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沸石(索基尔尼察矿床)对用于固定高放废物的磷酸镁钾化合物物理和化学稳定性的影响。

The Influence of Zeolite (Sokyrnytsya Deposit) on the Physical and Chemical Resistance of a Magnesium Potassium Phosphate Compound for the Immobilization of High-Level Waste.

作者信息

Kulikova Svetlana A, Vinokurov Sergey E

机构信息

Vernadsky Institute of Geochemistry and Analytical Chemistry, Russian Academy of Sciences, 19 Kosygin st., Moscow 119991, Russia.

出版信息

Molecules. 2019 Sep 20;24(19):3421. doi: 10.3390/molecules24193421.

Abstract

The manuscript presents the results of the development of new material for high-level waste (HLW) management: the magnesium potassium phosphate (MKP) compound. The possibility of using zeolite (Sokyrnytsya deposit) to increase the mechanical, thermal, and hydrolytic resistance of this compound with immobilized HLW was studied. The main component of the used natural zeolite is a mineral of the clinoptilolite-heulandite series, and quartz, microcline, and clay minerals (illite, sepiolite, and smectite) are present as impurities. The compressive strength of the compound, containing at least 4.2 wt % zeolite, is about 25 MPa. Compound containing 28.6 wt % zeolite retains high compressive strength (at least 9.0 MPa), even after heat treatment at 450 °C. The adding of zeolite to the composition of the compound increases its hydrolytic stability, while the leaching rate of the mobile nuclides Cs and Sr decreases up to one order of values. Differential leaching rate of radionuclides from the compound containing 28.6 wt % zeolite is 2.6 × 10 for Cs, 2.9 × 10 for Sr, 1.7 × 10 for Pu, and 2.9 × 10 g/(cm∙day) for Am. Thus, the properties of the resulting compound correspond to the requirements for solidified HLW in Russia.

摘要

该手稿介绍了用于高放废物(HLW)管理的新型材料——磷酸镁钾(MKP)化合物的研发成果。研究了使用沸石(索基尔尼察矿床)来提高这种固定有高放废物的化合物的机械、热和水解抗性的可能性。所用天然沸石的主要成分是斜发沸石 - 片沸石系列的矿物,杂质包括石英、微斜长石和粘土矿物(伊利石、海泡石和蒙脱石)。含有至少4.2 wt%沸石的化合物的抗压强度约为25 MPa。含有28.6 wt%沸石的化合物即使在450°C热处理后仍保持较高的抗压强度(至少9.0 MPa)。向化合物组成中添加沸石可提高其水解稳定性,同时可移动核素铯和锶的值降低一个数量级。含28.6 wt%沸石的化合物中放射性核素的差异浸出率,铯为2.6×10,锶为2.9×10,钚为1.7×10,镅为2.9×10 g/(cm∙day)。因此,所得化合物的性能符合俄罗斯对固化高放废物的要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dc1/6804266/516f29ebd1a7/molecules-24-03421-g001.jpg

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