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成果227

發布時間:2021-08-15 09:32:59

『壹』 227事件一周年,肖戰發長文道歉,是刻意洗白還是誠心悔悟

時隔一年之後,肖戰竟然在個人社交平台上公開表示:向曾經那些被傷害過的人抱歉。

確實,洋洋灑灑的一篇文章,似乎很有誠意,但心裡最真實的想法是什麼?就不得而知了。

畢竟流量這東西,風一刮就跑了,就目前的狀況來看:這么慘白的言語,真實沒什麼壓服力,大家覺得呢?

拭目以待吧,私底下還是很觀賞肖戰這個人,陽光生機,很有進取心,希望肖戰越走越遠,奉獻更多的優質作品給觀眾。

『貳』 沈冠軍的研究成果

在法國進修和工作期間,曾在鈾系年代方法學上取得進展,並首次將 227Th/230Th 法應用於鈾含量不特別高的普通次生碳酸岩樣。
通過國際合作,在國內同行中率先引入熱電離質譜鈾系法,近年來在國內同行中較早引入 26Al/10Be 埋藏測年法。
研究了法國的 Arago、Lazaret、Orgnac、義大利的 Prince cave 和希臘的 Petralona 等歐洲重要人類遺址的年代。
回國後在研究北京周口店第 1 地點和新洞、貴州黔西觀音洞、桐梓岩灰洞、水城硝灰洞、盤縣大洞、安徽巢湖銀山、廣西柳州通天岩和白蓮洞、柳江土博咁前洞、雲南宜良張口洞等我國南北方重要人類遺址的年代方面取得成果。
上述歐洲和中國重要人類遺址年代位置的新證據,對人類演化史的研究有重要意義。
近年來提出了:
1.中國中、晚更新世人類遺址的原有年代框架被整體壓縮;
2. 中國現代人類的起源很可能不晚於西亞和南非,在國內外地質年代和史前學界有一定影響,有可能在相關學科引起重要調整。
已在國內外學術刊物上發表論文 60 余篇,其中 13 篇發表於 「Journal of Human Evolution」 、「Quaternary Research」、「Quaternary Science Reviews」、「Journal of Archaeological Science」 、「L』Anthropologie」 等為 SCI 或 SSCI 收錄的國際重要期刊。

『叄』 227事件對肖戰的影響很大,你怎麼看待這個事情

肖戰227事件的全過程:

2020年2月24日,有肖戰的網友發現在某個同人網站上有涉嫌侮辱肖戰的作品,這個作品的名字叫《下墜》。因為肖戰當時的熱度特別高,有網友懷疑這個作品是惡意蹭肖戰的熱度。

至於這個事件到底要怪誰?

怪同人作品的惡意污衊?

怪粉絲的過激舉動?

怪肖戰的置之不理?

怪網友對肖戰的惡意甩鍋?不得而知...

『肆』 李肇基的主要成果如下

§ MOS類新型電力電子器件及其技術,國家科技進步三等獎,1998(2);
§ 一種具有復合屏蔽層耐壓的高速高壓功率半導體器件,國家發明四等獎,1996(2);
§ XXXX功率器件,國防科技二等獎,2000(1);
§ 靈巧功率集成電路設計技術,1996~2000。 已由電科院主持鑒定,達到國際先進水
平,驗收獲優。
§ XXXX集成電路研究,1996~2000。 已由電科院主持鑒定,達到國際先進水平,
驗收獲優。
§ 兩個項目獲2001年國防科技進步二等獎。
§ Z.J. Li,L.Y. Luo,Y.F. Guo,B. Zhang,J. Fang,J. Zeng,Breakdown Theory of a
New SOI Composite Structure, ICCCAS, pp.1744-1747, June, 2002;
§ Z. J. Li, J. Fang, J. Yang, Analytical Turn-off Current Model for Type of
Conctivity Molation Power MOSFETS with Extracted Excess Carrier,
Solid-State Electronics, Vol44, No. 1, pp1-9, 2000;
§ Z. J. Li, et al, Turn-off Transient Characteristics of Complementary
Insulated -Gate Bipolar Transistor, IEEE Trans. ED, ED-41,No.12,pp.2468-2471,
1994;
§ Z, J, Li, X. B. Chen et al. Analysis of thermal characteristics of VDMOS Power
Transistor, Solid State Electronics,Vol.34, No.3, pp.225-231,1991;
§ Z. J. Li, M. Zhang, J. M. Zhao and X. N. Li, Extracted Current Turn-off Model for
Type of the Power MOS Transistor with Conctivity Molation,
Chinese J. Electronics, Vol.7,No.3,pp.223-227,1998;
§ X. B. Chen,B. Zhang and Z. J. Li,Theory of Optimum Design of Reverse-Biased p-n
Junctions using Resisted Field plates and Variation Lateral Doping,
SSE Vol. 35,No.9,pp1365-1370,1992;
§ Z. J. Li, et al, Calculation of Electric Field Profile of High Voltage Devices With
Junction Termination Extension,Proc. ICSICT Oct,pp462-464,1989;
§ Q. Liu(劉啟宇), Z. J. Li(李肇基), B. Zhang(張波), J. Fang(方健),
The Research on Breakdown Voltage of High Voltage LDMOS Devices with Shielding
Trench, Proc. ICSICT,10, pp.155-158, 2001;
§ Li Zhaoji, Guo Yufeng , Zhang Bo, J Fang ian, Li Zehong, A New 2-D Analytical Model
of Double RESURF in SOI High Voltage Devices, Proceedings of ICSICT04, 2004,
pp. 3 28-331.(ISTP)
§ Guo Yufeng, Li Zhaoji, Zhang Bo, Fang jian, An Analytical Breakdown Model of High
Voltage SOI Device Considering the Molation of Step Buried-oxide Interface
Charges, Proceedings of ICSICT04, 2004, pp357-360.(ISTP)
§ Baoxing Duan , Bo Zhang , Zhaoji Li,A New Partial SOI Power Device Structure with
P-type Buried Layer,Solid-State Electronics,49,1965-1968。

