LPG – PetroGaz

LPG

A lower pollutant emission alternative to the conventional fossil fuel

LPG : A practical and versatile energy solution

LPG is a by-product of the extraction and refining of crude oil and natural gas; if not used, it is burned in a torch.

The current LPG logistics infrastructure is already existing and extensive and does not require further investment.

LPG has a high calorific value when compared to other traditional energy sources. Being a gaseous fuel, the equipment that uses it (boilers, heat pumps, water heaters, etc.) have higher efficiencies.

LPG can contribute to improved air quality by reducing emissions of certain air pollutants, including particulate matter, compared with certain conventional fossil fuels, such as coil, fossil fuel, gasoline, in comparable applications.
Supporting evidence : (1)

LPG is not classified as a greenhouse gas (GHG), however, its combustion generates greenhouse-gas emissions.
LPG can contribute to climate change mitigation when used in applications where its greenhouse-gas emissions are lower than those of a specified conventional fuel, as demonstrated by relevant comparative life-cycle assessments.
Supporting evidence: (2)

At room temperature, when subjected to moderate pressure, LPG changes to a liquid state, facilitating its storage and transport.

LPG arrives everywhere, is independent of any distribution network and does not require investment.

Physical characteristics

LPG is neither toxic nor poisonous. However, it has anaesthetic properties and it is better to avoid breathing it. In the liquid state, due to the rapid evaporation, if it comes into contact with the skin or eyes it can cause cold burns. It is therefore necessary to avoid contact. In addition, since LPG has a higher density than air, it tends to stratify downwards if dispersed in the environment.

Safety

PetroGaz has always distinguished itself, in the LPG market, for innovation and research of the highest standards of security, efficiency and technology, thanks to a constant modernization of plants and structures in strict compliance with the regulations in force.

All this, while continuously seeking to reduce the environmental impact of LPG, where this has been documented, by implementing specific, measurable improvements across its production, transport and distribution, in accordance with applicable environmental requirements.

SOME USEFUL DATA

Calorific value: comparison of energy sources

FUELS LCV [kcal] *Lower Calorific Value YIELD [%] USEFUL ENERGY [kcal]
LPG (Propane) 11.000 [/kg] 90 9.900 [/kg]
LPG (Butane) 10.900 [/kg] 90 9.810 [/kg]
DIESEL OIL 8.796 [/lt] 90 7.916 [/lt]
PETROL 7.568 [/lt] 90 6.811 [/lt]
BTZ 9.560 [/kg] 75 7.170 [/kg]
WOOD 3.500[/kg] 65 2.275 [/kg]
METHANE 8.843[/m3] 95 8.400 [/m3]
LNG 9.176 [/m3] 100 9.176 [/m3]
NCG 1.693.044 [/m3] 100 1.693.044 [/m3]
PELLET 4.500[/kg] 75 3.375 [/kg]
ELECTRIC POWER 860 [/kWh] 100 860 [/kWh]

Supporting evidence

(1)

The European Commission’s European Alternative Fuels Observatoty_EAFO, https://alternative-fuels-observatory.ec.europa.eu/general-information/alternative-fuels)

https://www.worldliquidgas.org/faq/what-is-the-impact-of-lpg-on-the-environment/

(2)

Examples :

a. Heating : In residential heating a comparative European study found that new LPG heating systems had a 20% lower carbon footprint than heating-oil systems. A comparative study of European heating systems found that new LPG heating systems had a 20% lower carbon footprint than heating-oil systems.

(Scientific Study:
Carbon footprints of heating oil and LPG heating systems
Journal: Environmental Impact Assessment Review (2012)

b. In automotive use.

Scientific studies have demonstrated that LPG passenger cars produced lower emissions of CO2 than comparable gasoline and diesel vehicles.

According to the scientific study “Determination of Euro 6 LPG passenger car emission factors through laboratory and on-road tests: Effect on nation-wide emissions assessment for Italy

Journal: Atmospheric Environment: X (2022),

in the tested Euro 6 bi-fuel passenger cars, LPG reduced CO₂ emissions by approximately 7.8%–9.1% compared with gasoline, depending on the driving cycle.

Also, the Joint Research Centre (JRC)–EUCAR–CONCAWE Well-to-Wheels study evaluates energy use and greenhouse-gas emissions across the fuel life cycle, from fuel production and supply (Well-to-Tank) through vehicle operation (Tank-to-Wheels). Under the assumptions of the relevant Well-to-Wheel assessment, LPG-fueled passenger cars were estimated to produce lower CO₂ emissions than comparable gasoline and diesel vehicles.

(Source : Edwards, R., Larivé, J.-F., and Beziat, J.-C. (2011). Well-to-Wheels Analysis of Future Automotive Fuels and Power Trains in the European Context — Report, Version 3c. JRC Scientific and Technical Reports, EUR 24952 EN. Joint Research Centre, European Commission.

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