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IJAT Vol.16 No.6 pp. 838-844
doi: 10.20965/ijat.2022.p0838
(2022)

Paper:

Identifying Potential Areas for Circular Economy Development from the Perspective of Developing Economies: Using Patent and Bibliometric Analyses

Nathasit Gerdsri* and Pard Teekasap**,†

*College of Management, Mahidol University (CMMU)
69 Vipawadee Rangsit Road Samsennai, Phayathai District, Bangkok 10400, Thailand

**Stamford International University, Bangkok, Thailand

Corresponding author

Received:
February 12, 2022
Accepted:
August 22, 2022
Published:
November 5, 2022
Keywords:
circular economy, bibliometric analysis, patent analysis, developing countries
Abstract

Economic development must occur alongside environmental sustainability. The circular economy (CE) in an industrial context is a critical area that has been widely studied. However, the scope of the CE is broad and involves the development of various fields, ranging from energy and production to digitalization. The areas targeted for CE development also vary according to the stage of economic development. This study focuses on identifying the potential for CE development from the perspective of developing economies by using patent and bibliometric analyses.

Cite this article as:
N. Gerdsri and P. Teekasap, “Identifying Potential Areas for Circular Economy Development from the Perspective of Developing Economies: Using Patent and Bibliometric Analyses,” Int. J. Automation Technol., Vol.16 No.6, pp. 838-844, 2022.
Data files:
References
  1. [1] Y. Geng and B. Doberstein, “Developing the circular economy in China: Challenges and opportunities for achieving ‘leapfrog development’,” Int. J. of Sustainable Development & World Ecology, Vol.15, No.3, pp. 231-239, doi: 10.3843/SusDev.15.3:6, 2008.
  2. [2] Y. Umeda, K. Kitagawa, Y. Hirose, K. Akaho, Y. Sakai, and M. Ohta, “Potential Impacts of the European Union’s Circular Economy Policy on Japanese Manufacturers,” Int. J. Automation Technol., Vol.14, No.6, pp. 857-866, 2020.
  3. [3] W. McDowall et al., “Circular Economy Policies in China and Europe,” J. of Industrial Ecology, Vol.21, No.3, pp. 651-661, doi: 10.1111/jiec.12597, 2017.
  4. [4] K. Winans, A. Kendall, and H. Deng, “The history and current applications of the circular economy concept,” Renewable and Sustainable Energy Reviews, Vol.68, No.1, pp. 825-833, doi: 10.1016/j.rser.2016.09.123, 2017/02/01/ 2017.
  5. [5] K. Whalen and D. Peck, “In the Loop – Sustainable, Circular Product Design and Critical Materials,” Int. J. Automation Technol., Vol.8, No.5, pp. 664-676, 2014.
  6. [6] D. Masi et al., “Towards a more circular economy: exploring the awareness, practices, and barriers from a focal firm perspective,” Production Planning & Control, Vol.29, No.6, pp. 539-550, doi: 10.1080/09537287.2018.1449246, 2018.
  7. [7] K. Halada, “Activities of Circular Economy in Japan – Towards Global Multi-Value Circulation,” Int. J. Automation Technol., Vol.14, No.6, pp. 867-872, 2020.
  8. [8] D. C. Deselnicu et al., “Towards a circular economy – a zero waste programme for Europe,” Proc. of the Int. Conf. on Advanced Materials and Systems (ICAMS), pp. 563-568, 2018.
  9. [9] J. Kirchherr, D. Reike, and M. Hekkert, “Conceptualizing the circular economy: An analysis of 114 definitions,” Resources, Conservation and Recycling, Vol.127, pp. 221-232, doi: 10.1016/j.resconrec.2017.09.005, 2017.
  10. [10] N. Gerdsri, P. Assakul, and R. S. Vatananan, “Applying change management approach to guide the implementation of technology roadmapping (TRM),” PICMET’08-2008 – Portland Int. Conf. on Management of Engineering & Technology, pp. 2134-2140, 2008.
