Every tonne of biomass recovered sets off a chain of positive environmental outcomes. From
reducing crop residue burning and producing renewable fuel to returning nutrients to the soil,
every stage of the Sai 3F™ Circular Impact Model contributes to a cleaner and more
resilient future. Explore how circular thinking translates into measurable environmental
impact.
Scroll to move through six stages. Each one shows what happens physically, and the
environmental outcome it creates.
01
Feedstock recovery
Residues leave the field instead of being burned
Agricultural residues are collected from farms and move into the Sai ecosystem.
XX tonnes
Biomass recovered
Giving agricultural residues a second life instead of allowing them to be burned or discarded.
Open burning avoided
Resource recovered
Animation cue from wireframe: truck to digester.
02
Anaerobic digestion
Organic matter becomes a renewable resource
Biomass enters the digester. Microorganisms break it down in an oxygen-free environment
and gas begins to rise.
XX tonnes
Methane captured
Transforming organic waste into renewable resources through circular processing.
Waste becomes renewable resource
Uncontrolled methane release avoided
Animation cue: biomass enters digester, gas bubbles rise.
03
Gas purification
Raw biogas becomes high-purity CBG
Gas flows through purification and upgrading, emerging as Compressed Biogas ready for
dispatch.
XX tonnes
Renewable CBG produced
Replacing fossil fuels with cleaner renewable molecules.
Diesel pump becomes CBG pump
H₂S removed to pipeline specification
04
Environmental benefit
The fuel leaves the plant and emissions fall
CBG cylinders reach vehicles and industrial burners. Where diesel exhaust once left the
silencer, it disappears.
XX tCO₂e
Carbon emissions avoided
Equivalent to removing XX passenger cars from the road.
Fossil fuel displaced
Local air quality improved
05
Returning nutrients
Digestate goes back into the soil
Nutrient-rich digestate is packed and returned to farmland. Brown soil becomes growing
ground again.
XX tonnes
Biofertilizer returned
Returning valuable nutrients back to the soil to support regenerative agriculture.
Organic matter restored
Synthetic fertiliser dependence reduced
06
Circular future
The farm regenerates and the loop closes
Crops grow again across the field. Feedstock returns. The camera pulls back and the
3F™ loop is complete.
XX MWh
Renewable energy supported
Creating cleaner, more resilient energy systems for the future.
Feedstock grows again
The cycle repeats
Every resource recovered creates a ripple effect that extends far beyond energy production.
Largest asset dependency on the site. The wireframe specifies a
bespoke scroll-triggered animation for all six stages (truck → digester → bubbles →
purification → cylinder into car → smoke disappears → digestate into soil → field regenerates
→ zoom out to the 3F logo). Delivered here as a scroll-revealed narrative with staged KPI
counters and micro-ticks — the structure, timing and copy are in place. Commissioning the
illustrated sequence (Lottie or SVG sprite) drops into each
.story__stage without markup changes.
Live environmental dashboard
Explore the numbers
Behind every renewable energy project is measurable environmental progress. Explore Sai
Bioenergy's headline environmental indicators across four focus areas.
Climate
XX
Carbon emissions avoided
XX
Diesel / fossil fuel displaced
Resource recovery
XX
Biomass recovered
XX
Organic waste diverted
Renewable energy
XX
Renewable CBG produced
XX
Renewable electricity supported
Soil & agriculture
XX
Biofertilizer returned to farms
XX
Soil nutrients restored
See impact differently
Understand the impact
A simple toggle lets you switch between technical metrics and relatable real-world
comparisons. Try it for yourself.
XX tCO₂e
Avoided
XX tonnes
Biomass recovered
XX tonnes
Renewable CBG
Equivalent to removing XX cars from the road
Equivalent to preventing the burning of XX tonnes of crop residue
Enough renewable fuel to power XX buses
Equivalent to planting XX mature trees
Enough renewable energy to support XX homes
Conversion factors owed: the real-world equivalences need agreed
factors (tCO₂e per car-year, kg residue per tonne, trees per tCO₂e, kWh per home) so they can
be derived from the technical figures rather than entered separately.