首页> 外文会议>ASME international conference on environmental remediation and radioactive waste management >CADARACHE LOR (LIQUIDES ORGANIQUES RADIOACTIFS) TREATMENT BY A SOLIDIFICATION PROCESS USING NOCHAR POLYMERS
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CADARACHE LOR (LIQUIDES ORGANIQUES RADIOACTIFS) TREATMENT BY A SOLIDIFICATION PROCESS USING NOCHAR POLYMERS

机译:NOCHARD聚合物固溶法处理卡拉卡洛(放射性有机液体)

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In France, two options can be considered to handle the Very Low Level Waste (VLLW) and the Low Level Waste (LLW). The first one is the incineration at CENTRACO facility and the second one is the disposal at ANDRA sites. The waste acceptance in these two channels is dependent upon the adequacy between the waste characteristics (physical chemistry and radiological) and the channel specifications. If the waste characteristics and the channel specifications (presence of significant quantities of halogens, complexants agents, organic components... or/and high activity limits) are incompatible, an alternative solution have to be identify. It consists of a waste pre-treatment process. For Cadarache LOR (Liquides Organiques Radioactifs) waste streams, two radioactive scintillation cocktails have to be treated. They are composed of a mix of organic liquids and water: for the first one, 19 % of organic compounds (xylene, mesitylene, diphenyloxazole, TBP...) and 86.9 % of water, and for the second one, 23 % of organic compounds (TBP...) and 77 % of water. They contain halogens (chlorine and fluorine), complexants agents (nitrate, sulphate, oxalate and formate) and have got αβγ spectra with mass activities equal to some 100 Bq/g. Therefore, tritium is also present. As a consequence, in order for storage acceptance at the ANDRA site, it is necessary to pre-treat the waste. An adequate solution seems to be a solidification process using NOCHAR polymers. Indeed, NOCHAR polymers correspond to an important variety of products applied to the treatment of radioactive aqueous and organic liquids (solvent, oil, solvent/oil mixing ...) and sludge through a mechanical and chemical solidification process. For Cadarache LOR, N910 and N960 respectively dedicated to the organic and aqueous liquids solidification are considered. With the N910, the organic waste solidification occurs in two steps. As the organic liquid travels moves through the polymer strands, the strands swell and immobilize the liquid. Then as the polymer-organic cure, over time, the polymer continues to collapse on the organic to create a permanent chemical bond. The N960 has the ability to absorb aqueous waste up to 100 times its own weight. It creates a strong mechanical bond which permanently traps the contamination imbedded in the aqueous liquids. Therefore, these two NOCHAR polymers seem to be able to constitute a suitable solidification matrix for a final acceptance in storage on ANDRA sites. In order to validate the solidification process using NOCHAR polymers as an acceptable solution for Cadarache LOR treatment, some solidification tests realised with N910 and N960, have been carried out for different Waste/Polymer ratios. To determine the best Waste/Polymer ratio and the optimal experimental parameters, exudation tests have been made. Indeed, the process prevents leaching and it results in the absence residual free organic or aqueous liquid which is forbidden in storage by ANDRA specifications. With these results, the obtained scientific data constitute a fundamental basis of an ANDRA agreement. As a conclusion, the aim of this study is to demonstrate that the pre-treatment by solidification using NOCHAR polymers can constitute a solution for Cadarache LOR handling and more generally, for various organic and mixed organic/aqueous waste which can not be directly acceptable at CENTRACO facility or at ANDRA storage sites. So then, this study is a solid background to demonstrate the feasibility of the waste pre-treatment by solidification with NOCHAR polymer and to encourage this process development.
机译:在法国,可以考虑两种方法来处理极低水平废物(VLLW)和低水平废物(LLW)。第一个是在CENTRACO设施的焚烧,第二个是在ANDRA场地的焚烧。这两个通道对废物的接受程度取决于废物特性(物理化学和放射学)与通道规格之间的适当性。如果废物特性和通道规格(存在大量卤素,络合剂,有机成分...或/和高活性极限)不相容,则必须确定替代解决方案。它由废物预处理过程组成。对于Cadarache LOR(液体有机放射性)废物流,必须处理两种放射性闪烁混合物。它们由有机液体和水的混合物组成:对于第一种,有机化合物(二甲苯,1,3,5-三甲苯,二苯基恶唑,TBP ...)和18%的水为19%,对于第二种,则为23%的有机物。化合物(TBP ...)和77%的水。它们包含卤素(氯和氟),络合剂(硝酸盐,硫酸盐,草酸盐和甲酸盐),并具有质量活动性等于约100 Bq / g的αβγ光谱。因此,也存在tri。因此,为了在ANDRA站点接受存储,有必要对废物进行预处理。合适的解决方案似乎是使用NOCHAR聚合物的固化过程。实际上,NOCHAR聚合物对应于通过机械和化学固化过程用于处理放射性水性和有机液体(溶剂,油,溶剂/油混合液...)和污泥的重要产品。对于Cadarache LOR,考虑分别用于有机和水性液体固化的N910和N960。使用N910,有机废物的固化分两个步骤进行。当有机液体行进通过聚合物线束时,线束膨胀并固定液体。然后,随着聚合物-有机物固化,随着时间的流逝,聚合物继续在有机物上塌陷,形成永久性的化学键。 N960具有吸收高达自身重量100倍的水性废物的能力。它产生了牢固的机械结合力,永久性地捕获了嵌入水性液体中的污染物。因此,这两种NOCHAR聚合物似乎能够构成合适的固化基质,以便最终在ANDRA站点上存储。为了验证使用NOCHAR聚合物作为Cadarache LOR处理的可接受溶液的固化过程,已针对不同的废料/聚合物比率进行了使用N910和N960实现的一些固化测试。为了确定最佳的废料/聚合物比和最佳的实验参数,进行了渗出试验。实际上,该方法防止了浸出,并且导致没有残留的游离有机或水性液体,这是ANDRA规范禁止存储的。根据这些结果,获得的科学数据构成了ANDRA协议的基本基础。综上所述,本研究的目的是证明使用NOCHAR聚合物进行固化预处理可以构成Cadarache LOR处理的解决方案,并且更广泛地适用于无法直接接受的各种有机和混合有机/水废物。 CENTRACO设施或在ANDRA存放地点。因此,这项研究为证明通过用NOCHAR聚合物固化进行废物预处理的可行性并鼓励该方法的发展提供了坚实的背景。

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