thorium fuel cycle
釷燃料循環
thorium reactor
釷反應堆
The paper presents a design of passive heat-switch between pressure tube and calandria tube of Thorium-based Advanced Nuclear Energy System.
提出了一種用於釷基先進核能系統壓力管與排管之間的非能動熱開關設計方案。
Either of two decay products of thorium,mesothorium I,an isotope of radium,or mesothorium II,an isotope of actinium.
新釷釷的兩種放射性生成物之一,即新釷1號,它是鐳的同位素,或新釷2號,它是錒的同位素
A stepwise carbochlorination-chemical vapor transport(SC-CVT) technique is proposed for separation of thorium from mixed bastnaesite-monazite concentrate.
以氟碳鈰礦-獨居石混合稀土礦爲研究對象,採用分步選擇性碳熱氯化-化學氣相傳輸反應(SC-CVT),實現釷與其它稀土元素的分離。
But an unexpected fact was noted: certain minerals( pitchblende, chalcolite, autunite) had a greater activity than might be expected on the basis of their uranium or thorium content.
但是一個意外的事實引起了我的注意:某些礦物質(青鈾礦物質、鈾雲母或鈣鈾雲母)活性比根據其鈾或針含量所判斷的要高。
thorium fuel cycle
釷燃料循環
thorium reactor
釷反應堆
The paper presents a design of passive heat-switch between pressure tube and calandria tube of Thorium-based Advanced Nuclear Energy System.
提出了一種用於釷基先進核能系統壓力管與排管之間的非能動熱開關設計方案。
Either of two decay products of thorium,mesothorium I,an isotope of radium,or mesothorium II,an isotope of actinium.
新釷釷的兩種放射性生成物之一,即新釷1號,它是鐳的同位素,或新釷2號,它是錒的同位素
A stepwise carbochlorination-chemical vapor transport(SC-CVT) technique is proposed for separation of thorium from mixed bastnaesite-monazite concentrate.
以氟碳鈰礦-獨居石混合稀土礦爲研究對象,採用分步選擇性碳熱氯化-化學氣相傳輸反應(SC-CVT),實現釷與其它稀土元素的分離。
But an unexpected fact was noted: certain minerals( pitchblende, chalcolite, autunite) had a greater activity than might be expected on the basis of their uranium or thorium content.
但是一個意外的事實引起了我的注意:某些礦物質(青鈾礦物質、鈾雲母或鈣鈾雲母)活性比根據其鈾或針含量所判斷的要高。
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