『伍』 謝湜的成果發表

1.謝湜,〈清代杭州城市管理與社會生活——以火政為中心的研究〉。《華學》第7輯(廣州:中山大學出版社,2004年),頁319-332。
2.謝湜,〈「利及鄰封」——明清豫北的灌溉水利開發和縣際關系〉。《清史研究》2007年第2期,頁12-27。
3.謝湜,〈清代江南蘇松常三府的分縣和並縣研究〉。《歷史地理》第22輯(上海:上海人民出版社,2007年),頁111-139。
4.謝湜,〈十五至十六世紀江南糧長的動向與高鄉市鎮的興起——以太倉璜涇趙市為例〉。《歷史研究》2008年第5期,頁35-57。
5.謝湜,〈陳坤《如不及齋叢書》與晚清潮州社會〉。《中國社會歷史評論》第10卷(天津:天津古籍出版社,2009年),頁224-248。
6.謝湜,〈11世紀太湖地區農田水利格局的形成〉。《中山大學學報》(社科版)2010年第5期,頁94-106。
7.謝湜,〈宋元時期太湖以東的地域開發與政區沿革〉。《史林》2010年第5期,頁64-74。
8.謝湜,〈太湖以東的水利、水學與社會(12-14世紀)〉。《中國歷史地理論叢》2011年第1期,頁17-31。
9.謝湜,〈11世紀太湖地區的水利與水學〉。《清華大學學報》(社科版)2011年第3期,頁98-105。
10.謝湜,〈明前期江南水利格局的整體轉變及相關問題〉。《史學集刊》2011年第4期,頁44-49。
11.謝湜,〈明代太倉州的設置〉。《歷史研究》2012年第3期,頁29-43。
12.謝湜,〈十五、十六世紀江南賦役改革與荒地問題〉。《中央研究院歷史語言研究所集刊》第83本第二分,2012年6月,頁345-388。
13.謝湜,〈16世紀太湖流域的水利與政區〉。《中山大學學報》(社科版)2012年第5期,頁92-104。
14.謝湜,〈治與不治:十六世紀江南水利的機制困境及其調適〉。《學術研究》2012年第9期,頁109-119。
15.謝湜,〈十六世紀江南城鄉商貿與市鎮網路〉。《華學》第11輯(廣州:中山大學出版社,2014年),頁173-184。
16. 謝湜,〈「以屯易民」—明清南嶺衛所軍屯的演變與社會建構〉。《文史》2014年第4輯(北京:中華書局,2014年),頁75-110。
17. 謝湜,〈明末清初江南的「異鄉甲」——嘉定、常熟墾荒碑研究〉。廈門大學民間文獻研究中心編《民間歷史文獻論叢》第二輯《碑銘研究》(北京:社會科學文獻出版社,2014年),頁274-298。
18. 謝湜,〈千頃頗黎色:江南水利史之反思〉。《中國社會科學報》2015年2月4日第701期A05版。
19. 謝湜,〈14-18世紀浙南的海疆經略、海島社會與閩粵移民〉。《學術研究》2015年第1期,頁99-113。 1. 謝湜:《高鄉與低鄉:11-16世紀江南歷史地理研究》,北京:三聯書店,2015年(將出)
2.唐章雄、謝湜編著:《雞山村史》,廣州:廣東人民出版社,2015年(將出) 1.謝湜,評Carolyn Cartier,Globalizing South China,《歷史人類學學刊》第二卷第一期,2004年,頁227-230。
2. 謝湜,評Yinong XU,The Chinese City in Space and Time: The Development of Urban Form in Suzhou,《歷史人類學學刊》第三卷第一期,2005年,頁173-176。
3.謝湜,〈歷史地理學理論的新寫法——阿蘭·貝克新著《跨越地理學與歷史學的鴻溝》述評〉。《中國歷史地理論叢》2006年第4期,頁146-154。
4.謝湜、潘弘斐,〈區中之「界」與界上之「區」:對區域研究前提的一種反思——讀《區與界:清代湘粵贛界鄰地區食鹽專賣研究》〉。《中國圖書評論》2007年第7期,頁37-42
5. XIE Shi, 「Beyond the Explanation of The Overseas Trade of the Ming Dynasty(a book review on LI Qingxin』sThe Overseas Trade System of the Ming Dynasty)」,Fudan Journal of the Humanities and Social Science,Vol.1, No.3.(Sept. 2008)
6.謝湜,〈漱珠岡上望琅玕——讀冼玉清遺著《漱珠岡志》〉。收入《「中華文明視野下的西樵文化」國際學術討論會論文集》,廣西師范大學出版社,2012年8月,頁446-474。
7. 謝湜,〈水鄉尋鎮,江南織夢——《清代江南市鎮與農村關系的空間透視》述評〉。《中國歷史地理論叢》2013年第1期,頁144-154。 1.〈千古州縣事,廿載看沿革〉(上、下),載《SOHO小報》2008年8月總第92期、9月總第93期。
2.〈從「雙重編碼課」探問「共同核心課」之路——「中國環境史」通識課程教學心得〉,發表於《復旦通識教育》第四卷第二期,2010年12月,並被收入《教學研究與實踐》(教師論文集)(2010-2011年度),中山大學出版社

