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首页> 外文期刊>Journal of nuclear science and technology >Application of Pressure Swing Adsorption to Water Detritiation Process
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Application of Pressure Swing Adsorption to Water Detritiation Process

机译:变压吸附法在水处理中的应用。

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摘要

Pressure swing adsorption (PSA) has been studied as a new water processing technique, detritiation of tritiated water, for a future fusion power plant. It will be a new tritium removal method having an additional function of isotope separation and quick dehydration, and it is expected to become the first stage of the system processing a large amount of tritiated water generated in a fusion plant. A series of the adsorption and dehydration experiments was carried out for a typical adsorbent of NaX zeolite as fundamental investigation to realize HTO/H_2O separation system by PSA. It was clearly observed that break through time differs in H_2O and HTO concerning the isotope separation function of NaX zeolite. It is certain that NaX zeolite can separate into the tritium concentrated water and the tritium reduced water by this difference of the break through time. The quick dehydration is attained by decompression and purge gas flowing. It was observed that a part of amount of the water released by the decompression was transferred by the purge gas, and the rest of water was adsorbed on the adsorbent again. After the re-adsorption phenomenon, the rest of water was gradually released by the diffusion. It is demonstrated that enlargement of pressure difference between adsorption and dehydration is effective to obtain high dehydration ratio. Furthermore, it was also verified that enough vapor removal capacity of purge gas is quite necessary to obtain high dehydration ratio.
机译:已经研究了变压吸附(PSA)作为一种新的水处理技术,用于tri化水的脱除,用于未来的聚变电厂。这将是一种新的去除removal的方法,它具有同位素分离和快速脱水的附加功能,并且有望成为处理聚变工厂中大量generated化水的系统的第一阶段。对典型的NaX沸石吸附剂进行了一系列的吸附和脱水实验,作为基础研究,以PSA技术实现HTO / H_2O分离系统。清楚地观察到,关于NaX沸石的同位素分离功能,H_2O和HTO的穿透时间不同。可以肯定的是,通过这种穿透时间的差异,NaX沸石可以分离为concentrated浓缩水和reduced还原水。通过减压和吹扫气流可以实现快速脱水。观察到通过减压释放的一部分水被净化气体转移,其余的水再次被吸附在吸附剂上。在重新吸附现象之后,其余的水由于扩散而逐渐释放。事实证明,增大吸附与脱水之间的压力差对于获得高脱水率是有效的。此外,还证实了为了获得高脱水率,非常需要足够的吹扫气体的蒸气去除能力。

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