Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
In order to improve the efficiency of marine economic production and realize the sustainable and healthy development of marine economy, the spatial-temporal and dynamic evolution trend of marine economic green production efficiency in coastal areas of China is analysed by means of SFA basic model, coefficient of variation, coefficient of Gini and entropy method. It mainly includes three aspects: the result analysis of marine economy green production efficiency; the dynamic trend analysis of marine economy green production efficiency; the analysis of factors affecting marine economy green production efficiency. The results show that the factors affecting the total factor productivity of the marine economy are: development level of marine economy, marine material capital, level of opening to the outside world, marine industrial structure, marine human capital and marine environmental governance.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
141--146
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
- School of Ecnomics & Management Northwest University Shaanxi, 71027 China
- Fujian Jiangxia University Fujian, 350108 China
Bibliografia
- 1. Jiang, Y.: Total Factor Productivity. Pollution And ‘Green’ Economic Growth in China, 2013, 27(4), Pp. 504-515.
- 2. Lenton, T.M., Pichler, P.P., Weisz, H.: Revolutions in energy input and material cycling in Earth history and human history, 2016, 7(2), Pp. 1-30.
- 3. Morrissey, K.: Using secondary data to examine economic trends in a subset of sectors in the English marine economy, 2014, 50(3), Pp. 135-141.
- 4. Zhang, J., Qu, X., Sangaiah, A.K.: A Study of Green Development Mode and Total Factor Productivity of the Food Industry Based on the Industrial Internet of Things, 2018, 56(5), Pp. 72-78.
- 5. Apokin, A.Y., Ipatova, I.B.: Components of total factor productivity of the Russian economy with respect to other countries of the world: The role of technical efficiency, 2017, 28(1), Pp. 15-21.
- 6. Ashraf, A., Herzer, D., Nunnenkamp, P.: The Effects of Greenfield FDI and Cross‐border M&As on Total Factor Productivity, 2016, 39(11), Pp. 1728-1755.
- 7. Zhang, K., Yi, Y., Zhang, W.: Environmental total factor productivity and regional disparity in China, 2014, 7(1), Pp. 9-21.
- 8. Han, Z., Li, B., Zhang, K.: Knowledge Structure of China’s Marine Economy Research: An Analysis Based on Cite Space Map, 2016, 36(5), Pp. 643-652.
- 9. Børsheim, K.Y., Drinkwater, K.F.: Different temperature adaptation in Arctic and Atlantic heterotrophic bacteria in the Barents Sea Polar Front region, 2014, 130(1), Pp. 160-166.
- 10. Zhao, L., Sun, C.: Water Resource Total Factor Productivity Efficiency in China Using the Global-MalmquistLuenberger Index, 2013, 35(6), Pp. 1229-1237.
- 11. Li, B.Q., Li, Z.: The Design of Wireless Responder System Based on Radio Frequency Technology. Acta Electronica Malaysia, 2018, 2(1), Pp. 11-14.
- 12. Zamanian, P., Kasiri, M.: Investigation of Stage Photography In Jee Lee’s Works And Comparing them With The Works Of Sandy Skoglund. Acta Electronica Malaysia, 2018, 2(1), Pp. 01-06.
- 13. Elmnifi, M., Amhamed, M., Abdelwanis, N., Imrayed, O.: Solar Supported Steam Production for Power Generation In Libya. Acta Mechanica Malaysia, 2018, 2(2), Pp. 05-09.
- 14. Tian, X.C., Li, Q.H., He, C.S., Cai, Y.G., Zhang, Y., Yang, Z.G.: Design and experiment of reciprocating double Track Straight Line Conveyor. Acta Mechanica Malaysia, 2018, 2(2), Pp. 01-04.
- 15. Md Sa’at, S.K., Qamaruzaman, N.: Phytoremediation potential of palm oil mill effluent by constructed wetland treatment. Engineering Heritage Journal, 2017, 1(1), Pp. 49-54.
- 16. Qiao, F.: The Study On The Integration Of Green Architecture And Appropriate Technology. Engineering Heritage Journal, 2018, 2(2), Pp. 01-03.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ad47eff6-033a-40ca-81a4-1226d26550cf