『陸』 陳金華的科研成果

專利:
1. Jinhua Chen, Zhongping Huang, De Wang, Jianguo Wen and Zhifeng Ren, 「Coated carbon nanotube array electrodes」, 2003, US Patent (Application Serial No. 10/305,804).
2. Wen Li, Jinhua Chen, De Wang, Jianguo Wen, Shaoxian Yang and Zhifeng Ren, 「Varied morphology carbon nanotubes and methods for their manufacture」, 2003, US Patent (pending).
主要學術論文 (*通訊聯系人):
1. Dengyou Liu, Jinhua Chen*, Wei Deng, Haihui Zhou, Yafei Kuang, Simple catalyst for the direct growth of carbon nanotubes onto substrate by chemical vapor deposition, Materials Letters, 2004 (Accepted).
2. Manli Guo, Jinhua Chen*, Jia Li, Lihua Nie, Shouzhuo Yao, Carbon nanotubes-based amperometric cholesterol biosensor fabricated through layer-by-layer technique, Electroanalysis, 2004 (Accepted).
3. Dawei Pan, Jinhua Chen*, Shouzhuo Yao, Lihua Nie, Jianjun Xia, Wenyan Tao, Amperometric glucose biosensor based on immobilization of glucose oxidase in electropolymerized o-aminophenol film at copper modified gold electrode, Sensor &Actuators B: Chemical, 2004 (Accepted).
4. Hao Tang, Jinhua Chen*, Shouzhuo Yao, Lihua Nie, Guohong Deng, Yafei Kuang, Amperometric Glucose Biosensor Based on Adsorption of Glucose Oxidase at Platinum Nanoparticle Modified Carbon Nanotube Electrode, Analytical Biochemistry, 2004 (Accepted).
5. Zhibin He, Jinhua Chen*, Dengyou Liu, Haihui Zhou, Yafei Kuang, Electrodeposition of Pt-Ru nanoparticles on carbon nanotubes and their electrocatalytic properties for methanol electro-oxidation, Diamond & Related Materials, 2004 (In Press).
6. Manli Guo, Jinhua Chen*, Dengyou Liu, Lihua Nie, Shouzhuo Yao, Electrochemical characterisitcs of the immobilization of calf thymus DNA molecules on mult-walled carbon nanotubes, Bioelectrochemistry, 2004, 62: 29-35.
7. Manli Guo, Jinhua Chen*, Lihua Nie and Shouzhuo Yao, Electrostatic assembly of calf thymus DNA on multi-walled carbon nanotube modified gold electrode and its interaction with chlorpromazine hydrochloride, Electrochimica Acta, 2004, 49(16): 2637-2643.
8. Zhibin He, Jinhua Chen*, Dengyou Liu, Hao Tan, Wei Deng, Yafei Kuang, Deposition and electrocatalytic properties of platinum nanoparticals on carbon nanotubes for methanol electrooxidation, Materials Chemistry and Physics, 2004, 85(2-3): 396-401.
9. Dawei Pan, Jinhua Chen*, Lihua Nie, Wenyan Tao, Shouzhuo Yao, Amperometric glucose biosensor based on immobilization of glucose oxidase in electropolymerized o-aminophenol film at Prussian Blue modified platinum electrode, Electrochimica Acta, 2004, 49: 795-801.
10. H. Tang, J.H. Chen*, Z.P. Huang, D.Z. Wang, Z.F. Ren, L.H. Nie,Y.F. Kuang, S.Z. Yao, High dispersion and electrocatalytic properties of platinum on well-aligned carbon nanotube arrays, Carbon, 2004, 42(1): 191-197.
11. Dawei Pan, Jinhua Chen*, Lihua Nie, Wenyan Tao, Shouzhuo Yao, An amperometric glucose biosensor based on poly(o-aminophenol) and Prussian Blue films at platinum electrode, Analytical Biochemistry, 2004, 324(1): 115-122.
12. Hao Tang, Jinhua Chen*, Lihua Nie, Dengyou Liu, Wei Deng, Yafei Kuang, Shouzhuo Yao, High dispersion and electrocatalytic properties of platinum nanoparticles on graphitic carbon nanofibers (GCNFs), Journal of Colloid and Interface Science, 2004, 269(1): 26-31.
13. H.H. Zhou, S.Q. Jiao, J.H. Chen, Y.F. Kuang, Relationship between preparation conditions, morphology and electrochemical properties of polyaniline prepared by pulse galvanostatic method (PGM), Thin Solid Films, 2004, 450(2): 233-239.
14. H.H. Zhou, S.Q. Jiao, J.H. Chen, Y.F. Kuang, Effects of conctive poly-aniline (PANI) preparation and platinum electrodeposition on electroactivity of methanol oxidation, Journal of Applied Electrochemistry, 2004, 34(3): 455-459.
15. 周海暉,焦樹強,陳金華,魏萬之,曠亞非,Pt微粒修飾納米纖維聚苯胺電極對甲醇氧化電催化,物理化學學報, 2004, 20(1): 9-14.
16. Yumei Long, Jinhua Chen*, Zhaohui Zhang, Shouzhuo Yao, Real-time investigation of the interaction between primaquine phosphate and bovine serum albumin (BSA) by piezoelectric quartz crystal impedance analysis, Journal Of Biotechnology, 2003 105(1-2): 105-116.
17. Yumei Long, Jinhua Chen*, Zhaohui Zhang and Shouzhuo Yao, Piezoelectric quartz crystal impedance and electrochemical analysis of HAS-drug interaction by nanogold-structured sensor, Journal of Colloid and Interface Science, 2003,263(1): 106-112.
18. S. L. Luo, J. H. Chen*, Y. F. Kuang, H. H. Zhou and S. Z. Yao, Real-time BAW admittance analysis study of the curing behavior of organic coating layers, Thin Solid Films, 2003, 424(2): 208-212.
19. 劉登友,何志斌,周海暉,曠亞非, 陳金華*, 定向/有序碳納米管制備的研究進展,材料導報,2003, 17(2):38-39
20. S.L. Luo, H. Tang, H.H. Zhou, J.H. Chen, Y.F. Kuang, Prepartion and characteristics of oxide films on AA339.1 cast aluminum, Surface & Coating Technology, 2003, 168: 91-97.
