Under normal water chemistry conditions, the oxygen and hydrogen peroxide produced by water radiolysis in the coolant of boiling water reactors(BWRs) can lead to intergranular stress corrosion cracking in the constitu...Under normal water chemistry conditions, the oxygen and hydrogen peroxide produced by water radiolysis in the coolant of boiling water reactors(BWRs) can lead to intergranular stress corrosion cracking in the constituent materials of plant components. This fact has led to the wide-scale adoption of hydrogen water chemistry(HWC) in the nuclear industry to counteract these effects.This study seeks to characterize the metallic composition and the surface properties of the constituent materials of plant components in order to determine their effects on the accumulation of chalk river unidentified deposits(crud) on fuel rods in the BWR Unit-1 of the Kuosheng Nuclear Power Plant in Taiwan. Inductively coupled plasma-atomic emission spectroscopy was used to calculate the concentrations of surface crud and gamma spectrometry was used to determine the radioactivity of the corrosion products, as well as their axial distribution across the surface of the fuel rods. X-ray diffraction analysis and scanning electron microscopy/energy-dispersive X-ray spectroscopy were used to identify the crystalline phase and morphology of the crud as irregular shapes and flakes. The amount of crud deposited during the fourth fuel cycle exceeded that of the third fuel cycle due to extended burn-up time. Our analytical results indicate that the implementation of HWC had no significant effect on the characteristics of subsequent crud.展开更多
为确定施氮、磷肥对中亚热带人工林土壤不同活性组分有机碳的影响,本研究在5年生杉木(Cunninghamia lanceolata)人工林中设置氮、磷施肥试验,包括对照(CK)、施氮肥(200 kg N·hm^(-2)·a^(-1))、施磷肥(50 kg P·hm^(-2)...为确定施氮、磷肥对中亚热带人工林土壤不同活性组分有机碳的影响,本研究在5年生杉木(Cunninghamia lanceolata)人工林中设置氮、磷施肥试验,包括对照(CK)、施氮肥(200 kg N·hm^(-2)·a^(-1))、施磷肥(50 kg P·hm^(-2)·a^(-1))、施氮磷肥(200 kg N·hm^(-2)·a^(-1)+50kg P·hm^(-2)·a^(-1)) 4个处理。连续施肥5年后,采取(0~10 cm)表层土壤,测定了活性有机碳不同组分的变化。结果表明:施肥对土壤有机碳(SOC)影响不显著,施氮肥和氮磷配施使土壤微生物量碳(MBC)分别降低34.6%和45.8%,施氮肥降低了常温浸提水溶性有机碳(WSOC)含量,且施氮磷肥对WSOC有交互作用,施氮磷肥使热水浸提有机碳(HWC)含量显著提高了31.5%,施肥对易氧化有机碳(LOC)、颗粒有机碳(POC)、热水浸提碳水化合物(HWc C)的影响不显著;在施肥处理下,MBC/SOC对单施磷肥和氮肥不敏感,氮磷配施使MBC/SOC下降了48.4%,与CK相比,施氮磷肥对POC/SOC没有影响,但与氮肥处理相比,施氮磷肥使POC/SOC显著增加了24.3%;经相关性分析,HWC与硝态氮、有效磷呈显著或极显著正相关。展开更多
文摘Under normal water chemistry conditions, the oxygen and hydrogen peroxide produced by water radiolysis in the coolant of boiling water reactors(BWRs) can lead to intergranular stress corrosion cracking in the constituent materials of plant components. This fact has led to the wide-scale adoption of hydrogen water chemistry(HWC) in the nuclear industry to counteract these effects.This study seeks to characterize the metallic composition and the surface properties of the constituent materials of plant components in order to determine their effects on the accumulation of chalk river unidentified deposits(crud) on fuel rods in the BWR Unit-1 of the Kuosheng Nuclear Power Plant in Taiwan. Inductively coupled plasma-atomic emission spectroscopy was used to calculate the concentrations of surface crud and gamma spectrometry was used to determine the radioactivity of the corrosion products, as well as their axial distribution across the surface of the fuel rods. X-ray diffraction analysis and scanning electron microscopy/energy-dispersive X-ray spectroscopy were used to identify the crystalline phase and morphology of the crud as irregular shapes and flakes. The amount of crud deposited during the fourth fuel cycle exceeded that of the third fuel cycle due to extended burn-up time. Our analytical results indicate that the implementation of HWC had no significant effect on the characteristics of subsequent crud.
文摘为确定施氮、磷肥对中亚热带人工林土壤不同活性组分有机碳的影响,本研究在5年生杉木(Cunninghamia lanceolata)人工林中设置氮、磷施肥试验,包括对照(CK)、施氮肥(200 kg N·hm^(-2)·a^(-1))、施磷肥(50 kg P·hm^(-2)·a^(-1))、施氮磷肥(200 kg N·hm^(-2)·a^(-1)+50kg P·hm^(-2)·a^(-1)) 4个处理。连续施肥5年后,采取(0~10 cm)表层土壤,测定了活性有机碳不同组分的变化。结果表明:施肥对土壤有机碳(SOC)影响不显著,施氮肥和氮磷配施使土壤微生物量碳(MBC)分别降低34.6%和45.8%,施氮肥降低了常温浸提水溶性有机碳(WSOC)含量,且施氮磷肥对WSOC有交互作用,施氮磷肥使热水浸提有机碳(HWC)含量显著提高了31.5%,施肥对易氧化有机碳(LOC)、颗粒有机碳(POC)、热水浸提碳水化合物(HWc C)的影响不显著;在施肥处理下,MBC/SOC对单施磷肥和氮肥不敏感,氮磷配施使MBC/SOC下降了48.4%,与CK相比,施氮磷肥对POC/SOC没有影响,但与氮肥处理相比,施氮磷肥使POC/SOC显著增加了24.3%;经相关性分析,HWC与硝态氮、有效磷呈显著或极显著正相关。