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Current Affairs

India’s First LNG-Diesel DEMU Train

SYLLABUS

GS-3: Infrastructure: Energy.

Context: Indian Railways launched India’s first LNG-diesel dual-fuel DEMU train from Sabarmati, Gujarat, adding LNG-based propulsion to its alternative-fuel initiatives. 

More on the News

• The train uses a dual-fuel system, allowing the same engine to operate on LNG as well as diesel; LNG is designed to replace around 40% of diesel consumption. 

• Two 1,400 HP Driving Power Cars (DPCs) were converted at the Sabarmati Integrated Coaching Depot, and the converted DPCs have completed more than 2,000 km of field trials. 

• The initiative aims to reduce diesel consumption, fuel costs and emissions while testing an alternative fuel within the existing railway propulsion system. 

About the India’s First LNG-Diesel DEMU Train

• DEMU stands for Diesel Electric Multiple Unit. 

• The inaugural rake has 8 non-AC chair-car coaches and operated between Sabarmati and Mahesana Junction. 

• Each DPC has an LNG tank of around 2,200 litres, holding approximately 950–1,000 kg of usable LNG. 

• A fully loaded LNG tank in one DPC can support around 444 km of operation, according to project estimates. 

• The dual-fuel arrangement allows the train to switch between LNG and diesel, providing operational flexibility when LNG availability varies. 

• Based on trial data, Indian Railways estimates annual fuel savings of around ₹11.9 lakh per DPC and approximately ₹23.9 lakh for an 8-coach rake. 

• LNG substitution is expected to reduce CO₂, NOx and particulate-matter emissions, although LNG combustion still produces CO₂ because it is a hydrocarbon fuel. 

Why is India Moving Towards Alternative Fuels?

• Net-zero target: Indian Railways has envisaged becoming a Net Zero Carbon Emitter by 2030. 

• Reducing diesel dependence: Electrification has already reduced the use of diesel traction, with 99.2% of the broad-gauge network electrified as of December 2025. 

• Greater use of renewable energy: Indian Railways is progressively meeting its traction-power requirements through solar, wind and other renewable sources as part of its net-zero strategy. 

• Cleaner propulsion technologies: Hydrogen and LNG-based trains are being explored to reduce dependence on conventional diesel, particularly where alternative propulsion technologies can complement the electrified network. 

• Lower emissions: Replacing part of diesel consumption with LNG can reduce CO₂, NOx and particulate emissions, while hydrogen fuel-cell propulsion produces water vapour as the direct by-product. 

• Technology diversification: The LNG-diesel train provides a transitional dual-fuel model, while the hydrogen train demonstrates a fuel-cell-based propulsion model, allowing Indian Railways to test different pathways towards cleaner rail transport.

Difference between Hydrogen Train and LNG-Diesel Train

Basis

Hydrogen Train

LNG-Diesel Train

Fuel

Uses hydrogen as the primary fuel.

Uses LNG along with diesel.

Propulsion technology

Uses fuel-cell-based electric propulsion.

Uses a modified internal-combustion engine with a dual-fuel system.

Working principle

Hydrogen reacts electrochemically with oxygen in a PEM fuel cell to generate electricity, which powers the train.

LNG and diesel are supplied to the same engine, allowing it to operate on either or both fuels depending on operational requirements.

Diesel dependence

Does not use diesel for propulsion; electricity is generated onboard from hydrogen.

Does not eliminate diesel use; LNG is designed to replace around 40% of diesel consumption in the current system.

Direct emissions

Water vapour and heat are the direct by-products; there is no combustion or direct tailpipe carbon emission.

LNG combustion still produces CO₂, but replacing part of diesel use is expected to reduce CO₂, NOx and particulate emissions.

Nature of transition

Represents a shift to fuel-cell-based propulsion, requiring dedicated hydrogen storage, refuelling and safety infrastructure.

Represents a transitional dual-fuel approach, reducing diesel consumption while retaining the existing combustion-based propulsion system.


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