Abstract:
Decarbonisation is instrumental in attaining sustainable mobility. To actualize the Ghana Nationally Determined Contribution (NDC) set emission reduction target of 15% relative to Business-As-Usual
(BAU)
scenario by 2030, sustainable
should be
actions
transport
transport, sustainable
encouraged. Thus,
encouraged. Thus,
promoting the use of
romoting
Liquified Petroleum Gas (LPG) and
Lthe use ofiquified Petroleum Gas (LPG)
Compressed Natural Gas
Candompressed Natural Gas
(CNG) in
automobiles is very crucial to ensure efficient and green mobility. Nonetheless, existing policies in
Ghana overlook autogas (LPG/CNG) as prospective decarbonizing solution in the transport sector.
The study employed survey analysis and analytical modeling approach to elicit the benign effects of
autogas in the
in automobiles is very crucial to ensure efficient and green mobility. Nonetheless, existing policies in Ghana overlook autogas (LPG/CNG) as prospective decarbonizing solution in the transport sector. The study employed survey analysis and analytical modeling approach to elicit the benign effects of autogas in the
transport
sector using
using
Accra as
a
case study. The ecological, economic and
study. The ecological, economic and
social
dimensions of autogas were expatiated to extrapolate effective measures to facilitate their smooth
implementation. Survey was
dimensions of autogas were expatiated to extrapolate effective measures to facilitate their smooth implementation. Survey was
central
business
district
of
Accra
to attain the
percentage of autogas and gasoline used by taxis operators for the first time per author's knowledge.
A
carried out
in the
thepercentage of autogas and gasoline used by taxis operators for the first time per author’s knowledge.
A
selected and data
was
drivers
500 taxi
of
purposive
sample
and data
was
analysis
conducted using R
statistical package. From the survey, 14% of taxis were powered with LPG whilst 86% were gasoline,
however, the LPG-powered taxis were retrofitted gasoline engine vehicles. The analytical model was
based on physics principles involving three resistance forces- aerodynamic, rolling resistance and
inertia. CO2 emission savings of 29% and 18.4% were elicited from the use of CNG and LPG relative
to gasoline fuel at the end of the simulation using the ambient conditions in Accra. Thus, use of
autogas will limit global warming impact and aid the country to fulfill its pledged emission target by
2030. The government is entreated to regulate autogas use in the transport sector and increase its
patronage by promoting flexible policies like meager custom duty on imported CNG/LPG vehicles
Rstatistical package. From the survey, 14% of taxis were powered with LPG whilst 86% were gasoline, however, the LPG-powered taxis were retrofitted gasoline engine vehicles. The analytical model was based on physics principles involving three resistance forces- aerodynamic, rolling resistance and inertia. CO2 emission savings of 29% and 18.4% were elicited from the use of CNG and LPG relative to gasoline fuel at the end of the simulation using the ambient conditions in Accra. Thus, use of autogas will limit global warming impact and aid the country to fulfill its pledged emission target by 2030. The government is entreated to regulate autogas use in the transport sector and increase its patronage by promoting flexible policies like meager custom duty on imported CNG/LPG vehicles
as well as tax credits.
Description:
A Publication submitted to the West African Science Service Centre on Climate Change and Adapted Land Use and the Université Abdou Moumouni, Niger in partial fulfillment of the requirements for the degree of Master of Science Degree in Climate Change and Energy