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Glass Formulation Development in Support of Melter Testing to Demonstrate Enhanced High Level Waste Throughput

机译:玻璃配方开发支持融化融化测试,展示增强的高水平废物产量

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The U.S. Department of Energy (DOE) is currently processing high-level waste (HLW) through a Joule-heated melter (JHM) at the Savannah River Site (SRS) and plans to vitrify HLW and Low activity waste (LAW) at the Hanford Site. Over the past few years at the Defense Waste Processing Facility (DWPF), work has concentrated on increasing waste throughput. These efforts are continuing with an emphasis on high alumina concentration feeds. High alumina feeds have presented specific challenges for the JHM technology regarding the ability to increase waste loading yet still maintain product quality and adequate throughput. Alternatively, vitrification technology innovations are also being investigated as a means to increase waste throughput. The Cold Crucible Induction Melter (CCIM) technology affords the opportunity for higher vitrification process temperatures as compared to the current reference JHM technology. Higher process temperatures may allow for higher waste loading and higher melt rate. Glass formulation testing to support melter demonstration testing was recently completed. This testing was specifically aimed at high alumina concentration wastes. Glass composition/property models developed for DWPF were utilized as a guide for formulation development. Both CCIM and JHM testing will be conducted so glass formulation testing was targeted at both technologies with a goal to significantly increase waste loading and maintain melt rate without compromising product quality.
机译:美国能源部(DOE)目前正在通过犹太人河网站(SRS)的焦耳加热的熔化(JHM)加工高级废物(HLW),并计划在Hanford玻璃和低活动废物(法律)地点。在过去几年的国防废物处理设施(DWPF)中,工作已经集中在越来越浪费的吞吐量。这些努力继续强调高氧化铝浓度饲料。高氧化铝饲料对JHM技术提出了特定的挑战,了解增加废物负载的能力仍然保持产品质量和充分的产量。或者,还正在调查玻璃化技术创新作为增加废物吞吐量的手段。与当前参考JHM技术相比,冷坩埚感应熔毒剂(CCIM)技术为更高的玻璃化过程温度提供了机会。更高的过程温度可能允许更高的废物负荷和更高的熔体速率。最近完成了支持熔化演示测试的玻璃配方测试。该测试专门针对高氧化铝浓度废物。为DWPF开发的玻璃组成/性能模型被用作配方开发的指南。 CCIM和JHM测试都将进行,所以玻璃配方测试在两种技术中都有目标,以显着增加废物负荷并保持熔体速率而不会影响产品质量。

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