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Synthetic Natural Gas (SNG) opens up new opportunities for the development of the LPG market after 2025

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17.03.2025

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The LPG market is undergoing significant changes and transformations, including the "Fit for 55" package, which may reduce its consumption, as well as potential price increases for LPG after the ban on imports from Russia and Belarus. However, these risks could bring significant growth opportunities for the LPG market in Poland, with an expected increase of 30-50% by 2035.

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There is often talk or speculation that "Fit for 55" poses a threat to the LPG market and forecasts a decrease in its share over the next 5-10 years. The gradual reduction of greenhouse gas emissions and the transition from gas boilers to heat pumps and photovoltaics will certainly reduce the demand for LPG in the residential sector. However, for industry, a rapid transition from gas to electric energy is not feasible, so it is necessary to create conditions for the LPG market similar to those for the gas market, including subsidies for electricity production.

Production of electric Energy

According to data from the Institute of Thermal Technology, it is projected that the demand for gas for electricity production in Poland will increase from the current 3.3 billion cubic meters to 5.9 billion cubic meters by 2030, reaching 7.6 billion cubic meters by 2035, and then declining to 6.8 billion cubic meters by 2040. The need for gas for heat production and cogeneration in Poland will rise from the current 1.9 billion cubic meters to 4.5 billion cubic meters by 2035, gradually decreasing to zero by 2050. After 2035, green gas (biomethane, hydrogen, biogas) will begin to replace natural gas. The total projected increase in natural gas consumption by 2035 to 7 billion cubic meters only applies to electricity production and cogeneration heat production.

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If it is possible to replace even 1 billion cubic meters of natural gas in electricity generation forecasts by 2035 with LPG for electricity production, it would represent an equivalent of 720,000 tons of LPG. After the ban on Russian LPG imports is introduced, discussions with relevant industry associations and the Ministry of Energy regarding equal subsidy conditions for electricity production from LPG will be possible.

 

We invite interested parties to the 2024 Gas Fuels Forum, where Świętosław Kariuk, Sales Manager at I-Maximum sp. z o. o., will deliver a presentation on "SNG - an opportunity for the development of the industrial LPG segment," discussing in detail the new possibilities in the LPG market. For more information, please visit the website: https://forumpaliwgazowych.pl/

Comparison of fuel types for thermal energy production

At the end of 2022, there was significant demand for backup gas delivery systems for glassworks, mainly relying on diesel oil and liquefied petroleum gas (LPG). In 2024, with the decrease in natural gas prices, the demand for projects to replace it significantly diminished. However, the gas crisis clearly demonstrated the necessity of reserve fuel in the industry. Companies that understood this earlier and installed LPG (SNG) delivery systems by autumn 2021 could recoup their investments within a few months of plant operation.

The chart below illustrates the prices of various available energy sources for industrial consumers, taking into account transportation costs. Source: http://i-maximum.com

COST OF CONSUMPTION OF 1 MW OF THERMAL ENERGY (with delivery and thermal efficiency) FOR COMPANIES: from February 1, 2025 [EURO NET]

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LPG, SNG (Propane 95%)
Price 940 EURO/t (0,48 EURO/L)
Сalorific value - 46,3 MJ/kg (12,9 kW/kg)

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Natural GAS
Price 0,80 EURO/m³
Сalorific value - 38,0 MJ/m³ (10,55 kW/m3)

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Heating Oil
Price 1 050 EURO/t (0,90 EURO/L) Сalorific value – 42,9 MJ/kg (11,8 kW/kg)

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LNG (92%)
Price 1,07 EURO/kg
Сalorific value - 47 MJ/kg

As of today, heating oil remains a backup fuel for many glassworks. However, such an approach is inconsistent with the commitments arising from the "Fit for 55" legislative package - a set of European Union regulations aimed at reducing greenhouse gas emissions by 55% by 2030. Additionally, it is economically impractical due to the high costs of heating oil over prolonged use.

 

Liquefied Natural Gas (LNG) could offer a solution to the issue of backup energy sources, but the investment costs and logistical challenges of gas delivery undermine the attractiveness of this type of fuel.

