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Macroeconomic Effects of CO2 Emission Limits: A Computable General Equilibrium Analysis for China. (1998). Zhang, ZhongXiang.
In: Journal of Policy Modeling.
RePEc:eee:jpolmo:v:20:y:1998:i:2:p:213-250.

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  2. Design of a Covid-19 model for environmental impact: From the partial equilibrium to the Computable General Equilibrium model. (2021). Tchoffo, Rodrigue.
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  3. Recycling Carbon Tax under Different Energy Efficiency Improvements: A CGE Analysis of China. (2021). Li, Yangyang ; Liu, Tingting.
    In: Sustainability.
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  4. The Distributional Effect of A Carbon Tax on Income in Taiwan. (2020). Lin, Jin-Xu ; Chang, Kuei-Feng ; Feng, Chun-Chiang.
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  5. Impacts of exchange rate volatility and international oil price shock on Chinas regional economy: A dynamic CGE analysis. (2020). Wei, Weixian ; Wang, Ningjing ; Ma, Xili ; Dong, Baomin.
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  6. Sectoral energy efficiency improvements in Taiwan: Evaluations using a hybrid of top-down and bottom-up models. (2019). Hung, Ming-Lung ; Liu, Chia-Hao ; Wu, Yi-Hua ; Masui, Toshihiko.
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  7. Impacts of export restructuring on national economy and CO2 emissions: A general equilibrium analysis for China. (2019). Dai, Hancheng ; Wu, Rui ; Tian, XU ; Xie, Yang ; Geng, Yong.
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  8. Aligning renewable energy targets with carbon emissions trading to achieve Chinas INDCs: A general equilibrium assessment. (2018). Dai, Hancheng ; Masui, Toshihiko ; Liu, Jingyu ; Xie, Yang.
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  9. Exploring the impacts of regional unbalanced carbon tax on CO2 emissions and industrial competitiveness in Liaoning province of China. (2018). Li, Zhaoling ; Yabar, Helmut ; Wang, Peng ; Liu, Zhu ; Xie, Yang ; Sun, LU ; Dai, Hancheng.
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  10. Regional impacts of launching national carbon emissions trading market: A case study of Shanghai. (2018). Liu, Zhiqing ; Yu, Zhongjue ; You, Wei ; Wu, Rui ; Xie, Yang ; Wilson, Jeffrey ; Dai, Hancheng ; Geng, Yong.
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  11. The Impact of Carbon Tax on Food Prices and Consumption in Canada. (2018). Thomassin, P J ; Wu, T.
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  13. Research on CO 2 Emission Reduction Mechanism of China’s Iron and Steel Industry under Various Emission Reduction Policies. (2017). Mu, Hailin ; Li, Nan ; Duan, YE ; Gui, Shusen.
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  14. Carbon policy in a high-growth economy: The case of China. (2017). Zhang, Lin ; Bretschger, Lucas.
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  16. The effects of carbon reduction on sectoral competitiveness in China: A case of Shanghai. (2017). Tian, XU ; Fujita, Tsuyoshi ; Masui, Toshihiko ; Huang, Zhen ; Geng, Yong ; Dai, Hancheng.
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  17. Impacts of low-carbon power policy on carbon mitigation in Guangdong Province, China. (2016). Cheng, Beibei ; Masui, Toshihiko ; Zhao, Daiqing ; Xie, Yang ; Wang, Peng ; Dai, Hancheng.
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  18. Impact of a carbon tax on the Chilean economy: A computable general equilibrium analysis. (2016). Garcia, Jose Miguel .
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  19. Energy caps: Alternative climate policy instruments for China?. (2016). Rausch, Sebastian ; Karplus, Valerie J ; Zhang, DA.
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  20. Achieving China’s INDC through carbon cap-and-trade: Insights from Shanghai. (2016). Tian, XU ; Wu, Rui ; Dai, Hancheng ; Geng, Yong ; Xie, Yang ; Masui, Toshihiko.
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  21. Modeling environmental policy with and without abatement substitution: A tradeoff between economics and environment?. (2016). Lin, Boqiang ; Wesseh, Presley K.
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  22. Carbon-based border tax adjustments and China’s international trade: analysis based on a dynamic computable general equilibrium model. (2015). Zhang, ZhongXiang ; Wang, Shouyang ; Bao, Qin ; Tang, Ling.
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  23. Efficiency or Equity? Simulating the Carbon Emission Permits Trading Schemes in China Based on an Inter-Regional CGE Model. (2015). Wu, Libo ; Tang, Weiqi .
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  24. Achieving Sustainable Energy Security: 2030 Outlook for ASEAN, People Republic of China and India. (2015). Bhattacharyay, Biswanath ; Fan, Ying.
