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Transmutations of Long-Lived and Medium-Lived Fission Products Extracted from CANDU and PWR Spent Fuels in an Accelerator-Driven System

机译:在加速器驱动系统中从Candu和PWR废燃料中提取的长寿命和中期裂变产品的差异

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This study presents the time-dependent analyses of transmutations of long-lived fission products (LLFPs) and medium-lived fission products (MLFPs) occurring in thermal reactors in a conceptual helium gas-cooled accelerator-driven system (ADS). In accordance with this purpose, the CANDU-37 and PWR 15 x 15 spent fuels are separately considered. The ADS consists of LBE-spallation neutron target, subcritical fuel zone, and graphite reflector zone. While the considered ADS is fueled with the spent nuclear fuels extracted from each thermal reactor without the use of additional fuel, fission products extracted from same thermal reactor are also placed into transmutation zone in graphite reflector zone. The LLFP transmutation performance of the modified ADS is analyzed by considering three different spent fuels extracted from the thermal reactors. Spent fuels are extracted from CANDU-37 in case A, from PWR-15 x 15 in case B, and from CANDU-37 fueled with mixture of PWR 15 x 15 spent fuel and 46% ThO2 in case C. The LBE target is bombard with protons of 1000 MeV. The proton beam power is assumed as 20 MW, which corresponds to 1.24828 center dot 10(17) protons per second. MCNPX 2.7 and CINDER 90 computer codes are used for the time-dependent burn calculations. The ADS is operated under subcritical mode until the value of k(eff) increases to 0.984, and the maximum operation times are obtained as 3400, 3270, and 5040 days according to the spent fuel cases of A, B, and C, respectively. The calculations bring out that in the modified ADS, LLFPs and MLFPs, which are extracted from thermal reactors, can be transformed to stable isotopes in significant amounts along with energy production.
机译:该研究介绍了在概念氦气冷却的加速器驱动系统(ADS)中热反应器中发生的长寿裂变产品(LLFP)和中生裂变产物(MLFP)的时间依赖性分析。根据此目的,单独考虑CANDU-37和PWR 15 x 15废燃料。广告包括LBE型换铝中子靶,亚临界燃料区和石墨反射器区。虽然考虑的广告具有从每个热反应器中提取的废核燃料,但不使用额外的燃料,但从相同的热反应器中提取的裂变产物也被置于石墨反射器区中的嬗变区。通过考虑从热反应器提取的三种不同的花燃料来分析改进的广告的LLFP嬗变性能。在BWR-15 x 15的情况下,从CANTU-37中从CANDU-37中提取废燃料,并从CANDU-37燃料,用PWR 15×15的混合物,在C.靶向C. LBE目标是轰击时的46%THO2具有1000 mev的质子。质子束功率被假定为20mW,其对应于每秒1.24828中心点10(17)质子。 MCNPX 2.7和Cinder 90计算机代码用于时间依赖性烧伤计算。 ADS在亚临界模式下运行,直到K(EFF)的值增加到0.984,并且可以根据A,B和C的花燃料情况获得最大操作时间为3400,3270和5040天。计算出来,在改进的广告中,在热反应器中提取的改性ADS,LLFP和MLFPS可以转化为稳定的同位素以及能量产生。

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