  11. [11] Z. Yuan, J. Bi, and Y. Moriguichi, “The Circular Economy: A New Development Strategy in China,” J. of Industrial Ecology, Vol.10, Nos.1-2, pp. 4-8, doi: 10.1162/108819806775545321, 2006.
  12. [12] J. Park, J. Sarkis, and Z. Wu, “Creating integrated business and environmental value within the context of China’s circular economy and ecological modernization,” J. of Cleaner Production, Vol.18, No.15, pp. 1494-1501, doi: 10.1016/j.jclepro.2010.06.001, 2010.
  13. [13] J. Melkers, “Bibliometrics as a Tool for Analysis of R&D Impacts,” B. Bozeman and J. Melkers (Eds.), “Evaluating R&D Impacts: Methods and Practice,” pp. 43-61, Springer, 1993.
  14. [14] A. Porter, A. Kongthon, and J. C. Lu, “Research profiling: Improving the literature review,” Scientometrics, Vol.53, No.3, pp. 351-370, 2002.
  15. [15] K. Börner, C. Chen, and K. W. Boyack, “Visualizing knowledge domains,” Annual Review of Information Science and Technology, Vol.37, No.1, pp. 179-255, 2003.
  16. [16] R. Pei and A. L. Porter, “Profiling leading scientists in nanobiomedical science: interdisciplinarity and potential leading indicators of research directions,” R&D Management, Vol.41, No.3, pp. 288-306, 2011.
  17. [17] A. L. Porter and J. Youtie, “Where does nanotechnology belong in the map of science?,” Nature Nanotechnology, Vol.4, No.9, pp. 534-536, 2009.
  18. [18] T. U. Daim, G. R. Rueda, and H. T. Martin, “Technology forecasting using bibliometric analysis and system dynamics,” A Unifying Discipline for Melting the Boundaries Technology Management, pp. 112-122, 2005.
  19. [19] T. U. Daim and N. Gerdsri, “Research and development progress assessment through technological and scientific intelligence,” Int. J. of Technology Intelligence and Planning, Vol.5, No.4, pp. 341-356, 2009.
  20. [20] N. Gerdsri, A. Kongthon, and R. S. Vatananan, “Mapping the knowledge evolution and professional network in the field of technology roadmapping: a bibliometric analysis,” Technology Analysis & Strategic Management, Vol.25, No.4, pp. 403-422, 2013.
  21. [21] A. L. Porter and M. J. Detampel, “Technology opportunities analysis,” Technological Forecasting and Social Change, Vol.49, No.3, pp. 237-255, 1995.
  22. [22] R. J. Watts and A. L. Porter, “Innovation forecasting,” Technological Forecasting and Social Change, Vol.56, No.1, pp. 25-47, 1997.
  23. [23] H. Baumgartner and R. Pieters, “The structural influence of marketing journals: A citation analysis of the discipline and its subareas over time,” J. of Marketing, Vol.67, No.2, pp. 123-139, 2003.
  24. [24] A. L. Porter and S. W. Cunningham (Eds.), “Tech mining: Exploiting new technologies for competitive advantage,” John Wiley & Sons, 2004.
  25. [25] M. Igami and A. Saka, “Capturing the evolving nature of science, the development of new scientific indicators and the mapping of science,” OECD Science, Technology and Industry Working Papers, 2007.
  26. [26] S. P. Nerur, A. A. Rasheed, and V. Natarajan, “The intellectual structure of the strategic management field: an author co-citation analysis,” Strategic Management J., Vol.29, No.3, pp. 319-336, doi: 10.1002/smj.659, 2008.
  27. [27] N. Gerdsri and A. Kongthon, “Identify Potential Opportunity for Research Collaboration Using Bibliometrics,” Int. J. of Business, Vol.23, No.3, pp. 248-260, 2018.
  28. [28] N. Gerdsri, A. Kongthon, and S. Puengrusme, “Profiling the research landscape in emerging areas using bibliometrics and text mining: A case study of biomedical engineering (BME) in Thailand,” Int. J. of Innovation and Technology Management, Vol.14, No.2, 1740011, 2017.
