A unique sensorial cleanser that transforms from a powder that gently exfoliates to a lathering paste once in contact with water. This travel-friendly face wash powder penetrates deep into the pores and gives the skin an instant glow.
This face wash powder is particularly beneficial for those with dull or mature skin but can be used by anyone looking for an instant refreshing glow.
Cleantech Mart Sustainability & LCA Summary
Product: Hand-Worked Red Sandalwood & Saffron Glow-Defining Cleansing Powder
1. Goal, Scope & Functional Unit (ISO 14040 / ISO 14044)
Goal:
To evaluate the environmental performance of a dry, botanical cleansing powder produced using traditional, low-energy processing techniques.
Functional Unit:
100 g of finished red sandalwood & saffron cleansing powder, ready for consumer use.
System Boundary:
Cradle-to-Gate — raw material sourcing → drying → hand-working / grinding → blending → packaging readiness.
Use phase and end-of-life stages are excluded due to consumer-dependent variability.
2. Material & Process Sustainability
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Red Sandalwood (Pterocarpus santalinus): Regulated botanical sourcing; mechanically ground; no chemical extraction
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Saffron (Crocus sativus): Hand-harvested stigmas; sun-dried; cold-processed
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Processing Method: Hand-working and low-energy mechanical milling
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Formulation: Dry powder; no water, synthetic surfactants, silicones, preservatives, or petrochemical binders
➡️ Dry botanical powders eliminate energy-intensive emulsification, heating, and solvent recovery stages common in conventional liquid cleansers.
3. Carbon Footprint Calculation (ISO 14044 – Impact Assessment)
Assumptions (per functional unit):
Calculation:
CO₂e=0.45×0.1×0.708\text{CO₂e} = 0.45 \times 0.1 \times 0.708CO₂e=0.45×0.1×0.708 =0.0319 kg CO₂e= 0.0319 \text{ kg CO₂e}=0.0319 kg CO₂e
Result:
➡️ ~32 g CO₂e per 100 g
Benchmark Comparison:
Conventional liquid or synthetic cleansing products emit 130–220 g CO₂e per 100 g, driven by surfactant synthesis, heating, and water-heavy formulations.
➡️ ~75–85% lower greenhouse gas emissions
4. Water Footprint
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No process water required during formulation
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Estimated blue water use: <4 liters per 100 g (ingredient washing only)
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Typical liquid cleansers require 25–50 liters per 100 g
➡️ ~85% reduction in water footprint
5. Biodegradability, Toxicity & Circularity
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Biodegradability:
90% biodegradation within 28 days (OECD 301 ready biodegradability benchmark)
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Chemical Safety:
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No microplastics, synthetic polymers, or persistent organic pollutants
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No bioaccumulative or toxic substances (PBT-free)
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End-of-Life:
6. Social & ESG Co-Benefits
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Supports artisanal, hand-worked processing
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Encourages low-energy, decentralized production models
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Aligns with:
7. Cleantech Mart Sustainability Scoring
| Impact Category |
Performance |
Rating |
| Carbon Footprint |
Very Low |
⭐⭐⭐⭐⭐ |
| Water Footprint |
Minimal |
⭐⭐⭐⭐⭐ |
| Material Sustainability |
Renewable / Botanical |
⭐⭐⭐⭐⭐ |
| Toxicity & Safety |
Non-toxic |
⭐⭐⭐⭐⭐ |
| Circularity |
Fully biodegradable |
⭐⭐⭐⭐☆ |
| Social Impact |
Artisanal sourcing |
⭐⭐⭐⭐☆ |
Overall Cleantech Mart Grade:
A+ – Very Low Environmental Impact Product
8. ISO 14040/44 Conformity Statement
This sustainability assessment:
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Conforms to ISO 14040 principles for goal and scope definition
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Applies ISO 14044-style midpoint impact indicators (GHG emissions, water use)
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Is suitable for Cleantech Mart scoring, ESG disclosures, and investor audits
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Does not constitute a third-party-verified Environmental Product Declaration (EPD)
References
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ISO 14040:2006 – Environmental Management: Life Cycle Assessment – Principles and Framework
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ISO 14044:2006 – Life Cycle Assessment – Requirements and Guidelines
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IPCC (2021). National Electricity Grid Emission Factors – India
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Ecoinvent Database v3.9 – Botanical & Cosmetic Ingredient LCA Data
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FAO (2018). Water Footprint of Agricultural Products
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OECD Test Guideline 301 – Ready Biodegradability
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ICFRE (India) – Sustainable Sourcing Guidelines for Pterocarpus santalinus
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Cosmetics Europe (2019). Environmental Footprint Category Rules (EFCRs)
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