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Microwave-powered thermal regeneration of sorbents for CO{sub}2, water vapor and trace organic contaminants

机译:用于CO {SUB} 2,水蒸气和痕量有机污染物的微波动力热再生

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Feasibility of the use of microwave heating to achieve fast and efficient thermal regeneration of sorbents for the removal of carbon dioxide, water vapor, and trace organics from contaminated air streams has been conclusively demonstrated. The use of microwave power offers several advantages, including: improved heat transfer, lower thermal losses, improved power utilization, and enhanced operational capabilities. During the initial research, the sorption and microwave-powered thermal desorption of acetone, trichloroethylene (TCE), carbon dioxide and water vapor was studied at 2.45 GHz using a rectangular waveguide-based test apparatus. Both activated carbon and Carbosieve S-III were identified as excellent microwave regenerable sorbents for use in the removal of airborne organics. Water-loaded silica gel, Molecular Sieve 13X, and Molecular Sieve 5A were also effectively regenerated under microwave irradiation at this frequency. Molecular Sieve 5A and a carbogenic molecular sieve prepared at NASA's Jet Propulsion Laboratory were identified as viable microwave regenerable carbon dioxide (CO{sub}2) sorbents. A sorbent bed containing multiple media was challenged with air containing 0.5% CO{sub}2, 300 parts per million (ppm) acetone, 50 ppm TCE, and saturated with water vapor. The layered media bed was shown to effectively purify the contaminated air stream and to be completely regenerated by microwave-induced heating. Spectral studies of the refection, transmission, and phase shifts of microwaves for a variety of sorbents over the frequency range between 1.3 - 2.7 GHz were performed.
机译:已经证明了使用微波加热以实现用于去除二氧化碳,水蒸气和痕量有机物的吸附剂的快速有效热再生的可行性已经明确说明。微波功率的使用提供了几个优点,包括:提高传热,较低的热损失,提高功耗,增强的操作能力。在初始研究期间,使用基于矩形波导的试验装置在2.45GHz中研究了丙酮,三氯乙烯(TCE),二氧化碳和水蒸气的吸附和微波动力的热解吸。将活性炭和碳酸碳和碳酸S-III均被鉴定为优异的微波再生吸附剂,用于去除空气载体有机物。在这种频率下,还在微波辐射下有效地再生水负载硅胶,分子筛13x和分子筛5a。在NASA的喷射推进实验室中制备的分子筛5A和肉质分子筛被鉴定为可行的微波再生二氧化碳(CO {Sub} 2)吸附剂。含有多种培养基的吸附剂床与含有0.5%CO {Sub} 2,300份(PPM)丙酮,50ppm TCE和水蒸气饱和的空气攻击。显示层状介质床,以有效地净化污染的空气流并通过微波诱导的加热完全再生。在1.3-2.7GHz之间的频率范围内的各种吸附剂的微波的光谱研究,微波的微波微波。

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