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This report evaluates progress since the 2011 Green Growth Strategy and highlights where there is broad scope to heighten the ambition and effectiveness of green growth policy.
An expert exploration of the foundations of America’s science and technology policies, and the dynamics of its innovation system. Why study science and technology policy? What role does innovation play, and how do we foster it? Economics tells us technological innovation drives economic growth and societal well-being, but technology is always a double-edged sword—great technological advances offer both opportunities and threats. In Pioneering Progress, William Bonvillian explains the complex science and technology innovation system and discusses the challenges of emerging industrial policies. Drawing on in-depth case studies on critical areas such as energy, computing, advanced manufacturing, and health, with an emphasis on the needed public policy and the federal government R&D role in those systems, Bonvillian reviews the foundations of economic growth theory, innovation systems theory, and innovation organization theory. Bonvillian, a highly respected expert who has worked as a deputy assistant secretary of transportation in the federal government and a senior advisor in Congress, reviews a new theory of direct and indirect economic factors in the innovation system. He describes the innovation-based competitive and advanced manufacturing challenges now facing the US economy, reviews comparative efforts in other nations, studies the varied models for how federal science and technology mission agencies are organized, and explores the growth of public-private partnership and industrial policy models as a way for science mission agencies to pursue mission agendas. Pioneering Progress places particular emphasis on the organization and role of medical science and energy innovation agencies and how we can address the gaps in the health, energy, and advanced production innovation economic models.
Recognizing the urgent need to transform energy systems to low-carbon alternatives, this timely book offers evidenced and credible ways to accelerate actions towards meeting the Paris Agreement goals and achieving net zero emissions. Steven Fries analyses through the lens of government, business and household actionsÑtheir policies and investmentsÑthe systemic changes needed to eliminate net carbon dioxide emissions from energy.
This book provides a detailed overview of aspects related to the overall provision chain for biokerosene as part of the global civil aviation business. Starting with a review of the current market situation for aviation fuels and airplanes and their demands, it then presents in-depth descriptions of classical and especially new types of non-edible biomass feedstock suitable for biokerosene provision. Subsequent chapters discuss those fuel provision processes that are already available and those still under development based on various biomass feedstock materials, and present e.g. an overview of the current state of the art in the production of a liquid biomass-based fuel fulfilling the specifications for kerosene. Further, given the growing interest of the aviation industry and airlines in biofuels for aviation, the experiences of an air-carrier are presented. In closing, the book provides a market outlook for biokerosene. Addressing a broad range of aspects related to the pros and cons of biokerosene as a renewable fuel for aviation, the book offers a unique resource.
Canada is a well-endowed country that serves as an ideal model to lead the reader through the development of energy, resources, and society historically and into a post-carbon future. The book provides an historical perspective and describes the physical resource limitations, energy budgets, and climate realities that will determine the potential for any transition to renewable energy. Political and social realities, including jurisdiction and energy equality issues, are addressed. However, we cannot simply mandate or legislate policies according to social and political aspirations. Policies must comply with the realities of physical laws, such as the energy return on investment (EROI) for fossil-fuel based and renewable energy systems. EROI is discussed in both historical terms and in reference to the greater efficiencies inherent in a distributed generation, mainly electric, post-carbon society. Meyer explores the often misleading concepts and terms that have become embedded in society and tend to dictate our policy making, as well as the language, social and personal goals, and metrics that need to change before the physical transition can begin at the required scale. This book also reviews what nations have been doing thus far in terms of renewables, including the successes and failures in Canada and across the globe. Ontario’s green energy fiasco, and a comparison of the different circumstances of Norway and Alberta, for example, are covered as part of the author’s comparison of a wide range of countries. What are the achievements, plans, and problems that determine how well different countries are positioned to make “the transition”? The transition path is complex, and the tools we need to develop and the physical infrastructure investments we need to make, are daunting. At some point in time, Canada and Canadians, like all nations, will be living on 100% renewable energy. Whether the social and technological level that endures sees us travelling to the stars, or subsisting at a standard of living more similar to the pre-fossil fuel era, is far from certain.
Available online: https://pub.norden.org/temanord2023-546/ Climate change leads to more severe and frequent disasters, increasing heat and sea level rise. When natural or man-made systems meet soft or hard adaptation limits, it can lead to loss and damage (L&D). L&D is unequally distributed, affecting the most vulnerable and least developed countries the worst. The Nordic Council of Ministers’ Working Group for Climate and Air (NKL) has commissioned a project in which the main objective is to map, identify and further develop potential solutions and sources for financial support to developing countries that are particularly vulnerable to climate change induced L&D. This study is a key outcome from this project. In short, this study’s focus is on how to enhance and improve existing solutions and sources and innovate and create new sources of finance that can be used for financing L&D actions.
Have you ever wondered what it is like to work on a nuclear power plant? Robert Dutch worked in the UK's nuclear industry for many years as a scientist and then as a tutor at a nuclear training center. He also holds degrees in theology. Drawing upon his qualifications and experience Robert addresses the controversial issue of nuclear power from a Christian perspective. In contrast to a negative nuclear narrative often portrayed, he presents a positive nuclear narrative alongside other ways of generating electricity. Be prepared to be challenged to think seriously about nuclear's merits in providing clean, low-carbon electricity.
This Intergovernmental Panel on Climate Change Special Report (IPCC-SRREN) assesses the potential role of renewable energy in the mitigation of climate change. It covers the six most important renewable energy sources - bioenergy, solar, geothermal, hydropower, ocean and wind energy - as well as their integration into present and future energy systems. It considers the environmental and social consequences associated with the deployment of these technologies, and presents strategies to overcome technical as well as non-technical obstacles to their application and diffusion. SRREN brings a broad spectrum of technology-specific experts together with scientists studying energy systems as a whole. Prepared following strict IPCC procedures, it presents an impartial assessment of the current state of knowledge: it is policy relevant but not policy prescriptive. SRREN is an invaluable assessment of the potential role of renewable energy for the mitigation of climate change for policymakers, the private sector, and academic researchers.