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  25. Efficiency or Equity? Simulating the Carbon Emission Permits Trading Schemes in China Based on an Inter-Regional CGE Model. (2015). Tang, Weiqi ; Wu, Libo .
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  26. Carbon policy in a high-growth economy: The case of China. (2014). Zhang, Lin.
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  27. Carbon Policy in a High Growth Economy: The case of China. (2014). Zhang, Lin ; Bretschger, Lucas.
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  28. Scenarios Analysis of the Energies’ Consumption and Carbon Emissions in China Based on a Dynamic CGE Model. (2014). Zheng, Yuhua ; Chi, Yuanying ; Zhang, Xingping ; Guo, Zhengquan.
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  29. Going beyond tradition: Carbon policy in a high-growth economy: The case of China. (2014). Zhang, Lin ; Bretschger, Lucas.
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  30. Regional disparities in carbon dioxide reduction from Chinas uniform carbon tax: A perspective on interfactor/interfuel substitution. (2014). Yang, Fuxia ; Fan, Ying ; Hu, Hui.
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  31. Optimal carbon taxes in carbon-constrained China: A logistic-induced energy economic hybrid model. (2014). Duan, Hong-Bo ; Fan, Ying ; Zhu, Lei.
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  32. Exploring the impacts of a carbon tax on the Chinese economy using a CGE model with a detailed disaggregation of energy sectors. (2014). Rao, Rao ; Guo, Zhengquan ; Zheng, Yuhua ; Zhang, Xingping.
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  33. Measuring Carbon Emissions Performance in 123 Countries: Application of Minimum Distance to the Strong Efficiency Frontier Analysis. (2013). Zhao, Pei ; Wang, Ling ; Ma, Dalai ; Chen, Zhongchang .
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  34. Carbon-based Border Tax Adjustments and China’s International Trade: Analysis based on a Dynamic Computable General Equilibrium Model. (2013). Zhang, ZhongXiang ; Tang, Ling ; Wang, Shouyang ; Bao, Qin .
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  35. The Way to CO2 Emission Reduction and the Co-benefits of Local Air Pollution Control in Chinas Transportation Sector: A Policy and Economic Analysis. (2013). Qin, Liu ; Shuqian, Yang ; Xianqiang, Mao .
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  36. Carbon-based Border Tax Adjustments and Chinas International Trade: Analysis based on a Dynamic Computable General Equilibrium Model. (2013). Zhang, ZhongXiang ; Tang, Ling ; Wang, Shouyang ; Bao, Qin .
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  37. Impacts of border carbon adjustments on Chinas sectoral emissions: Simulations with a dynamic computable general equilibrium model. (2013). Zhang, ZhongXiang ; Tang, Ling ; Wang, Shouyang ; Bao, Qin .
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  42. Impact of Border Carbon Adjustments on China’s Sectoral Emissions: Simulations with a Dynamic Computable General Equilibirum Model. (2012). Bao, Qin ; Wang, Shouyang ; Qiao, Han ; Zhang, Zhingxiang ; Tang, Ling.
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  43. Impacts of Border Carbon Adjustments on China’s Sectoral Emissions: Simulations with a Dynamic Computable General Equilibrium Model. (2011). Zhang, ZhongXiang ; Qiao, Han ; Wang, Shouyang ; Bao, Qin ; Tang, Ling.
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  50. Productivity Dispersion across Plants, Emission Abatement, and Environmental Policy. (2008). Li, Zhe.
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  51. Green taxes and double dividends in a dynamic economy. (2008). Kawaguchi, Daiji ; Glomm, Gerhard.
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  53. Green Taxes and Double Dividends in a Dynamic Economy. (2006). Kawaguchi, Daiji ; Glomm, Gerhard.
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  54. An evaluation of the 1994 tax reform in China using a general equilibrium model. (2005). Toh, Mun-Heng ; Lin, Qian.
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    In: International Journal of Global Environmental Issues.
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  56. Why has the energy intensity fallen in Chinas industrial sector in the 1990s?: the relative importance of structural change and intensity change. (2001). Zhang, ZhongXiang.
    In: CDS Research Reports.
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  57. Decoupling Chinas Carbon Emissions Increase from Economic Growth: An Economic Analysis and Policy Implications. (2000). Zhang, ZhongXiang.
    In: World Development.
    RePEc:eee:wdevel:v:28:y:2000:i:4:p:739-752.

