Abstract:It is of great significant for China to construct new system of energy industry detecting the frontiers of energy industry frontiers.We detect the subjects,the leading supporters,the leading user facilities and cutting-edge topics of energy industrial frontiers for BES program,and disclose the top institutions and cutting-edge topics.This study is more of novelty and focus compared with previous similar studies,and it is also a try in Altmetrics and enriches Scientometrics.
栾春娟. 能源产业前沿探索:基于科学创新视角[J]. 中国科技论坛, 2018(7): 74-80.
Luan Chunjuan. Detecting Energy Industry Frontiers:A New Perspective of Scientific Innovation. , 2018(7): 74-80.
[1] 张晓鹏.新能源产业发展的困境及对策[J].科技风,2017(20):1. [2]韩笑.我国新能源产业及核心技术发展探析[J].中国战略新兴产业,2017(20):41. [3]王新,张涛.新能源产业金融支持路径与风险防范方法探析[J].经济研究导刊,2016(2):146-148. [4]陈春莹.我国新能源产业政策分析[J].经营管理者,2017(23):64-65. [5]陈岩,陈斯琴.新能源产业竞争能力模型分析[J].时代经贸,2017(27):50-51. [6]陈艳,朱雅丽.基于博弈模型的可再生能源产业补贴标准设计[J].统计与决策,2014(20):49-51. [7]魏景赋.可再生能源、产业内贸易对碳排放的影响——基于中日韩三国面板数据的研究[J].东北亚经济研究,2017(1):33-41. [8]刘微微,邢菁.可再生能源技术吸收能力对我国能源产业绩效的影响[J].管理学报,2017(1):93-99. [9]赵军.美国生物能源产业生态系统演化过程研究[J].中国科学院院刊,2014(4):485-492. [10]李伯兴.生物能源产业发展的路径分析[J].企业科技与发展,2014(8):1-3. [11]赵军.生物能源产业生态系统的构建及其特征研究[J].中国生物工程杂志,2014(7):102-107. [12]SMITH A M,LAI S Y X,BEA-TAYLOR J,et al.Collaboration and change in the research networks of five energy frontier research centers[J].Research evaluation,2016,25(4):472-485. [13]SINGH A,EPHRAIM J.Ocean energy:the new energy frontier for the eastern caribbean small island developing states[J].Energy policy,2016,99:1-3. [14]YANG Y,ZHENG J T,XU H W,et al.Comments on“concentrating solar power:a renewable energy frontier”[J].Carbon management,2015,6(3-4):159-160. [15]SYTOV A I,TIKHOMIROV V V,LOBKO A S.Crystal collimator systems for high energy frontier[J].Physical review accelerators and beams,2017,20(7):268-282. [16]陈劲,赵晓婷,梁靓.基于科学的创新[J].科学学与科学技术管理,2013(6):3-7. [17]DEDRICK J,KRAEMER K L.Who captures value from science-based innovation?The distribution of benefits from GMR in the hard disk drive industry[J].Research policy,2015,44(8):1615-1628. [18]LOVERIDGE D.The dynamics of science-based innovation[J].R&D management,1994,24(1):115-117. [19]陈劲,郑育艺,邱嘉铭,等.企业科学能力概念的讨论与界定[J].科学学研究,2007(S2):210-214. [20]FAN X,LIU W J,ZHU G L.Scientific linkage and technological innovation capabilities:international comparisons of patenting in the solar energy industry[J].Scientometrics,2017,111(1):117-138. [21]CHEN J,JIAO H,ZHAO X T.A knowledge-based theory of the firm:managing innovation in biotechnology[J].Chinese management studies,2016,10(1):41-58. [22]Science & Innovation[EB/OL].(2017-11-06).https://energy.gov/science-innovation. [23]MA F C,LI Y T.Utilising social network analysis to study the characteristics and functions of the co-occurrence network of online tags[J].Online information review,2014,38(2):232-247. [24]KAVULURU R,LU Y.Leveraging output term co-occurrence frequencies and latent associations in predicting medical subject headings[J].Data & knowledge engineering,2014,94:189-201. [25]WALTMAN L,VAN ECK N J.Some comments on the question whether co-occurrence data should be normalized[J].Journal of the American society for information science and technology,2007,58(11):1701-1703. [26]VAN ECK N J,WALTMAN L.How to normalize cooccurrence data?An analysis of some well-known similarity measures[J].Journal of the American society for information science and technology,2009,60(8):1635-1651. [27]VAN ECK N J,WALTMAN L.Appropriate similarity measures for author co-citation analysis[J].Journal of the American society for information science and technology,2008,59(10):1653-1661. [28]About Argonne[EB/OL].