scholarly journals What Position Should Indonesia Have in Placing Its Renewable Energy Development and Energy Transition Plan?

2021 ◽  
Vol 4 (2) ◽  
pp. 239-254
Author(s):  
Hanan Nugroho ◽  
Dedi Rustandi ◽  
Nur Laila Widyastuti

Indonesia’s energy face a situation of giddiness in deciding a transition that requires a much larger use of renewable energy, as the country is basically a fossil fuels one but in the other side it is demanded to contribute a bigger role in efforts to mitigate global climate change. Development of Indonesia's energy-environment policies, particularly on renewable energy is highlighted. International agreements on global climate change and Indonesia's participation are described. Foundations of the successful renewable energy development are emphasized. It recommends publishing a renewable energy law, establish regulation regarding renewable energy pricing, develop a carbon pricing system, establish organizational unit regarding energy-climate change, develop renewable energy technology, improve data quality dan grid intrconnection, implement energy conservation, encourage development of REBID and REBED.

2020 ◽  
Vol 1 (2) ◽  
pp. 140-148
Author(s):  
Theresia Betty Sumarno ◽  
Andang Bachtiar ◽  
Artody Nugroho Jati

Indonesia is known as the largest economy in South East Asia and as one of the emerging lower-middle-income countries. Before the pandemic Covid-19, Indonesia forecasted its GDP growth to increase to 5.5% in 2020. However, this never happened following the pandemic it decreased to 2.97% in the first quarter of 2020. This paper focuses on the renewable energy role in accelerating the economic recovery in Indonesia by emphasising the role of justice in the transition process. We conduct systematic reviews from different sources, both primary and secondary resources. We qualitatively analyse the energy regulation and energy road map in Indonesia as well as some academic research articles. Indonesia has developed its general energy plan related to the energy mix demand and supply, which includes a long-term plan on developing renewable energy sources and reducing the use of fossil fuels. As the fourth most populated country in the world, Indonesia still focusses on cheap energy supply and energy access to fulfil the energy demand. Therefore the transition process in Indonesia is considered slow compared to the OECD countries. There is a significant role of energy in economic growth, both energy consumption and energy resources. Until now, fossil fuels have dominated the Indonesian energy supply and demand. This paper highlights the role of renewable energy in the economic development of the country. This paper suggests that the pandemic has highlighted the energy transition movement in Indonesia. The Covid-19 has driven more research on the role of renewable energy project to the economic development and demonstrate that a transition to a low-carbon economy could contribute to the economic recovery in a justice way in many sectors. Renewable energy development contributes directly to human resources development, and this development also contribute to health sector improvement. Finally, this renewable energy development could accelerate the economic recovery in Indonesia and reach 5.2 to 5.6% in 2021.


Energies ◽  
2021 ◽  
Vol 14 (5) ◽  
pp. 1347
Author(s):  
Kyriakos Maniatis ◽  
David Chiaramonti ◽  
Eric van den Heuvel

The present work considers the dramatic changes the COVID-19 pandemic has brought to the global economy, with particular emphasis on energy. Focusing on the European Union, the article discusses the opportunities policy makers can implement to reduce the climate impacts and achieve the Paris Agreement 2050 targets. The analysis specifically looks at the fossil fuels industry and the future of the fossil sector post COVID-19 pandemic. The analysis first revises the fossil fuel sector, and then considers the need for a shift of the global climate change policy from promoting the deployment of renewable energy sources to curtailing the use of fossil fuels. This will be a change to the current global approach, from a relative passive one to a strategically dynamic and proactive one. Such a curtailment should be based on actual volumes of fossil fuels used and not on percentages. Finally, conclusions are preliminary applied to the European Union policies for net zero by 2050 based on a two-fold strategy: continuing and reinforcing the implementation of the Renewable Energy Directive to 2035, while adopting a new directive for fixed and over time increasing curtailment of fossils as of 2025 until 2050.


