|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | H7N9 virulent mutants detected in chickens in China pose an increased threat to humans显示文摘 | Jianzhong Shi Guohua Deng Huihui Kong Chunyang Gu Shujie Ma Xin Yin Xianying Zeng Pengfei Cui Yan Chen Huanliang Yang Xiaopeng Wan Xiurong Wang Liling Liu Pucheng Chen Yongping Jiang Jinxiong Liu Yuntao Guan Yasuo Suzuki Mei Li Zhiyuan Qu Lizheng Guan Jinkai Zang Wenli Gu Shuyu Han Yangming Song Yuzhen Hu Zeng Wang Linlin Gu Wenyu Yang Libin Liang Hongmei Bao Guobin Tian Yanbing Li Chuanling Qiao Li Jiang Chengjun Li Zhigao Bu Hualan Chen | 2017 | Cell Research2017,27,12: | 70 |
| 2 | 新型水禽用禽流感载体疫苗可有效阻断H5亚型禽流感病毒的复制和扩散显示文摘水禽是禽流感病毒的储存宿主,是环境中禽流感病毒的主要来源。在我国水禽种类中,鸭子占有比例最大。我国水禽年养殖量达30-40亿只,占世界养殖总量的70%以上,养殖方式千差万别,地域分布广泛。一方面,鸭子感染多数禽流感病毒后不发病、不死亡,病毒在肠道内增殖,而后向环境释放大量病毒粒子,这些隐性携带病毒的鸭子被称为传播禽流感病毒的“特洛伊木马”,是家禽、哺乳动物乃至人类最主要的禽流感传染源。另一方面,某些流感病毒对鸭子自身呈高致病性,感染后引起发病和死亡,造成较大的经济损失。 | Pucheng Chen Leilei Ding Yongping Jiang | 2019 | 中国预防兽医学报2019,41,11: | 5 |
| 3 | Four-channel CWDM device on a thin-film lithium niobate platform using an angled multimode interferometer structure显示文摘A compact and high-performance coarse wavelength-division multiplexing(CWDM) device is introduced with a footprint of 2.1 mm × 0.02 mm using an angled multimode interferometer structure based on a thin-film lithium niobate(TFLN) platform.The demonstrated device built on a 400 nm thick x-cut TFLN shows ultra-low insertion losses of <0.72 dB.Measured 3 dB bandwidths are 12.1 nm for all channels,and cross talks from adjacent channels are better than 18 dB.Its peak wavelength positions comply with the CWDM standard with a channel spacing of 20 nm.The filter bandwidth of the proposed CWDM device can be tuned by adjusting the structural parameters.This demonstrated CWDM device will promote future realization of multi-channel and multi-wavelength transmitter chips on TFLN. | GENGXIN CHEN ZILIANG RUAN ZONG WANG PUCHENG HUANG CHANGJIAN GUO DAOXIN DAI KAIXUAN CHEN LIU LIU | 2022 | Photonics Research2022,10,1: | 2 |
| 4 | H7N9 Influenza Viruses Are Transmissible in Ferrets by Respiratory Droplet显示文摘 | Qianyi Zhang Jianzhong Shi Guohua Deng Jing Guo Xianying Zeng Xijun He Huihui Kong Chunyang Gu Xuyong Li Jinxiong Liu Guojun Wang Yan Chen Liling Liu Libin Liang Yuanyuan Li Jun Fan Jinliang Wang Wenhui Li Lizheng Guan Qimeng Li Huanliang Yang Pucheng Che | 2013 | Science2013,,6144: | 1 |
| 5 | H7N9 Influenza Viruses Are Transmissible in Ferrets by Respiratory Droplet显示文摘 | Qianyi Zhang Jianzhong Shi Guohua Deng Jing Guo Xianying Zeng Xijun He Huihui Kong Chunyang Gu Xuyong Li Jinxiong Liu Guojun Wang Yan Chen Liling Liu Libin Liang Yuanyuan Li Jun Fan Jinliang Wang Wenhui Li Lizheng Guan Qimeng Li Huanliang Yang Pucheng Che | 2013 | Science2013,,6144: | 1 |
| 6 | Recombinant duck enteritis virus works as a single-dose vaccine in broilers providing rapid protection against H5N1 influenza infection显示文摘 | Jinxiong Liu Pucheng Chen Yongping Jiang Guohua Deng Jianzhong Shi Li Wu Yuan Lin Zhigao Bu Hualan Chen | 2013 | Antiviral Research2013,,: | 1 |
| 7 | 2017年中国出现的H7N9高致病性病毒的快速进化显示文摘文章简介为了防控H7N9病毒,中国2017年9月开始对鸡进行了H5/H7二价禽流感灭活疫苗。为了解H7N9病毒在中国家禽中的分布情况,研究团队进行了系统的禽流感病毒监测。2017年2月至2017年5月之间在379个活禽市场和665个家禽养殖场共采集30201份样品(其中活禽市场采集12504份. | Jianzhong Shi Guohua Deng Shujie Ma Xianying Zeng Xin Yin Mei Li Bo Zhang Pengfei Cui Yan Chen Huanliang Yang Xiaopeng Wan Liling Liu Pucheng Chen Yongping Jiang Yuntao Guan Jinxiong Liu Wenli Gu Shuyu Han Yangming Song Libin Liang Zhiyuan Qu Yujie Hou Xiurong Wang Hongmei Bao Guobin Tian Yanbing Li Li Jiang Chengjun Li 陈化兰 | 2019 | 科学新闻2019,0,2: | 1 |
| 8 | Dichlorination in a circulating fluidized-bed incinerator for municipal solid waste incineration system显示文摘Cl is one of the main pollutants emitted from domestic waste incineration systems. In this study, we focused on the process of Ca dechlorination in the furnace of a circulating fluidized-bed waste incineration system. We analyzed the stability of CaCl_(2) and Ca in the furnace, the dechlorination process, and distribution of Cl in the incineration system. The results show that the optimal Ca/Cl molar ratio for Ca dechlorination in the circulating fluidized-bed waste incinerator is 2:1;moreover, the dechlorination product CaCl_(2) was found to decompose at high temperatures (> 850℃). At temperatures > 700℃, we measured CaCl_(2) decomposition rates up to 80%. Ca was added in the furnace, mainly to provide a dechlorination Ca source for the decomposition of limestone into tail flue gas. The amount of Ca^(2+) in the flue decreased gradually, parallelly to the temperature of the flue gas. Stable CaCl_(2) was formed after HCl was captured, and relatively small solid particles appeared in the ash collecting bag. | Yaming Cai Zengyi Ma Jianhua Yan Yike Zhang Zhe Chen Ruofeng Gao Pucheng Zhong | 2019 | Waste Disposal and Sustainable Energy2019,1,3: | 0 |
