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Air separation by pressure swing adsorption with a high capacity carbon molecular sieve

机译:高容量碳分子筛通过变压吸附进行空气分离

摘要

Nitrogen is produced by separating air in a pressure swing adsorption process using a high capacity kinetically O.sub.2 selective material as the adsorbent. An example of such an adsorbent is a carbon molecular sieve made from coconut shell char. Such a coconut shell char having a high oxygen volumetric capacity is provided by crushing and sizing coconut shells to form granules which are then heated in flowing inert gas at a temperature ramp rate of about 2 to 12° C. per minute to a peak temperature of 775 to 900° C. which is then held so that the total heating time is up to 8 hours and thereafter the granular char is cooled in an inert gas atmosphere. The granular char thus produced is kinetically selective for O.sub.2 over N.sub.2 without further modification to narrow the openings of its micropores and has an oxygen volumetric capacity in excess of 8.0 cc/cc at 1 atm. and ambient temperature. Further modification of this char is provided by contacting it with an oxidizing atmosphere of carbon dioxide or a mixture of inert gas and carbon dioxide, H.sub.2 O or O.sub.2 at temperatures ranging from 650° to 900° C. until the gasified char has been altered so that its volumetric oxygen capacity is greater than 9.0 cc/cc at 1 atm. and ambient temperature.
机译:氮气是通过变压吸附过程中的空气分离而产生的,该过程使用高容量的动态O2选择性材料作为吸附剂。这种吸附剂的一个例子是由椰子壳炭制成的碳分子筛。通过将椰子壳压碎并定尺寸以形成颗粒,然后将其在流动的惰性气体中以每分钟约2-12℃的升温速率加热至峰值温度,提供具有高氧气体积容量的这种椰子壳炭。然后保持在775至900℃,以使总加热时间长达8小时,然后在惰性气体气氛中冷却粒状炭。由此产生的粒状炭对O 2相对于N 2具有动力学选择性,而无需进一步修饰以使其微孔的开口变窄,并且在1个大气压下的氧气体积容量超过8.0 cc / cc。和环境温度。通过使炭与二氧化碳或惰性气体和二氧化碳,H 2 O或O 2的混合物的氧化气氛在650°至900°C的温度下接触,可以进一步改性。直到气化焦炭发生变化,以使其在1个大气压下的体积氧容量大于9.0 cc / cc。和环境温度。

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