«For example, to power a 30,000 kW gas burner steam boiler for 24 hours, 54 tons of LNG would be needed, equivalent to 2 LNG tanks with a capacity of 50,000 liters each. The cost of a comprehensive LNG delivery project "turnkey" with regasification terminal and installation will exceed 2 million euros. Similar equipment and implementation of the entire project on LPG will cost between 500 to 600 thousand euros. A project using SNG could cost up to 1 million euros, depending on the type of SNG blender, air compressor, and Peak Shaving system selection.”

sales manager

LPG represents an optimal solution from an ecological perspective and requires smaller installation investments, 2-4 times smaller than those needed for LNG. However, using propane (without air admixture) requires the replacement or adjustment of gas burners and compressor gas systems in internal combustion engines. SNG systems address issues related to reducing and replacing natural gas consumption. By blending propane with air (PROPAN+AIR), we resolve energy companies' challenges associated with the need to halt technological processes and replace gas burners in steam boilers, as well as adapting piston engines in gas power plants.

What is SNG?

SNG, or Synthetic Natural Gas, is a gas obtained by blending air with LPG, which has the same calorific value as methane (natural gas). The SNG gas mixture can be used in burners as a direct substitute for natural gas without the need to change or replace the burners. SNG systems are widely used in Asia, South America, and North America. In some countries, the use of SNG systems is mandatory in natural gas pipeline projects to avoid potential emergency situations such as gas cutoffs, pressure drops, and gas calorific value reduction. In Europe, attention was first drawn to SNG during the sudden rise in natural gas prices in 2021-2022.

What are the main components of the SNG system?
gas system diagram

The components of the installation include:

1. Aboveground or underground LPG tanks. You can find out more about these in our “What is an LPG tank?” guide.

2. LPG liquid pump ensuring stable pressure; it is recommended to use two pumps, one as a backup.

3. LPG vaporizer where the transformation from liquid LPG to gas occurs. Choosing an autonomous vaporizer that doesn't require electrical power, such as the KBV model, is recommended.

4. SNG mixer (SNG-blender) with an automatic mixing option – the main element of the system where LPG is mixed with air.

5. Air compressor with a tank.

6. SNG buffer tank if needed.

 

In the end, synthetic gas is delivered to the existing gas network.

I-MAXIMUM

In Poland, the first manufacturer of gas mixers has emerged - the company I-Maximum sp. z o.o. , which invites you to the presentation of its new SNG-blender production near Warsaw on April 26, 2024.

Details about the study visit: http//i-maximum.com/presentation2024

Tseh

I-Maximum's mission is to accelerate the transformation of businesses to Synthetic Natural Gas (SNG) based on LPG and air, with plans to replace LPG with bioLPG in the future. Our company offers comprehensive services including design, sale of equipment, and installation of gas systems based on LPG and SNG for industrial and agricultural enterprises. Additionally, we custom-produce gas blenders (mixers) with operating pressures up to 40 bars, designed for various types of gases, including hydrogen, biogas, natural gas, LPG, and others.

I-Maximum in numbers

setting
1The first manufacturing of GAS mixers in Poland
setting
2020 years of engineering experience
kge
+500More than 500 installed LPG vaporizers
gas installation
+10More than 10 installed SNG mixers
WILL THERE BE ANOTHER ENERGY CRISIS?

Global natural gas prices have stabilized since the gas crisis of 2021-2022. However, the ongoing war in Ukraine and the threat of conflict in Europe make the energy market extremely delicate and unpredictable. The conclusion of the transit agreement between Ukraine and Russia at the end of 2024 is likely to cause significant changes in gas prices, although media speculate about possible alternative transit options with agreements made by European countries. Nevertheless, entrepreneurs and policymakers should remember that Russia does not always act in accordance with established rules, often causing energy crises.


Below is a chart based on TTF and Argus (daf Brest) quotations for the years 2021-2023.

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

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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

gas system diagram

When we use SNG (Propane-AIR)?

Gas plant diagram

Advantages of SNG gas supply

piggy bank
Economywith unstable natural gas and LNG markets
defence
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

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

Our services

Welding of gas equipment
welder
Technical design
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Installation of gas equipment
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Supply of LPG and SNG equipment
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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

Dear Sir/Madam!

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 

Sincerely,

The Teams I-Maximum engineering company

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bossSwietoslaw KariuknetworkHead of the sales department