Energy Cooperation With North Korea: Conditions Making Renewable Energy Appropriate

2020 ◽  
Vol 29 (4) ◽  
pp. 449-468
Author(s):  
Heejin Han

North Korea remains one of the countries whose energy conditions should be drastically improved not just for its own people but also for the international community to achieve multiple energy-related goals under the United Nations Sustainable Development Goals. To generate future energy cooperation ideas, this study examines previously proposed or implemented programs between North Korea and international entities, recognizing that they have largely neglected to incorporate the evolving local energy landscape and priorities of North Korea. This study thus pays particular attention to the development and diffusion of renewable energy under the Kim Jong-un administration, from which it draws a policy-oriented suggestion that the renewable energy field could offer a path to future international energy cooperation with North Korea.

2020 ◽  
Vol 1 ◽  
Author(s):  
Rebecca R. Hernandez ◽  
Sarah M. Jordaan ◽  
Ben Kaldunski ◽  
Naresh Kumar

Energy development improves quality of life for humans, but also incurs environmental consequences. A global energy transition from fossil fuels to renewable energy may mitigate climate change but may also undermine the capacity to achieve some or all 17 Sustainable Development Goals (SDGs). In this study, we use an innovation systems approach to construct a comprehensive roadmap for solar and wind energy to anticipate and improve impacts of a transition to a low carbon future in a manner ensuring climate goals and SDGs are mutually reinforcing. Our multidisciplinary approach began with an assessment of public investments in renewable energy followed by a 2-day research prioritization workshop. Fifty-eight expert workshop participants identified six research themes that proactively address the environmental sustainability of renewable energy. Next, we identified linkages between the six research themes and all 17 SDGs. Finally, we conducted a scientiometric analysis to analyze the research maturity of these themes. The results of these efforts elucidated the limits of existing knowledge of renewable energy-SDG interactions, informing the development of a research, development, demonstration, and deployment (RD3) roadmap to a renewable energy future aligned with both climate goals and SDGs. The RD3 roadmap has been designed to systematically develop solutions for diverse actors and organizations. Overall, our findings confer a broad vision for a sustainable transition to renewables to minimize unintended environmental consequences while supporting interoperability among actors particularly poised to influence its magnitude and direction.


2020 ◽  
Vol 32 (1) ◽  
Author(s):  
Mohd Fadhil Md. Din ◽  
Santhana Krishnan ◽  
Din Yu-You Li ◽  
Yu Qin

The renewable energy industry is instrumental to the achievement of all of the Sustainable Development Goals (SDGs). Given the urgency and scale at which renewables must be deployed to meet the world’s sustainable development and climate goals, it is critical that the industry understand its potential impact on all of the SDGs [McCollum et al., 2019]. This mini revision of energy and its relationship with Sustainable Development Goals (SDGs) is mainly towards the agenda of Decarbonize by Mid-Century, Roadmap to 2050, as the aspiration of the “The World in 2050” (TWI 2050), which transformational of six exemplary to achieve SDGs in long-term period [Stanford et al., 2017]. The Roadmap 2050 dreams for six pillars, which are (1) Zero-Carbon electricity, (2) Electrification of end users, (3) Green Synthetic Fuels, (4) Smart Power Grids, (5) Material Efficiency, and (6) Sustainable Land-use. This pillar is only emphasizing the most intensified sectors that could threaten future society, which are Power, Industry, Transportation and Buildings [Khanna et al., 2019]. However, this update only describes the most related topic on Energy (or Power) as the subject matter. Currently, the recent attention of the common energy sector is to promote the Energy Efficiency Index (EEI), minimizing the coal-fuel or fossil-fuel burning system in energy and transportation sectors, and implementing the Renewable Energy initiatives [Anderson et al., 2018]. SDGs and all impose materials (indicator, measurement, impact and outcome) is not only strategize to make further improvement in life and planet, but beyond the prosperity of humanity in the future with the emphasize of “No One Left Behind”. Energy-research based is the contemporary engagement with Higher Education Institutions (HEIs), industry-driven, community translational project and government policy. The aims of this interesting topic are concurrent with the ASEAN Renewable and Energy Roadmap under the Science, Technology and Innovation (STI) for the agenda 2030. Therefore, the initiative by “The Hitachi Global Foundation” is recruiting more youth program in the assessment of “promoting of academic research, science and technology” since 2015 for the purpose of pioneering research in society [Hitachi report, 2019]. One of the important enabling sustainability activity is “Energy, Environment” as the contribution to the international community and provide solution to the various issues and challenges. Any research related to the energy will bring back the concepts of SDGs, which combining the 5Ps (Prosperity, People, Partnership, Peace and Planet). Numbers of researchers participating the utmost inspiring “research and empowerment of society” program is being selected based on scientific knowledge, creativity and contribution to the publics. One of the global outcome is a similar targeted by “Roadmap to 2050”, with the clause supporting the RD activities that should aims for continuous process of decarbonisation society and lock-in the solution in long run. Thus, as one of the influential contribution in the roadmap and TWI 2050, The Global Hitachi Foundation is a one step ahead to engage more researchers in the SDGs implementation.