Stanovnistvo ◽  
2017 ◽  
Vol 55 (1) ◽  
pp. 1-20 ◽  
Author(s):  
Predrag Petrovic ◽  
Goran Nikolic ◽  
Ivana Ostojic

Over the past several decades there has been a strong intensifying trend of human society impact on ecosystems, consumption of natural resources and global change. The environmental impact of the society is fully apparent and dominantly implemented through various greenhouse gases emissions (GHG), leading towards global climate change with considerably spread harmful effects. Global climate change includes the earth and ocean surface and atmospheric warming, but also melting of snow and ice, increase of sea levels and ocean acidity, as well as ever more common natural phenomena extremes (winds, various forms of rainfall/precipitation, extremely low or high temperatures, etc.). Scientists are well-familiarized with the fact that use of fossil fuels, such as oil derivatives and coal, is the main generator of harmful gases. In addition, possible substitutions for fossil fuels in the form of other energy sources are very limited, and it should be remembered that other energy sources also have certain adverse environmental effects. Bearing in mind climate change caused by products of fossil fuels combustion, as well as inevitable depletion of natural crude oil resources, management of growing global energy demand becomes one of the key goals and challenges of 21st century. If these reasons are coupled with obligations emanating from Kyoto Protocol, it is clear that attention of researches should be more than reasonably focused on the main determinants of energy consumption. This study is focused on illumination of key demographic and economic determinants of energy consumption in 28 EU member states in the period 1960- 2014. The results obtained demonstrate that population positively and quite strongly influence total energy consumption. An increase of population of 1% will result in an increase of energy consumption of 1.59% to 1.76%. Such relation most probably can be explained by the fact that demographic growth of the society aggravates and complicates planning processes of efficient energy consumption, diminishing the ability of society to be energy efficient. The population effect of persons aged 65 and above to energy consumption is also positive. An increase in share of this age group of 1% will result in an increase in energy consumption of approximately 0.43%. Positive elasticity coefficient should be understood as a proof that European societies with higher share of senior citizens consume more energy that societies with higher share of younger population, not necessarily as an argument that senior citizens use more energy than younger population. The explanation for such nature of a cause-andeffect relation could be that high share of senior citizens influences the structure of production and consumption, spatial distribution of population, transport infrastructure and social services provided. A significant influence on energy consumption in the EU is made by the level of economic development of countries, which is in accordance with the Environmental Kuznets Curve (EKC), suggesting a relation of inverted letter ?U?. The amount of income per capita needed to have the EKC expressed ranges between 54,183 and 81,552 dollars.


Glaciers ◽  
2015 ◽  
Author(s):  
Jorge Daniel Taillant

In the preceding chapters of this book, we’ve traveled through a world of ice that was probably largely uncharted for most of us. Hopefully, we’ve learned a little bit about these fantastic frozen natural resources that play such a fundamental role in the sustainability and balance of our global ecosystem. Glaciers are melting. They are in danger because we have placed them in danger and, as such, we need to take note of and responsibility for this vulnerability, not only to protect glaciers but also to protect the very essence of our global habitat. Glaciers have been unprotected because they are obscure, removed, alien to our daily lives, located in far away places that are for the most part inhospitable to our way of life. And yet, they are a fundamental and integral part of our way of life. With modern tools like the Internet and programs like Google Earth, we can get closer to these fabulous vulnerable resources, to learn about them and work to protect them. The world is challenged today to address global climate change. If we envision a sustainable and harmonious environment in our future, we must progressively move away from fossil fuels and introduce a more balanced and sustainable mix of energy sources grounded on renewable energy. We must find solutions to generating, harnessing, transporting, and managing renewable energies, and we must progressively phase out oil and gas from our daily lives. It is possible; it just takes personal and collective conviction to set ourselves in motion to achieve this goal. Glaciers are a majestic resource, inspiring awe and wonder in a world of frozen beauty that awaits our discovery but that also alerts us to our excesses and indifference. We are losing our glaciers because we have ignored the extreme vulnerability of our planetary ecosystem, and we now must face difficult decisions about policy, consumption, and lifestyle changes that shake the foundations of our society. Global climate change for many seems intangible.


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