Green financing and wind power energy generation: Empirical insights from China
暂无分享,去创建一个
[1] Shuguang Wang,et al. Analyzing green financing role on renewable energy dependence and energy transition in E7 economies , 2022, Renewable Energy.
[2] Yung‐ho Chiu,et al. China's energy efficiency improvement on account of the development of wind and solar power: Applying a dynamic non-radial directional distance function , 2022, International Journal of Hydrogen Energy.
[3] Sajid Iqbal,et al. Working capital management of SMEs in COVID-19: role of managerial personality traits and overconfidence behavior , 2022, Economic Analysis and Policy.
[4] Muhammad Imran,et al. I can see the opportunity that you cannot! A nexus between individual entrepreneurial orientation, alertness, and access to finance , 2022, European Business Review.
[5] Linhai Zhao,et al. ENERGY FINANCING, COVID-19 REPERCUSSIONS AND CLIMATE CHANGE: IMPLICATIONS FOR EMERGING ECONOMIES , 2022, Climate Change Economics.
[6] A. Bilal,et al. Financial stability role on climate risks, and climate change mitigation: Implications for green economic recovery , 2022, Environmental Science and Pollution Research.
[7] M. Irfan,et al. Analyze the environmental sustainability factors of China: The role of fossil fuel energy and renewable energy , 2022, Renewable Energy.
[8] Hongqian Wei,et al. Modelling and experimental validation of an EV torque distribution strategy towards active safety and energy efficiency , 2022, Energy.
[9] H. Saydaliev,et al. Economic impact of crude oil supply disruption on social welfare losses and strategic petroleum reserves , 2022, Resources Policy.
[10] Qunwei Wang,et al. Robust model of electric vehicle charging station location considering renewable energy and storage equipment , 2022 .
[11] M. Song,et al. The evolution of renewable energy and its impact on carbon reduction in China , 2021 .
[12] Boqiang Lin,et al. Understanding the green total factor energy efficiency gap between regional manufacturing—insight from infrastructure development , 2021 .
[13] A. Bilal,et al. Energy financing in COVID-19: how public supports can benefit? , 2021, China Finance Review International.
[14] Sajid Iqbal,et al. Energy financing for energy retrofit in COVID-19: Recommendations for green bond financing , 2021, Environmental Science and Pollution Research.
[15] S. Hamdaoui,et al. Multi-objective optimization of passive energy efficiency measures for net-zero energy building in Morocco , 2021 .
[16] Ghulam Mohi Ud Din,et al. Economic and financial impact of the COVID-19 pandemic in South Asia , 2021, Environmental Science and Pollution Research.
[17] L. Aldieri,et al. Evaluation of energy resilience and adaptation policies: An energy efficiency analysis , 2021 .
[18] Nadeem Javaid,et al. A multi-objective energy optimization in smart grid with high penetration of renewable energy sources , 2021 .
[19] Feng Dong,et al. How does industrial convergence affect the energy efficiency of manufacturing in newly industrialized countries? Fresh evidence from China , 2021 .
[20] Q. Tu,et al. Using green finance to counteract the adverse effects of COVID-19 pandemic on renewable energy investment-The case of offshore wind power in China , 2021, Energy Policy.
[21] N. Iqbal,et al. Does green finance matter for sustainable entrepreneurship and environmental corporate social responsibility during COVID-19? , 2021, China Finance Review International.
[22] V. H. Dong,et al. Mission, challenges, and prospects of renewable energy development in Vietnam , 2021, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects.
[23] Yongxiu Chen,et al. Marketization, Industrial Structure Upgrading, and Energy Efficiency , 2021, Energy RESEARCH LETTERS.
[24] Fengsheng Chien,et al. Vertical financial disparity, energy prices and emission reduction: Empirical insights from Pakistan. , 2021, Journal of environmental management.
[25] Samuel Asumadu Sarkodie,et al. Energy efficiency: The role of technological innovation and knowledge spillover , 2021, Technological Forecasting and Social Change.
[26] Theodoros Evgeniou,et al. Artificial intelligence to support the integration of variable renewable energy sources to the power system , 2021 .
[27] Pin Jern Ker,et al. Battery storage systems integrated renewable energy sources: A biblio metric analysis towards future directions , 2021 .
[28] Avik Sinha,et al. Impact of technological innovation on energy efficiency in industry 4.0 era: Moderation of shadow economy in sustainable development , 2021 .
[29] S. Saleem,et al. The relationship between renewable energy sources and sustainable economic growth: evidence from SAARC countries , 2021, Environmental Science and Pollution Research.
[30] Muhibbuddin,et al. A critical review of the integration of renewable energy sources with various technologies , 2021 .
[31] M. Hussein,et al. Estimating role of Green Financing on Energy Security, Economic and Environmental Integration of BRI member countries , 2021 .
[32] Maria Johansson,et al. Bolstering a transition for a more sustainable energy system: A transformative approach to evaluations of energy efficiency in buildings , 2021 .
[33] Mouloud Denai,et al. A Technical analysis investigating energy sustainability utilizing reliable renewable energy sources to reduce CO2 emissions in a high potential area , 2021, Renewable Energy.
[34] Muhammad Safdar Sial,et al. Exploring the Relationship between Renewable Energy Sources and Economic Growth. The Case of SAARC Countries , 2021, Energies.
