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4篇 您的检索式:作者名="Taoyang Chen"
    题名 作者 年代 出处 被引量
1Investigation to meet China Ⅱ emission legislation for marine diesel engine with diesel methanol compound combustion technology显示文摘In order to reduce the pollutant emission and alleviate the pressure of petroleum resources shortage and greenhouse gas emission at the same time,the use of clean and renewable alternative fuel for marine engines is a promising option.In this study,a marine diesel engine,which was modified to run in diesel methanol compound combustion (DMCC) mode,was investigated.After the diesel injection parameters were calibrated,and combined with a sample after-treatment device DOC (diesel oxidation catalyst),the engine could meet the requirements of China II legislation.The overall MSP (methanol substitute percent) reached 54.1%.The value of each pollutant emission was much lower than that in China II emission legislation,and there was almost no methanol and formaldehyde emissions.When methanol was injected into the inlet manifold,the intake air temperature decreased a lot,as well as the exhaust gas temperature,which were beneficial to increase engine thermal efficiency and improve engine room environment.Compared with the engine running in pure diesel mode,when the engine ran in diesel/methanol dual fuel mode,the combustion phase was advanced,and the combustion duration became shorter.Therefore,the engine thermal efficiency increased,and fuel consumption decreased significantly.Hui Wang Anren Yao Chunde Yao Bin Wang Taoyang Wu Chao Chen 2020Journal of Environmental Sciences2020,32,10:8
2Amplification of MPZL1/PZR promotes tumor cell migration through Src-mediated phosphorylation of cortactin in hepatocellular carcinoma显示文摘我们以前在 hepatocellular 癌(HCC ) 识别了体的拷贝数字改变(CNA ) 的 1 241 个区域。在现在的学习,我们发现那新奇周期性的焦点的 amplicon, 1q24.1-24.2,在 HCC 指向 MPZL1 基因。尤其是,在 MPZL1 和 HCC 标本的 intrahepatic 转移的表示层次之间有积极关联。MPZL1 能显著地提高 HCC 房间的迁移、变形的潜力。而且,我们发现 MPZL1 由支持 HCC 房间移植的机制之一由导致支持 metastatic 蛋白质的 phosphorylation 和激活, cortactin。另外,我们发现 Src kinase 调停 cortactin 的 phosphorylation 和激活由 MPZL1 overexpression 导致了。一起拿,这些调查结果建议 MPZL1 是拷贝数字扩大的一个周期性的区域在 HCC 目标为 1q24.1-24.2 的新奇支持 metastatic 基因。Deshui Jia Ying Jing Zhenfeng Zhang Li Liu Jie Ding Fangyu Zhao Chao Ge Qifeng Wang Taoyang Chen Ming Yao Jinjun Li Jianren Gu Xianghuo He 2014Cell Research2014,24,2:2
3Dramatic reduction of liver cancer incidence in young adults: 28 year follow-up of etiological interventions in an endemic area of China显示文摘Zongtang Sun Taoyang Chen Snorri S. Thorgeirsson Qimin Zhan Jianguo Chen Ju-Hyun Park Peixin Lu Chu Chieh Hsia Nengjin Wang Libin Xu Lingling Lu Fei Huang Yuanrong Zhu Jianhua Lu Zhengping Ni Qinan Zhang Yuying Wu Guoting Liu Zhiyuan Wu Chunfeng Qu Mitche 2013Carcinogenesis2013,,8:1
4Deep eutectic solvent-based gel electrolytes for flexible electrochromic devices with excellent high/low temperature durability显示文摘With the increasing interest in the application of electrochromism to flexible and wearable electronics in recent years,flexible electrochromic devices(ECDs)that can function at extreme temperatures are required.However,the functionalities of flexible ECDs are severely hampered by the inadequate choice of electrolytes,which might ultimately result in performance fading during low-and high-temperature operations.Here,we develop a deep eutectic solvent(DES)-based gel electrolyte that can maintain its optical,electrical,and mechanical properties over a wide range of temperatures(-40 to 150℃),exhibiting an extremely high visible-range transmittance over 90%,ion conductivity of 0.63 mS cm^(-1),and fracture strain exceeding 2000%.Owing to the excellent processability of the DES-based electrolytes,provided by dynamic interactions such as the lithium and hydrogen bonding between the DES and polymer matrix,a directly written patterning in ECDs is realized for the first time.The fabricated ECDs exhibit an excellent electrochromic behavior superior to the behavior of the ECDs fabricated with traditional gel electrolytes.The introduction of such DES-based electrolytes is expected to pave the way for a widespread application of electrochromic products.Peiyan Sun Jian Chen Yaowu Li Xueqing Tang Hongzhao Sun Ge Song Xinyang Mu Taoyang Zhang Xiuling Zha Feifan Li Yanfeng Gao Shan Cong Zhigang Zhao 2023InfoMat2023,5,2:0
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