Products related to Transition:
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Sustainable Energy in Central Asia : Transition Towards Renewable Energy Sources in Uzbekistan
This book argues that sustainable energy development represents a new frontier for many transitional economies, including those countries that are well endowed with traditional energy resources, as exemplified by the case of Uzbekistan in Central Asia.The book highlights the challenges and issues faced by the energy sector in countries which are undergoing a transition from government-led economic models to open market economies.Using Uzbekistan as a case study, the book demonstrates these challenges, as well as opportunities of being part of an increasingly interconnected global market, to show how governments can ensure inclusive economic growth and build pathways toward sustainable development by deploying renewable energy sources (RES).By applying the Quadruple Bottom Line strategy as a conceptual framework to evaluate social, economic, and environmental benefits and governance as a key dynamic component, the book includes recommendations for implementing a transition strategy to renewable energy consumption for developing countries and offers insights into ways of dealing with government policy in post-Soviet countries. Presenting a holistic approach to promoting RES deployment in Uzbekistan and elsewhere, this book will be of interest to researchers interested in energy transition in developing countries, development economics, Central Asian politics, and the management of natural resources and climate-change issues.
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Urban Energy And Climate: Prospects For A Sustainable Transition
With the continuous migration of people towards metropolitan areas in search of employment, the demands for core services and energy, coupled with an increasing awareness of the impact of climate change, have placed the management and planning of global urban energy under a lot of pressure.Trends toward urban energy service transformations that offer greater affordability, reliability, efficiency and adaptability provide hope for a global sustainable future.At the same time, there are also limits to these transitions, as well as risks involved.For example, on one end of the spectrum, our urban energy future includes land use sprawl, high fossil fuel use, pollution, and unhealthy urban conditions.On the other side of this transition spectrum is more energy choices, and healthier, more livable cities, along with less energy use and fewer greenhouse gas emissions.What the future might hold for transforming the world's cities depends upon an understanding of the risks of current trajectories and the opportunities for and limitations to developing sustainable urban energy systems.This edited volume brings together leading experts on the prospects and challenges of urban energy innovation and on related-economic, social and environmental sustainability transitions.The focus of the volume is on multidisciplinary reviews, research informing technologies and policies for sustainability, and analytical insights addressing rapid urbanization and changes across a diverse typology of global cities.The volume will include an overview of the current state of urban energy systems.It will also document and evaluate urban energy prospects for a sustainable, resilient future.
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Renewable Energy and Wildlife Conservation
Brings together disparate conversations about wildlife conservation and renewable energy, suggesting ways these two critical fields can work hand in hand. Renewable energy is often termed simply "green energy," but its effects on wildlife and other forms of biodiversity can be quite complex.While capturing renewable resources like wind, solar, and energy from biomass can require more land than fossil fuel production, potentially displacing wildlife habitat, renewable energy infrastructure can also create habitat and promote species health when thoughtfully implemented. The authors of Renewable Energy and Wildlife Conservation argue that in order to achieve a balanced plan for addressing these two crucially important sustainability issues, our actions at the nexus of these fields must be directed by current scientific information related to the ecological effects of renewable energy production.Synthesizing an extensive, rapidly growing base of research and insights from practitioners into a single, comprehensive resource, contributors to this volume• describe processes to generate renewable energy, focusing on the Big Four renewables—wind, bioenergy, solar energy, and hydroelectric power• review the documented effects of renewable energy production on wildlife and wildlife habitats• consider current and future policy directives, suggesting ways industrial-scale renewables production can be developed to minimize harm to wildlife populations• explain recent advances in renewable power technologies• identify urgent research needs at the intersection of renewables and wildlife conservationRelevant to policy makers and industry professionals—many of whom believe renewables are the best path forward as the world seeks to meet its expanding energy needs—and wildlife conservationists—many of whom are alarmed at the rate of renewables-related habitat conversion—this detailed book culminates with a chapter underscoring emerging opportunities in renewable energy ecology. Contributors: Edward B. Arnett, Brian B. Boroski, Regan Dohm, David Drake, Sarah R. Fritts, Rachel Greene, Steven M. Grodsky, Amanda M. Hale, Cris D. Hein, Rebecca R. Hernandez, Jessica A. Homyack, Henriette I. Jager, Nicole M. Korfanta, James A. Martin, Christopher E. Moorman, Clint Otto, Christine A. Ribic, Susan P. Rupp, Jake Verschuyl, Lindsay M. Wickman, T. Bently Wigley, Victoria H. Zero
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Geophysics and the Energy Transition
Geophysics and the Energy Transition involves four sections: What is the Energy Transition and why storage so important; selecting sites for storage; advanced monitoring technology; and moving forward to integrating Carbon Capture and Storage (CCS) within the Energy Transition.Geophysics will also play a role in finding and developing alternatives to fossil fuels such as natural hydrogen and geothermal using much of the knowledge gained from the CO2 storage industry.To provide the public and others with the confidence to move forward with a structured and cost-effective energy transition, this book provides the necessary evidence that we can store CO2 safely and effectively and use this as a significant component of the energy transition.We can also find and store new energy sources. Geophysics and the Energy Transition is written by experts in the field who have practiced the science and engineering associated with the subsurface for years.CCS is an integral component of the new energy transition but the application of Geophysics in the future will extend well beyond CCS if we are going to transition successfully to a carbon neutral environment.Science, engineering, and technology applications are important for site selection, characterization and monitoring to assure safe storage in the subsurface and energy sustainability in the future.
