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Pages 343-366 | Received 28 Feb 2017, Published online: 15 Sep 2021

References

  • Beylot, A., Poitier, B., Lancesseur, N., & Villeneuve, J. (2016). A consumption approach to wastes from economic activities. Waste Management, 49, 505–515. https://doi.org/10.1016/j.wasman.2016.01.023
  • Brooks, A. L., Wang, S., & Jambeck, J. R. (2018). The Chinese import ban and its impact on global plastic waste trade. Science Advances, 4(6). https://doi.org/10.1126/sciadv.aat0131
  • Cadarso, M. A., Lopez, L. A., Comez, N., & Tobarra, M. A. (2012). International trade and shared environmental responsibility by sector: An Application to the spanish economy. Ecological Economics, 83(83), 221–235. https://doi.org/10.1016/j.ecolecon.2012.05.009
  • Chen, G. Q., & Zhang, B. (2010). Greenhouse Gas emissions in China 2007: Inventory and input–output analysis. Energy Policy, 38(10), 6180–6193. https://doi.org/10.1016/j.enpol.2010.06.004
  • Csutora, M., & Mózner, Z. V. (2014). Proposing a beneficiary-based shared responsibility approach for calculating national carbon accounts during the post-kyoto era. Climate Policy, 14(5), 599–616. https://doi.org/10.1080/14693062.2014.905442
  • Davis, S. J., & Caldeira, K. (2010). Consumption-based accounting of CO emissions. Proceedings of National Academy of Sciences of the United States of America, 107(12), 5687–5692. https://doi.org/10.1073/pnas.0906974107
  • Dietzenbacher, E., Los, B., Stehrer, R., Timmer, M., & de Vries, G. (2013). The Construction of World Input–Output Tables in the WIOD project. Economic Systems Research, 25(1), 71–98. https://doi.org/10.1080/09535314.2012.761180
  • Fry, J., Lenzen, M., Giurco, D., & Pauliuk, S. (2016). An Australian multi-regional waste Supply-Use framework. Journal of Industrial Ecology, 20(6), 1295–1305. https://doi.org/10.1111/jiec.12376
  • Gregg, J. S., Andres, R. J., & Marland, G. (2008). China: Emissions pattern of the world leader in CO2 emissions from fossil fuel consumption and cement production. Geophysical Research Letters, 35(8), L08806. https://doi.org/10.1029/2007GL032887
  • Guan, D., Peters, G. P., Weber, C. L., & Hubacek, K. (2009). Journey to world top emitter – an analysis of the driving forces of China's recent CO2 emissions surge. Geophysical Research Letters, 36(4). https://doi.org/10.1029/2008GL036540
  • Habara, H., Matsuto, T., & Tanaka, N. (2002). Estimation model for commercial waste stream by type of Business activities. Journal of the Japan Society of Waste Management Experts, 13(5), 315–324. (in Japanese). https://doi.org/10.3985/jswme.13.315
  • Hasegawa, R., Kagawa, S., & Tsukui, M. (2015). Carbon footprint analysis through constructing a multi-region input–output table: A case study of Japan. Journal of Economic Structures, https://doi.org/10.1186/s40008-015-0015-6
  • Hicks, C., Dietmar, R., & Eugster, M. (2005). The recycling and disposal of electrical and electronic waste in China—legislative and market responses. Environmental Impact Assessment Review, 25(5), 459–471. https://doi.org/10.1016/j.eiar.2005.04.007
  • Hosoda, E., Ichinose, D., Saito, T., Sekiyama, T., Someno, K., Nakatani, J., & Yamamoto, M. (2015). Comprehensive Studies on Development and Expansion of a Recycling-System for a Purpose of Cultivating Venous Industries in Developing Countries, Research Report for the Environment Research and Technology Development Fund for year 2014 (in Japanese).
  • IDE-JETRO. (2019). Trade between Japan and China in year 2018. Retrieved March 5, 2019, from https://www.jetro.go.jp/ext_images/_Reports/01/275fdcb1f46d0f9f/20180049.pdf (in Japanese).
  • IDE-JETRO. (2020). Trade between Japan and China in year 2019, Retrieved March 29, 2021, from https://www.jetro.go.jp/biz/areareports/2020/7a3c80fbbd73f456.html. (in Japanese).