21. 焦樹強,彭霞輝,周海暉,陳金華,曠亞非, 脈沖電流法電解合成聚苯胺, 高等學校化學學報, 2003, 24(6):1118-1121。
22. Jinhua Chen, Zhongping Huang, De Wang, Shaoxian Yang, Wen Li, Jianguo Wen and Zhifeng Ren, Electrochemical synthesis and characterization of polypyrrole films over each of well-aligned carbon nanotube arrays, Synthetic Metals, 2002, 125(3), 289-294.
23. Jinhua Chen, Wen Li, De Wang, Shaoxian Yang, Jianguo Wen and Zhifeng Ren, Electrochemical characterization of carbon nanotubes as electrode in electrochemical double-layer capacitors, Carbon, 2002, 40(8), 1193-1197.
24. Jinhua Chen, Jianguo Wen, Zhongping Huang, De Wang, Shaoxian Yang, Wen Li and Zhifeng Ren, Electrochemical synthesis of PPy / carbon nanotube nano-scale composites using well-aligned carbon nanotube arrays, Applied Physics A, 2001, 73, 129-131.
25. J. G. Wen, Z. P. Huang, D. Z. Wang, J.H. Chen, S. X. Yang, Z. F. Ren J. H. Wang, L. E. Calvet, J. Chen, J. F. Klemic, M. A. Reed, Growth and characterization of aligned carbon nanotubes from patterned nickel nanodots and uniform thin films, Journal of Materials Research, 2001, 16(11): 3246-3253.
26. Z.F. Ren, Z.P. Huang, D.Z. Wang, W.Z. Li, J.G. Wen, S.X. Yang, Y. Tu, J.H. Chen, An insight into carbon nanotube proction, SAMPE JOURNAL, 2001, 37 (5): 64-67.
27. Zhifeng Ren, Zhongping Huang, De Wang, Wen Li, Jianguo Wen, Shaoxian Yang, Yi Tu and Jinhua Chen, Progress on proction of carbon nanotubes,32nd International SAMPE Technical Conference, 2000, 200-204.
28. Deliang He, Fan Chen, Jinhua Chen, Shouzhuo Yao and Wan Wei, Real-time bulk acoustic wave studies of the inhibition behavior of mercaptobenzothiazole on copper, Thin Solid Films, 1999, 352: 234-238.
29. Jinhua Chen, Zicheng Lin, Shu Chen, Lihua Nie and Shouzhuo Yao, An XPS and BAW sensor study of the structure and rea-time growth behavior of a complex surface film on copper in sodium chloride solutions (pH = 9), containing a low concentration of benzotriazole, Electrochimica Acta, 1998, 43:265-274.
30. Jinhua Chen, Huwei Tan, Kang Chen, Lihua Nie and Shouzhuo Yao, The study of diffusion of media in coating films by BAW admittance analysis, Journal of Applied Polymer Science, 1998, 70(11):2283-2290.
31. Huwei Tan, Weixiong Cha, Jinhua Chen and Shouzhuo Yao, A response model for surface acoustic wave enzyme sensor applied to the kinetic study of urease-catalytic reaction and urea determination, Indian Journal of Chemistry Section A-Inorganic Bio-inorganic Physical Theoretical & Analytical Chemistry, 1998, 37:288-294.
32. Jinhua Chen, Shihui Si, Lihua Nie and Shouzhuo Yao, A novel methode for rapid determination of PZC for solid metal/solution interface, Electrochimica Acta, 1997, 42:689-695.
33. Jinhua Chen, Kang Chen, Hong Zhang, Wan Wei, Lihua Nie and Shouzhuo Yao, The study of diffusion of solvents from the coating films ring the curing process by bulk acoustic wave admittance analysis, Journal of Applied Polymer Science, 1997, 66:563-571.
34. Jinhua Chen, Kaiyin Song, Yanyan Wang, Lihua Nie and Shouzhuo Yao, Rapid determination of the potential of zero charge for copper/solution interfaces by electrochemical quartz crystal balance (EQCM), Bulletin of Electrochemistry, 1997, 13(4):183-188.
35. Shouzhuo Yao, Jinhua Chen and Lihua Nie, Bulk acoustic wave technique as a real-time corrosion probe in low-conctivity solution: in-situ corrosion behavior of copper in acetic acid, Corrosion, 1997, 53(3):195-199.
36. Huwei Tan, Jinhua Chen, Ronghui Wang, Xiaoli Su, Lihua Nie and Shouzhuo Yao, Fast fourier transform admittance analysis method applied to thickness-shear-mode acoustic wave sensors, Analytical Chimica Acta, 1997, 353(1):29-35.
37. Jinhua Chen, Fan Chen, Kang Chen, Lihua Nie and Shouzhuo Yao, A new method for rapid evaluation of performance of paint films, Proceedings of International Seventh Beijing Conference and Exhibition on Instrumental Analysis, 1997, Oct., F123.
38. Fan Chen, Jinhua Chen, Shouzhuo Yao and Wan Wei, A simple method for monitoring the inhibition of copper corrosion based on BAW technique, Proceedings of International Seventh Beijing Conference and Exhibition on Instrumental Analysis, 1997, Oct., F125.
39. Jinhua Chen,Kang Chen,Huwei Tan, Lihua Nie and Shouzhuo Yao, Real-time monitoring of the curing process of organic coating by BAWadmittance analysis, The Progress of Analytical Chemistry, 1997, 1021-1022.
40. Jinhua Chen, Lihua Nie and Shouzhuo Yao, A new method for rapid determination of the potential of zero charge for gold/solution interfaces, Journal of Electroanalytical Chemistry, 1996, 414(1):53-59.
41. Shihui Si, Jinhua Chen, Fengjiao He, Lihua Nie and Shouzhuo Yao, Electrochemically modified piezoelectric crystal biosensor for detection of staphylococcus aureus, Chinese Journal of Chemistry, 1996, 14(3):222-227.