  29. [29] B. P. Abraham and S. D. Moitra, “Innovation assessment through patent analysis,” Technovation, Vol.21, No.4, pp. 245-252, doi: 10.1016/S0166-4972(00)00040-7, 2001.
  30. [30] A. Abbas, L. Zhang, and S. U. Khan, “A literature review on the state-of-the-art in patent analysis,” World Patent Information, Vol.37, pp. 3-13, doi: 10.1016/j.wpi.2013.12.006, 2014.
  31. [31] National Science and Technology Development Agency, “Bio-Circular-Green Economy to be declared a national agenda.” https://www.nstda.or.th/thaibioeconomy/138-bio-circular-green-economy-to-be-declared-a-national-agenda.html [Accessed May 2, 2021]
  32. [32] Office of National Higher Education Science Research and Innovation Policy Council, “BCG in Action.” https://www.nxpo.or.th/th/en/bcg-in-action/ [Accessed May 2, 2021]
  33. [33] Office of National Higher Education Science Research and Innovation Policy Council, “White paper: A transformation to circular economy driven by research and innovation,” 2021 (in Thai). https://www.nxpo.or.th/th/report/6724/ [Accessed January 15, 2021]
  34. [34] A. S. Homrich et al., “The circular economy umbrella: Trends and gaps on integrating pathways,” J. of Cleaner Production, Vol.175, pp. 525-543, doi: 10.1016/j.jclepro.2017.11.064, 2018.
  35. [35] T. Daim et al., “Technology Development Envelope Approach for The Adoption of Future Powertrain Technologies: A Case Study on Ford Otosan Roadmapping Model,” J. of Transportation Systems Engineering and Information Technol., Vol.11, No.2, pp. 58-69, doi: 10.1016/S1570-6672(10)60112-2, 2011.
  36. [36] S. K. Lee, G. Mogi, and J. W. Kim, “Energy technology roadmap for the next 10 years: The case of Korea,” Energy Policy, Vol.37, No.2, pp. 588-596, doi: 10.1016/j.enpol.2008.09.090, 2009.
  37. [37] I. Kockan, T. U. Daim, and N. Gerdsri, “Roadmapping future powertrain technologies: a case study of Ford Otosan,” Int. J. of Technology, Policy and Management, Vol.10, Nos.1-2, pp. 157-184, 2010.
  38. [38] A. R. Gallegos Rivero and T. Daim, “Technology roadmap: Cattle farming sustainability in Germany,” J. of Cleaner Production, Vol.142, No.4, pp. 4310-4326, doi: 10.1016/j.jclepro.2016.11.176, 2017.
  39. [39] Y. Milshina and K. Vishnevskiy, “Roadmapping in fast changing environments – the case of the Russian media industry,” J. of Engineering and Technology Management, Vol.52, pp. 32-47, doi: 10.1016/j.jengtecman.2017.10.004, 2019.
  40. [40] N. Gerdsri et al., “Conceptual framework to assess the impacts of changes on the status of a roadmap,” J. of Engineering and Technology Management, Vol.52, pp. 16-31, doi: 10.1016/j.jengtecman.2017.12.001, 2019.
  41. [41] P. Intarakumnerd, N. Gerdsri, and P. Teekasap, “The roles of external knowledge sources in Thailand’s automotive industry,” Asian J. of Technology Innovation, Vol.20, No.S1, pp. 85-97, 2012.
  42. [42] N. Manotungvorapun and N. Gerdsri, “University–Industry Collaboration: Assessing the Matching Quality Between Companies and Academic Partners,” IEEE Trans. on Engineering Management, Vol.68, No.5, pp. 1418-1435, doi: 10.1109/TEM.2019.2910154, 2021.
  43. [43] P. Intarakumnerd and N. Gerdsri, “Implications of Technology Management and Policy on the Development of a Sectoral Innovation System: Lessons Learned Through the Evolution of Thai Automotive Sector,” Int. J. of Innovation and Technology Management, Vol.11, No.3, 1440009, 2014.

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Last updated on Apr. 18, 2024