  • International Panel on Climate Change (IPCC). (2007). 2006 IPCC guidelines for national greenhouse gas inventories. Retrieved January 4, 2007, from https://www.ipcc-nggip.iges.or.jp/public/2006gl/index.html.
  • Isard, W. (1951). Interregional and regional input–output analysis: A model of a space economy. The Review of Economics and Statistics, 33(4), 318–328. https://doi.org/10.2307/1926459
  • Japan-China Business Alliance for Energy Saving and Environmental Protection (JC-BASE). (2019). Japan-China Energy Conservation and Environment Forum. Retrieved February 20, 2019, from http://www.jc-web.or.jp/jcbase/publics/index/46/ (in Japanese).
  • Kagawa, S., Nakamura, S., Inamura, H., & Yamada, M. (2007). Measuring spatial repercussion effects of regional waste management. Resources Conservation & Recycling, 51(1), 41–174. https://doi.org/10.1016/j.resconrec.2006.09.001
  • Koopman, R., Wang, Z., & Wei, S.-J. (2014). Tracing Value-added and double counting in Gross exports. American Economic Review, 104(2), 459–494. https://doi.org/10.1257/aer.104.2.459
  • Lenzen, M., Murray, J., Sack, F., & Wiedmann, T. (2007). Shared producer and consumer responsibility—Theory and practice. Ecological Economics, 61(1), 27–42. https://doi.org/10.1016/j.ecolecon.2006.05.018
  • Lenzen, M., & Reynolds, C. J. (2014). A Supply-Use approach to Waste Input-Output analysis. Journal of Industrial Ecology, 18(2), 212–226. https://doi.org/10.1111/jiec.12105
  • Leung, A., Cai, Z. W., & Wong, M. H. (2006). Environmental contamination from electronic waste recycling at Guiyu, southeast China”. Journal of Material Cycles and Waste Management, 8(1), 21–33. https://doi.org/10.1007/s10163-005-0141-6
  • Li, K. (2018). Report on Government Work for the13th National People’s Congress. Retrieved March 26, 2019, from http://www.gov.cn/zhuanti/2018lh/2018zfgzbg/zfgzbg.htm (in Chinese).
  • Liang, S., Feng, T., Qu, S., Chiu, A. S. F., Jia, X., & Xu, M. (2016). Developing the Chinese Environmentally Extended Input-Output (CEEIO) database. Journal of Industrial Ecology, 21(4), 953–965. https://doi.org/10.1111/jiec.12477
  • Liao, M., Chen, P., Ma, H., & Nakamura, S. (2015). Identification of the driving force of waste generation using a high-resolution waste input–output table. Journal of Cleaner Products, 94, 294–303. https://doi.org/10.1016/j.jclepro.2015.02.002
  • Lin, C. (2009). Hybrid input−output analysis of wastewater treatment and environmental impacts: A case study for the Tokyo Metropolis. Ecological Economics, 68(7), 2096–2105. https://doi.org/10.1016/j.ecolecon.2009.02.002
  • Lin, C., & Nakamura, S. (2018). Approaches to solving China’s marine plastic pollution and CO2 emission problems. Economic Systems Research. doi:10.1080/09535314.2018.1486808
  • Lin, C., & Tsukui, M. (2014). “Analyzing the iron flow of China by using WIO-MFA”, 22th International Input-Output Conference (Lisboa School of Economics & Management in Lisbon, Portugal).
  • Lin, C., Tsukui, M., Ji, K., & Lang, X. (2014). How Do the Waste Treatment Scenarios Affect the Environment Impact of Commute Approaches in China? An Application Based on the Waste Input-Output Table of China. 21th International Input-Output Conference, Kitakyushu International Conference Center in Kitakyushu, Japan).
  • Lin, X., & Polenske, K. R. (1995). Input–output Anatomy of China's Energy Use changes in the 1980s. Economic Systems Research, 7(1), 67–84. https://doi.org/10.1080/09535319500000011
  • Liu, Y., Chen, S., Chen, B., & Yang, W. (2017). Analysis of CO2 emissions embodied in China's bilateral trade: A non-competitive import input–output approach. Journal of Cleaner Production, 163, S410–S419. https://doi.org/10.1016/j.jclepro.2016.02.085
  • Liu, Z., Adams, M., & Walker, T. R. (2018). Are exports of recyclables from developed to developing countries waste pollution transfer or part of the global circular economy? Resources, Conservation and Recycling, 136, 22–23. https://doi.org/10.1016/j.resconrec.2018.04.005
  • Marques, A., Rodrigues, J., Lenzen and, M., & Domingos, T. (2012). Income-based environmental responsibility. Ecological Economics, 84(2), 57–65. https://doi.org/10.1016/j.ecolecon.2012.09.010
  • METI Japan. (2014). Iron and Steel, Non-ferrous Metal and Fabricated Metals Statistics, Retrieved May 12, 2020, from https://www.meti.go.jp/statistics/tyo/seidou/result/ichiran/resourceData/01_tekko/nenpo/h26/h2daa2014kmc.xls, (in Japanese).