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  58. Can China afford to commit itself an emissions cap? An economic and political analysis. (2000). Zhang, ZhongXiang.
    In: Energy Economics.
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  59. Towards a sustainable development of the chinese economy: Accomplishments and challenges in limiting greenhouse gas emissions. (1999). Zhang, ZhongXiang.
    In: MPRA Paper.
    RePEc:pra:mprapa:14258.

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  60. The role of China in combating global climate change. (1999). Zhang, ZhongXiang.
    In: MPRA Paper.
    RePEc:pra:mprapa:13172.

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  61. Joint implementation: sacrifices or opportunities for China?. (1998). Zhang, ZhongXiang.
    In: MPRA Paper.
    RePEc:pra:mprapa:13150.

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  62. Is China taking actions to limit its greenhouse gas emissions? past evidence and future prospects. (1998). Zhang, ZhongXiang.
    In: MPRA Paper.
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  40. Zhang, Zhong Xiang, and Folmer, H. (1995c) Economic Modeling Approaches to Cost Estimates for the Control of Carbon Dioxide Emissions. Presented at the Sixth Annual Meeting of the European Association of Environmental and Resource Economists, Umeå, Sweden, June 18–20; Energy Economics, in press.
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Cocites

Documents in RePEc which have cited the same bibliography

  1. Incentive-based policy to promote the production of geothermal power from carbon tax scheme: A case of Indonesian CGE model. (2020). Sabaruddin, Sulthon ; Sabaruddinb, Sulthon Sjahril ; Hasudungana, Victor ; Wibert, Herbert.
    In: RIVISTA DI STUDI SULLA SOSTENIBILITA'.
    RePEc:fan:rissri:v:html10.3280/riss2020-001007.

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  2. A macroeconomic evaluation of a carbon tax in overseas territories: A CGE model for Reunion Island. (2020). Sandrine, Selosse ; Olivia, Ricci ; Avotra, Narindranjanahary ; Sabine, Garabedian.
    In: Energy Policy.
    RePEc:eee:enepol:v:147:y:2020:i:c:s0301421520304638.

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  3. Effects and burdens of a carbon tax scheme in Thailand. (2019). Wattanakuljarus, Anan.
    In: Eurasian Economic Review.
    RePEc:spr:eurase:v:9:y:2019:i:2:d:10.1007_s40822-018-0100-x.

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  4. The impact of Chinas Central Rise Policy on carbon emissions at the stage of operation in road sector. (2018). Zhang, Yue-Jun ; Qin, Chang-Xiong ; Zhou, Si-Ming ; Liu, Zhao.
    In: Economic Modelling.
    RePEc:eee:ecmode:v:71:y:2018:i:c:p:159-173.

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  5. Impact of a carbon tax on the Chilean economy: A computable general equilibrium analysis. (2016). Garcia, Jose Miguel .
    In: Energy Economics.
    RePEc:eee:eneeco:v:57:y:2016:i:c:p:106-127.

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  6. Impacts of government subsidies on pricing and performance level choice in Energy Performance Contracting: A two-step optimal decision model. (2016). Shao, Shuai ; Lu, Zhijian .
    In: Applied Energy.
    RePEc:eee:appene:v:184:y:2016:i:c:p:1176-1183.

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  7. Industry-level Econometric Estimates of Energy-Capital-Labor Substitution with a Nested CES Production Function. (2015). Karnizova, Lilia ; Dissou, Yazid ; Sun, Qian.
    In: Atlantic Economic Journal.
    RePEc:kap:atlecj:v:43:y:2015:i:1:p:107-121.

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  8. Industry-level Econometric Estimates of Energy-capital-labour Substitution with a Nested CES Production Function. (2012). Karnizova, Lilia ; Dissou, Yazid ; Sun, Qian.
    In: Working Papers.
    RePEc:ott:wpaper:1214e.