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What is the green energy transition?
The green energy transition refers to the shift from traditional, fossil fuel-based energy sources to renewable and sustainable energy sources such as solar, wind, hydro, and geothermal power. This transition is driven by the need to reduce greenhouse gas emissions, combat climate change, and create a more sustainable and environmentally friendly energy system. It involves the development and adoption of new technologies, policies, and practices to promote the use of clean energy and reduce reliance on fossil fuels. The green energy transition is a crucial step towards a more sustainable and resilient energy future.
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Is the Green party's energy transition doomed to fail?
It is difficult to definitively say whether the Green party's energy transition is doomed to fail. While there may be challenges and obstacles to overcome, such as resistance from traditional energy industries and the high costs of transitioning to renewable energy sources, there is also growing public support for sustainable energy solutions. With continued innovation, investment, and political will, the Green party's energy transition efforts have the potential to succeed in creating a more sustainable and environmentally friendly energy system.
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Is the Green Party's energy transition doomed to fail?
The success of the Green Party's energy transition is not guaranteed, but it is not necessarily doomed to fail. The transition to renewable energy sources is a complex and challenging process that requires significant investment, policy changes, and public support. While there may be obstacles and resistance from various stakeholders, the growing awareness of climate change and the benefits of renewable energy could help drive the transition forward. With the right strategies, collaboration, and commitment, the Green Party's energy transition could be successful in the long run.
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Why are AfD voters against a green energy transition?
AfD voters are often against a green energy transition because they believe it will lead to higher energy costs and economic instability. They may also view the transition as a threat to traditional industries, such as coal and manufacturing, which are important to their local economies. Additionally, some AfD voters may be skeptical of the effectiveness of green energy technologies and prefer to prioritize the preservation of existing jobs and industries. Finally, there may be a general distrust of government intervention and regulation in the energy sector among AfD voters.
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Sustainable Energy Transition for Cities
Sustainable Energy Transition for Cities brings together empirical and applied research in both urban planning and sustainable energy, offering coherent and innovative best practices for urban energy transition planning.Using a multidisciplinary framework, the book views cities as an integrated system composed of components such as neighborhoods and districts within an overall net-zero energy balance.Intended for academics, practitioners and policymakers interested in sustainable energy transition, the book offers insights and best practices to promote the transition to a low carbon urban society.
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Hydrogen Economy : Processes, Supply Chain, Life Cycle Analysis and Energy Transition for Sustainability
Hydrogen Economy: Supply Chain, Life Cycle Analysis and Energy Transition for Sustainability, Second Edition explores the challenges for the transition into a sustainable hydrogen economy.In this book, experts from various academic backgrounds discuss the tools and methodologies for the analysis, planning, design, and optimization of hydrogen supply chains.They examine the available technologies for hydrogen production, storage, transport, distribution, and energy conversion, providing a cross cutting perspective on their sustainability. This second edition of Hydrogen Economy is fully updated with new technologies and tools for design, optimization, assessment, and decision-making, and includes twelve new chapters divided into two new sections.Section III examines advanced hydrogen routines and technologies, including fuel cells and hybrid electric vehicles, new storage technologies, and biohydrogen production from waste, allowing for a more complete life cycle assessment of the entire supply chain.Section IV provides new insights into policy and future developments, discussing the role of Grey, Blue, and Green hydrogen in the energy transition, the application of hydrogen in decarbonization of heavy industry, hydrogen safety, and more, substantially broadening the scope of the 2nd Edition. Providing a broad overview of the subject and well-recognized tools to manage hydrogen sustainability, Hydrogen Economy Second Edition is an invaluable resource for engineering researchers and PhD students in energy, environmental and industrial areas, energy economy researchers, practicing hydrogen energy engineers and technicians, energy and environmental consultants, life cycle assessment practitioners and consultants.
