Control DG exhaust pollution
Explore an RECD when the priority is treating exhaust from an existing diesel generator and supporting applicable emission-control requirements.
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Understand the technology, compliance considerations, installation process, project cost and after-sales requirements before upgrading an existing diesel generator.
RECD and dual fuel systems address different operational priorities. The right starting point depends on whether your main concern is exhaust treatment, diesel consumption or both.
Explore an RECD when the priority is treating exhaust from an existing diesel generator and supporting applicable emission-control requirements.
Explore RECD →Explore dual fuel conversion when the DG operates regularly under useful load and a suitable gas supply is available at the site.
Explore Dual Fuel →Share the DG specifications, location, runtime, load pattern and fuel availability for a needs-based technical assessment.
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An RECD treats exhaust gases after combustion to reduce specified pollutants and particulate release. A dual fuel kit changes how the engine is fuelled by introducing an approved gaseous fuel alongside diesel. RECD primarily addresses exhaust treatment; dual fuel primarily addresses diesel substitution and operating economics. The correct option depends on the DG, location, operating profile and applicable requirements.
It may be technically possible, but it should never be assumed. The engine, exhaust layout, gas system, controls, back-pressure limits and applicable approval conditions must be assessed together. Gyarash India recommends a project-specific engineering review before proposing a combined configuration.
Both solutions are designed as retrofit upgrades for suitable existing DG sets. The generator is normally retained, but its age, condition, capacity, engine configuration, exhaust routing and duty cycle must first be checked. A damaged, poorly maintained or incompatible DG may require corrective work before installation.
A Retrofit Emission Control Device is an exhaust after-treatment system added to a suitable in-use diesel generator. Depending on the approved technology and configuration, it uses filtration and catalytic treatment to control particulate matter, visible smoke and specified harmful exhaust constituents before gases are released.
The DG exhaust is routed through an engineered housing containing the relevant filtration and catalytic stages. Sensors or monitoring provisions help the operator observe system condition and exhaust restriction. The exact design, treatment stages and regeneration approach depend on the selected product and approved configuration.
Gyarash India currently presents ACEGET RECD solutions across the 25–1000 kVA range. Final eligibility is not determined by kVA alone; engine model, year, exhaust flow, available space, operating load and the applicable certificate scope also need verification.
The RECD is generally integrated into the exhaust path rather than the internal engine. Installation may require engineered supports, exhaust-pipe modification, sensor placement and suitable access for inspection. The final layout must follow the approved product configuration and the DG manufacturer's technical limits.
Any exhaust after-treatment device creates resistance that must remain within safe operating limits for the engine. Proper sizing, installation, monitoring and timely maintenance help prevent excessive restriction. Back-pressure readings should be interpreted according to the RECD and DG manufacturer's instructions.
Maintenance can include visual inspection, checking supports and joints, reviewing pressure or sensor readings, cleaning or servicing relevant filter stages, and recording operating information. The interval depends on the technology, DG load, runtime, fuel quality and site conditions; use the supplied maintenance schedule rather than a generic interval.
No single answer applies to every DG set in every location. Requirements can depend on the region, generator capacity, age, emission category, operating purpose and the latest direction from the relevant authority. Always confirm the current official order applicable to the project site before purchasing equipment.
It means the specific RECD technology or model has documentation issued under the applicable Central Pollution Control Board system or recognised testing and approval process. Buyers should verify the certificate holder, model, capacity scope, validity and any conditions—not rely only on a general marketing statement.
Ask for documents relevant to the exact product and project, which may include:
No. Compliance can depend on correct product selection, valid documentation, approved installation, generator condition, operation, maintenance, testing and the latest local direction. Equipment installation is one part of an ongoing compliance process; the relevant authority's current requirements always prevail.
A dual fuel system introduces a controlled quantity of suitable gas into the combustion air while diesel continues to provide ignition. Sensors and an electronic controller adjust gas flow according to operating conditions. The exact substitution level changes with load, engine behaviour, gas quality and the selected configuration.
Depending on the kit and site assessment, potential fuels may include PNG, CNG or suitable biogas. Gas pressure, composition, calorific value, cleanliness, flow capacity, storage or pipeline arrangement and safety infrastructure must be checked before confirming feasibility.
There is no responsible universal saving percentage. Actual substitution depends on DG loading, runtime, engine condition, gas quality and pressure, control calibration and operating discipline. A useful commercial proposal should use your measured load profile, diesel consumption and local gas cost rather than a headline percentage alone.
Dual fuel economics are generally more attractive when a generator operates regularly under stable, meaningful load. Very low or highly variable loads may limit gas substitution and weaken the business case. Load information should therefore be reviewed before equipment selection.
A correctly engineered control system should manage unsafe or unsuitable operating conditions and allow the DG to continue in diesel-only mode where the selected system permits it. The exact fallback behaviour, alarms and interlocks must be confirmed from the proposed kit's technical documentation.
The objective is to maintain required generator performance while substituting part of the diesel with gas, but performance cannot be assumed for every engine and load condition. Commissioning should verify stable operation, acceptable temperatures, response to load changes and the safety-control functions.
Share the DG make, engine model, rated kVA, manufacturing year, site address, photographs of the DG and exhaust area, operating hours, typical load and any available emission or fuel-consumption records. For dual fuel, include the proposed gas type, pressure and availability.
Initial feasibility may be reviewed from accurate technical data, photographs and drawings. A physical site assessment may still be required before final engineering, especially where access, exhaust routing, structural support, ventilation, gas safety or space constraints could affect the installation.
The schedule depends on product availability, DG capacity, fabrication, exhaust layout, gas infrastructure, site access and shutdown permissions. The quotation should separate supply lead time from on-site installation and commissioning time. Gyarash India confirms the project schedule after technical assessment.
Key factors include DG capacity and engine model, technology configuration, fabrication and supports, exhaust or gas-line work, sensors and controls, transport, site access, testing, commissioning and after-sales scope. Dual fuel economics also depend on annual runtime, load, diesel price and delivered gas cost.
The team checks the installed assembly, connections, supports, controls and relevant operating readings. The DG is run under appropriate conditions to observe system behaviour, and available handover records and operating guidance are provided according to the project scope.
Support requirements should be agreed in the commercial proposal, including preventive visits, response scope, consumables or cleaning, warranty conditions and operator guidance. Service availability and response expectations are confirmed according to the project location and selected solution.
Send the DG nameplate photograph, site location and your primary goal. The team can start with a technical review.
Share your DG set specifications and operating profile for an RECD or dual fuel assessment built around the actual site.
Talk to us about RECD retrofits or dual fuel conversion for your DG set.