al. (2009) Historical perspective of biofuels: learning from the past to rediscover the future. In Vitro Cell Dev Biol Plant 45:189–192). Brazil now produces enough sugar cane ethanol to make up about 50% of its transportation fuel needs (Chap. 4). The next big thing will be cellulosic ethanol. At present, there is also the use of Miscanthus x giganteous as fuel for power plants in the UK (Chap. 2), bagasse (sugar cane waste) to power sugar cane mills (Chap. 4), and waste wood and sawdust to power sawmills (Chap. 7).


Thermochemical Processing of Biomass

Thermochemical Processing of Biomass
Author: Robert C. Brown
Publisher: John Wiley & Sons
Total Pages: 340
Release: 2011-03-16
Genre: Science
ISBN: 1119990998

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Thermochemical pathways for biomass conversion offer opportunities for rapid and efficient processing of diverse feedstocks into fuels, chemicals and power. Thermochemical processing has several advantages relative to biochemical processing, including greater feedstock flexibility, conversion of both carbohydrate and lignin into products, faster reaction rates, and the ability to produce a diverse selection of fuels. Thermochemical Processing of Biomass examines the large number of possible pathways for converting biomass into fuels, chemicals and power through the use of heat and catalysts. The book presents a practical overview of the latest research in this rapidly developing field, highlighting the fundamental chemistry, technical applications and operating costs associated with thermochemical conversion strategies. Bridging the gap between research and practical application, this book is written for engineering professionals in the biofuels industry, as well as academic researchers working in bioenergy, bioprocessing technology and chemical engineering. Topics covered include: Combustion Gasification Fast Pyrolysis Hydrothermal Processing Upgrading Syngas and Bio-oil Catalytic Conversion of Sugars to Fuels Hybrid Thermochemical/Biochemical Processing Economics of Thermochemical Conversion For more information on the Wiley Series in Renewable Resources, visit www.wiley.com/go/rrs


Biomass to Biofuels

Biomass to Biofuels
Author: Alain A. Vertes
Publisher: John Wiley & Sons
Total Pages: 520
Release: 2011-08-24
Genre: Science
ISBN: 1119965497

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Focusing on the key challenges that still impede the realization of the billion-ton renewable fuels vision, this book integrates technological development and business development rationales to highlight the key technological.developments that are necessary to industrialize biofuels on a global scale. Technological issues addressed in this work include fermentation and downstream processing technologies, as compared to current industrial practice and process economics. Business issues that provide the lens through which the technological review is performed span the entire biofuel value chain, from financial mechanisms to fund biotechnology start-ups in the biofuel arena up to large green field manufacturing projects, to raw material farming, collection and transport to the bioconversion plant, manufacturing, product recovery, storage, and transport to the point of sale. Emphasis has been placed throughout the book on providing a global view that takes into account the intrinsic characteristics of various biofuels markets from Brazil, the EU, the US, or Japan, to emerging economies as agricultural development and biofuel development appear undissociably linked.


Next Generation Roadmapping

Next Generation Roadmapping
Author: Tugrul U. Daim
Publisher: Springer Nature
Total Pages: 375
Release: 2023-11-10
Genre: Business & Economics
ISBN: 3031385756

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Roadmapping is a structured visual approach for supporting strategic technology and innovation management, providing strategic navigational support (hence the “roadmap” metaphor) for technologists, designers, entrepreneurs, programme managers, executives, policy makers, other stakeholders involved in the formulation and implementation of strategy. This book brings together the latest developments in roadmapping, covering a range of practical issues and conceptual aspects. First, the book delves into the critical topic of strategic alignment within organizations, encompassing the interdependencies and synchronization of horizontal and vertical systems, connecting innovation priorities to strategic objectives, and the integration of key performance indicators. Then, the book concentrates on practical techniques and tools for roadmapping, including a template-based approach for technology venture funding. Social and digital aspects of roadmapping are explored, including workshop methods, considering how quantitative (analysis) and qualitative (expert) knowledge can be combined for improved strategic planning. Finally, a series of new case studies focusing on energy systems in Sub-Saharan Africa and Turkey illustrate the practical application of technology roadmapping and also provide useful insights. Roadmapping continues to evolve, as it is adapted to apply to new domains and strategic challenges, propagates to new sectors, and as new digital technologies such as AI emerge that radically affect strategy and innovation processes. The need for structured and engaging approaches such as roadmapping for navigating towards the future is essential.