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Adsorption of iodine from COIL waste gas on soaked coal-based activated carbon

机译:浸泡在煤基活性炭上的COIL废气中碘的吸附

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摘要

The chemical oxygen-iodine laser (COIL) has wide application prospects in military, industrial and medical treatment fields as a second generation gas chemical laser to follow the first HF/DF chemical laser. However, a COIL releases large amounts of gas, such as helium, oxygen, chlorine and iodine. Chlorides have a serious corrosive effect on the system, especially iodine vapor crystallization, which seriously endangers the normal use of vacuum systems, and radioactive methyl iodide, which is hazardous to operators and pollutes the environment. The use of soaked coal-based activated carbon as an adsorbent for removing methyl iodine is proposed, while it is proposed that coalbased activated carbon is an effective adsorbent for removing stable iodine. The research conducted in this work shows that iodine residues are less than 0.5 μg ml~(-1) after the adsorption treatment and the decontamination factor of the coal-based activated carbon for removing stable iodine is more than 1000. Using this method can achieve the purpose of removing harmful iodine, satisfy the requirements for engineering applications, and also be applied to other nuclear power plant flue gas treatments.
机译:化学氧碘激光器(COIL)作为继第一HF / DF化学激光器之后的第二代气体化学激光器,在军事,工业和医疗领域具有广阔的应用前景。但是,COIL释放出大量气体,例如氦气,氧气,氯气和碘气。氯化物对系统具有严重的腐蚀作用,尤其是碘蒸气结晶,这会严重危害真空系统的正常使用;而放射性甲基碘则对操作人员造成危害并污染环境。提出使用浸透的煤基活性炭作为去除甲基碘的吸附剂,同时提出煤基活性炭是去除稳定碘的有效吸附剂。这项工作进行的研究表明,吸附处理后碘残留量小于0.5μgml〜(-1),而用于去除稳定碘的煤基活性炭的去污因子大于1000。去除有害碘的目的,满足工程应用的要求,也可应用于其他核电站的烟气处理。

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