(2017-10-06).http://www.anl.gov/about-argonne. [29]WESTFALL C.Hybrid zone:computers and science at Argonne National Laboratory,1946—1992[J].Technology and culture,2015,56(1):295-296. [30]HALEY B,WANG Q,WANZER B,et al.Past and future work on radiobiology mega-studies:a case study at argonne national laboratory[J].Health physics,2011,100(6):613-621. [31]Advanced Photon Source[EB/OL].(2017-09-16).https://www1.aps.anl.gov/About/Overview. [32]XIAO Y M,CHOW P,SHEN G Y.High pressure X-ray emission spectroscopy at the advanced photon source[J].High pressure research,2016,36(3):315-331. [33]CILENTO F,CREPALDI A,MANZONI G,et al.Advancing non-equilibrium ARPES experiments by a 9.3 eV coherent ultrafast photon source[J].Journal of electron spectroscopy and related phenomena,2016,207:7-13. [34]IVANYUSHENKOV Y,HARKAY K,BORLAND M,et al.Development and operating experience of a 1.1-m-long superconducting undulator at the advanced photon source[J].Physical review accelerators and beams,2017,20(10):689-699. [35]GUSTAVSEN R L,DATTELBAUM D M,WATKINS E B,et al.Time resolved small angle X-ray scattering experiments performed on detonating explosives at the advanced photon source:calculation of the time and distance between the detonation front and the x-ray beam[J].Journal of applied physics.2017,121(10):115-120. [36]SCHILDKAMP W,BILDERBACK D,MOFFAT K.Optimized beamline design for macromolecular crystallography at the cornell high-energy synchrotron source(CHESS)[J].Review of scientific instruments,1989,60(7):2439-2439. [37]KAMIYA N,URUGA T,KIMURA H,et al.Fundamental design of the high-energy undulator pilot beamline for macromolecular crystallography at the spring-8[J].Review of scientific instruments,1995,66(2):1703-1705. [38]ROSENBAUM G,GINELL S L,CHEN J C H.Energy optimization of a regular macromolecular crystallography beamline for ultra-high-resolution crystallography[J].Journalof synchrotron radiation,2015,22:172-174. [39]TAO S X,ZHU J,NIU J,et al.In-situ energy calibration of SSRF macromolecular crystallography beamline using powder diffraction[J].Nuclear science and techniques,2010,21(6):321-324. [40]CIANCI M,BOURENKOV G,POMPIDOR G,et al.P13,the EMBL macromolecular crystallography beamline at the low-emittance PETRA III ring for high-and low-energy phasing with variable beam focusing[J].Journalof synchrotron radiation,2017(24):323-332. [41]About LS-CAT[EB/OL].(2017-11-16).https://ls-cat.org/about.html. [42]Science & innovation[EB/OL].(2017-10-28).https://energy.gov/science-innovation. [43]LIN G T R,LEE Y C.Scientific innovation of bioremediation technologies[J].Journal of scientific & industrial research,2015,74(4):197-201. [44]LIEBMAN M,BARAIBAR B,BUCKLEY Y,et al.Ecologically sustainable weed management:How do we get from proof-of-concept to adoption[J].Ecological applications.2016,26(5):1352-1369.