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LPG vs Natural Gas: Which is Better?

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17.03.2025

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When choosing a fuel source for heating, cooking, or powering appliances, the options often come down to Liquefied Petroleum Gas (LPG) and natural gas. Both are popular choices that bring unique advantages and applications, but their differences go beyond just where and how they’re used. Knowing the difference between natural gas and LPG allows you to select the best option for your specific needs.

Is LPG a natural gas? How do these two fuel types stack up in terms of cost, convenience, and energy efficiency? This guide will walk you through the natural vs LPG gas essentials to help you make an informed decision.

LPG vs Natural Gas: Pros and Cons

When weighing liquefied petroleum gas vs natural gas options, it’s crucial to understand each fuel’s unique advantages and potential drawbacks.

Natural Gas

Natural gas is a fossil fuel made primarily of methane (CH₄), a colorless and odorless gas.  It’s extracted from deep underground reservoirs and is commonly found near oil reserves. Natural gas is often viewed as the more accessible fuel source due to its widespread use and availability in urban areas.

Pros:

  • Affordable and cost-effective due to established infrastructure, making it an economical choice for household and business users alike.

  • On-demand supply through pipelines ensures continuous delivery without the need for tank refills or storage space.

  • Lower carbon emission levels make it a more environmentally friendly choice for those transitioning away from higher-emission fuels.

Cons:

  • Limited availability in rural areas and remote locations due to complex and costly infrastructure.

  • Lower energy density of natural gas vs LPG means that you’ll need more natural gas to achieve the same amount of heat as LPG.

  • Environmental concerns related to methane, a potent greenhouse gas significantly contributing to global warming and having a more severe ecological impact than CO₂.

LPG

Is LPG the same as natural gas? Well, no. LPG is a type of fuel primarily made up of hydrocarbons, composed mainly of propane (C₃H₈) and butane (C₄H₁₀), both of which are hydrocarbons derived from refining crude oil or processing natural gas. It’s a byproduct collected in the process of natural gas extraction and further pressurized for convenient storage. It’s also essential to understand the difference between propane and LPG since these fuels are often used interchangeably, yet they are not the same.

Pros:

  • High energy content due to a higher calorific value than natural gas. As such, LPG vs NG produces more heat per unit of gas, burning hotter and faster.

  • Portable and flexible storage in pressurized tanks, making it ideal for outdoor settings and mobile setups.

  • Cleaner burning, emitting less CO₂ per unit of energy than oil or coal.

  • Reliable off-grid energy source during power outages or in remote locations where other energy sources may not be viable.

Cons:

  • Higher cost per unit of energy than natural gas, primarily due to transportation, storage, and limited supply chains in some areas.

  • Storage requirements call for pressurized tanks, which add costs and can pose risks if not handled properly.

  • Inconsistent supply in some areas due to delivery chain disruptions, especially in remote locations or during adverse weather.

Key Differences Between Natural Gas and LPG

Though both are popular energy sources, each fuel type has unique characteristics that make it more suitable for certain applications or scenarios. So, here’s a summary of major aspects to consider when each option is better for your situation.

Composition and Properties

What’s the difference between LPG and natural gas? Primarily, it’s the chemical formula. Natural gas is about 70-90% methane, while LPG is a mix of propane and butane. Both fuels require oxygen for combustion, yet oxygen-to-gas ratios for LPG vs natural gas are 25:1 vs 10:1 accordingly.

Energy Content

At 93.2MJ/m3, LPG has more than twice the energy content of natural gas at 38.7MJ/m3, thus producing more heat and energy with a smaller volume. As such, it’s a highly efficient choice for applications that require intense or sustained heat, like cooking or heating in colder climates.

Delivery and Storage

While requiring vaporization for final use, LPG is stored in a liquid form in pressurized cylinders or LPG tanks, making it portable and ideal for locations where gas pipelines are not available. However, access to fuel, in this case, is dependent on delivery, which might be hindered by various external circumstances. Distributed through pipelines, natural gas is a more reliable energy source in urban and suburban areas with established networks.

Environmental Impact

Both LPG and natural gas are relatively clean-burning gasses. In terms of CO₂ emission, natural gas is even cleaner than LPG, oil, or coal. Yet, LPG is more eco-friendly when it comes to the overall atmospheric effect since it contains no greenhouse gasses like methane that are harmful to the environment in case of leakage.

Safety

Both gasses are odorless, so a special odorant with an unpleasant smell is added for easy leakage detection. Due to different densities, LPG is heavier than air, while natural gas is lighter. In case of leaks, LPG will accumulate at the floor level while natural gas will accumulate under the ceiling, thus potentially being safer for use in closed premises.

