Application: Low-concentration ship exhaust under fluctuating conditions
Highlights: Solvent supplied for multiple 10,000-ton ship-based systems
Application: High-oxygen, high-dust cement kiln flue gas
Highlights: Core equipment for one of China’s largest cement CCUS projects
Application: Sulfur-containing converter gas from steel plants
Highlights: 150,000 t/y unit with patented pretreatment, lower OPEX
Application: High-sulfur, high-humidity coal-fired flue gas
Highlights: Key pressure vessels supplied for the system
Application: Multi-gas sources with high oxygen and dust
Highlights: Integrated solvent and process, >97% CO₂capture
High oxygen content accelerates solvent degradation
Complex flue gas composition reduces solvent stability
Frequent solvent replacement generates large waste liquid volumes
High steam prices (>200 RMB/t) drive operating costs
Traditional solvents require ~2.0 t steam per t CO₂
Steam consumption accounts for over 70% of total OPEX
High amine evaporation during regeneration
Significant solvent losses in continuous operation
Rising solvent makeup and replacement costs
Effectively captures low-pressure, low-concentration (5–30%) CO₂ from cement, steel, and power plant flue gases.
<1.0 t steam / t CO₂ ultra-low regeneration energy
High-loading, fast-absorption solvent
ΔT 5–7 K heat exchanger + 10–20% higher reboiler efficiency
Low solvent loss via optimized separation and alkaline washing
Energy: EOR / fracturing / mineralization
Chemicals: Methanol, acetic acid, olefins
Industry: Food-grade CO₂, inert gas, wastewater treatment
A cement plant with an annual production capacity of 300,000 tons of CO₂ capture is used as a simulation (the specific benefits need to be measured according to the actual scheme and local policies, welcome contact us for a free proposal and precise analysis).
(Accounting for 69.8%)
(Accounting for 25.6%)
(Accounting for 4.6%)
(1.2 tons vs 2 tons of CO₂ per ton)
CCUS Equipment Production
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