[35] Vikram Kumar Kamboj,et al. Impact of Renewable Energy Sources into Multi Area Multi-Source Load Frequency Control of Interrelated Power System , 2021, Mathematics.
[36] Pieter de Wilde,et al. The interaction between humans and buildings for energy efficiency: A critical review , 2021, Energy Research & Social Science.
[37] Hirohisa Aki,et al. Assessment of utilization of combined heat and power systems to provide grid flexibility alongside variable renewable energy systems , 2021 .
[38] Ning Zhang,et al. Power system transition in China under the coordinated development of power sources, network, demand response, and energy storage , 2020, WIREs Energy and Environment.
[39] M. Mohsin,et al. Assessing the socio-economic viability of solar commercialization and electrification in south Asian countries , 2020, Environment, Development and Sustainability.
[40] W. Iqbal,et al. It is time to control the worst: testing COVID-19 outbreak, energy consumption and CO2 emission , 2020, Environmental Science and Pollution Research.
[41] M. Mohsin,et al. Managerial policy and economic analysis of wind-generated renewable hydrogen for light-duty vehicles: Green solution of energy crises , 2020, Environmental Science and Pollution Research.
[42] M. Mohsin,et al. Assessing the perceived impact of exploration and production of hydrocarbons on households perspective of environmental regulation in Ghana , 2020, Environmental Science and Pollution Research.
[43] M. M. Q. Abro,et al. Impact of average temperature, energy demand, sectoral value added, and population growth on water resource quality and mortality rate: it is time to stop waiting around , 2020, Environmental Science and Pollution Research.
[44] Huaping Sun,et al. Scaling up renewable energy in Africa: measuring wind energy through econometric approach , 2020, Environmental Science and Pollution Research.
[45] M. Mohsin,et al. Trilemma assessment of energy intensity, efficiency, and environmental index: evidence from BRICS countries , 2020, Environmental Science and Pollution Research.
[46] Dina Azhgaliyeva,et al. Introduction to the special issue: Scaling Up Green Finance in Asia , 2020 .
[47] M. Lenzen,et al. The impact of battery energy storage for renewable energy power grids in Australia , 2019, Energy.
[48] J. Sachs,et al. Importance of Green Finance for Achieving Sustainable Development Goals and Energy Security , 2019, Handbook of Green Finance.
[49] Hongmei Yu,et al. Water electrolysis based on renewable energy for hydrogen production , 2018 .
[50] Yee Wan Wong,et al. Hybrid energy storage systems and control strategies for stand-alone renewable energy power systems , 2016 .
[51] B. Stram. Key challenges to expanding renewable energy , 2016 .
[52] P. Moriarty,et al. Can renewable energy power the future , 2016 .
[53] S. Amrouche,et al. Overview of energy storage in renewable energy systems , 2015, 2015 3rd International Renewable and Sustainable Energy Conference (IRSEC).
[54] Luiz A. de S. Ribeiro,et al. Power Control in AC Isolated Microgrids With Renewable Energy Sources and Energy Storage Systems , 2015, IEEE Trans. Ind. Electron..
[55] Sung-Hoon Ahn,et al. Optimization of hybrid renewable energy power systems: A review , 2015, International Journal of Precision Engineering and Manufacturing-Green Technology.
[56] David Kleinhans,et al. Integration of Renewable Energy Sources in future power systems: The role of storage , 2014, 1405.2857.
[57] Luis M. Fernández,et al. Improving long-term operation of power sources in off-grid hybrid systems based on renewable energy, hydrogen and battery , 2014 .
[58] Mohd Wazir Mustafa,et al. Energy storage systems for renewable energy power sector integration and mitigation of intermittency , 2014 .
[59] Yuri V. Vorobiev,et al. About the Possibilities of Using the Renewable Energy Power Sources on Railway Transport , 2013 .
[60] Xisheng Tang,et al. Energy storage control in renewable energy based microgrid , 2012, 2012 IEEE Power and Energy Society General Meeting.
[61] Chrysovalantou Ziogou,et al. Automation infrastructure and operation control strategy in a stand-alone power system based on rene , 2011 .
[62] Gisèle Schmid,et al. The development of renewable energy power in India: Which policies have been effective? , 2011 .
[63] Steven Goh,et al. Potential of renewable energy alternatives in Australia , 2011 .
[64] Ahmed Yousuf Saber,et al. Plug-in Vehicles and Renewable Energy Sources for Cost and Emission Reductions , 2011, IEEE Transactions on Industrial Electronics.
[65] João Figueiredo,et al. Energy Production System Management – Renewable energy power supply integration with Building Automation System , 2010 .
[66] F. Blaabjerg,et al. Power electronics for renewable energy systems , 2006, 2009 International Conference on Power Engineering, Energy and Electrical Drives.
[67] Henrik Lund,et al. Renewable energy strategies for sustainable development , 2007 .
[68] T.J. Hammons,et al. Integrating Renewable Energy Sources into European Grids , 2006, Proceedings of the 41st International Universities Power Engineering Conference.
[69] Huang-Jen Chiu,et al. A multiple-input DC/DC converter for renewable energy systems , 2005, 2005 IEEE International Conference on Industrial Technology.
[70] Cao Binggang,et al. Research on Distributed Renewable Energy Power System , 2005 .
[71] Fatih Evrendilek,et al. Assessing the potential of renewable energy sources in Turkey , 2003 .
[72] K. Agbossou,et al. Renewable energy systems based on hydrogen for remote applications , 2001 .