Sustainable Energy Transition for Renewable and Low Carbon Grid Electricity Generation and Supply

Устойчивый энергетический переход к производству и поставкам электроэнергии из возобновляемых источников и низкоуглеродной энергосистеме
Oludolapo Akanni Olanrewaju, Moses Jeremiah Barasa Kabeyi
2022-03-24

advanced energy storagelow-carbon electricityrenewable electricity generationsustainable energy transitionvariable renewable energy
The greatest sustainability challenge facing humanity today is the greenhouse gas emissions and the global climate change with fossil fuels led by coal, natural gas and oil contributing 61.3% of global electricity generation in the year 2020. The cumulative effect of the Stockholm, Rio, and Johannesburg conferences identified sustainable energy development (SED) as a very important factor in the sustainable global development. This study reviews energy transition strategies and proposes a roadmap for sustainable energy transition for sustainable electricity generation and supply in line with commitments of the Paris Agreement aimed at reducing greenhouse gas emissions and limiting the rise in global average temperature to 1.5°C above the preindustrial level. The sustainable transition strategies typically consist of three major technological changes namely, energy savings on the demand side, generation efficiency at production level and fossil fuel substitution by various renewable energy sources and low carbon nuclear. For the transition remain technically and economically feasible and beneficial, policy initiatives are necessary to steer the global electricity transition towards a sustainable energy and electricity system. Large-scale renewable energy adoption should include measures to improve efficiency of existing nonrenewable sources which still have an important cost reduction and stabilization role. A resilient grid with advanced energy storage for storage and absorption of variable renewables should also be part of the transition strategies. From this study, it was noted that whereas sustainable development has social, economic, and environmental pillars, energy sustainability is best analysed by five-dimensional approach consisting of environmental, economic, social, technical, and institutional/political sustainability to determine resource sustainability. The energy transition requires new technology for maximum use of the abundant but intermittent renewable sources a sustainable mix with limited nonrenewable sources optimized to minimize cost and environmental impact but maintained quality, stability, and flexibility of an electricity supply system. Technologies needed for the transition are those that use conventional mitigation, negative emissions technologies which capture and sequester carbon emissions and finally technologies which alter the global atmospheric radiative energy budget to stabilize and reduce global average temperature. A sustainable electricity system needs facilitating technology, policy, strategies and infrastructure like smart grids, and models with an appropriate mix of both renewable and low carbon energy sources.
1
A resilient grid with advanced energy storage is needed to absorb and manage variable renewable electricity.
2
Energy sustainability should be evaluated across five dimensions: environmental, economic, social, technical, and institutional or political sustainability.
3
Fossil fuels accounted for 61.3% of global electricity generation in 2020, making decarbonization the central sustainability challenge.
4
Policy initiatives are necessary to maintain the technical and economic feasibility of the global transition while supporting large-scale renewable deployment.
5
Sustainable electricity transition requires demand-side energy savings, improved generation efficiency, and substitution of fossil fuels with renewables and low-carbon nuclear power.
6
The proposed transition roadmap aligns sustainable electricity generation and supply with the Paris Agreement’s goal of limiting warming to 1.5°C.

Electricity generation and supply system undergoing a sustainable energy transition toward renewable and low-carbon sources

Strategies, technological changes, policy measures, and multidimensional sustainability requirements for reducing greenhouse-gas emissions and integrating renewable energy into the electricity system

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2022-03-24
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Oludolapo Akanni Olanrewaju
Moses Jeremiah Barasa Kabeyi
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