  • METI Japan. (2018). The 12th Japan-China Energy Conservation and Environment Forum Held (Summary of the Results), Retrieved November 26, 2018, from http://www.meti.go.jp/english/press/2018/1126_002.html.
  • MIC Japan. (2019). 2015 Input-Output Tables for Japan. Retrieved June 27, 2019, from. https://www.e-stat.go.jp/en/stat-search/files?page=1&layout=datalist&toukei=00200603&tstat=000001130583&cycle=0&year=20150&month=0&tclass1val=0).
  • Ministry of Finance (MOF), Government of Japan. (2014). Trade Statistics, Retrieved March, 7, 2021, from https://www.customs.go.jp/toukei/srch/index.htm?M=01&P=0.
  • Ministry of Industry and Information Technology of the People’s Republic of China. (2009). Regulations on the Administration of Recycling and Treatment of Waste Electric and Electronic Equipment. Retrieved March 31, 2019, from http://www.miit.gov.cn/n1146285/n1146352/n3054355/n3057254/n3057261/c3575250/content.html, (in Chinese).
  • MOE Japan. (2009). Survey Results of General Waste Generation and Treatment 2007. Retrieved November 27, 2009, from. https://www.env.go.jp/recycle/waste_tech/ippan/h19/data/env_press.pdf.
  • MOE Japan. (2010). 2007 Survey Results of Industrial Waste Generation and Treatment. Electronic data obtained from MOE Library (in Japanese).
  • MOE Japan. (2016). Survey Results of General Waste Generation and Treatment 2014. Retrieved February 22, 2016, from. https://www.env.go.jp/recycle/waste_tech/ippan/h26/data/env_press.pdf.
  • MOE Japan. (2017). Industrial Waste Generation and Treatment Survey 2016. Retrieved October 20, 2020, from https://www.e-stat.go.jp/stat-search/file-download?statInfId=000031861326&fileKind=2.
  • MOE Japan. (2018). Input- Output-Table for Environmental Analysis; Retrieved May 24, 2021, from https://www.env.go.jp/ doc/toukei/renkanhyo.html. (in Japanese).
  • MOE Japan. (2019a). The Tripartite Environment Ministers Meeting among China, Japan, and Korea (TEMM), Retrieved February 20, 2019, from https://www.env.go.jp/earth/coop/coop/english/dialogue/temm.html.
  • MOE Japan. (2019b). Japan-China Environmental Policy Dialogue, Retrieved February 20, 2019, from https://www.env.go.jp/earth/coop/coop/english/dialogue/japan_china.html.
  • MOF Japan. (2017). Trade Statistics for waste plastics (HS code 39.15), Retrieved May 23, 2021, from https://www.customs.go.jp/toukei/srch/index.htm?M=01&P=1,1,,,,,,,,4,1,2017,0,0,0,2,3915,,,,,,,,,,1,,,,,,,,,,,,,,,,,,,,,,200.
  • MOF Japan. (2018). Trade Statistics for waste plastics (HS code 39.15). Retrieved May 23, 2021, from https://www.customs.go.jp/toukei/srch/index.htm?M=01&P=1,1,,,,,,,,4,1,2018,0,0,0,2,3915,,,,,,,,,,1,,,,,,,,,,,,,,,,,,,,,,200.
  • MOF Japan. (2019). Trade Statistics for waste plastics (HS code 39.15). Retrieved May 23, 2021, from https://www.customs.go.jp/toukei/srch/index.htm?M=01&P=1,1,,,,,,,,4,1,2019,0,0,0,2,3915,,,,,,,,,,1,,,,,,,,,,,,,,,,,,,,,,200.