『柒』 李光興的主要研究成果

擁有15項中國發明專利。
⒈Homogeneous Catalysis and Heterogeneous Catalysis
⒉Coordination Chemistry and Organometallic Chemistry
⒊Coal/ C1 chemistry and Chemical Engineering
⒋Energy Chemistry and Chemical Technology
⒌Catalytic conversion of biomaterials to chemicals
Recent Publications:
2011
[1] Jianglin Hu,Yanlong Gu,Zhenhong Guan,Jinjin Li,Wanling Mo,Tao Li,and Guangxing Li,An efficient palladium catalyst system for oxidative carbonylation of glycerol to glycerol carbonate,ChemSusChem,2011,4,1767-1772
[2] Rongxian Bai,Shu Wang,Fuming Mei,Tao Li,Guangxing Li,Synthesis of glycerol carbonate from glycerol and dimethyl carbonate catalyzed by KF modified hydroxyapatite,Journal of Instrial and Engineering Chemistry,2011,17,777-781
[3] Youming Ni,Aiming Sun,Xiaoling Wu,Jianglin Hu,Tao Li,Guangxing Li,Aromatization of methanol over La/Zn/HZSM-5 catalysts,Chinese Journal of Chemical Engineering,2011,19,439–445.
[4] Jinjin Li,Jianglin Hu,Guangxing Li,Au(Ⅲ)/N-containing ligand complex: A novel and efficient catalyst in carbonylation of alkyl nitrite,Catalysis Communications,2011,12,1401–1404.
[5] Youming Ni,Aiming Sun,Xiaoling Wu,Guoliang Hai,Jianglin Hu,Tao Li,Guangxing Li,Facile synthesis of hierarchical nanocrystalline ZSM-5 zeolite under mild conditions and its catalytic performance,Journal of Colloid and Interface Science,2011,361,521–526.
[6] Youming Ni,Aiming Sun,Xiaoling Wu,Guoliang Hai,Jianglin Hu,Tao Li,Guangxing Li,Preparation of hierarchical mesoporous Zn/HZSM-5 catalyst and its application in MTG reaction,Journal of Natural Gas Chemistry,2011,20,237–242.
[7] Youming Ni,Aiming Sun,Xiaoling Wu,Guoliang Hai,Jianglin Hu,Tao Li,Guangxing Li,The preparation of nano-sized H[Zn,Al]ZSM-5 zeolite and its application in the aromatization of methanol,Microporous Mesoporous Materials,2011,143 (2-3),pg. 435–442
[8] Jinjin Li,Jianglin Hu,Yanlong Gu,Fuming Mei,Tao Li,Guangxing Li,Catalytic activities and properties of Au(Ⅲ)/Schiff-base complexes in methanol oxidative carbonylation,Journal of Molecular Catalysis A: Chemical,2011,340,53–59.
[9] Dajian Zhu,Fuming Mei,Lijuan Chen,Wanling Mo,Tao Li,Guangxing Li,An efficient catalyst Co(salophen) for synthesis of diethyl carbonate by oxidative carbonylation of ethanol,Fuel,2011,90,2098–2102.
2010
[1] Fuming Mei,Lijuan Chen,Guangxing Li,A study on the heterobinuclear site of Co(salen)/TiO2–SiO2 catalysts in the oxidative carbonylation of aniline,Applied Organometallic Chemistry,2010,24,86–91.
[2] Jianglin Hu,Jinjin Li,Yanlong Gu,Zhenhong Guan,Wanling Mo,Youming Ni,Tao Li,Guangxing Li,Oxidative carbonylation of glycerol to glycerol carbonate catalyzed by PdCl2(phen)/KI,Applied Catalysis A: General,2010,386,188–193.
[3] Huajun Wang,Guangxing Li,Kinetic study on the synthesis of ethyl nitrite by the reaction of C2H5OH,O2,and NO in a trickle bed reactor,Chemical Engineering Journal,2010,163,422–428.
[4] Youming Ni,Weiye Peng,Aiming Sun,Wanling Mo,Jianglin Hu,Tao Li,Guangxing Li,High selective and stable performance of catalytic aromatization of alcohols and ethers over La/Zn/HZSM-5 catalysts,Journal of Instrial and Engineering Chemistry,2010,16,503–505.
[5] WanlingMo,HuiXiong,Jianglin Hu,Youming Ni,Guangxing Li,The influence of halogen anions and N-ligands in CuXn/N-ligands on the catalytic performance in oxidative carbonylation of methanol,Applied Organometallic Chemistry,2010,24,576-580.
2009
[1] Hui Xiong,Wanling Mo,Jianglin Hu,Rongxian Bai,Guangxing Li. CuCl/phen/NMI in homogeneous carbonylation for synthesis of diethyl carbonate: highly active catalyst and corrosion inhibitor. Ind. Eng. Chem. Res.,2009,48,10845–10849.
[2] Dajian Zhu,Fuming Mei,Lijuan Chen,Tao Li,Wanling Mo,Guangxing Li. Synthesis of dimethyl carbonate by oxidative carbonylation using an efficient and recyclable catalyst co-schiff base/zeolite. Energy & Fuels,2009,23,2359–2363.
[3] Fei He,Peng Li,Yanlong Gu,Guangxing Li. Glycerol as a green and promoting medium for electrophilic activation of aldehydes: catalyst-free synthesis of di(indolyl)methanes,xanthene- 1,8(2H)-diones and 1-oxo-hexahydroxanthenes. Green Chem.,2009,11,1767–1773.
[4] Yanlong Gu,Guangxing Li. Ionic liquids-based catalysis with solids: state of the art. Adv. Synth. Catal.,2009,351,817–847.
[5] Shu Wang,Rongxian Bai,Fuming Mei,Guangxing Li. Pyroaurite as an active,reusable and environmentally benign catalyst in synthesis of diphenyl carbonate by transesterification. Catal. Commun.,2009,11,202–205.