| 9 | Key technologies for polymer electrolyte membrane fuel cell systems fueled impure hydrogen显示文摘Hydrogen energy and polymer electrolyte membrane(PEM)fuel cells become concerned issues in recent years.Nevertheless,the construction of hydrogen refueling infrastructure and hydrogen storage and transportation constrains the commercial development of fuel cells.In this review,sources,production,storage,transportation,and purification methods of hydrogen are extensively reviewed and compared.The advantages of utilizing industrial by-product hydrogen and steam reforming gas in PEM fuel cell systems are analyzed.Using industrial wasted hydrogen can significantly reduce the cost of hydrogen.Also,it is indicated that the onboard hydrogen generation by steam methanol reforming can solve the difficulties of efficient storage and transportation of gaseous hydrogen,which means that methanol has great potential to be a convenient carrier of hydrogen.The effects of impurities contained in the reformate gas are generally introduced.After the methanol steam reforming and pretreatment purification processes,the reformate gas can be fed to PEM fuel cells.Thus,a fuel cell system integrated with onboard hydrogen production and impure hydrogen treatment subsystems is introduced,and key technologies therein for pretreatment purification and in-situ poisoning mitigation methods are reviewed.Finally,suggestions are proposed for further studies. | Pucheng Pei Mingkai Wang Dongfang Chen Peng Ren Lu Zhang | 2020 | Progress in Natural Science:Materials International2020,30,6: | 0 |
| 10 | Cobalt-based oxygen electrocatalysts for zinc-air batteries:Recent progress,challenges,and perspectives显示文摘With the rapid economic growth and the deepening awareness of sustainable development,the demand for green and efficient energy storage equipment increases.As a promising energy storage and conversion device,zinc-air batteries(ZABs)have the advantages of high theoretical specific energy density,low cost,and environmental friendliness.Nevertheless,the efficiency of ZABs is closely related to the electrocatalytic capacity of the air electrode due to its sluggish kinetics for oxygen reduction and evolution reaction(ORR/OER).Therefore,it is necessary to develop efficient catalysts to promote the reaction rate.Recently,cobalt-based materials have become a research hotspot for oxygen electrocatalysts owing to their rich natural content,high catalytic activity,and stability.In this review,the mechanisms of the OER/ORR reaction process,the catalyst's performance characterization,and the various combination methods with the current collector are systematically introduced and analyzed.Further,a broad overview of cobalt-based materials used as electrocatalysts for ZABs is presented,including cobalt-based perovskite,cobalt-nitrogen-carbon(Co-N-C)materials,cobalt oxides,cobalt-containing composite oxides,and cobalt sulfides/phosphides.Finally,various strategies for developing efficient electrocatalysts for ZABs are summarized,highlighting the challenges and future perspectives in designing novel catalysts. | Dongfang Chen Lyuming Pan Pucheng Pei Xin Song Peng Ren Lu Zhang | 2022 | Nano Research2022,15,6: | 0 |
| 11 | Advances in electrolyte safety and stability of ion batteries under extreme conditions显示文摘Electric vehicles have been promoted worldwide due to fast-charge technology of ion batteries.However,ion batteries’capacity and cycle life severely decay under extreme conditions,which is mostly related to electrolyte conductivity drop and side reactions.This review highlights the safety and stability of ion batteries in terms of thermal stability,non-flammability,low-temperature,and so on,outlining the disadvantages of organic liquid electrolyte,and summarizing effective solutions of polymer electrolytes,solid-state electrolytes,ionic liquid electrolytes,and aqueous electrolytes for the batteries.Moreover,the outlook on the electrolytes is put forward,which is available for research and development of the next generation batteries. | Zhuo Chen Keliang Wang Pucheng Pei Yayu Zuo Manhui Wei Hengwei Wang Pengfei Zhang Nuo Shang | 2023 | Nano Research2023,16,2: | 0 |