This nourishing shower gel from Green Roots is enriched with moisturizers that gently cleanse the skin without drying it out. Also, they are paraben free!
1) Green Roots Neem Fresh– Formulated with aloe vera and Neem extracts, this body wash hydrates the skin leaving it soft, supple and moisturized. Ideal for daily use, the extra moisturizing formula is suitable for all skin types.
2) Green Roots Aqua Sport– With its fresh scent and rich foam, this shower gel gives a refreshing start to the day.
3) Green Roots Lemon Splash– With rich ingredients, and refreshing scent of lemon, this is a top choice for our customers.
Green Roots products are cruelty free and free from parabens. Suitable for vegetarians.
Sustainability Report – Green Roots Moisturising Body Wash
1. Product Overview
Green Roots Moisturising Body Wash is a plant-based, biodegradable personal care product formulated with natural surfactants, botanical extracts, and eco-safe preservatives. The product aims to reduce environmental footprint across its life cycle—from raw material extraction to end-of-use wastewater discharge.
2. Life Cycle Sustainability Assessment (LCSA)
A. Raw Material Impact
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Surfactants derived from coconut and sugar-based feedstock have a 40–60% lower carbon footprint than petroleum-based surfactants.
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Botanical actives (aloe vera, neem, essential oils) are renewable, low-toxicity, and free from persistent pollutants.
B. Manufacturing Impact
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Low-temperature blending reduces energy usage.
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Estimated energy use per 1000 bottles: ~28 kWh, compared to ~42 kWh in conventional formulations.
C. Packaging
D. Biodegradability & Water Safety
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Primary surfactants exhibit >90% biodegradability within 28 days, meeting OECD 301D standards.
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No microplastics, parabens, or formaldehyde donors → reduces aquatic toxicity.
E. Carbon Footprint Estimate (per 200 ml bottle)
Raw materials: 0.18 kg COâ‚‚e
Manufacturing: 0.03 kg COâ‚‚e
Packaging: 0.06 kg COâ‚‚e
Transport (avg. 500 km): 0.04 kg COâ‚‚e
Total Estimated Carbon Footprint:
≈ 0.31 kg CO₂e per bottle
This is 28–35% lower than conventional chemical-based body washes (0.45–0.52 kg CO₂e).
3. Scientific Calculation – Biodegradability Impact Reduction
Goal:
To quantify how switching from a petroleum surfactant to a plant-derived surfactant reduces environmental burden.
Assumptions:
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Conventional surfactant biodegradability = 65%
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Green Roots surfactant biodegradability = 92%
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Surfactant content per 200 ml bottle = 10% (20 g)
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Environmental persistence impact factor = 1 unit per gram of non-biodegraded surfactant
Calculation:
Non-biodegraded portion:
Conventional:
= 20 g × (1 − 0.65)
= 7 g persistent material
Green Roots:
= 20 g × (1 − 0.92)
= 1.6 g persistent material
Impact Reduction:
Reduction = 7 g − 1.6 g
= 5.4 g less persistent surfactant per bottle
Percentage Reduction:
= (5.4 / 7) × 100
= 77.14% reduction in environmental persistence
References
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OECD Guideline for Testing of Chemicals 301D – Ready Biodegradability.
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ISO 14040/44 – Life Cycle Assessment Standards.
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Shen, L., Haufe, J., & Patel, M. (2009). Product overview and market projection of emerging bio-based plastics.
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UNEP, Life Cycle Initiative, Surfactants Environmental Impact Report (2022).
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Plastics Europe – HDPE and PCR Carbon Footprint Studies (2021).
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IPCC Emission Factors for Transportation (2023).
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