LPG vs Natural Gas Price Comparison

Generally, natural gas per-unit charge is lower than that of LPG. But if you think about a cheap option, the situation is not as straightforward as it seems. Increasing natural gas rates and peculiarities of supply entailing additional costs for network connection, daily use, etc., have recently made a traditionally more expensive LPG more affordable.

Taking into account the 2.5 times higher energy efficiency of LPG and the refill service that has become more accessible, the application of LPG might turn out almost twice cheaper than natural gas today, with no ongoing connection fees and charges in place.

Consider I-Maximum as Your Reliable Partner for a Sustainable Energy Future

If you seek an optimal energy solution for your business, you’ve come to the right place. I-Maximum is a leading LPG and SNG solution provider, offering systems that are environmentally responsible, cost-effective, and tailored to meet diverse requirements. With energy independence and autonomy in mind, we design and install scalable out-of-the-box gas systems with LPG vaporizers for industrial enterprises to ensure uninterrupted fuel supply, catch up with evolving business needs, minimize energy waste, save on energy costs, and enable companies to operate in a more sustainable manner.

Contact us today to embrace energy efficiency and get ready for an even more sustainable future.

Conclusion

Whether you choose LPG or natural gas depends largely on availability, cost considerations, and specific usage needs. Yet, with top-quality custom energy systems that meet your unique needs, you can get the most out of alternative energy sources and fuel your progress, benefiting from solutions designed to match the demands of today and tomorrow.

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Start saving - Install an alternative to Natural Gas - Synthetic Natural Gas (SNG)

Design and installation of gas supply for power energy, industrial and agriculture

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When we use SNG (Propane-AIR)?

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Advantages of SNG gas supply

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Economywith unstable natural gas and LNG markets
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SecurityIndependence from accidents on natural gas pipelines
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SpeedSwitching to SNG does not require replacement or adjustment of burners
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InvestmentsSNG system equipment is cheaper than LNG

most frequently asked questions

1

What is SNG, and where is it applied?

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Synthetic Natural Gas (SNG) is a gas obtained by blending air with any gas or gas mixture, having a calorific value equal to the calorific value of methane. Information on blending Liquefied Petroleum Gas (LPG) with air is presented on our website. SNG is used to replace natural gas in industrial enterprises, gas power plants, and is applied for the gasification of settlements (cities, districts, villages). SNG can also be referred to as gas containing methane (CH4), obtained through coal gasification. Bio-SNG can be called gas containing methane, obtained through biomass gasification or biogas recovered from landfills, but bio-SNG can also be referred to as gas obtained in the process of blending bio-LPG with air.
3

What is the cost of SNG system and how to choose the equipment?

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To select the appropriate equipment and estimate costs, four main parameters need to be considered: 1. Maximum flow of SNG or natural gas per hour in normal cubic meters (Q = ? Nm3/h or MMBTU/h). 2. Gas pressure at the connection point (P = ? from 0.035 to 10 bar or from 0.5 to 145 psi). 3. Required calorific value of the gas (heat of combustion), for example, for natural gas 8,900 kcal/m3 (1000 BTU/Cu.Ft.), but some facilities in the European Union may use nitrogen-enriched gas, and its calorific value may be 5,260 kcal/m3 (22.0 Mj/m3). 4. Propane and butane ratios in LPG gas, for example, 60% propane and 40% butane. 5. The installation costs of SNG systems are several times lower than the installation costs of LNG for industrial enterprises. Please leave us your request on our website with the above-mentioned parameters, and we will send you an offer for connecting the SNG system.
2

What is SNG blender (LPG Air Blender)?

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SNG-blender, is a device where LPG (liquefied petroleum gas) and air are automatically mixed under high pressure in the required ratio, producing SNG gas (synthetic natural gas) with properties similar to natural gas (NG). The SNG-blender is characterized by its precision, automated gas mixing process, and a broad range of adjustments for calorific value and pressure.
4

(BioLPG) BioPropan, bioDME - what is it? Can BioLPG be used for transportation?

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BioLPG, also known as BioPropan, is a type of gaseous fuel that is identical in composition and chemical properties to traditional liquefied petroleum gas (LPG) but is produced from organic materials or waste. The BioLPG production process may involve processing various organic raw materials such as sewage sludge, agricultural residues, sawmill waste, and even bioethanol or the synthesis of renewable hydrogen and carbon dioxide. Currently, BioLPG finds practical application in gas supply systems in the United Kingdom. One of the interesting technologies is the production of DME, which stands for dimethyl ether, a gas similar to propane. DME can serve as both a finished product and an intermediate raw material for the production of biopropane. Its main source of production is the dehydration of methanol. Various raw materials are used for production, including biomass, waste, wood, agricultural products, as well as fossil fuels such as gas and coal. DME can be blended with LPG in proportions of 20% for household purposes (heating and cooking) and 25% - 30% for transportation purposes.
1

What is SNG, and where is it applied?

