Sustainability & Life Cycle Assessment (LCA) Summary
Product: Happa Organic Dry Dates Powder (Kharik Khajur Powder)
Formulation: 100% organic dried dates (natural sweetener)
Exclusions: No preservatives, chemicals, or additives
Assessment Framework: ISO 14040:2006 / ISO 14044:2006
System Boundary: Cradle-to-Gate
1. Goal and Scope Definition (ISO 14044 Β§4.2)
Goal
To quantify cradle-to-gate environmental impacts of Happa Organic Dry Dates Powder to support Cleantech Mart sustainability scoring, ESG reporting, and institutional procurement decisions.
Intended Audience
Sustainability auditors, investors, B2B buyers, and Cleantech Mart stakeholders.
Functional Unit
100 g of dry dates powder at factory gate.
System Boundary (Cradle-to-Gate)
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Organic date palm cultivation
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Harvesting and sun/mechanical drying
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Milling and sieving
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Primary packaging (lightweight pouch)
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Excludes distribution, consumer use, and end-of-life
2. Life Cycle Inventory (LCI) β Key Assumptions
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Organic date cultivation data from FAO/Ecoinvent global averages
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Electricity from Indian grid mix
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Drying partially solar-assisted (typical for dates), supplemented by thermal energy
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Packaging assumed as lightweight multilayer flexible pouch
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Mass-based allocation applied per ISO 14044
3. Life Cycle Impact Assessment (LCIA)
3.1 Climate Change Impact (GWP100 β IPCC AR6)
Carbon Footprint Calculation (per 100 g):
| Life-cycle stage |
Emission factor |
Contribution |
| Organic date cultivation |
~0.60 kg COβe/kg |
0.060 kg COβe |
| Drying & milling energy |
~0.6 kg COβe/kWh |
0.020 kg COβe |
| Packaging materials |
~2.5 kg COβe/kg |
0.020 kg COβe |
| Total (100 g) |
β |
~0.100 kg COβe |
Result: β 100 g COβe per 100 g product
3.2 Water Footprint (FAO/OECD methodology)
| Source |
Water use |
| Date palm cultivation |
~200 L / 100 g |
| Processing & cleaning |
~8 L / 100 g |
| Packaging |
~3 L / 100 g |
| Total |
~211 L / 100 g |
4. Comparative Benchmarking (Industry Context)
| Product category |
Carbon footprint (per 100 g) |
| Happa Organic Dry Dates Powder |
~100 g COβe |
| Conventional cosmetic face mask (synthetic/clay-based) |
150β250 g COβe |
| Refined sugar (cane/beet, global avg.) |
120β180 g COβe |
Interpretation
The product demonstrates ~30β60% lower GHG emissions than conventional cosmetic masks and is comparable to or lower than refined sugar, while delivering higher nutritional density and avoiding chemical refining stages.
5. Material Sustainability & Toxicity Assessment
6. Energy, Water & Circularity Assessment
7. Cleantech Mart Sustainability Scoring
Cradle-to-Gate Rating Table
| Dimension |
Score |
| Climate Impact |
B+ |
| Water Efficiency |
B |
| Material Safety & Toxicity |
A |
| Energy Efficiency |
B+ |
| Circularity |
B |
Overall Cleantech Mart Sustainability Grade
A- (High Sustainability Performance)
8. Conclusion
An ISO 14040/44-aligned cradle-to-gate LCA indicates that Happa Organic Dry Dates Powder exhibits high material safety, moderate carbon intensity, and strong sustainability performance relative to conventional cosmetic masks and refined sugar. Environmental impacts are primarily driven by date palm cultivation water use and packaging, with packaging circularity identified as the main improvement opportunity.
9. References
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ISO 14040:2006 β Environmental Management: Life Cycle Assessment β Principles and Framework
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ISO 14044:2006 β Environmental Management: Life Cycle Assessment β Requirements and Guidelines
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IPCC (2021). AR6 Working Group I β Global Warming Potentials (GWP100)
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FAO (2018). Water Accounting and Water Footprint Assessment Methodology
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Ecoinvent Database v3.9 β Date cultivation, food processing, packaging materials
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OECD (2020). Environmental Footprints of Food and Beverage Products
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Poore, J. & Nemecek, T. (2018). Reducing foodβs environmental impacts, Science
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UNEP (2020). Guidelines for Life Cycle Assessment of Consumer Products
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PlasticsEurope (2022). Eco-profiles of Flexible Packaging Materials
1. Figures are indicative, based on standard carbon footprint methodologies and best-available life-cycle data, and will be refined as more primary data become available.
2. For detailed analysis of carbon footprint of your product, connect with us: cmai@carbinnov.com
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