How to use
Step 1. Wet your face & neck. Squeeze the Kumkumadi Face Wash on your palms.
Step 2. Massage in a circular motion to bring out impurities. Wash off with water.
Step 3: Massage the Face Scrub on wet face & neck in circular motion. Wash off & follow up with face serum.
Key Ingredients
Face Wash: Kumkumadi Ext, Gold Dust, Manjistha, Moringa, Rose Powder, Bala Ext, Sandalwood Ext, Aloe Vera Ext, Orange Peel Ext, Tulsi Powder Ext, Sodium Lauryl Sarcosinate, Coco- Glucoside, Decyl Glucoside, Cocamidopropyl Betaine, Sorbitol, Polyquaternium 7, DMDM Hydantoin, Cocodiethanol Amide, Methylchloroisothiazolinone, DM Water. Face Scrub: Kumkumadi Ext, Gold Dust, Manjistha, Ashwagandha, Multani Mitti, Turmeric Ext, Orange Peel Extract, Bala Ext, Sandalwood Ext, Aloe Vera Ext, Almond Oil, Walnut Shell Granules, Olive Oil, Vitamin C, Cetyl Alcohol, Stearic Acid, Titanium Dioxide, Sodium Hydroxide, Sodium Benzoate, DMDM Hydantoin, Zinc Oxide, Phenoxy Ethanol, DM Water, Ammonium Acryloyldimethyltaurate/VP Copolymer.
Additional Information
Manufacturer Name: Conor Cosmo India Ltd.
Manufacturer Address: Conor Cosmo(I) Pvt. Ltd Ambala Chandigarh Highway, Baldev Nagar, Ambala City- 134007
License No: 290-COS-(H)
Ingredients
- Natural and Organic Ingredients: If Gold Glow Face Wash uses natural or organic ingredients, this reduces the environmental impact associated with synthetic chemicals. Natural ingredients often require less energy and fewer resources to produce.
- Sustainable Sourcing: Ingredients sourced from sustainable agriculture or ethically harvested can reduce environmental damage and support biodiversity.
Packaging
- Recyclable or Biodegradable Packaging: Packaging that is recyclable, biodegradable, or made from recycled materials significantly reduces waste and the carbon footprint associated with production and disposal.
- Minimal Packaging: Reducing the amount of packaging can lower the carbon emissions related to manufacturing and transportation.
Production Process
- Energy Efficiency: If the manufacturing facilities use renewable energy sources or have implemented energy-efficient processes, this can greatly reduce the carbon footprint.
- Waste Reduction: Practices that minimize waste during production contribute to sustainability.
Transportation
- Local Sourcing: Ingredients and packaging materials sourced locally can lower transportation emissions.
- Efficient Distribution: Optimized logistics and transportation methods, such as bulk shipping and reduced travel distances, help in reducing carbon emissions.
Justification with References
- Ingredients and Sourcing: According to the Sustainable Beauty Coalition, natural and organic ingredients typically have a lower environmental impact than synthetic ones because they often require fewer resources and energy to produce .
- Packaging: The Ellen MacArthur Foundation emphasizes that recyclable and biodegradable packaging is essential for reducing the carbon footprint and environmental impact of personal care products .
- Production Process: A study by the Carbon Trust found that energy-efficient production processes and the use of renewable energy sources significantly lower the carbon footprint of manufacturing facilities .
- Transportation: The International Journal of Physical Distribution & Logistics Management highlights that local sourcing and efficient distribution methods are key factors in reducing the carbon emissions associated with transportation .
These factors combined can explain why Gold Glow Face Wash might be considered sustainable and have a low carbon footprint. For a more precise assessment, specific details about the product’s ingredients, packaging, production methods, and supply chain would be required.
To calculate the carbon footprint of Gold Glow Face Wash, we'll need data on various factors such as production, ingredients, packaging, and transportation. Since we don't have specific data for this product, I'll provide a general framework for calculating the carbon footprint. Here's how you can calculate it:
1. Ingredients
Estimate the emissions from producing the ingredients. Each ingredient has a different carbon footprint based on its production process. Here’s a simplified example:
- Assume the product contains 200 grams of ingredients.
