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| 1 | Carbon carry capacity and carbon sequestration potential in China based on an integrated analysis of mature forest biomass显示文摘Forests play an important role in acting as a carbon sink of terrestrial ecosystem.Although global forests have huge carbon carrying capacity(CCC)and carbon sequestration potential(CSP),there were few quantification reports on Chinese forests.We collected and compiled a forest biomass dataset of China,a total of 5841 sites,based on forest inventory and literature search results.From the dataset we extracted 338 sites with forests aged over 80 years,a threshold for defining mature forest,to establish the mature forest biomass dataset.After analyzing the spatial pattern of the carbon density of Chinese mature forests and its controlling factors,we used carbon density of mature forests as the reference level,and conservatively estimated the CCC of the forests in China by interpolation methods of Regression Kriging,Inverse Distance Weighted and Partial Thin Plate Smoothing Spline.Combining with the sixth National Forest Resources Inventory,we also estimated the forest CSP.The results revealed positive relationships between carbon density of mature forests and temperature,precipitation and stand age,and the horizontal and elevational patterns of carbon density of mature forests can be well predicted by temperature and precipitation.The total CCC and CSP of the existing forests are 19.87 and 13.86 Pg C,respectively.Subtropical forests would have more CCC and CSP than other biomes.Consequently,relying on forests to uptake carbon by decreasing disturbance on forests would be an alternative approach for mitigating greenhouse gas concentration effects besides afforestation and reforestation. | LIU Ying Chun YU Gui Rui WANG Qiu Feng ZHANG Yang Jian XU Ze Hong | 2014 | Science China(Life Sciences)2014,57,12: | 15 |
| 2 | Oxygen Atom Exchange Mechanism in Reaction of OH Radical with AsO显示文摘Oxygen atom exchange reaction mechanism in the reaction of OH radicals with AsO was investigated by means of the density functional theory (DFT) with 6 311++G( 3df,3pd ) and 6 311++G( d,p ) basis sets. The calculated results suggest that the reaction between OH and AsO should make the oxygen atoms exchange rapidly because the barrier to isomerization is significantly less than the HO-AsO bond dissociation energy. | CHI Yu-juan 1, YU Hai tao 1,2** , FU Hong gang 1,2 HUANG Xu ri 2, LI Ze sheng 2 and SUN Chia chung 21. College of Chemistry and Chemical Engineering, Heilongjiang University, Harbin 150080, P. R. China 2. State Key Laboratory of T | 2002 | Chemical Research in Chinese Universities2002,18,3: | 3 |
| 3 | Morphological Influence of Molybdenum Disulfide on the Tribological Properties of Rapeseed Oil显示文摘 | Ze Yin Xu Kun Hong Hu Cheng Liang Han Xian Guo Hu Yu Fu Xu | 2013 | Tribology Letters2013,,3: | 1 |
| 4 | A Vero-cell-adapted vaccine donor strain of influenza A virus generated by serial passages显示文摘 | Weibin Hu Hong Zhang Qinglin Han Li Li Yixin Chen Ningshao Xia Ze Chen Yuelong Shu Ke Xu Bing Sun | 2014 | Vaccine2014,,: | 1 |
| 5 | A New Dammarane Glycoside, Ginsenoside Ⅲ from the Flower-buds of Panax ginseng C.A. Meyer显示文摘From the dried flower-buds of Panax ginseng C.A. Meyer, a new ndnor dammaranetype triterpene saponin named ginsenoside III was iso1ated. On the basis of spectral and chemical evidence, the structure of the new saponin was elucidated as 3 -O- [β-D -glucopyranosyl (1→2 ) - βD- glucopyranosyl] - 20-O-β-D-glucopyranosyl 3 β, 12β- 20(S) -trihydroxydammar- 25 - en- 24-one. | Feng QIU Zhong Ze MA Yu Ping PEI Sui Xu XU Xin Sheng YAO Ying Jie CHEN Zhen Tao CHE(Shenyang Pharmaceutical University, Shenyang, 110015)(The Hongkong University of Science & Technology, Hong Kong) | 1998 | Chinese Chemical Letters1998,9,7: | 1 |
