Solar Fuels Technologies and Applications for a Sustainable Energy Future, Volumes 1-2
Posted: Sat Jun 27, 2026 10:24 am

Solar Fuels Technologies and Applications for a Sustainable Energy Future, Volumes 1-2 | 15.44 MB
Title: Solar Fuels Technologies and Applications for a Sustainable Energy Future, Volumes 1-2
Author: Nakshatra Bahadur Singh, Md. Abu Bin Hasan Susan, Aniruddha Mondal, Ratiram G. Chaudhary
Category: Nonfiction, Science & Nature, Science, Chemistry, Physical & Theoretical, Physics, Energy, Technology
Language: English | 786 Pages | ISBN: 9783527855025
Description:
Accelerate clean fuel production from solar energy to net-zero emissions
Transitioning global energy infrastructure toward net-zero emissions demands viable pathways for producing storable, carbon-neutral fuels from sunlight. Solar Fuels: Technologies and Applications for a Sustainable Energy Future, edited by a team of researchers in materials science, nanotechnology, and chemistry, reviews the principles, technological innovations, and economic and policy frameworks that define this rapidly advancing field.
Solar Fuels covers photochemistry, catalysis, nanotechnology, hydrogen production, and carbon-based solar fuel synthesis. Beyond laboratory fundamentals, the handbook addresses large-scale industrial applications, electric grid stability, and the role of artificial intelligence in optimizing solar fuel development. Economic analyses and policy frameworks provide context for translating research advances into deployable energy solutions.
The book also covers:
- Photochemical reactions, artificial photosynthesis, electrochemical methods, and thermochemical processes for producing hydrogen, ammonia, and methanol from sunlight
- Nanotechnology-driven catalyst design and advanced materials strategies that improve solar-to-fuel conversion efficiency across multiple reaction pathways
- Grid stability considerations and infrastructure requirements for integrating solar fuel production into existing energy generation and distribution systems
- Artificial intelligence applications for accelerating solar fuel research, optimizing reactor design, and improving process control at industrial scale
- Economic viability assessments and policy framework analyses supporting the transition from laboratory-scale research to commercial solar fuel deployment
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