[6] Li-Juan Chen,Fu-Ming Mei,Guang-Xing Li. Co(Ⅱ) Schiff base complexes on silica by sol–gel method as heterogeneous catalysts for oxidative carbonylation of aniline. Catal. Commun.,2009,10,981–985.
[7] F. M. Mei,E. X. Chen,G. X. Li. The effective and recoverable homogeneous catalysts for the transesterification of dimethyl carbonate with ethanol: lanthanide triflates. Kinet. Catal.,2009,50⑸,666–670.
[8] Fuming Mei,Exiang Chen,Guangxing Li. Lanthanum nitrate as an efficient and recoverable homogeneous catalyst for the transesterification of dimethyl carbonate with ethanol. React. Kinet. Catal. Lett.,2009,96⑴,27−33.
2008
[1] Guangxing Li; Lijuan Chen; Tao Li; Fuming Mei,A recoverable catalyst Co(salen) in zeolite Y for the synthesis of methyl N-phenylcarbamate by oxidative carbonylation of aniline Appl. Catal. A: Gen. 2008,346,134–139.
[2] Chen Lijuan,Li Guangxing. et al.,Oxidative carbonylation of aniline to DPU catalyzed by cobalt(Ⅱ)–Schiff base /pyridine catalytic system. Catal. Commun. 2008,9,658–663.
[3] Fuming Mei,Exiang Chen,Guangxing Li,Mg-Al-O-t-Bu hydrotalcite as an efficient catalyst for the transesterification of dimethyl carbonate with ethanol. React. Kinet. Catal. Lett,2008,93⑴,101–108.
2007
[1] Wanling Mo,Guangxing Li. et al,Preparation of CuCl/1,10- phenanthroline immobilized on poly-styrene and catalytic performance in oxidative carbonylation of methanol. Appl. Catal. A: Gen.,2007,333,172–176.
[2] Lin Li,GuangXing Li et al,Studies on the copolymerization of norbornene with CO catalyzed by a new catalytic system PdCl2/phen/M(CF3SO3)n,Kinet. Catal.,2007,48 ⑴,51–58.
[3] Guo Fan,Guangxing Li,et al,Palladium Complexes Anchored on Silica Modified by 1,2-Diamino-cyclohexane: Preparation and Catalytic Application. J. Mol. Catal. A: Chem.,2007,267,34–40.
[4] Zheng Wang,Shenglin Jiang,Guangxing Li,Mingpeng Xi and Tao Li,Synthesis and characterization of Ba1-xSrxTiO3 nanopowders by citric acid gel method,Ceram. Int.,2007,33,1105–1109.
2006
[1] Tao Li,Zheng Wang,Guangxing Li,Synthesis and characterization of Ba0.7Sr0.3TiO3 nanopowders by sol-gel method. J. Huzhong Uni. Sci. Tech.,2006,34,4–6.
[2] Guo Fan,Guang-xing Li. Oxidative Carbonylation of Phenol to Diphenyl Carbonate Catalyzed by Palladium Complexes Bridged with N,N-ligands over Functionalized Silica. Appl. Organometal. Chem.,2006,20,656–662.
[3] Wanling Mo,Guangxing Li,et al,The catalytic performance and corrosion inhibition of CuCl/Schiff base system in homogeneous oxidative carbonylation of methanol. J. Mol. Catal. A: Chem.,2006,247,227–232.
[4] Guo Fan,Guangxing Li,PdCl2/O-MCM-41 Catalyst for Oxidative Carbonylation of Phenol to Diphenyl Carbonate. Chin. J. Inorg. Chem.,2006,22⑼: 1701–1705.
2005
[1] Guo Fan,Guangxing Li,PdCl2/Organic-inorganic Hybrid Catalyst for Oxidative Carbonylation of Phenol to Diphenyl Carbonate,Chin. J. Catal.,2005,26⑻: 625–627.
[2] Lin Li,Guangxing Li. A new catalytic system for copolymerization of styrene with CO: PdCl2/ bipy/ M(CF3SO3)n,J. Mol. Catal. A: Chem.,2005,229,39–46.
[3] Lin Li,Guangxing Li,A new catalytic system for the copolymerization of dicyclopentadiene with CO:PdCl2/phen/ M(CF3SO3)n,Eur. Poly. J.,2005,41,1613–1622.
[4] WANG Shu,YU QinQin,LI,GuangXing,Study on the Catalytic Activity,Life Time and Deactivation of Hydrotalcite-like Catalysts in Transesterification,Acta Chimica Sinica,2005,63⒄: 1575–1580.
[5] YU QinQin,WANG Shu,LI Guang-Xing,Study on the transesterification of dimethyl carbonate and phenol catalyzed by Zn/Al hydrotalcite,Chem. J. Chin. Uni.,2005,26⑻: 1502–1506.
[6] ZHU Kangling,LI Meiqing,LI Guangxing,The Cocatalytic Effects of K2CO3 on the Double Carbonylation of Benzyl Chloride,Chin. J. Catal.,2005,26⑺: 563–566.
[7] Liu Haitao,Mo Wanling,Li Guangxing,Steric and electronic influences of N-donor ligands for catalytic activity in oxidative carbonylation of methanol,Chin. J. Appl. Chem.,2005,22⑼: 997–1001.
2004
[1] Mei Fuming Pei Zhi and LI Guangxing,The Transesterification of Dimethyl Carbonate with Phenol over Mg-Al- hydrotalcite Catalyst,Org. Pro. Res. Dev.,2004,8,372–375.
[2] Mei Fuming Pei Zhi and LI Guangxing,The Transesterification of Dimethyl Carbonate with Phenol over hydrotalcite Catalyst. Chin. J. Appl. Chem.,2004,21⑺: 702–707.
[3] Wanling Mo,Guangxing Li,et al,CuCl/1,10-phenanthroline/N-methyl-imidazole for the oxidative carbonylation of ethanol to methyl ethyl carbonate,Chin. J. Catal.,2004,25⑶: 243–246.

