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首页> 外文期刊>ACS Omega >Water Vapor Adsorption–Desorption Behavior of Surfactant-Coated Starch Particles for Commercial Energy Wheels
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Water Vapor Adsorption–Desorption Behavior of Surfactant-Coated Starch Particles for Commercial Energy Wheels

机译:商业用能量轮用表面活性剂包覆的淀粉颗粒的水蒸气吸附-解吸行为

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摘要

This study reports on the adsorption (dehumidification)–desorption (humidification) behavior of cetylpyridinium bromide (CPB) coated starch particles (SPs), denoted as SP-CPB, as a potential desiccant material for air-to-air energy exchangers. CPB is a cationic surfactant with antibacterial activity that can be used to modify the surface properties of SPs, especially at variable CPB loading levels (SP-CPB0.5, SP-CPB2.5, and SP-CPB5.0, where the numeric suffix represents the synthetic loading level of CPB in mM). The SP-CPB0.5 sample displayed optimal surface area and pore structure properties that was selected for water sorption isotherm studies at 25 °C. The CPB-coated SPs sample (SP-CPB0.5) showed an improved water vapor uptake capacity compared to unmodified starch (SPs) and other desiccant systems such as high amylose starch (HAS15) and silica gel (SG13). Single-step and cyclic water vapor sorption tests were conducted using a small-scale exchanger coated with SP-CPB0.5. The calculated latent effectiveness values obtained from direct measurements using cyclic tests (65.4 ± 2%) agree closely with the estimated latent effectiveness from single-step tests (64.6 ± 2%) at controlled operating conditions. Compared to HAS15- and SG13-coated exchangers, the SP-CPB0.5-coated exchanger performed much better at controlled operating conditions, along with improved longevity due to the CPB surface coating. The presence of CPB did not attenuate the uptake properties of native SPs. Latent effectiveness of SP-CPB0.5-coated exchanger was enhanced (5–30% higher) over that of the SG13- or HAS15-coated exchangers, according to the wheel angular speed. This study reports on a novel and sustainable SP-CPB0.5 material as a promising desiccant coating with tunable uptake and surface properties with potential utility in air-to-air energy exchangers for ventilation systems.
机译:这项研究报告了十六烷基溴化十六烷基吡啶鎓(CPB)涂覆的淀粉颗粒(SPs)的吸附(除湿)-解吸(加湿)行为,表示为SP-CPB,它是空对空换热器的潜在干燥剂。 CPB是一种具有抗菌活性的阳离子表面活性剂,可用于修饰SP的表面特性,尤其是在CPB含量可变的情况下(SP-CPB0.5,SP-CPB2.5和SP-CPB5.0,带有数字后缀)代表CPB的合成负载水平(以mM为单位)。 SP-CPB0.5样品显示出最佳的表面积和孔结构特性,该特性被选择用于25°C下的水吸附等温线研究。与未改性的淀粉(SPs)和其他干燥剂体系(如高直链淀粉(HAS15)和硅胶(SG13))相比,CPB涂层的SPs样品(SP-CPB0.5)显示出更高的水蒸气吸收能力。使用涂有SP-CPB0.5的小型交换器进行单步循环水蒸气吸附测试。通过使用循环测试的直接测量获得的潜在潜能值的计算值(65.4±2%)与在受控操作条件下单步测试得出的潜在潜能值估计值(64.6±2%)非常吻合。与HAS15和SG13涂层的交换器相比,SP-CPB0.5涂层的交换器在受控的运行条件下表现更好,并且由于CPB表面涂层而提高了使用寿命。 CPB的存在不会减弱天然SP的吸收特性。根据车轮的角速度,与SG13或HAS15涂层的交换器相比,SP-CPB0.5涂层的交换器的潜在效率提高了(提高了5-30%)。这项研究报告了一种新颖且可持续的SP-CPB0.5材料,它是一种有前途的干燥剂涂层,具有可调节的吸收能力和表面特性,在通风系统的空对空换热器中具有潜在的实用性。

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