CO2 Separation and Recovery Technologies and Process Design, Effective Utilization Technologies
¥100 ,000
This technical book focuses on efficient and energy-saving CO2 separation and recovery technologies. It covers various methods including absorption, membrane separation, and physical adsorption, as well as the latest trends in Direct Air Capture (DAC) and Direct Air Capture with Storage (DACCS). Additionally, it explores technologies for synthesizing fuels and useful chemicals from CO2.
This is a request, not an immediate purchase. Your card is authorized but not charged. Delivery takes about one week. We capture payment when the English PDF is ready.
説明
This is a request, not an immediate purchase. Delivery takes about one week. Your card is authorized but not charged until the English PDF is ready.
Product ID: 1149
Publisher: Gijutsu Joho Kyokai
Publication Date: 2026-09-01
English Summary
This technical book focuses on efficient and energy-saving CO2 separation and recovery technologies. It covers various methods including absorption, membrane separation, and physical adsorption, as well as the latest trends in Direct Air Capture (DAC) and Direct Air Capture with Storage (DACCS). Additionally, it explores technologies for synthesizing fuels and useful chemicals from CO2.
Contents / Coverage
- Chapter 1: Separation and Recovery Technologies Using CO2 Absorption Methods
- Chapter 2: Separation and Recovery Technologies Utilizing CO2 Membrane Separation Methods
- Chapter 3: Separation and Recovery Technologies Utilizing CO2 Physical Adsorption Methods
- Chapter 4: Trends in DAC and DACCS
- Chapter 5: Synthesis and Manufacturing Technologies for Fuels Utilizing CO2
- Chapter 6: Synthesis Technologies for Useful Chemicals Utilizing CO2 and Effective Utilization Technologies
- Chapter 7: CO2 Separation and Recovery Processes and Their Application Cases, Demonstration Experiments
Why This May Matter Internationally
As global efforts to reduce carbon emissions intensify, the technologies discussed in this book are increasingly relevant for industries worldwide looking to implement carbon capture and utilization strategies.
Keywords: CO2 separation,carbon capture,energy efficiency,DAC,DACCS,fuel synthesis,chemical production
