|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Monitoring of atmospheric radionuclides from the Fukushima nuclear accident and assessing their impact on Xi'an, China显示文摘Aerosol radionuclides (131I, 134Cs, 137Cs) and gaseous radioactive xenon (133Xe) were monitored at Xi'an, China following the accident at the Fukushima nuclear power plant in March 2011. The additional annual effective dose attributable to the Fukushima emissions was much lower than the public annual effective dose from natural radiation, according to Chinese national standards. The monitoring results were compared with data from other countries as well as with the radionuclide concentrations observed in Xi'an after the Chernobyl nuclear accident in 1986. Possible transport pathways of the released radionuclides from Fukushima to Xi'an were investigated. The occurrence of an anticyclone in the Pacific Ocean region and the extended period over which the radionuclides were released made the determination transport pathways complex, but divergence in the plume and easterly flow evidently brought the initial suite of radionuclides to Xi'an. | LIU LongBo WU Shan CAO JunJi XIE Feng SHI QuanLin ZHANG ChangYun TANG HanBing HE XiaoBin ZHANG Rong CHEN LiYun WEI GuanYi ZHANG ZhiHong ZHANG JiaMei DANG HaiJun | 2013 | Chinese Science Bulletin2013,58,13: | 4 |
| 2 | Determination of absolute gamma-ray emission probabilities for ^(88)Kr显示文摘In preparation of homogeneous Kr and Rb sources,the Kr activity was determined by the decay relationship between ^(88)Kr and ^(88)Rb using an HPGe detector.The peak efficiencies of ^(88)Kr and ^(88)Rbγ-rays were calibrated.The results show that the absolute probabilities of 196.3,834.8,1529.8,2195.8 and 2392.1 keVγ-rays of ^(88)Kr were 25.1(5)%,12.9(2)%,10.7(2)%,13.3(2)%and 34.9(5)%,respectively. | XIE Feng HE Xiaobing JIANG Wengang CHEN Zhanying SHI Quanlin CHANG Yongfu | 2011 | Nuclear Science and Techniques2011,22,5: | 1 |
| 3 | Study on Sampling Technique of Atmospheric Radionuclide显示文摘Atmospheric radionuclide monitoring usually includes two sampling techniques,namely ultra-high volume aerosol samplers to collect atmospheric particles by using filter media,and radioactive noble gas samplers to collect atmospheric noble gas based on adsorption method. Atmospheric sampling techniques have been researched in Northwest Institute of Nuclear Technology since the Comprehensive Nuclear-Test-Ban Treaty( CTBT) was signed in 1996. Several ultra-high volume aerosol samplers and some types of radioactive xenon isotopes samplers had been developed. For the aerosol sampler,the sampling flow is between 450 and 800 m3/h,with the minimum detectable concentration( MDC) of131 I less than5 μBq /m3. For the xenon sampler,the sampling capacity of xenon is more than 4 ml per day,with MDC of133 Xe less than 0. 25 mBq /m3. After the nuclear accident of Fukushima in 2011,monitoring of the atmospheric radionuclide was carried out for 3 months at Xi'an,and part of radionuclide was detected with concentrations higher than their backgrounds in the period,including131 I,134Cs,137 Cs and133Xe. | Wu Shan Liu Longbo Zhang Changyun Tang Hanbing Chen Liyun Wu Yanmin Xie Feng Li Zhiming Shi Quanlin Dang Haijun | 2014 | Meteorological and Environmental Research2014,5,6: | 1 |
| 4 | China's Space Science Program(2025-2030):Strategic Priority Program on Space Science(Ⅲ)显示文摘The Strategic Priority Program(SPP)on Space Science,which is under the leadership of the Chinese Academy of Sciences(CAS),has established China’s space science satellite series from scratch.A number of major scientific achievements have been made by the first phase of the Program(SPPⅠ),while SPPⅡhas been currently being implemented.The future development of space science needs urgent top-level planning and advanced layout to clarify the overall goal and investment portfolio from 2025 to 2030.We will briefly introduce the initiative and possible space science missions of SPPⅢ,including the preparatory work which already started in July 2021.Following the effective administrative tradition since SPPⅠ,National Space Science Center(NSSC,CAS)is responsible for the whole procedure,including soliciting,assessment,and implementation of SPPⅢ.Brief information on the 13 candidate missions will be described,including missions in the fields of astronomy&astrophysics,exoplanets,heliophysics and planetary&Earth science,respectively. | WANG Chi SONG Tingting SHI Peng LI Ming FAN Quanlin | 2022 | 空间科学学报2022,42,4: | 1 |
| 5 | Renal tubule-targeted dexrazoxane suppresses ferroptosis in acute kidney injury by inhibiting ACMSD显示文摘Acute kidney injury(AKI)is a heterogeneous clinical complication with no existing definite or particular therapies.Therefore,molecular mechanisms and approaches for treating acute kidney injury are in urgent need.Herein,we demonstrated that dexrazoxane(DXZ),a U.S.Food and Drug Administration(FDA)-approved cardioprotective drug,can both functionally and histologically attenuate cisplatin or ischemia-reperfusion injury-induced AKI in vitro and in vivo via inhibiting ferroptosis specifically.This effect is characterized by decreasing lipid peroxidation,shown by the biomarker of oxidative stress 4-hydroxynonenal(HNE)and prostaglandinendoperoxide synthase 2(Ptgs2),while reversing the downregulation of glutathione peroxidase 4(GPX4)and ferritin 1(FTH-1).Mechanistically,the results revealed that DXZ targeted at the renal tubule significantly inhibits ferroptosis by suppressingα-amino-β-carboxymuconate-ε-semialdehyde decarboxylase(ACMSD).Furthermore,the conjugation of dexrazoxane and polysialic acid(DXZ-PSA)is specifically designed and utilized to enhance the therapeutic effect of DXZ by long-term effect in the kidney,especially retention and targeting in the renal tubules.This study provides a novel therapeutic approach and mechanistic insight for AKI by inhibiting ferroptosis through a new type drug DXZPSA with the enhanced renal distribution. | Yunjing Zhang Jicheng Wu Quanlin An Huanhuan Zhu Xinwan Su Ying Wang Xishao Xie Jian Zhang Xi Yao Chunhua Weng Shi Feng Jianhua Mao Xianghui Fu Fei Han Xin Cao Ben Wang Weiqiang Lin | 2023 | Nano Research2023,16,7: | 0 |