2020 ◽  
Vol 15 (3) ◽  
pp. 183-190
Author(s):  
Kshitiz Khanal ◽  
Bivek Baral

As most nations have adopted the Sustainable Development agenda to achieve the 17 Sustainable Development Goals (SDGs) by 2030, it is vital that planning of energy systems at local, regional and national levels also align with the agenda in order to achieve the goals. This study explores the sustainability of primary energy resources of a rural community to meet growing demands of the community, in order to achieve SDGs for energy access Goal no. 7 (SDG7) at local level. Using a linear back-casting techno-economic energy access model that informs the expected change in energy demand in order to reach SDG7 targets, this study examined whether local energy resources would be enough to achieve the targets for Barpak VDC (named such at the time of data collection before Nepal’s administrative restructuring), and explored the possibility of importing electricity from national grid to attain SDG7 targets. By analyzing the outputs of the model for Barpak, we found that currently assessed local energy resources are insufficient to meet the energy access targets. Importing electricity from national grid, in addition to the mini-hydropower plant currently in operation at Barpak is needed to achieve the targets. Huge cost investment and timely expansion of transmission and distribution infrastructure is crucial. By 2030, total energy demand is expected to grow up to 50,000 Gigajoules per year. Electricity import from national grid grows steadily, reaching up to 45,000 Gigajoules in 2030. The social costs of energy will continue to be dominated by household sector till 2030, reaching up to 30 million Nepali Rupees per year in total. Use of wood as fuel, the only significant source of emission in the model is modeled to decrease linearly and stop by 2030, as required by SDGs. Emission of 17 Metric Tonnes of Carbon-dioxide and 4.5 million kg Methane equivalent is reduced to zero at 2030. This model serves as an innovative approach to integrate SDG targets to local and regional energy planning process, and can be adopted for energy systems and policy planning for various regions in Nepal.


Proceedings ◽  
2020 ◽  
Vol 30 (1) ◽  
pp. 72
Author(s):  
Jesús Rodrigo-Comino

Nowadays, the scientific community is aware of the negative environmental impacts of soil erosion on ecosystem services. Soil erosion is one of the most important causes of land degradation because of its immediate influence of the most fertile topsoil parts. It is well-known that questions related to who, what, why, where and when soil erosion causes negative impacts must be considered by stakeholders and policymakers. However, why do the Sustainable Development Goals tell anything about soil erosion? In this keynote, we will try to show the importance to develop tools which can be used to assess soil erosion to obtain convincing results for stakeholders and policymakers. According to this fact, we present some studies related to in situ soil erosion measures and assessments of human perception and economical approaches. We fully agree that these kinds of studies will greatly benefit the visibility, trust and diffusion of our results. What do you think about this question? Let me know your opinion.


2019 ◽  
Vol 5 (1) ◽  
Author(s):  
Jonathan J. Buonocore ◽  
Ernani Choma ◽  
Aleyda H. Villavicencio ◽  
John D. Spengler ◽  
Dinah A. Koehler ◽  
...  

An amendment to this paper has been published and can be accessed via a link at the top of the paper.


2020 ◽  
Vol 4 (4) ◽  
pp. 69-95
Author(s):  
Renske Jongsma ◽  
Bart Jan (Bartjan) Pennink

Aim: Building upon stakeholder and institutional theory, this paper investigates the relationship between product diversification and corporate social performance (CSP), thereby attempting to make essential contributions to the current literature. Based on an extensive literature review, it was expected that related, unrelated and total product diversification are positively related to CSP. Moreover, it was hypothesized that the exposure to weak institutional host country environments negatively affects the relationship between diversification and CSP, and that the Sustainable Development Goals (SDGs) have a positive effect on the relationship. Design / Research methods: The sample selected for this research is the non-renewable energy industry, since the industry shows great divergence in terms of corporate social responsibility (CSR) performance. In addition, the industry is highly susceptible to regulatory changes, while the Sustainable Development Goals have an enormous focus on the reliability and sustainability of energy, making it a highly relevant industry to study. This study analyzed 40 a 40 non-renewable energy firms over a time frame of seven years, by using OLS regression. Conclusions / findings: The results reveal that unrelated diversification is positively related to CSP, while the other forms of diversification show insignificant results. Contrary to expectations, the Sustainable Development Goals negatively affect the relationship between product diversification and CSP, while the moderating effect of exposure to weak institutional environments is insignificant. Originality / value of the article: Research on the relationship between product diversification on corporate financial performance is well-established, but the way in which product diversification influences a firm’s behavior towards stakeholder demands and social concerns remains largely unexplored. Accordingly, the results of this study challenge existing theories while adding more context to the existing relationship, and in turn provide promising avenues for future research.


2021 ◽  
Vol 23 (4) ◽  
pp. 51-58
Author(s):  
ALEXANDER BUCHNEV ◽  

The article discusses the environmental features of the active use of renewable energy and its impact on the decarbonization process on the example of the EU countries to achieve sustainable development goals. The materials consider the comparative assessment of environmental impacts of renewable and nuclear energy in the context of assessing the carbon footprint of these types of energy, comparative analysis of harmful substances over the life cycle of an electric power generator, and the possibility of referring nuclear energy to renewable energy sources. The article discusses the stimulating role of the EU Taxonomy regulatory document, which was specially developed in the European Union. The document is part of the state regulatory policy in the conjugate development of renewable and non-renewable energy; the paper provides active support to subjects of innovation and investment activities, demonstrating the best performance in their segment or industry in terms of greenhouse gas emissions, and does not prevent the development and implementation of new low-carbon alternatives, including based on ESG. Particular attention is paid to the disposal of end-of-life equipment, including such promising areas as solvolysis technology. The author offers a number of recommendations for further improvement in this area of activity. The article shows the role of environmental costs in the tariffs for electricity production from different types of primary energy sources. The author examines the contribution of national economies of countries outside the European Union that have stabilized and reduced carbon dioxide emissions on a global scale.


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