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Removal of gadolinium, a neutron poison from the moderator system of nuclear reactors

机译:从核反应堆缓和系统中去除中子毒g

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Gadolinium as gadolinium nitrate is used as neutron poison in the moderator system for regulating and controlling the power generation of Pressurized Heavy Water Reactors (PHWR) and proposed to be used in Advanced Heavy Water Reactors (AHWR) owing to its high neutron absorption cross section. Removal of the added gadolinium nitrate (Gd3+ and NO3-) from the system after its intended use is done using ion exchange resins. In the present investigation, attempts have been made to optimize the ion exchange process for generation of low radioactive waste and maximize utilization of the ion exchange resins by employing different types of resins and different modes of operation. The investigations revealed that use of mixed bed (MB) resin column consisting of Strong Acid Cation (SAC) resin and Strong Base Anion (SBA) resin followed by SAC resin column is efficient in removing the Gd3+ and NO3- from the system besides maintaining the pH of the moderator system in the desirable regime, where gadolinium does not get precipitated as its hydroxide. (C) 2017 Elsevier B.V. All rights reserved.
机译:nitrate作为硝酸g在减速器系统中用作中子毒物,用于调节和控制加压重水反应堆(PHWR)的发电,并由于其具有较高的中子吸收截面,因此建议在高级重水反应堆(AHWR)中使用。使用离子交换树脂可将预期使用后的系统中添加的硝酸g(Gd3 +和NO3-)去除。在本研究中,已经尝试通过采用不同类型的树脂和不同的操作方式来优化用于产生低放射性废物的离子交换工艺,并最大程度地利用离子交换树脂。研究表明,使用由强酸阳离子(SAC)树脂和强碱阴离子(SBA)树脂组成的混合床(MB)树脂柱,然后再使用SAC树脂柱,可以有效地从系统中除去Gd3 +和NO3-,同时保持调节剂系统的pH处于理想状态,其中,不会以氢氧化物形式沉淀。 (C)2017 Elsevier B.V.保留所有权利。

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