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IGCW Mumbai / December 4-5th 2015
SUSTAINABLE INNOVATION
WHAT WE DO
“CHIMEX designs, develops and markets eco-friendly
processes
in fine chemistry and biotechnology,
producing ingredients for specialty chemicals,
based on innovative technologies.”
A. PINCHART, CEO
OUR CSR COMMITMENTS
Sustainable Innovation Share with our ecosystems
Sustainable marketing Sustainable Production
OUR APPROACH
Incorporate environmental and corporate social responsibility into the earliest design stages of our processes
Promote a responsible methodology in the development of industrial processes
Highlight our scientific choices and innovations with technical and social arguments
Audit and certify our results to guarantee our objectivity and neutrality
LOCATIONOUR
83 M€SALES 2014
220 EMPLOYEES
Plant Based Chemistry
Bioinspired Chemistry
Alternative solvents
Eco-designed Processes
Continuous processes
Micro and milli-fluidics
Reactive extrusion
OUR EXPERTISE
Bacterial Fermentation
Plant Cell Culture
Biocatalysis
Vegetal Extraction
Sustainable Chemistry
Biotechnologies
Process intensification
GREEN CHEMISTRYEco-Design Expertise
RENEWABLE RAW MATERIALS30% of renewable raw materials by 2020
RENEWABLE RAW MATERIALS
Our 2020 commitment : 30% of renewable RM
(> 50% non-fossil carbon)
15%
85%
RM (VOLUME)
RENEWABLE NON RENEWABLE
RENEWABLE INGREDIENTS50% of renewable ingredients by 2020
RENEWABLE INGREDIENTS
Our 2020 commitment: 50% of renewable manufactured products
(> 50% non-fossil carbon)
39%
61%
INGREDIENTS (VOLUME)
RENEWABLE NON RENEWABLE
43%
57%
INGREDIENTS (SALES)
RENEWABLE NON RENEWABLE
BIOBASED INGREDIENTS
44%
56%
INGREDIENTS (VOLUME)
BIOBASED NON BIOBASED
63%
37%
INGREDIENTS (SALES)
BIOBASED NON BIOBASED
E-Factor & INGREDIENTS
30%
26%
18%
26%
E-Factor (INGREDIENTS)
eF < 1
1 < eF < 5
5 < eF < 25
eF > 2565%
23%
10%3%
E-Factor (VOLUME)
ECO-DESIGNGreen Chemistry in Industry
ECO-DESIGNEnvironmental Impact &
HOW TO MEASURE ECO-DESIGN ?
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[eFA] Aqueous Waste Valorization[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[eVS] Synthetic Pathway Efficiency[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact[ieD] Waste Environmental Impact
Green Chemistry, 2014, 16, 1139-1148
Made in CHIMEX EcoFootPrint
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[eFA] Aqueous Waste Valorization[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[eVS] Synthetic Pathway Efficiency[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact[ieD] Waste Environmental Impact
Green Chemistry, 2014, 16, 1139-1148
Made in CHIMEX EcoFootPrint
Green Chemistry, 2014, 16, 1139-1148
Focus on… Green Metrics
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[eFA] Aqueous Waste Valorization[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[eVS] Synthetic Pathway Efficiency[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact[ieD] Waste Environmental Impact
eFMETRIC
5.3 = 1kg Pro-xylaneTM
Benchmarking…
eF < 0.1 eF = 1-5 eF > 25eF = 5-25
Waste (kg) by kg of manufactured product
Green Chemistry, 2014, 16, 1139-1148
Focus on… Green Metrics
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[eFA] Aqueous Waste Valorization[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[eVS] Synthetic Pathway Efficiency[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact[ieD] Waste Environmental Impact
ieDMETRIC
VS
ieDMETRIC
6.0 = 1kg Pro-xylaneTM
Waste (kg) by kg of manufactured producteF
(kg) XieD
21.4
= 1kg Mexoryl SX
0.5
= 1kg Ionene G
Green Chemistry, 2014, 16, 1139-1148
Focus on… Green Metrics
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[eFA] Aqueous Waste Valorization[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[eVS] Synthetic Pathway Efficiency[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact[ieD] Waste Environmental Impact
FootprintCARBON
iLMETRIC
RM supply chain carbon footprintDYE
8kg
1600kg
5,3kg1570kg
1 batch = 813,2 kg CO2éq.1645 kg
0,49 kg CO2éq./kgiL = 1,3
VaporElectricityGasFluids
65,6 kg CO2eq./h
Plant
Mexoryl SX
5,4 kg CO2eq./kg
eC = 3
eCMETRIC
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[eFA] Aqueous Waste Valorization[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[eVS] Synthetic Pathway Efficiency[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact[ieD] Waste Environmental Impact
Green Chemistry, 2014, 16, 1139-1148
Made in CHIMEX EcoFootPrint
PRO-XYLANE : EcoFootPrint
D-Xylose
PRO-XYLANE : EcoFootPrint
- 50% between 2004 et 2012
PRO-XYLANE : EcoFootPrint
2015201420122007
BIOTECH FOOTPRINT
MANUFACTURING Footprint ///[iL] Raw Material Origin[H2O] Water consumption[sIOS] Organic Waste Valorization[eC] Manufacturing Carbon Footprint
ECO-DESIGN Footprint ///[BioE] Fermentation Efficacy[eF] E-factor[rMP] Renewable Origin of RM[ieMP] Raw Material Environmental Impact
Made in CHIMEX EcoFootPrint
[1] ASSESSING
[2] COMPARING
Continuous improvement
• A tool designed and used in-house for ingredients produced by CHIMEX
• Shows the environmental impact of the manufacturing process
• Useful for Assessment, Comparison and Marketing
[3] HIGHLIGHTING
Communication & Marketing
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