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Evaluation of MEA 5M performance at different CO2 concentrations of flue gas tested at a CO2 capture lab-scale plant

机译:在CO2捕获实验室规模植物中测试不同CO2浓度的MEA 5M性能的评价

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Chemical absorption is the most effective and mature post-combustion alternative that might be applied for carbon capture in fossil-fuel power plants and other energy-intensive industries such as cement production, refineries and iron and steel manufacturing. In respect to the cement production, inherent CO2 emissions produced during the calcination of limestone contributes around 60% of the total CO2 emissions and they can be only reduced using CCS. A test campaign was carried out in a 0.48 kg CO2/h lab-scale CO2 capture plant using a synthetic flue gas derived from both a conventional fossil-fuel power plant (15%v/v CO2) and a cement plant (20%v/v). The use of a higher CO2 concentrated flue gas enhanced the CO2 absorption and hence the overall CO2 capture process. Higher CO2 concentrations also increased the solvent cyclic capacity which was displaced to higher values as CO2 concentration shifted from 15%v/v CO2 to 20%v/v CO2. A 29% reduction of the energy consumption per ton of CO2 was achieved in the stripper as flue gas shifted from 15%v/v CO2 to 20%v/v, showing post-combustion capture based on chemical absorption as a potential approach to mitigate CO2 emissions originating from cement production.
机译:化学吸收是最有效和成熟的后燃烧替代方案,可用于化石燃料发电厂和其他能源密集型产业,如水泥生产,炼油厂和钢铁制造。就水泥生产而言,石灰石煅烧过程中产生的固有的二氧化碳排放贡献了总二氧化碳排放量的60%,它们只能使用CCS减少。使用源自传统化石燃料发电厂(15%v / v CO2)和水泥厂(20%V)的合成烟道气体在0.48kg CO2 / H实验室CO2捕获工厂中进行了测试运动。 / v)。使用更高的CO 2浓缩烟道气增强了CO 2吸收,从而增强了总体二氧化碳捕获过程。较高的CO 2浓度也增加了溶剂循环能力,其向较高值移位,因为CO 2浓度从15%V / V CO 2移位至20%V / V CO 2。在汽提瓦在汽提瓦在15%v / v CO 2转移至20%v / v时,在汽提瓦达到每吨二氧化碳的29%,显示基于化学吸收的燃烧后捕获,作为减轻的潜在方法来自水泥生产的二氧化碳排放。

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