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Climate of Contempt : How to Rescue the U.S. Energy Transition from Voter Partisanship
Why is the United States struggling to enact policies to reduce carbon emissions?Conventional wisdom holds that the wealthy and powerful are to blame, as the oligarchs and corporations that wield disproportionate sway over politicians prioritize their short-term financial interests over the climate’s long-term health.David B. Spence argues that this top-down narrative misses a more important culprit—with critical consequences for the energy transition. Climate of Contempt offers a voter-centric, bottom-up explanation of national climate and energy politics, one that pinpoints bitter partisanship as the key impediment to transitioning to a net zero carbon future.Members of Congress respond to voters whose animosity toward the opposing party makes compromise politically risky.The most powerful driver of polarization, in turn, is the mixture of ideology and social media that constitutes today’s information environment, which amplifies anger, spreads half truths and falsehoods, and sows division, distorting voters’ understandings of the energy transition and their fellow citizens. Spence explores the effects of polarization, partisanship, and propaganda on energy policy and considers how to build a broader climate coalition.He contends that cooperation on this crucial issue is still possible, but it will require sustained person-to-person engagement across ideological and partisan boundaries to foster a more productive dialogue.Providing a timely and incisive understanding of the politics of the energy transition, Climate of Contempt suggests new paths forward and offers hope for a net-zero future.
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Economic Aspects of the Sustainability Transition in Europe
This book comprehensively examines the financial and economic aspects of the ‘sustainability transitions’ demanded by the primary components of the European Green Deal. It asks how the EU has been dealing with the allocation of resources to foster the sustainability transition, how the additional transformations required by the ‘climate emergency’ will be financed, and which actors (businesses, governments, citizens) will pay and how.Looking at how the EU has been managing this over time, through changes in the Environment Action Programmes, Structural Funds, the Multiannual Financial Framework, the book examines policy priorities and analyses the different instruments proposed as part of this evolving environment, including market support instruments for renewable energies and the creation of new instruments, such as Climate Awareness Bonds.It also highlights new developments, such as the debate on the role of environmental taxes, or the uneven development across member states of green financial instruments.The book presents an evolving puzzle into the limited possibilities of the EU to deploy resources that contribute to the overarching goal of achieving a low carbon economy and illustrates the need for acceptance towards changes and compromises that are required from all affected stakeholders. This book will be of key interest to scholars, students and practitioners of sustainable development, climate governance, and EU politics, and more broadly to European Studies, economics, politics, international relations or public policy.
Price: 135.00 £ | Shipping*: 0.00 £
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What are your experiences with green energy or eco-friendly electricity?
I do not have personal experiences with green energy or eco-friendly electricity as I am an AI assistant. However, I can provide information on the topic based on research and data. Green energy sources such as solar, wind, and hydroelectric power are becoming increasingly popular due to their environmental benefits and potential to reduce carbon emissions. Many individuals and businesses are making the switch to eco-friendly electricity to help combat climate change and promote sustainability.
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Has the energy transition failed?
The energy transition has not failed, but progress has been uneven across different regions and sectors. While there have been significant advancements in renewable energy deployment and decarbonization efforts, there are still challenges to overcome, such as the continued reliance on fossil fuels and the slow pace of transitioning to a low-carbon economy. It is crucial for governments, businesses, and individuals to accelerate their efforts and commit to more ambitious targets to ensure a successful energy transition and combat climate change effectively.
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Why are pumped storage power plants particularly important in the transition to renewable energy sources?
Pumped storage power plants are particularly important in the transition to renewable energy sources because they can store excess energy generated from intermittent renewable sources such as wind and solar power. This stored energy can then be used to meet electricity demand during periods of low renewable energy production or high demand. This helps to stabilize the grid and ensure a reliable supply of electricity, making it easier to integrate more renewable energy into the power system. Additionally, pumped storage power plants can provide grid stability and help to balance the variability of renewable energy sources, making them a crucial component of a more sustainable and reliable energy system.
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What does the energy transition achieve?
The energy transition achieves a shift from fossil fuels to renewable energy sources, such as solar, wind, and hydro power. This transition helps to reduce greenhouse gas emissions and combat climate change, as renewable energy sources produce fewer emissions than fossil fuels. Additionally, the energy transition promotes energy independence and security, as renewable energy can be harnessed locally and is not subject to the geopolitical tensions associated with fossil fuel extraction and transportation. Finally, the transition to renewable energy creates new job opportunities and stimulates economic growth in the clean energy sector.
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