Emission And Control Of Trace Elements From Coal Derived Gas Streams

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Emission and Control of Trace Elements from Coal-Derived Gas Streams

Emission and Control of Trace Elements from Coal-Derived Gas Streams presents an up-to-date and focused analysis on Trace element (TEs) emissions and control strategies during coal utilization. This book provides insights into how TE's in coal are distributed from different coal-forming periods, coal ranks and coal-bearing regions. As the emission and control of TEs during coal utilization are a significant concern, this book introduces TEs in coal and pollution in an accessible way before discussing why they occur and how they are distributed during various stages of coal forming, also considering various regions and countries. Specific types of TEs in relation to partition in coal combustion, coal fires, gasification and coal feed furnace are then analyzed, providing the reader with practical knowledge to apply to their own research or projects. This book is an essential reference for energy engineers researching and working in coal technology, with a specific focus on emission control, as well as graduate students and researchers in energy engineering, environmental, thermal and chemical engineering who have an interest in trace element emission and control from coal utilization. - Presents characteristics of TE emissions during coal utilization in laboratory-scale experiments, industrial furnaces and power plants - Considers different legislation and case studies from various regions and countries - Includes contributions from world renowned experts - Presents a concise and focused analysis on TE emissions and control strategies
Fundamentals of Green Hydrogen Supply Chain and Power-to-X

This book offers an engaging introduction to green hydrogen and its role in changing the global energy landscape. It explains theoretical and practical aspects of the green hydrogen supply chain, including production, storage, transportation, and utilization, and explores the techno-economic aspects relevant to each stage. Through hands-on examples, readers understand how green hydrogen can be implemented across various applications. It explains Power-to-X technologies, which enable the conversion of green hydrogen into eco-friendly fuels and chemical feedstocks. Designed for students and researchers, this book simplifies complex concepts and provides a comprehensive understanding of green hydrogen's benefits. Key Features: Covers end-to-end the green hydrogen and Power-to-X technologies (PtX) supply chain. Provides a holistic and integrated approach of theoretical and practical knowledge utilizing examples and various case studies from around the world. Demonstrates the global potential of green hydrogen with sector-specific applications and case studies. Includes cutting-edge and recent developments in the green hydrogen landscape with clear visuals and technical explanations. Discusses forward-looking evaluations of Power-to-X technologies, hydrogen safety, and green hydrogen techno-economic aspects. Written in simple yet detailed language for a wide spectrum of readers. Tests readers' comprehension of the topics covered with self-assessment questions at the end of each chapter. This textbook is an excellent foundational text for university students and researchers in renewable energy engineering, energy systems engineering, chemical, environmental, and mechanical engineering, and sustainable development. It is also valuable to professionals in energy, heavy industries, and the chemical and pharmaceutical sectors, and policymakers with a focus on innovative clean, renewable energy.