  • MOF Japan. (2020). Trade Statistics for waste plastics (HS code 39.15), Retrieved May 23, 2021, from https://www.customs.go.jp/toukei/srch/index.htm?M=01&P=1,1,,,,,,,,4,1,2020,0,0,0,2,3915,,,,,,,,,,1,,,,,,,,,,,,,,,,,,,,,,200.
  • Nakamura, S. (2020). Tracking the product origins of waste for treatment using the WIO data developed by the Japanese Ministry of the environment. Environmental Science and Technology, 54(23), 14862–14867. https://doi.org/10.1021/acs.est.0c06015
  • Nakamura, S., & Kondo, Y. (2002). Input–output analysis of waste management. Journal of Industrial Ecology, 6(1), 39–64. https://doi.org/10.1162/108819802320971632
  • Nakamura, S., & Kondo, Y. (2009). Waste input–output analysis: Concepts and application to industrial ecology. Springer.
  • Nakatani, J., Fujii, M., Yoshida, A., Terazono, A., Moriguchi, Y., & Hirao, M. (2008). Comparison of domestic and bilateral recycling of post-consumer PET bottles. Journal of the Japan Society of Waste Management Experts, 19(5), 328–329. (in Japanese). https://doi.org/10.3985/jswme.19.328
  • Nansai, K., Moriguchi, Y., & Touno, S. (2008). Embodied Energy and Emission Intensity Data for Japan Using Input-Output Tables. Retrieved June 20, 2018, from http://www.cger.nies.go.jp/publications/report/d031.
  • Nansai, K., Moriguchi, Y., & Touno, S. (2019). Embodied Energy and Emission Intensity Data for Japan Using Input-Output Tables; Embodied environmental intensities on the producer's price basis for 2015. Retrieved November 22, 2019, from https://www.cger.nies.go.jp/publications/report/d031/jpn/datafile/download/2015/2015IOT_excl_int.xlsx.
  • National Bureau of Statistics of the People’s Republic of China (NBSPRC). (2008a). China Statistical Yearbook.
  • NBSPRC. (2008b). China Statistical Yearbook on Environment 2008.
  • NBSPRC. (2009). China Input-output table 2007.
  • NBSPRC. (2015a). China Input-output table 2014.
  • NBSPRC. (2015b). China Statistical Yearbook 2015. Retrieved October 4, 2021, from http://www.stats.gov.cn/tjsj/ndsj/2015/indexeh.htm.
  • NBSPRC. (2020). China Statistical Yearbook on Environment 2020.
  • Nikkei Keizai Shinbun. (2019a). Retrieved January 12, 2019, from https://www.nikkei.com/article/DGXMZO39919430R10C19A1TJC000/. (in Japanese).
  • Nikkei Keizai Shinbun. (2019b). Retrieved March 28, 2019, from https://www.nikkei.com/nkd/industry/article/?DisplayType=1&n_m_code=141&ng=DGKKZO42999560X20C19A3EA1000/, (in Japanese).
  • Peter, G. P. (2008). From production-based to consumption-based national emission inventories. Ecological Economics, 65(1), 13–23. https://doi.org/10.1016/j.ecolecon.2007.10.014
  • Peters, G. P., & Hertwich, E. G. (2008). CO2 embodied in International trade with implications for global Climate policy. Environmental Science & Technology, 42(5), 1401–1407. https://doi.org/10.1021/es072023k
  • Peters, G. P., Weber, C. L., Guan, D., & Hubacek, K. (2007). China's growing CO2 emissions - a race between increasing consumption and efficiency gains. Environmental Science and Technology, 41(17), 5939–5944. https://doi.org/10.1021/es070108f
  • Plastic Waste Management Institute. (2021). PWMI Newsletter Plastic Products, Plastic Waste and Resource Recovery [2019], Retrieved May 23, 2021, from http://www.pwmi.or.jp/ei/siryo/ei/ei_pdf/ei50.pdf.
  • Qu, S., Guo, Y., Ma, Z., Chen, W., Liu, J., Liu, G., Wang, Y., & Xu, M. (2019). Implications of China’s foreign waste ban on the global circular economy. Resource, Conservation and Recycling, 144, 252–255. https://doi.org/10.1016/j.resconrec.2019.01.004
  • Salemdeeb, R., Al-Tabbaa, A., & Reynolds, C. (2016). The UK waste input–output table: Linking waste generation to the UK economy. Waste Management & Research, 34(10), 1089–1094. https://doi.org/10.1177/0734242X16658545
  • Sapporo City Environment Public Corporation. (2019). Nakanuma Plastic Recycling Center. Retrieved April 14, 2019, from http://www.kankyou-sapporo.jp/about/access/nakanuma_plastic, (in Japanese).