- If the average carbon footprint of the ingredients is 2 kg CO2e per kg of ingredient:
Carbon footprint of ingredients=0.2 kg×2 kg CO2e/kg=0.4 kg CO2e\text{Carbon footprint of ingredients} = 0.2 \, \text{kg} \times 2 \, \text{kg CO2e/kg} = 0.4 \, \text{kg CO2e}Carbon footprint of ingredients=0.2kg×2kg CO2e/kg=0.4kg CO2e
2. Packaging
Consider the carbon footprint of producing and disposing of the packaging materials.
- Assume the packaging weighs 50 grams and is made of plastic with a footprint of 6 kg CO2e per kg:
Carbon footprint of packaging=0.05 kg×6 kg CO2e/kg=0.3 kg CO2e\text{Carbon footprint of packaging} = 0.05 \, \text{kg} \times 6 \, \text{kg CO2e/kg} = 0.3 \, \text{kg CO2e}Carbon footprint of packaging=0.05kg×6kg CO2e/kg=0.3kg CO2e
3. Manufacturing
Estimate the emissions from the manufacturing process, including energy consumption.
- If the energy consumption for manufacturing one unit of face wash is 0.1 kWh and the energy source emits 0.5 kg CO2e per kWh:
Carbon footprint of manufacturing=0.1 kWh×0.5 kg CO2e/kWh=0.05 kg CO2e\text{Carbon footprint of manufacturing} = 0.1 \, \text{kWh} \times 0.5 \, \text{kg CO2e/kWh} = 0.05 \, \text{kg CO2e}Carbon footprint of manufacturing=0.1kWh×0.5kg CO2e/kWh=0.05kg CO2e
4. Transportation
Estimate the emissions from transporting the ingredients to the manufacturing site and the finished product to the retailer.
- Assume the total transportation distance is 1000 km with an emission factor of 0.1 kg CO2e per km for the amount transported:
Carbon footprint of transportation=1000 km×0.1 kg CO2e/km=100 kg CO2e\text{Carbon footprint of transportation} = 1000 \, \text{km} \times 0.1 \, \text{kg CO2e/km} = 100 \, \text{kg CO2e}Carbon footprint of transportation=1000km×0.1kg CO2e/km=100kg CO2e
5. Usage
Consider the emissions from the use of the product (e.g., water and energy for using the face wash).
- Assume the use of the product requires 0.01 kWh per use and the energy source emits 0.5 kg CO2e per kWh:
Carbon footprint of usage=0.01 kWh×0.5 kg CO2e/kWh=0.005 kg CO2e\text{Carbon footprint of usage} = 0.01 \, \text{kWh} \times 0.5 \, \text{kg CO2e/kWh} = 0.005 \, \text{kg CO2e}Carbon footprint of usage=0.01kWh×0.5kg CO2e/kWh=0.005kg CO2e
6. Disposal
Estimate the emissions from disposing of the product and its packaging.
- Assume the packaging disposal has an emission factor of 0.1 kg CO2e:
Carbon footprint of disposal=0.1 kg CO2e\text{Carbon footprint of disposal} = 0.1 \, \text{kg CO2e}Carbon footprint of disposal=0.1kg CO2e
Total Carbon Footprint
Summing up all the components:
Total carbon footprint=Ingredients+Packaging+Manufacturing+Transportation+Usage+Disposal=0.4+0.3+0.05+100+0.005+0.1=100.855 kg CO2e\begin{align*} \text{Total carbon footprint} &= \text{Ingredients} + \text{Packaging} + \text{Manufacturing} + \text{Transportation} + \text{Usage} + \text{Disposal} \\ &= 0.4 + 0.3 + 0.05 + 100 + 0.005 + 0.1 \\ &= 100.855 \, \text{kg CO2e} \end{align*}Total carbon footprint=Ingredients+Packaging+Manufacturing+Transportation+Usage+Disposal=0.4+0.3+0.05+100+0.005+0.1=100.855kg CO2e
References
- Sustainable Beauty Coalition. (n.d.). Sustainable Beauty Practices.
- Ellen MacArthur Foundation. (n.d.). Circular Economy in Packaging.
- Carbon Trust. (2020). Energy Efficiency in Manufacturing.
- International Journal of Physical Distribution & Logistics Management. (2019). Sustainable Logistics Practices.
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