Naphtha Demand Modeling and Its Implications for Refining Configuration in the Era of Energy Transition
Volume 10, Issue 2, Spring 2026
https://doi.org/10.22050/pbr.2026.570861.1427
Afshar Bazyar, Saeid daneshi
Abstract In the context of the energy transition and increasingly stringent climate policies, understanding oil demand requires a product-specific perspective that goes beyond aggregate indicators. This study examines naphtha, a key feedstock linking the refining and petrochemical sectors, and analyzes the factors associated with its demand across ten major oil-consuming countries during 2000–2024. Using long-term panel data, naphtha prices are first modeled as a function of crude oil prices through an ARMA specification, after which a naphtha demand equation is estimated with cross-section fixed effects and a lagged dependent variable. The results indicate that naphtha demand is significantly associated with economic growth and downstream petrochemical product prices, especially olefins and aromatics. The positive and statistically significant lagged demand term suggests persistence and gradual adjustment in consumption, consistent with structural inertia in petrochemical feedstock use. Overall, the findings suggest that the energy transition may reshape the composition of oil demand rather than lead to a uniform decline across all petroleum products. The results provide policy-relevant insights for product-specific energy-transition strategies, refinery reconfiguration, and refinery–petrochemical integration, while underscoring that the estimated relationships should be interpreted as conditional associations rather than causal effects.
New Technologies and the Geopolitics of the Global Oil Economy in the Age of Energy Transition
Volume 5, Issue 1, Winter 2021, Pages 27-38
https://doi.org/10.22050/pbr.2021.273065.1165
Ali Esmaeili Ardakani, Morteza Shokri, Faramarz Tamanna Shakeri
Abstract Currently, the global community is on the threshold of a transition from fossil fuels as a result of transformations such as climate change, entailing the strict implementation of carbon setoff policies and quick progress in green technologies. A transition to clean, low-carbon energies will not only disrupt the global energy system, it will also impact the global economy and political dynamism within and without all states. Based on these transformations, the present article asks the question of how the energy transition will impact the geopolitical future of the global oil economy. The authors hypothesize the following in answer to this question: Given the superior, more advanced position of economic powers such as China and the US in clean energy technologies, we are likely to witness the weakening of traditional oil powers in a post-carbon world, such as the Middle East and North African countries (MENA) and Russia; in contrast, the balance of power will tilt heavily towards current energy consumers. Technology-savvy countries have the knowledge to reproduce and stabilize their power in the global economy. The traditional countries of the energy sector, however, face shortfalls in their infrastructure and modern technologies and will lose their geopolitical position to a large extent.
Energy Transition Modelling in Iran: An Evidence from the ARDL Bound Testing Method
Volume 4, Issue 2, Spring 2020, Pages 35-43
https://doi.org/10.22050/pbr.2020.251584.1125
Mohamad Nasr Esfahani, Ehsan Rasoulinezhad
Abstract The challenge of environmental pollution and climate change have made countries to develop energy transition progress to move from non-renewable energy sources towards renewable ones. This paper seeks to consider energy transformation process and analyze its pattern in Iran by modeling through the ARDL bounding testing method over the period of 1993-2018. The empirical estimations depicted that in the long-run economic growth and inflation rate negatively impact on energy transformation of Iran, while increase in carbon dioxide emissions and appreciation of Iran’s national currency accelerate the energy transition process in Iran. Regarding the short-run relationship, the major results represented an evidence of positive impact of exchange rate on Iran’s energy transition process, while the other variables have negative coefficient. As a major concluding remark, for the case of Iran, the findings prove that the influential impacts of explanatory variables on energy transformation are stronger in long-run rather than in short-run. Therefore, the presence of efficient long-run energy planning is recommended.
