Public Transit as a Catalyst for Emission Mitigation and Air Pollution Reduction: A Case Study in India

Rapid motorization and urbanization have made the transport sector a dominant contributor to air pollution in developing economies such as India. In this study, vehicular emission trends were investigated in Bhubaneswar, a Tier-II smart city, using a combination of questionnaire surveys, video graphic traffic analysis, and IPCC estimation methodologies during October–December 2025. A roadside survey was conducted with a sample size (N = 385), passenger car sample size (N = 520), bus trips (N = 85), and functional unit (g⋅person−1⋅km−1). Primary data regarding vehicle age, emission standards, mileage, and traffic volume were compiled to evaluate average fuel usage and total pollutant loads under estimated field-level traffic conditions. The empirical results indicate that emissions are fundamentally characterized by vehicle configuration, passenger occupancy, and fuel efficiency. Four-wheelers exhibit the highest per capita emissions (1.44 g⋅passenger−1⋅km−1 CO and 0.24 g⋅passenger−1⋅km−1 HC+NOx), primarily due to low occupancy rates. In contrast, buses demonstrate the lowest per capita emissions (0.13 g⋅passenger−1⋅km−1 CO and 0.07 g⋅passenger−1⋅km−1 HC+NOx). The study concludes that transitioning from private modes to public transit could mitigate vehicular emissions from as low as 8–15% (shift from 2W to buses) to as high as 61–80% (all shifting to bus), highlighting the need for strategic planning for sustainable public transportation infrastructure.

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Publication Details

Journal
Gases
Published
2026-10-06
DOI
https://doi.org/10.3390/gases6040047
Primary Topic
Vehicle emissions and performance
Type
article
Field-Weighted Citation Impact
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article

Public Transit as a Catalyst for Emission Mitigation and Air Pollution Reduction: A Case Study in India

Satya Ranjan Samal, Jagdeep Kumar Nayak, Madhu Lisha Pattanaik, Kundan Samal et al.
Gases
Vehicle emissions and performance
article

Public Transit as a Catalyst for Emission Mitigation and Air Pollution Reduction: A Case Study in India

Satya Ranjan Samal, Jagdeep Kumar Nayak, Madhu Lisha Pattanaik, Kundan Samal, Malaya Mohanty, Rashmi Ranjan Samal
article en

Abstract

Rapid motorization and urbanization have made the transport sector a dominant contributor to air pollution in developing economies such as India. In this study, vehicular emission trends were investigated in Bhubaneswar, a Tier-II smart city, using a combination of questionnaire surveys, video graphic traffic analysis, and IPCC estimation methodologies during October–December 2025. A roadside survey was conducted with a sample size (N = 385), passenger car sample size (N = 520), bus trips (N = 85), and functional unit (g⋅person−1⋅km−1). Primary data regarding vehicle age, emission standards, mileage, and traffic volume were compiled to evaluate average fuel usage and total pollutant loads under estimated field-level traffic conditions. The empirical results indicate that emissions are fundamentally characterized by vehicle configuration, passenger occupancy, and fuel efficiency. Four-wheelers exhibit the highest per capita emissions (1.44 g⋅passenger−1⋅km−1 CO and 0.24 g⋅passenger−1⋅km−1 HC+NOx), primarily due to low occupancy rates. In contrast, buses demonstrate the lowest per capita emissions (0.13 g⋅passenger−1⋅km−1 CO and 0.07 g⋅passenger−1⋅km−1 HC+NOx). The study concludes that transitioning from private modes to public transit could mitigate vehicular emissions from as low as 8–15% (shift from 2W to buses) to as high as 61–80% (all shifting to bus), highlighting the need for strategic planning for sustainable public transportation infrastructure.

GasesVol. 6(4)
Shannon Applied Biotechnology Centre (IE), Munster Technological University (IE), KIIT University (IN)
Openalex Percentile: Top 21%
Vehicle emissions and performance
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Public Transit as a Catalyst for Emission Mitigation and Air Pollution Reduction: A Case Study in India — Satya Ranjan Samal, Jagdeep Kumar Nayak, et al. · Gases (2026) | TGRS Research Map | TGRS