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  9. An integrated IO and CGE approach to analysing changes in environmental trade balances. (2011). Turner, Karen ; Swales, John ; McGregor, Peter ; Gilmartin, Michelle.
    In: Stirling Economics Discussion Papers.
    RePEc:stl:stledp:2011-04.

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  10. Energy efficiency, rebound effects and the environmental Kuznets Curve. (2011). Turner, Karen ; Hanley, Nick.
    In: Energy Economics.
    RePEc:eee:eneeco:v:33:y:2011:i:5:p:709-720.

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  11. An investigation of issues relating to where energy should enter the production function. (2011). Turner, Karen ; Swales, John ; Lecca, Patrizio.
    In: Economic Modelling.
    RePEc:eee:ecmode:v:28:y:2011:i:6:p:2832-2841.

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  12. An investigation of issues relating to where energy should enter the production function. (2010). Turner, Karen ; Swales, John ; Lecca, Patrizio.
    In: Stirling Economics Discussion Papers.
    RePEc:stl:stledp:2010-18.

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  13. Energy Efficiency, Rebound Effects and the Environmental Kuznets Curve. (2010). Turner, Karen ; Hanley, Nick.
    In: Stirling Economics Discussion Papers.
    RePEc:stl:stledp:2010-17.

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  14. Do Productivity Improvements Move Us Along the Environmental Kuznets Curve?. (2009). Turner, Karen ; Hanley, Nick ; De Fence, Janine .
    In: Working Papers.
    RePEc:str:wpaper:0908.

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  15. The added value from adopting a CGE approach to analyse changes in environmental trade balances. (2009). Turner, Karen ; Swales, John ; McGregor, Peter ; Gilmartin, Michelle.
    In: Working Papers.
    RePEc:str:wpaper:0903.

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  16. Negative rebound and disinvestment effects in response to an improvement in energy efficiency in the UK economy. (2009). Turner, Karen.
    In: Working Papers.
    RePEc:str:wpaper:0902.

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  17. Rebound and disinvestment effects in oil consumption and supply resulting from an increase in energy efficiency in the Scottish commercial transport sector. (2009). Turner, Karen ; Anson, Sam.
    In: Working Papers.
    RePEc:str:wpaper:0901.

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  18. Do productivity improvements move us along the environmental Kuznets C urve?. (2009). Turner, Karen ; Hanley, Nick ; De Fence, Janine .
    In: Stirling Economics Discussion Papers.
    RePEc:stl:stledp:2009-02.

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  19. Rebound and disinvestment effects in refined oil consumption and supply resulting from an increase in energy efficiency in the Scottish commercial transport sector. (2009). Turner, Karen ; Anson, Sam.
    In: Energy Policy.
    RePEc:eee:enepol:v:37:y:2009:i:9:p:3608-3620.

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  20. Negative rebound and disinvestment effects in response to an improvement in energy efficiency in the UK economy. (2009). Turner, Karen.
    In: Energy Economics.
    RePEc:eee:eneeco:v:31:y:2009:i:5:p:648-666.

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  21. Do increases in energy efficiency improve environmental quality and sustainability?. (2009). Turner, Karen ; Swales, John ; McGregor, Peter ; Hanley, Nick.
    In: Ecological Economics.
    RePEc:eee:ecolec:v:68:y:2009:i:3:p:692-709.

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  22. Rebound and disinvestment effects in oil consumption and supply resulting from an increase in energy efficiency in the Scottish commercial transport sector. (2009). Turner, Karen ; Ansona, Sam .
    In: SIRE Discussion Papers.
    RePEc:edn:sirdps:128.

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  23. Negative rebound and disinvestment effects in response to an improvement in energy efficiency in the UK economy. (2009). Turner, Karen.
    In: SIRE Discussion Papers.
    RePEc:edn:sirdps:121.

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  24. The added value from adopting a CGE approach to analyse changes in environmental trade balances. (2009). Turner, Karen ; Swales, John ; McGregor, Peter ; Gilmartin, Michelle.
    In: SIRE Discussion Papers.
    RePEc:edn:sirdps:120.

    Full description at Econpapers || Download paper

  25. Do Productivity Improvements Move Us Along the Environmental Kuznets Curve?. (2009). Turner, Karen ; Hanley, Nick ; De Fence, Janine .
    In: SIRE Discussion Papers.
    RePEc:edn:sirdps:112.