『捌』 火影忍者曉組織所有成員出場集數 ,跪求!!!

所有成員出場集數如下:(排名不分先後順序)

9.小南

10.蠍

(8)成果227擴展閱讀:

一個由10名S級逃亡忍者組成的秘密組織,曉字面的本意是拂曉,是光明,而目的卻是將黑暗帶給這個忍者世界,在他們眼裡,舊的忍者五大國,與其被慢慢的改造發展,還不如徹底將其毀滅,重新打造他們眼裡的新世界,這才是他們的拂曉,他們的希望,他們的最終目的……………………


『玖』 取得的進展和成果

1)建立了符合國際標準的數據質量篩選原則,對研究區主要塊體如塔里木、准噶爾、西伯利亞顯生宙以來的古地磁極數據進行了篩選,初步建立了研究區質量可靠的顯生宙古地磁極資料庫,並重點對研究區及鄰區白堊紀古地磁極數據進行了篩選。

2)初步建立了塔里木塊體顯生宙古地磁視極移動曲線,並編制了塔里木塊體顯生宙古緯度變化圖。 由此視極移曲線推測參考點(39°N,84°E)的古緯度和磁偏角可以看出,奧陶紀塔里木位於南半球低緯度區(16.7°S);至志留紀塔里木快速移到赤道以北的中低緯度地區(漂移量達3840 km),同時順時針旋轉了12.5°;志留紀至泥盆紀塔里木塊體基本保持穩定;塔里木塊體自泥盆紀至晚石炭世向北移動約13° (1400 km),並順時針旋轉了40°,這表明,塔里木塊體可能正向北消減到哈薩克板塊之下。 在晚石炭世和中侏羅世之間,塔里木塊體北向移動已不存在,但在二疊紀仍發生了26°的順時針旋轉,表明塔里木塊體在這一時期與哈薩克塊體的碰撞可能已開始減速。 三疊紀—中侏羅世塔里木塊體逆時針旋轉了16°。

3)西伯利亞板塊與塔里木塊體的晚石炭世—二疊紀古緯度在95%置信范圍已趨於一致,即兩塊體在二疊紀前對接縫合,形成天山造山帶。

4)華北與塔里木兩塊體記錄的磁偏角是在侏羅紀才比較相近,古地磁極也已在95%誤差范圍內(朱日祥等,1998),說明兩塊體間的對接與縫合是在侏羅紀完成的。

5)准噶爾塊體石炭紀—二疊紀時已成為一整體連接到勞亞大陸(Laurasia),自石炭紀以後幾乎未發生視極移(即南北向凈漂移,Sharps et al.,1992)。

