Action Type
Quick Wins

Optimize company-wide management of energy efficiency
LYB’s value enhancement program (VEP) is a company-wide program reducing costs and emissions by saving energy in procurement, logistics, and customer service improvements.


Reduce carbon footprint in packaging coatings value chain
Carbon reduction plan for coatings value chain, incl. process efficiency, circular solutions, solvent reduction, and water-based materials, led to 9% Scope 3 CO2e reduction in 2023 vs 2018 baseline.


Implement metrics system for circular packaging
DS Smith Packaging created a set of Circular Design Metrics with five focus areas including design, recovery, and efficiency, applying them into the manufacturing process.


Switch to regenerative furnace system in glass production
Beta Glass PLC has implemented a regenerative heat technology and electricity boost system to reduce energy intensity by 8% using less energy to melt a ton of glass.


Recycle polyurethane reactor in refrigeration industry
Imbera/EOS implemented a reactor that can chemically process up to 400 tons of waste polyurethane from old coolers, and transformed it into recycled raw material for new coolers.


Re-use excess energy from operations to heat buildings
Novonesis uses captured energy from operations to heat homes through a district heating system in Greater Copenhagen.


Apply solar thermal water heating in industrial processes
Givaudan implemented solar concentrators to preheat boiler water, significantly reducing natural gas consumption and GHG emissions in Cuernavaca.


Switch to variable volume oil reservoir in heavy machinery
Traditional hydraulic oil reservoirs in heavy machinery were replaced with Smart Reservoir technology of variable volume reservoirs, resulting in lighter machines and a reduced carbon footprint.

Switch to hybrid-electric furnace design in glass production
Ardagh Glass’s NextGen Furnace uses hybrid technology to reduce the carbon footprint of commercial-scale glass production, by replacing fossil fuel energy with renewable electricity.


Replace industrial boilers with biomass boilers
Industrial boilers were replaced with newer technology using biomass, for malt production at Agraria, based on GHG Protocol Brazil


Industrialize filterless ambient air purification
Industrialize filterless APA pollution abatement technology to reduce air pollution in manufacturing environments, protecting workers' health and the environment.


Convert biowaste into biogas to accelerate decarbonization
Manufacturers can significantly reduce their carbon footprint and recycle their organic waste by using it as biomass feedstock to generate biogas and biomethane


Optimize lubricant application in industrial turbines
SRP, a major US power utility, partnered with Fluitec to transform their consumable turbine oils into lubricants that will last the life of their turbines, reducing costs and CO2e


Integrate energy management systems in pulp and paper mills
Integrating the ISO 50001 Energy Management System leads to significant GHG emissions reductions and cost savings.

Reduce furnace CO2 emissions with a heat exchanger
Installing a Heat Recovery Tower recovers generated heat and reduces HFO (heavy fuel oil) consumption, reducing costs and with no impact on production


Produce sodium chlorite with clean energy
Cutting emissions by reducing imports while addressing Scope 2 emissions through the use of clean electrical energy.

Switch to industrial electric boilers
Electric boilers convert electricity into heat to produce steam, with almost 100% efficiency, reducing the greenhouse gas emissions typically associated with heat production


Maximize waste recovery in the pulp and paper mill
Adopting processes to recover energy from waste, such as black liquor gasification, can lead to higher resource and energy efficiency, while reducing GHG emissions


Use AI air compressor system to reduce energy consumption
To minimize carbon emissions from facility equipment while ensuring production, an adaptive system of air compressors can reduce power consumption per finished good by 41%


Switch to renewable energy to decarbonize industrial heat
Low- or zero-carbon fuels and renewable energy technologies allow heat-intensive industries to reduce emissions from combustion of fuels (e.g., in manufacturing facilities)


Decarbonize low-temperature industrial heat with heat pumps
Industrial heat pumps generate low-temperature process heat with higher efficiency and lower GHG emissions than conventional fossil fuel heating options.


Harness green hydrogen for ammonia generation
Green hydrogen as an efficient and economically viable decarbonization solution for industrial use, reducing natural gas requirements and GHG emissions


Shift from gas or coal to electric industrial furnaces
The decreased cost of electrical equipment and increased energy efficiency grows opportunites for electrictrifying industries, enabling a reduction in GHG emissions


Opt for electric medium temperature heating systems
Electrifying medium temperature heating systems within industry player’s operations allows for lower operating costs, higher efficiency and lower CO2 emissions


Move from gas to electric low temperature heating systems
Electrifying low temperature heating processes offers higher energy efficiency, lower investment while significantly reducing operational GHG emissions
