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| 1 | The Beishan underground research laboratory for geological disposal of high-level radioactive waste in China:Planning, site selection,site characterization and in situ tests显示文摘With the rapid development of nuclear power in China, the disposal of high-level radioactive waste(HLW) has become an important issue for nuclear safety and environmental protection. Deep geological disposal is internationally accepted as a feasible and safe way to dispose of HLW, and underground research laboratories(URLs) play an important and multi-faceted role in the development of HLW repositories. This paper introduces the overall planning and the latest progress for China's URL. On the basis of the proposed strategy to build an area-specific URL in combination with a comprehensive evaluation of the site selection results obtained during the last 33 years, the Xinchang site in the Beishan area,located in Gansu Province of northwestern China, has been selected as the final site for China's first URL built in granite. In the process of characterizing the Xinchang URL site, a series of investigations,including borehole drilling,geological mapping, geophysical surveying,hydraulic testing and in situ stress measurements, has been conducted. The investigation results indicate that the geological,hydrogeological, engineering geological and geochemical conditions of the Xinchang site are very suitable for URL construction. Meanwhile, to validate and develop construction technologies for the Beishan URL, the Beishan exploration tunnel(BET), which is a 50-m-deep facility in the Jiujing sub-area, has been constructed and several in situ tests, such as drill-and-blast tests, characterization of the excavation damaged zone(EDZ), and long-term deformation monitoring of surrounding rocks, have been performed in the BET. The methodologies and technologies established in the BET will serve for URL construction.According to the achievements of the characterization of the URL site, a preliminary design of the URL with a maximum depth of 560 m is proposed and necessary in situ tests in the URL are planned. | Ju Wang Liang Chen Rui Su Xingguang Zhao | 2018 | Journal of Rock Mechanics and Geotechnical Engineering2018,10,3: | 62 |
| 2 | Quantification of SARS-CoV-2 antigen levels in the blood of patients with COVID-19显示文摘Dear Editor,Severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)has caused the global outbreak of coronavirus disease 2019(COVID-19).By far,more than 35 million people had been infected by SARS-CoV-2,resulting in more than 1 million deaths globally.It is well recognized that SARSCoV-2 preferentially attacks pulmonary epithelial cells,leading to acute respiratory distress syndrome(ARDS). | Bin Su Jiming Yin Xingguang Lin Tiantian Zhang Xiao Yao Ying Xu Yao Lu Wenzhi Wang Kun Liu Jie Zhang Liangzhi Xie Ronghua Jin Yingmei Feng | 2021 | Science China(Life Sciences)2021,64,7: | 2 |
| 3 | Detection of ascorbic acid and folic acid based on water-soluble CulnS2 quantum dots显示文摘 | LIU Siyu HU Junjie SU Xingguang | 2012 | Analyst2012,137,19: | 1 |
| 4 | Adsorption and removal of tetracycline antibiotics from aqueous solution by graphene oxide显示文摘 | Yuan Gao Yan Li Liang Zhang Hui Huang Junjie Hu Syed Mazhar Shah Xingguang Su | 2011 | Journal of Colloid And Interface Science2011,,1: | 1 |
| 5 | Aqueous synthesis of Cu-doped ZnSe quantum dots显示文摘 | Gao Xue Wang Chao Niu Lu Su Xingguang | 2011 | Journal of Luminescence2011,,7: | 1 |
| 6 | Highly Sensitive Gaseous Formaldehyde Sensor with CdTc Quantum Dots Multilayer Films 显示文摘 | MA Qiang CUI Honglci SU Xingguang | 2009 | Biosensors and Bioclcctronics2009,25,4: | 1 |
| 7 | Photovoltaic Properties of Titanium Dioxide Nanowires with Different Crystal Structures显示文摘 | WANG Xinyan WANG Huan YANG Xiaotian SU Xingguang | 2016 | Chemical Research in Chinese Universities2016,32,4: | 1 |
| 8 | Novel Formaldehyde Sensor based on Hydrogen Peroxide/Melamine Modulated Photoluminescence of Nitrogen-doped Graphene Quantum Dots显示文摘A modulated photoluminescence nanosensor was developed for the quantitative detection of formaldehyde with nitrogen-doped graphene quantum dots and melamine. The sensing system was based on the different activated effects of melamine and hydrogen peroxide on the photoluminescence intensity of nitrogendoped graphene quantum dots. Under the optimal conditions, the modulated photoluminescence sensing system can be used to detect formaldehyde with a good linear relationship between the nitrogen-doped graphene quantum dots photoluminescence difference and the concentration of formaldehyde. The novel sensing system provided new directions for the detection of formaldehyde with high selectivity and quick response. | 张玉 SU Xingguang 马强 | 2017 | Journal of Wuhan University of Technology(Materials Science)2017,32,6: | 0 |