| 6 | Prenatal Exposure to Perfluorooctane Sulfonate impairs Placental Angiogenesis and Induces Aberrant Expression of LncRNA Xist显示文摘Perfluorooctane sulfonate (PFOS) is a class of stable organic compounds with wide industrial,commercial, and consumer applications, such as in textiles, paper, pesticides, and shampoos[1]. It is readily absorbed, but poorly eliminated, with the elimination half-life of approximately 5 years[2].Hence, there have been concerns regarding its potential damage to human health. | CHEN Gang XU Lin Lin HUANG Ye Fei WANG Qi WANG Bing Hua YU Ze Hua SHI Qiao Mei Hong Jia Wei LI Jing XU Li Chun | 2018 | Biomedical and Environmental Sciences2018,31,11: | 1 |
| 7 | Trends of 7 Organic Solvent-induced Occupational Diseases in Guangdong,from 2006 to 2015显示文摘Occupational exposure to organic solvents and the resulting health damage caused by organic solvent-induced occupational diseases(OSODs)have raised concern[1],as they have accounted for more than 70%of occupational-poisoning cases in Guangdong province[2,3].However,there have been limited longitudinal studies examining OSOD patterns and temporal trends with a large sample in Guangdong. | LI Xu Dong TU Hong Wei CHEN Jia Bing YU Hong Wei ZHANG Run Ze CHEN Pei Liang HU Shi Jie | 2020 | Biomedical and Environmental Sciences2020,33,11: | 1 |
| 8 | Synthesis of a New Polysiloxane Containing Octaphenylcyclodisilazane显示文摘A new polysiloxane containing octaphenylcyclodisilazane was synthesized from the anionic polymerization of octamethylcyclotetrasiloxane (D4) and 'seed solution' as initiator. which was prepared by hexamethylcyclotrisiloxane (D3) and the lithium salt of N,N’-bis (hydroxydi-phenyl)tetraphenylcyclodisilazane. | Ning ZHOU Zhi Jie ZHANG Cai Hong XU Ze Min XIE(Center for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences.Beijing 100080) | 2000 | Chinese Chemical Letters2000,11,6: | 0 |
| 9 | Advances in nuclear detection and readout techniques显示文摘“A Craftsman Must Sharpen His Tools to Do His Job,”said Confucius.Nuclear detection and readout techniques are the foundation of particle physics,nuclear physics,and particle astrophysics to reveal the nature of the universe.Also,they are being increasingly used in other disciplines like nuclear power generation,life sciences,environmental sciences,medical sciences,etc.The article reviews the short history,recent development,and trend of nuclear detection and readout techniques,covering Semiconductor Detector,Gaseous Detector,Scintillation Detector,Cherenkov Detector,Transition Radiation Detector,and Readout Techniques.By explaining the principle and using examples,we hope to help the interested reader underst and this research field and bring exciting information to the community. | Rui He Xiao‑Yang Niu Yi Wang Hong‑Wei Liang Hong‑Bang Liu Ye Tian Hong‑Lin Zhang Chao‑Jie Zou Zhi‑Yi Liu Yun‑Long Zhang Hai‑Bo Yang Ju Huang Hong‑Kai Wang Wei‑Jia Han Bei Cao Gang Chen Cong Dai Li‑Min Duan Rui‑Rui Fan Fang‑Fa Fu Jian‑Hua Guo Dong Han Wei Jiang Xian‑Qin Li Xin Li Zhuo‑Dai Li Yu‑Tie Liang Shun Liao De‑Xu Lin Cheng‑Ming Liu Guo‑Rui Liu Jun‑Tao Liu Ze Long Meng‑Chen Niu Hao Qiu Hu Ran Xiang‑Ming Sun Bo‑Tan Wang Jia Wang Jin‑Xiang Wang Qi‑Lin Wang Yong‑Sheng Wang Xiao‑Chuan Xia Hao‑Qing Xie He‑Run Yang Hong Yin Hong Yuan Chun‑Hui Zhang Rui‑Guang Zhao Ran Zheng Cheng‑Xin Zhao | 2023 | Nuclear Science and Techniques2023,34,12: | 0 |
| 10 | A Facile Synthesis Route to 1,3-dichlorodisilazanes显示文摘A new 1,3-dichlorodisilazane, 1,3-dichloro- 1,3-dimethyl- l,3-divinyldisilazane (DMDV), was prepared from the reaction of hexamethyldisilazane (MM^N) and methylviyldichlorosilane. And use the same method, l,3-dichloro- l, l, 3, 3 -tetraphenyldisilazane (DCTPS ) was al so obtained in a high yield. | Cai Hong XU Ning ZHOU Ze Min XIE Center for Molecular Science, Institute of Chemistry, the Chinese Academy of Sciences, Beijing 100080 | 2000 | Chinese Chemical Letters2000,11,9: | 0 |
| 11 | Synthesis of Some New Derivatives of 1,3-Dichloro-1,1,3,3-tetraphenyldisilazane显示文摘The reactive properties of 1,3-dichloro-1,1,3,3-tetraphenyldisilazane (DCTPS) with water, methanol, phenylamine and lithium salt of hexamethylcyclotrisilazane (D3NLi) were investigated, and four new derivatives were obtained. | Cai Hong XU, Zhi Jie ZHANG, Yong Min LI, Zhi Min ZHENG, Ze Min XIE* Center for Molecular Science, Institute of Chemistry, The Chinese Academy of Sciences, Beijing 100080 | 2001 | Chinese Chemical Letters2001,12,1: | 0 |