Improving Energy Efficiency of Boiler Systems


Book Description

This 6-hour quick book provides simple facts and energy efficiency opportunities in the areas of combustion management, makeup & feed water management, condensate return, blow-down system, waste heat recovery and steam distribution & utilization. This course is aimed at mechanical, chemical & process engineers, system design engineers working in power, oil & gas, chemical, metal & mining manufacturing and engineering industries, energy auditors, operational and maintenance personnel.




Boilers for Power and Process


Book Description

Boiler professionals require a strong command of both the theoretical and practical facets of water tube-boiler technology. From state-of-the-art boiler construction to mechanics of firing techniques, Boilers for Power and Process augments seasoned engineers' already-solid grasp of boiler fundamentals. A practical explanation of theory, it d




Building Energy Efficiency


Book Description




OECD Green Growth Studies Improving Energy Efficiency in the Agro-food Chain


Book Description

For a variety of reasons, energy use in the agro-food sector continues to rise, and in many countries, is highly dependent on fossil fuels, contributing significantly to greenhouse gas emissions. It is therefore becoming urgent to consider how the food supply chain can improve its energy efficiency.




Potential for Industrial Energy-Efficiency Improvement in the Long Term


Book Description

We need to know what opportunities there are and what limits exist to the improvement of energy efficiency, since this is the most cost-effective way to abate greenhouse gas emissions. This book presents a method whereby promising technologies can be identified and characterised that can contribute to an improvement of energy efficiency in the long term. An objective measurement of maximum improvement is provided by an analysis of the theoretical minimum specific energy demand. A descriptive inventory is then given of new and conceivable technologies that can improve efficiency, extending beyond the standard lists found in the literature. The method is applied to three main energy consuming branches of industry: paper and board, iron and steel, and nitrogen fertilizer. Each of the studies provides an in-depth analysis of the industry and an extensive survey of options for its improvement.




Systems, Decision and Control in Energy I


Book Description

This book examines the problems in the field of energy and related areas (including chemistry, transport, aerospace, construction, metallurgy and engineering) that Ukrainian scientists are currently investigating. The research presented focuses on ensuring the operational reliability, durability and safety of energy equipment, as well as the development of control, diagnostics and monitoring systems in the energy sector. Further, the book explores the ecological consequences of energy facilities , particularly environmental pollution in large cities and industrial areas. Written mainly by representatives of the Council of Young Scientists of the Department of Physical and Technical Problems of Energy at the NAS of Ukraine, it is intended for researchers and engineers, as well as lecturers and postgraduates at higher education institutions interested in the control, diagnosis and monitoring of energy facilities.




Transitions in Energy Efficiency and Demand


Book Description

The Open Access version of this book, available at http://www.tandfebooks.com/doi/view/10.4324/9781351127264, has been made available under a Creative Commons Attribution-Non Commercial-No Derivatives 4.0 license. Meeting the goals enshrined in the Paris Agreement and limiting global temperature increases to less than 2°C above pre-industrial levels demands rapid reductions in global carbon dioxide emissions. Reducing energy demand has a central role in achieving this goal, but existing policy initiatives have been largely incremental in terms of the technological and behavioural changes they encourage. Against this background, this book develops a sociotechnical approach to the challenge of reducing energy demand and illustrates this with a number of empirical case studies from the United Kingdom. In doing so, it explores the emergence, diffusion and impact of low-energy innovations, including electric vehicles and smart meters. The book has the dual aim of improving the academic understanding of sociotechnical transitions and energy demand and providing practical recommendations for public policy. Combining an impressive range of contributions from key thinkers in the field, this book will be of great interest to energy students, scholars and decision-makers.




Sustainability in the Mineral and Energy Sectors


Book Description

Sustainable practices within the mining and energy sectors are assuming greater significance due to uncertainty and change within the global economy and safety, security, and health concerns. This book examines sustainability issues facing the mining and energy sectors by addressing six major themes: Mining and Mineral Processing; Metallurgy and Recycling; Environment; Energy; Socioeconomic and Regulatory; and Sustainable Materials and Fleets. Emphasizing an integrated transdisciplinary approach, it deliberates on optimizing mining productivity and energy efficiency and discusses integrated waste management practices. It discusses risk management, cost cutting, and integration of sustainable practices for long-term business value. It gives a comprehensive outlook for sustainable mineral futures from academic and industry perspectives covering mine to mill optimization, waste, risk and water management, improved efficiencies in mining tools and equipment, and performance indicators for sustainable developments. It covers how innovation and research underpin management of natural resources including sustainable carbon management. •Focuses on mining and mineral processing, metallurgy and recycling, the environment, energy, socioeconomic and regulatory issues, and sustainable materials and fleets. •Describes metallurgy and recycling and uses economic, environmental and social parameter analyses to identify areas for improvement in iron, steel, aluminium, lead, zinc, copper, and gold production. •Discusses current research on mining, performance indicators for sustainable development, sustainability in mining equipment, risk and safety management, and renewable energy resources •Covers alternative and conventional energy sources for the mineral sector as well water treatment and remediation and energy sustainability in mining. •Provides an overview of sustainable carbon management. •Offers an interdisciplinary approach with international focus.