High-Efficiency Compounded CO₂ Absorbent (Including Import Substitution)
  • 26-04-29 22:39
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Against the backdrop of long-standing pain points in the traditional 30% MEA process route, such as high regeneration energy consumption, rapid degradation, and severe equipment corrosion, our team has developed a new generation of blended amine CO₂ absorbent, reducing regeneration steam consumption to 1.2 t steam/t CO₂ and regeneration heat duty to 2.4 GJ/t CO₂, approximately 40% lower than the 30% MEA solution; the chemical consumption is as low as 0.7 kg/t CO₂, which can significantly reduce operational OPEX.

The absorbent system covers multiple types of raw gases, including power plant flue gas, cement kiln gas, steel blast furnace gas, and chemical furnace gas, and can be customized for different CO₂ concentrations (4%–20%) and SOₓ/NOₓ/O₂ contents. It has been continuously supplied to the largest operating 500,000 tons/year CCUS project in China, and achieved a 98.2% ultra-high capture rate in a 400,000 tons/year project in a South Asian country (with flue gas CO₂ concentration as low as 6%), demonstrating the capability for global import substitution.

It can benchmark against and replace mainstream imported absorbents such as BASF OASE® blue, Shell ADIP-X, Fluor Econamine FG Plus, offering comparable or superior capture rate, regeneration energy consumption, and degradation rate indicators, with significant price competitiveness.

Service delivery includes: absorbent sample testing, small-scale/pilot-scale evaluation of user flue gas, customized formulation development, long-term supply contracts, operation optimization and online degradation monitoring solutions. Optimal makeup strategies can be provided according to the owner's absorption tower dimensions, tray/packing types. It is suitable for chemical selection in new CCUS units, as well as import replacement/chemical changeover in existing MEA units.

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High-Efficiency Compounded CO₂ Absorbent (Including Import Substitution)
"在传统 30% MEA 技术路线长期面临再生能耗高、降解快、设备腐蚀严重等痛点的背景下,本团队开发出新一代复配胺类 CO₂ 吸收剂,将再生蒸汽消耗降至 1.2 t 蒸汽/t CO₂、再生热耗 2.4 GJ/t CO₂,较 30% MEA 方案下降约 40%;药剂消耗低至 0.7 kg/t CO₂,可显著降低运营期 OPEX。

吸收剂体系覆盖电厂烟气、水泥窑气、钢铁高炉煤气、化工炉气等多类原料气,并可针对不同 CO₂ 浓度(4%–20%)、SOₓ/NOₓ/O₂ 含量进行配方定制。已在国内最大在运 50 万吨/年 CCUS 项目持续供应,在南亚某国年 40 万吨级项目实现 98.2% 超高捕集率(烟气 CO₂ 浓度仅 6%),具备全球范围进口替代能力。

可对标并替代 BASF OASE® blue、Shell ADIP-X、Fluor Econamine FG Plus 等主流进口吸收剂,提供同等或更优的捕集率、再生能耗与降解速率指标,价格具有显著竞争力。

服务交付包括:吸收剂样品测试、用户烟气小试/中试评价、配方定制开发、长期供货合同、运行优化与降解物在线监测方案。可按业主吸收塔尺寸、塔板/填料类型出具最优补加策略。适用于新建 CCUS 装置药剂选型,以及现有 MEA 装置的进口替代/换剂改造。"
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