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  26. A Comparison of Results From MRIO and Interregional Computable General Equilibrium (CGE) Analyses of the Impacts of a Positive Demand Shock on the ‘CO2 Trade Balance’ Between Scotland and the Rest. (2008). Turner, Karen ; Swales, John ; Gilmartin, Michelle.
    In: Working Papers.
    RePEc:str:wpaper:0808.

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  27. A Computable General Equilibrium Analysis of the Relative Price Sensitivity Required to Induce Rebound Effects in Response to an Improvement in Energy Efficiency in the UK Economy. (2008). Turner, Karen.
    In: Working Papers.
    RePEc:str:wpaper:0807.

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  28. A comparison of results from MRIO and interregional computable general equilibrium (CGE) analyses of the impacts of a positive demand shock on the ‘CO2 trade balance’ between Scotland and the rest. (2008). Turner, Karen ; Swales, John ; Gilmartin, Michelle.
    In: SIRE Discussion Papers.
    RePEc:edn:sirdps:37.

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  29. A computable general equilibrium analysis of the relative price sensitivity required to induce rebound effects in response to an improvement in energy efficiency in the UK economy. (2008). Turner, Karen.
    In: SIRE Discussion Papers.
    RePEc:edn:sirdps:33.

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  30. The impact of increased efficiency in the industrial use of energy: A computable general equilibrium analysis for the United Kingdom. (2007). Turner, Karen ; Swales, John ; McGregor, Peter ; Hanley, Nick ; Allan, Grant.
    In: Energy Economics.
    RePEc:eee:eneeco:v:29:y:2007:i:4:p:779-798.

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  31. The importance of the regional/local dimension of sustainable development: An illustrative Computable General Equilibrium analysis of the Jersey economy. (2007). Turner, Karen ; Swales, John ; McGregor, Peter ; Learmonth, D. ; Yin, Y. P..
    In: Economic Modelling.
    RePEc:eee:ecmode:v:24:y:2007:i:1:p:15-41.

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  32. The impact of a stimulus to energy efficiency on the economy and the environment: A regional computable general equilibrium analysis. (2006). Turner, Karen ; Swales, John ; McGregor, Peter ; Hanley, Nick.
    In: Renewable Energy.
    RePEc:eee:renene:v:31:y:2006:i:2:p:161-171.

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  33. Incorporating sustainability indicators into a computable general equilibrium model of the scottish economy. (2005). Turner, Karen ; Swales, John ; McGregor, Peter ; Ferguson, Linda ; Yin, Ya.
    In: Economic Systems Research.
    RePEc:taf:ecsysr:v:17:y:2005:i:2:p:103-140.

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  34. What do we know about carbon taxes? An inquiry into their impacts on competitiveness and distribution of income. (2004). Zhang, ZhongXiang ; Baranzini, Andrea.
    In: Energy Policy.
    RePEc:eee:enepol:v:32:y:2004:i:4:p:507-518.

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  35. What do we know about carbon taxes? an inquiry into their impacts on competitiveness and distribution of income. (2003). Zhang, ZhongXiang ; Baranzini, Andrea.
    In: MPRA Paper.
    RePEc:pra:mprapa:13225.

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  36. Can China afford to commit itself an emissions cap? An economic and political analysis. (2000). Zhang, ZhongXiang.
    In: Energy Economics.
    RePEc:eee:eneeco:v:22:y:2000:i:6:p:587-614.

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  37. Tax incentives for extraction and recycling of basic materials in Canada. (1999). Scharf, Kimberley.
    In: Fiscal Studies.
    RePEc:ifs:fistud:v:20:y:1999:i:4:p:451-477.

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  38. Macroeconomic Effects of CO2 Emission Limits: A Computable General Equilibrium Analysis for China. (1998). Zhang, ZhongXiang.
    In: Journal of Policy Modeling.
    RePEc:eee:jpolmo:v:20:y:1998:i:2:p:213-250.

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  39. Economic modelling approaches to cost estimates for the control of carbon dioxide emissions1. (1998). Zhang, ZhongXiang ; Folmer, Henk.
    In: Energy Economics.
    RePEc:eee:eneeco:v:20:y:1998:i:1:p:101-120.

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