Experimental investigation of a mixed desiccant solution of potassium formate and ionic liquid

Dingming Jiang, A. Giampieri, J. Ling-Chin, A. Roskilly
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Abstract

Liquid desiccant technology is a promising energy-efficient alternative to conventional temperature and humidity control systems. In the quest to identify the optimal fluid for liquid desiccant systems, alternative desiccant solutions have been explored in terms of their feasibility and compatibility in dehumidification systems. This study proposes and characterises a new type of less expensive mixture of potassium formate (HCO2K) and 1-ethyl-3-methylimidazolium acetate ([EMIM][OAc]). This novel desiccant solution was investigated in terms of corrosiveness to metals, moisture absorption and desorption ability, cost-effectiveness compared to conventional desiccant solutions. The corrosiveness of desiccant solutions to copper-nickel, copper and steel was tested at room temperature and at 60 °C. Experiments were conducted in a climatic chamber with temperatures of 25–31 °C and relative humidities of 80–90% for the absorption process and temperatures of 50–70 °C and relative humidities of 20–30% for the desorption process to assess the moisture absorption and desorption capacities and mass fraction variations of the desiccant solutions. The mixed desiccant of HCO2K/[EMIM][OAc] in the ratio 60/10% wt. showed a moisture absorption capacity of 0.146 gH2O/gsol (compared to 0.18 gH2O/gsol for aqueous lithium chloride at 33.3% wt.) for a temperature and relative humidity of the climatic chamber of 25 °C and 90%, respectively. Its low corrosiveness, good moisture absorption and desorption capacity and higher cost-effectiveness make it a promising alternative to conventional desiccants, such as aqueous solutions of lithium chloride.
甲酸钾和离子液体混合干燥剂溶液的实验研究
液体干燥剂技术是一种替代传统温湿度控制系统的节能技术,前景广阔。在为液体干燥剂系统寻找最佳液体的过程中,人们探索了替代干燥剂解决方案在除湿系统中的可行性和兼容性。本研究提出了一种成本较低的新型甲酸钾(HCO2K)和 1-乙基-3-甲基咪唑醋酸盐([EMIM][OAc])混合物,并对其特性进行了分析。与传统的干燥剂溶液相比,对这种新型干燥剂溶液的金属腐蚀性、吸湿和脱湿能力以及成本效益进行了研究。对干燥剂溶液在室温和 60 °C 下对铜镍、铜和钢的腐蚀性进行了测试。在温度为 25-31 ℃、相对湿度为 80-90% 的气候箱中进行了吸湿过程实验,在温度为 50-70 ℃、相对湿度为 20-30% 的解吸过程中进行了解吸过程实验,以评估干燥剂溶液的吸湿和解吸能力以及质量分数变化。重量比为 60/10% 的 HCO2K/[EMIM][OAc]混合干燥剂的吸湿能力为 0.146 gH2O/gsol(而重量比为 33.3% 的氯化锂水溶液的吸湿能力为 0.18 gH2O/gsol),气候室的温度和相对湿度分别为 25 °C 和 90%。这种干燥剂腐蚀性低,吸湿和解吸能力强,成本效益高,是氯化锂水溶液等传统干燥剂的理想替代品。
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