Products

Modular LNG equipment, built to mobilize.

Three components make up the platform — a production plant, a liquefaction module, and mobile storage & regasification — deployed together or independently depending on the site.

P.01 — Production

Mobile LNG Plant

A full production train of liquefaction units and transport trucks, tied directly into pipeline-quality gas from the field plant — with an optional bullet tank for a buffered gas supply.

  • Output60,000 gallons / day
  • FeedstockPipeline-quality gas, onsite
  • ConfigurationMultiple liquefier trains + transport fleet
  • OptionalBullet tank with compressor, gas supply buffer
Mobile LNG plant with liquefier trains and transport trucks, 60,000 gallons per day
Labeled diagram of the 6,000 gallon per day mobile liquefaction module showing control room, dryer skid, refrigeration compressor, fans, adsorber skid, cold box and expander skid

P.02 — Liquefaction

Mobile LNG Liquefaction Module

The core processing unit: gas dried, cleaned and cooled to LNG through a stacked skid arrangement, self-contained on a single transportable frame.

  • Output6,000 gallons / day
  • Key componentsControl room, dryer skid, refrigeration compressor
  • Also includesFans, adsorber skid, cold box, expander skid

Key components

What's inside the liquefaction module

Cold box internal piping and vessels

Cold box internal

Dryer skid and adsorber skid equipment

Dryer skid & adsorber skid

Refrigeration compressor and cold box structure

Compressor & cold box

Turbo expander skid piping

Turbo expander skid

Every module ships from a validated CAD design, so the cleanup skid and liquefaction skid arrive pre-engineered to fit the transport frame and site footprint.

CAD design drawing of the cleanup skid and liquefaction skid assembly
10,000 gallon Mobile LNG Storage and Regasification Unit (MSRU) with Duwadi LNG branding

P.03 — Storage & regasification · Patent-pending

Mobile Storage & Regasification Unit (MSRU)

Delivered LNG is stored onsite and regasified close to the end-user — removing the need for permanent storage infrastructure or a fixed pipeline connection.

The MSRU is built from two components: a 10,000-gallon usable cryogenic LNG storage tank, elevated on a frame above a secondary containment unit (the "SHERPA") that houses the vaporizers, pressure build coil, heaters, and controls inside a 40-ft enclosure. The elevated tank gives gravity flow and net positive suction head to the regasification equipment below, and the enclosure doubles as NFPA 59A–compliant secondary spill containment — so the whole unit sets down on any hard, level surface with no foundation work.

  • ConfigurationElevated ISO tank over containment unit
  • Standard output~10,000 scf/h at up to 45 psig
  • HV/HP configurationUp to 250,000 scf/h at 150 psig sustained

Architecture invented by Kishore Duwadi, PE — U.S. patent application pending.

In the field

MSRU installation

Site footage from an MSRU installation, showing the unit set in place and connected.

Field installation, August 2024.

Two configurations

Standard and HV/HP builds

Standard

Ambient vaporization

A single ISO tank over the SHERPA unit, with two ambient vaporizers, a pressure build coil, and radiant heaters for cold-weather performance. Generates approximately 10,000 scf/h at up to 45 psig — sized for generators, heating, and general off-grid fuel use.

HV/HP

High volume / high pressure

Two ISO tanks stacked on the SHERPA unit, with ethylene glycol heat exchangers, a glycol pump, and an LNG pump in place of the standard ambient vaporizers. Built for frac spreads, drilling rigs, and other high-draw applications — up to 250,000 scf/h at a sustained 150 psig.

Technical specifications

MSRU spec sheet

SpecificationDetails
Fuel capacity12,000 gal water volume; 10,000 gal usable LNG
VaporizationTwo ambient vaporizers with catalytic heat assist
Vaporization capacity12–15 Mscf/h continuous per vaporizer (24–39 Mscf/h intermittent)
Storage design pressure (MAWP)185 psig
Heating system12 Cata-Dyne™ explosion-proof catalytic heaters, 20,000 BTU/h each
Secondary containment15,000 gal, integrated into containment enclosure
Control systemHard-wired ESD; Allen Bradley Logix processor with remote monitoring
PowerOnboard 3,000W 24VDC / 120V solar option, plus 7.5kW natural gas standby generator
Offloading methodPressure transfer from transport tanker
Dimensions (L × W × H)40' × 8' × 18'
Combined weight, empty / full~40,000 lbs / ~90,000 lbs
Design codesNFPA 59A / ASME B31.3 / Texas TRC CAT 35

Where it fits

Built for off-grid and underserved sites

Anywhere natural gas is needed but the pipeline isn't — the MSRU runs on customer-sourced or delivered LNG.

Asphalt pavingDistributed power generationGrid resiliency / peak shaving Renewable energy backupPipeline outage & repairE&P frac spreads & drilling rigs Mining extraction & transportMaritime / LNG bunkeringBrown water barge operations Rail & locomotiveCommercial & industrial boilersAgriculture (US & N. Mexico) Food processingBeverage bottlingPoultry farms Hotel / casino HVAC & pool heatingOff-grid EV truck chargingBitcoin mining

Why this design

Advantages of the stacked architecture

No compressor or pump required

Because the tank sits above the regasification equipment, gravity pushes LNG through the standard-configuration vaporizers on its own.

Smaller footprint

Stacking the tank on top of the containment unit — rather than beside it — cuts the deployment footprint for sites with limited open space.

Fast mobilize, fast demobilize

No foundation work is required — the unit sets down on any relatively flat, hard surface and can be moved just as quickly.

Redeployable, not stranded

When a project wraps, the same unit relocates to the next site with no new capital expenditure — improving the return on every deployment.

Built-in safety systems

Fails safe by design

Automatic emergency shutdown

Four automatic shutdown valves isolate the storage tank from the vaporizers and halt gas flow to the customer, controlled by hard-wired relay logic and a manual ESD switch.

Gas detection

LEL gas detectors automatically close every shutdown valve if gas inside the enclosure rises above 25% of the lower flammability limit.

Pressure relief

Pressure relief valves keep the system below design pressure at all times, with tank pressure automatically balanced by the pressure build coil and vent valve.

Restricted access

The control panel stays locked to authorized personnel, and the vaporization area is treated as a confined space accessible only to trained crews.

Step-change

What makes the platform different

Full-cycle LNG solutions in proximity to the end-user, with cost metrics similar to liquid fuel (diesel).

01

Power generation

Ultra-efficient reciprocation generators power the platform, cutting natural gas consumption for liquefaction by 50%.

02

Reduced trucking

LNG's energy density cuts transport costs — three times fewer daily transports than an equivalent CNG operation.

03

Mobility

The fully modular platform mobilizes in one day and reaches full production within five.

04

Automation

Control systems for liquefaction and regasification reduce opex, increase safety, and add operational flexibility.

05

Flexibility

Applicable across multiple basins and jurisdictions, running on customer-sourced natural gas.

06

Cost

A full-cycle solution priced competitively against liquid fuel, across every variable of the LNG supply chain.

Need equipment specified for your site?

Tell us your target output and location — we'll size the right combination.

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