  • Satake, M., Yamashige, Y., & Kikuchi, T. (2010). Export of recyclable materials and the Japanese recycling system: The case of used plastic bottles. The International Economy, 2010(14), 113–127. https://doi.org/10.5652/internationaleconomy.ie2010.07.s.y.k
  • Sato, M. (2014). Embodied Carbon in trade: A survey of the empirical literature. Journal of Economic Surveys, 28(5), 831–861. https://doi.org/10.1111/joes.12027
  • Sepúlveda, A., Schluep, M., Renaud, F. G., Streicher, M., Kuehr, R., Hagelüken, C., & Gerecke, A. C. (2010). A review of the environmental fate and effects of hazardous substances released from electrical and electronic equipments during recycling: Examples from China and India. Environmental Science & Technology, 30(1), 28–41. https://doi.org/10.1016/j.eiar.2009.04.001
  • Shan, Y., Guan, D., Zheng, H., Ou, J., Li, Y., Meng, J., Mi, Z., Liu, Z., & Zhang, Q. (2018). Data Descriptor: China CO2 emission accounts 1997–2015, Scientific Data, Retrieved January 16, 2018, from https://www.nature.com/articles/sdata2017201.
  • Statistics Bureau of Japan. (2008). Basic Survey on Employment Structure 2007. Retrieved July 3, 2008, from https://www.e-stat.go.jp/stat-search/file-download?statInfId=000001234527&fileKind=0, (in Japanese).
  • Statistics Bureau of Japan. (2015). Basic Survey of Economic Census 2014, Retrieved November 30, 2015, from, https://www.e-stat.go.jp/stat-search/file-download?statInfId=000031332477&fileKind=1, (in Japanese).
  • Statistics Bureau of Japan. (2017). Population estimates Long-term time series data. Retrieved June 28, 2017, from https://www.e-stat.go.jp/stat-search/file-download?statInfId=000013168601&fileKind=0, (in Japanese).
  • Streets, D. G., Yu, C., Bergin, M. H., Wang, X., & Carmichael, G. R. (2006). Modeling study of air pollution due to the manufacture of export goods in China’s Pearl River delta. Environmental Science & Technology, 40(7), 2099–2107. https://doi.org/10.1021/es051275n
  • Su, B., & Ang, B. W. (2013). Input–output analysis of CO2 emissions embodied in trade: Competitive versus non-competitive imports. Energy Policy, 56, 83–87. https://doi.org/10.1016/j.enpol.2013.01.041
  • Su, B., Ang, B. W., & Low, M. (2013). Input–output analysis of CO2 emissions embodied in trade and the driving forces: Processing and normal exports. Ecological Economics, 88, 119–125. https://doi.org/10.1016/j.ecolecon.2013.01.017
  • Terazono, A., & Yoshida, A. (2012). Exploring domestic flows and exports of used electrical and electronic equipment. Material Cycles and Waste Management Research, 23(4), 280–294. (in Japanese). https://doi.org/10.3985/mcwmr.23.280
  • Terazono, A., Yoshida, A., Murakami, R., Murakami, S., & Shinkuma, T. (2009). Analysis of material cycle systems for e-waste and waste plastics in Asia, Research Report for Gran-in Aid for Scientific Research Related Waste Treatment 2008.
  • Terazono, A., Yoshida, A., Yang, J., Moriguchi, Y., & Sakai, S. (2004). Journal of Material Cycles and Waste management. Material Cycles in Asia: Especially the Recycling Loop Between Japan and China, 6(2), 82–96. https://doi.org/10.1007/s10163-004-0115-0
  • The Council for PET Bottle Recycling. (2019). PET bottle recycling overview. Retrieved April 14, 2019, from http://www.petbottle-rec.gr.jp/data/general_situation.html. (in Japanese).
