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Design of protonation constant measurement apparatus for carbon dioxide capturing solvents

机译:二氧化碳捕获溶剂质量恒定测量装置的设计

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Global wanning phenomenon has led to world climate change caused by high concentrations of greenhouse gases (GHG), e.g. carbon dioxide (CO2), in the atmosphere. Carbon dioxide is produced in large amount from coal-fired power plants, iron and steel production, cement production, chemical and petrochemical manufacturing, natural gas purification, and transportation. Carbon dioxide emissions seem to rise from year to year; some efforts to reduce the emissions are, therefore, required. Amine-based absorption could be deployed for post-combustion capture. Some parameters, e.g. mass transfer coefficients and chemical equilibrium constants, are required for a vapor-liquid equilibrium modeling. Protonation constant (pKa), as one of those parameters, could then be measured experimentally. Therefore, an experimental setup to measure pKa of CO2 capturing solvents was designed and validated by measuring the pKa of acetic acid at 30 to 70 °C by a potentiometric titration method. The set up was also used to measure the pKa of MEA at 27 °C. Based on the validation results and due to low vapor pressure of CO2 capturing solvents in general, e.g. alkanolamines, the setup could therefore be used for measuring pKa of the CO2 capturing solvents at temperatures up to 70 °C.
机译:全球航空现象导致了由高浓度的温室气体(GHG)引起的世界气候变化,例如,二氧化碳(CO2),在大气中。二氧化碳由燃煤发电厂,钢铁生产,水泥生产,化工和石化制造,天然气净化和运输量大量生产。二氧化碳排放似乎从一年到一年增加;因此,需要一些减少排放的努力。可以部署基于胺的吸收以进行燃烧后捕获。一些参数,例如汽液平衡建模需要传质系数和化学平衡常数。然后可以通过实验测量质子化常数(PKA)作为这些参数之一。因此,通过电位滴定法测量30至70℃的乙酸PKA来设计和验证以测量CO 2捕获溶剂PKA的实验设置。该设置还用于测量27℃的MEA的PKA。基于验证结果,由于CO2捕获溶剂的低蒸气压,例如,因此,链烷醇胺可以用于在高达70℃的温度下测量CO 2捕获溶剂的PKA。

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