6)對白堊紀古地磁極數據進行了初步分析,給出了白堊紀研究區主要塊體間的相對運動狀態:

准噶爾、塔里木塊體、華北塊體、華南塊體早、晚白堊世的古地磁極位置基本一致,這表明當時各塊體相對於古磁極的相對運動或位移較小。對於整個歐亞視極移曲線(APWP)來說,這是個U形圈或穩態時期(Besse et al., 1991)。 因此,可以將早、晚白堊世數據平均來獲取白堊紀的古磁極。

盡管仍存在較大的不確定性,華北和華南塊體的古磁極與歐亞各塊體的磁極是一致(Enkin et al., 1992),這表明,在古地磁數據的誤差范圍內,中國大陸各主要塊體和西伯利亞塊體在晚侏羅世時已處於其現今的相對位置。 歐亞、准噶爾、塔里木、青藏西部和印度各塊體的白堊紀古磁極近似地沿一與中亞成NNE方向相交的大圓排列,這意味著這些塊體在一級近似的情況下,沿NNE方向相互彼此靠近,具有較少的旋轉量。

由北向南,歐亞塊體與准噶爾塊體古磁極間的角距離為6.2°±4.8° (Chen et al., 1991 ,1993),這相當於650±530km的南北向縮短(即古緯度差為5.9°±4.8°),同時准噶爾塊體相對於西伯利亞(參考點位於44°N/86°E)逆時針旋轉了2.4°±5.8°。

准噶爾塊體和費爾干納塊體古磁極間的角度差異產生了可忽略的緯度差0.3°±6.9°和相對於費爾干納附近參考點(40.5°N,72.5°E)15.7°±10.0°的旋轉(Chen et al., 1993)。

准噶爾和塔里木塊體古磁極間的角距(4.3°±5.5°)在95%的置信水平上是無意義的(Chen et al., 1991, 1993)。但是,塔里木塊體與歐亞塊體古磁極間的角距較之與准噶爾的系統偏大,這相當於420±605 km(古緯度差3.8°±5.5°) 的縮短和2.11°±6.3°的旋轉(參考點位於40°N/77°E)。

塔里木塊體與藏西古磁極間的角度差為8.5°±6.4°,但古緯度差並不大(5.7°±6.2°)。 這意味著兩者間近南北向縮短量為630±680 km(即古緯度差為5.7°±6.2°),以及相對於參考點34°N/80°E具有較大的旋轉量7.1±6.4° (Chen et al., 1993)。

吐魯番盆地白堊紀平均視磁極與同一時期的准噶爾塊體、歐亞大陸間的角度差分別為8.4°±6.7°和13.7°±5.5° (Cogne et al.,1995),表明准噶爾和吐魯番之間可能發生了相對運動,存在徑向運動(6.4°±6.7°),但並無明顯的旋轉(4.0°±6.7°)。

吐魯番盆地白堊紀平均視磁極與同一時期塔里木的視磁極很相近,兩者間的角度差為4.3°±6.2°(Cogne et al.,1995),在統計上無意義。 這表明吐魯番與塔里木塊體間自晚侏羅世以來未發生明顯的相對運動,當時的塔里木已是剛性塊體,其地理范疇已包括了吐魯番盆地。

綜上所述,據古地磁資料沿80°E方向初步估算各塊體間的縮短量分別為650 km(西伯利亞和准噶爾塊體之間,主要在阿爾泰)、420 km (准噶爾和塔里木塊體之間,主要在天山)、630 km(塔里木和青藏塊體之間,主要在昆侖山和阿爾金山)。 所有這些由古地磁資料獲取的縮短量和旋轉量可能反映了自印度與歐亞大陸碰撞以來的中亞整體變形狀況。

7)選擇新生代變形幅度相對較大的塔里木塊體西緣喀什-阿圖什地區和變形幅度較相對較小的北天山北緣瑪納斯地區作為野外重點采樣區,對其新生代地層進行了初步的古地磁研究,完成了227個古地磁樣品的測試及分析。 結果表明,北天山烏魯木齊山前凹陷第三紀(古近紀、新近紀)沉積地層存在嚴重的重磁化現象,所獲得的5個采點的平均剩磁方向較離散。 這說明各采點所在推覆體之間可能存在相對運動。 研究區第三紀(古近紀、新近紀)沉積地層實測磁傾角普遍存在淺化問題,即實測磁傾角比由歐亞大陸視極移曲線預測的磁傾角要淺(如在西南天山博古孜河要淺19°,這與該區第三紀(古近紀、新近紀)的古地理重建是不協調的)。 Thomas et al.(1994)在對塔吉克盆地第三系(古近紀、新近紀)紅層進行古地磁研究時也報道了類似的現象。 造成這一現象的原因,目前說法不一。 因此,利用第三紀(古近紀、新近紀)沉積地層古磁傾角來研究該區新生代各塊體間的緯向運動(即南北向縮短量)目前可能是不現實的,但利用第三紀(古近紀、新近紀)火成岩的古磁傾角有可能獲得該區新生代各塊體間的緯向運動狀況。

此外,可利用古磁偏角的變化來確定各塊體繞垂直軸的相對旋轉量。博古孜河剖面自N2以來逆時針旋轉了18.9°,拜城逆時針旋轉了17.8°;英吉莎自80 Ma以來順時針旋轉了21.0°±10.4°,這些結果與地質研究 (Chen Jie et al., 2000; Rumelhart et al., 1999; Burtmanet al., 1993)是一致的。

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