  • Timmer, M. P., Dietzenbacher, E., Los, B., Stehrer, R., & de Vries, G. J. (2015). An illustrated user guide to the world input–output database: The case of global automotive production. Review of International Economics, 23(3), 575–605. https://doi.org/10.1111/roie.12178
  • Timmer, M. P., Erumban, A. A., Los, B., Stehrer, R., & de Vries, G. J. (2014). Slicing up global value chains. Journal of Economic Perspectives, 28(2), 99–118. https://doi.org/10.1257/jep.28.2.99
  • Timmer, M. P., Los, B., Stehrer, R., & de Vries, G. J. (2013). Fragmentation, incomes and jobs: An analysis of European competitiveness. Economic Policy, 28(76), 613–661. https://doi.org/10.1111/1468-0327.12018
  • Timmer, M. P., Los, B., Stehrer, R., & de Vries, G. J. (2016). An Anatomy of the Global Trade Slowdown based on the WIOD 2016 Release. GGDC research memorandum number 162, University of Groningen Retrieved March 30, 2021, from https://www.rug.nl/ggdc/html_publications/memorandum/gd162.pdf.
  • Tsukui, M., & Lin, C. (2014a). The Difference and Interrelationship between China and Japan in Waste Generation and Treatment, The 9th Meeting of the Institute of Life Cycle Assessment, Japan LCA 2014 in Shibaura Institute of Technology, Japan.
  • Tsukui, M., & Lin, C. (2014b). Repercussion Effects of Final Consumption on Production and Environmental Loads Using a China-Japan Waste Input-output Table, EcoBalance 2014 in Tsukuba, Japan.
  • Wang, F., Li, Y., Zhang, W., He, P., Jiang, L., Cai, B., Zhang, J., Zhang, P., Pan, H., & Jiang, H. (2020). China's trade-off between economic benefits and sulfur dioxide emissions in changing global trade. Earth's Future, 8, e2019EF001354. https://doi.org/10.1029/2019EF001354
  • Wang, Z., Wei S, J., Yu, X., & Zhu, K. (2017). Measures of Participation in Global Value Chain and Global Business Cycles, National Bureau of Economic Research Working Paper 23222.
  • Wang, Z., Wei, S. J., & Zhu, K. (2013). Quantifying International production sharing at the bilateral and sector levels. National Bureau of Economic Research, 19677(8). https://www.nber.org/system/files/working_papers/w19677/w19677.pdf
  • Weber, C. L., Peters, G. P., Guan, D., & Hubacek, K. (2008). The contribution of Chinese exports to climate change. Energy Policy, 36(9), 3572–3577. https://doi.org/10.1016/j.enpol.2008.06.009
  • Wiedmann, T. (2016). Impacts embodied in global trade flows; Taking Stock of Industrial Ecology, Springer, 159–180.
  • Wiedmann, T., Lenzen, M., Turner, K., & Barrett, J. (2007). Examining the global environmental impact of regional consumption activities —Part 2: Review of input–output models for the assessment of environmental impacts embodied in trade. Ecological Economics, 61(1), 15–26. https://doi.org/10.1016/j.ecolecon.2006.12.003
  • WIOD. (2016). World Input-Output Tables, 2016 Release, WIOT 2014. Retrieved October 21, 2016, from http://www.wiod.org/protected3/data16/wiot_ROW/WIOT2014_Nov16_ROW.xlsb.
  • Xiao, L., Lin, C., & Nakamura, S. (2020). Tracing the consumption Origins of wastewater and Sludge for a Chinese City based on Waste Input-Output analysis. Environmental Science & Technology, https://doi.org/10.1021/acs.est.0c01517
  • Xu, M., Li, R., Crittenden, J. C., & Chen, Y. (2011). CO2 emissions embodied in China's exports from 2002 to 2008: A structural decomposition analysis. Energy Policy, 39(11), 7381–7388. https://doi.org/10.1016/j.enpol.2011.08.068
  • Zhang, B., Chen, Z. M., Qiao, H., Chen, B., Hayat, T., & Alsaedi, A. (2015b). China's non-CO2 greenhouse gas emissions: Inventory and input-output analysis. Ecological Informatics, 26, 101–110. https://doi.org/10.1016/j.ecoinf.2014.01.009
  • Zhang, W. C., Peng, S. J., & Sun, C. W. (2015a). CO2 emissions in the global supply chains of services: An analysis based on a multi-regional input-output model. Energy Policy, 86, 93–103. https://doi.org/10.1016/j.enpol.2015.06.029
  • Zhu, Y., Shi, Y., Wu, J., Wu, L., & Xiong, W. (2018). Exploring the characteristics of CO2 emissions embodied in International trade and the fair share of responsibility. Ecological Economics, 146, 574–587. https://doi.org/10.1016/j.ecolecon.2017.12.020