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This paper comes from a project designed to assist central and eastern Europe and Commonwealth of Independent States (CIS) countries to enhance their energy efficiency and security, to ease the energy supply constraints of economic transition and to meet international environmental treaty obligations under the UN FCCC and the UN ECE. Reducing the energy efficiency 'gap' by half would save 600 million tones of oil equivalent in year 2010 of which 90 per cent would be fossil fuels. Central and Eastern European economies are half as efficient as those of market economies. This paper, which was produced jointly by the Economic and Social Commission for Asia and the Pacific (ESCAP) and the Economic Commission for Europe (ECE), aims to provide some suggestions for policy makers in the CIS for development of policies and regulatory frameworks for promotion of energy efficiency. The guidelines presented have been discussed and endorsed by the ECE Committee on Sustainable Development at its ninth session, 9-11 November 1999. The impetus for the guidelines was a recommendation made at a 1996 regional seminar on promotion of energy efficiency and institution building in Asian economies in transition conducted by ESCAP with participation by ECE.
Shows readers how we can all help solve the climate crisis by focusing on a few key, achievable actions.
While energy efficiency projects could partly meet new energy demand more cheaply than new supplies, weak economic institutions in developing and transitional economies impede developing and financing energy efficiency retrofits. This book analyzes these difficulties, suggests a 3-part model for projectizing and financing energy efficiency retrofits, and presents thirteen case studies to illustrate the issues and principles involved.
The world is currently undergoing an historic energy transition, driven by increasingly stringent decarbonisation policies and rapid advances in low-carbon technologies. The large-scale shift to low-carbon energy is disrupting the global energy system, impacting whole economies, and changing the political dynamics within and between countries. This open access book, written by leading energy scholars, examines the economic and geopolitical implications of the global energy transition, from both regional and thematic perspectives. The first part of the book addresses the geopolitical implications in the world’s main energy-producing and energy-consuming regions, while the second presents in-depth case studies on selected issues, ranging from the geopolitics of renewable energy, to the mineral foundations of the global energy transformation, to governance issues in connection with the changing global energy order. Given its scope, the book will appeal to researchers in energy, climate change and international relations, as well as to professionals working in the energy industry.
Shows that economic concerns about jobs, costs, and consumption, rather than climate change, are likely to drive energy transition in developing countries.
The Economics and Politics of China's Energy Security Transition clarifies China's energy and foreign policies through a comprehensive examination of energy sources, providing an insider's unique perspective for assessing China's energy policies. China's historic decline in coal consumption since 2013-2014 and a plateauing of its carbon dioxide emissions have given China an unprecedented opportunity to decarbonize while growing its economy. In response to global questions about China's institutional, administrative, and political challenges and risks, this book provides the answers that everyone is asking. - Provides a rare assessment of China's energy policies and reveals insights into the Chinese government - Devotes attention to issues of global energy governance and energy sanctions - Includes data and reference content suitable for researchers in economics, sustainability, energy policy, geopolitics and political science
The Economics and Econometrics of the Energy-Growth Nexus recognizes that research in the energy-growth nexus field is heterogeneous and controversial. To make studies in the field as comparable as possible, chapters cover aggregate energy and disaggregate energy consumption and single country and multiple country analysis. As a foundational resource that helps researchers answer fundamental questions about their energy-growth projects, it combines theory and practice to classify and summarize the literature and explain the econometrics of the energy-growth nexus. The book provides order and guidance, enabling researchers to feel confident that they are adhering to widely accepted assumptions and procedures. Provides guidance about selecting and implementing econometric tools and interpreting empirical findings Equips researchers to get clearer pictures of the most robust relationships between variables Covers up-to-date empirical and econometric methods Combines theory and practice to classify and summarize the literature and explain the econometrics of the energy-growth nexus
Buildings are the largest energy consuming sector in the world, and account for over one-third of total final energy consumption and an equally important source of carbon dioxide (CO2) emissions. Achieving significant energy and emissions reduction in the buildings sector is a challenging but achievable policy goal. Transition to Sustainable Buildings presents detailed scenarios and strategies to 2050, and demonstrates how to reach deep energy and emissions reduction through a combination of best available technologies and intelligent public policy. This IEA study is an indispensible guide for decision makers, providing informative insights on: cost-effective options, key technologies and opportunities in the buildings sector; solutions for reducing electricity demand growth and flattening peak demand; effective energy efficiency policies and lessons learned from different countries; future trends and priorities for ASEAN, Brazil, China, the European Union, India, Mexico, Russia, South Africa and the United States; implementing a systems approach using innovative products in a cost effective manner; and pursuing whole-building (e.g. zero energy buildings) and advanced-component policies to initiate a fundamental shift in the way energy is consumed.