Created with Pixso.
Synthetic Natural Gas (SNG) is a gas obtained by blending air with any gas or gas mixture, having a calorific value equal to the calorific value of methane. Information on blending Liquefied Petroleum Gas (LPG) with air is presented on our website. SNG is used to replace natural gas in industrial enterprises, gas power plants, and is applied for the gasification of settlements (cities, districts, villages). SNG can also be referred to as gas containing methane (CH4), obtained through coal gasification. Bio-SNG can be called gas containing methane, obtained through biomass gasification or biogas recovered from landfills, but bio-SNG can also be referred to as gas obtained in the process of blending bio-LPG with air.
2

What is SNG blender (LPG Air Blender)?

Created with Pixso.
SNG-blender, is a device where LPG (liquefied petroleum gas) and air are automatically mixed under high pressure in the required ratio, producing SNG gas (synthetic natural gas) with properties similar to natural gas (NG). The SNG-blender is characterized by its precision, automated gas mixing process, and a broad range of adjustments for calorific value and pressure.
3

What is the cost of SNG system and how to choose the equipment?

Created with Pixso.
To select the appropriate equipment and estimate costs, four main parameters need to be considered: 1. Maximum flow of SNG or natural gas per hour in normal cubic meters (Q = ? Nm3/h or MMBTU/h). 2. Gas pressure at the connection point (P = ? from 0.035 to 10 bar or from 0.5 to 145 psi). 3. Required calorific value of the gas (heat of combustion), for example, for natural gas 8,900 kcal/m3 (1000 BTU/Cu.Ft.), but some facilities in the European Union may use nitrogen-enriched gas, and its calorific value may be 5,260 kcal/m3 (22.0 Mj/m3). 4. Propane and butane ratios in LPG gas, for example, 60% propane and 40% butane. 5. The installation costs of SNG systems are several times lower than the installation costs of LNG for industrial enterprises. Please leave us your request on our website with the above-mentioned parameters, and we will send you an offer for connecting the SNG system.
4

(BioLPG) BioPropan, bioDME - what is it? Can BioLPG be used for transportation?

Created with Pixso.
BioLPG, also known as BioPropan, is a type of gaseous fuel that is identical in composition and chemical properties to traditional liquefied petroleum gas (LPG) but is produced from organic materials or waste. The BioLPG production process may involve processing various organic raw materials such as sewage sludge, agricultural residues, sawmill waste, and even bioethanol or the synthesis of renewable hydrogen and carbon dioxide. Currently, BioLPG finds practical application in gas supply systems in the United Kingdom. One of the interesting technologies is the production of DME, which stands for dimethyl ether, a gas similar to propane. DME can serve as both a finished product and an intermediate raw material for the production of biopropane. Its main source of production is the dehydration of methanol. Various raw materials are used for production, including biomass, waste, wood, agricultural products, as well as fossil fuels such as gas and coal. DME can be blended with LPG in proportions of 20% for household purposes (heating and cooking) and 25% - 30% for transportation purposes.

comparison of the exchange value of natural and liquefied gas in 2021-2023, €/MWh

The chart is based on TTF and Argus (daf Brest) quotes in 2021-2023.

TTF – The Title Transfer Facility, is a virtual trading point for natural gas in the Netherlands.
Argus (daf Brest) - daily quotes for liquefied gas prices on the Belarusian-Polish border

I-Maximum in numbers

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1The first manufacturing of GAS mixers in Poland
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2020 years of engineering experience
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+500More than 500 installed LPG vaporizers
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+10More than 10 installed SNG mixers

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About I-Maximum Company

I-MAXIMUM - an engineering company that provides energy solutions for industrial LPG systems, Synthetic Natural Gas (SNG). Offers gas installation technologies for enriching biogas and biomethane. We specialize in the production and delivery of precise gas blending installations that effectively replace the use of coal, heating oil, gas, and other fuels at our clients' facilities. I-maximum gas equipment to the decarbonization of the industrial, heating, food, and many other sectors.

Presentation of the new I-Maximum manufacturing plant

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Presentation of the new I-Maximum manufacturing plant - LPG systems engineering. Event on April 26, 2024 near Warsaw as part of the Gaseous Fuels Forum 2024. If you are interested in receiving videos of all presentations about gas equipment company I-MAXIMUM, please view the program of production presentations gas systems engineering company and fill out the subscription form at the following link: https://i-maximum.com/presentation2024 

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The Teams I-Maximum engineering company

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