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Flawless Face Razor (Pack of 3)

Original price was: ₹349.0.Current price is: ₹319.0.

✨ 3 x Flawless Face Razor (Lilac, Tiffany Blue & Peach)
✨ Made from recycled plastic
✨ German steel blade
✨ Anti slip grip handle
✨ Gently Exfoliates, Gives instant glow
✨ Zero cuts, Zero bumps
✨ Compact & Portable

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Hair removal made quick, painless & sustainable✨

✨ 3 x Flawless Face Razor (Lilac, Tiffany Blue & Peach)
✨ Made from recycled plastic
✨ German steel blade
✨ Anti slip grip handle
✨ Gently Exfoliates, Gives instant glow
✨ Zero cuts, Zero bumps
✨ Compact & Portable

Engineered with a German Steel Blade, our Flawless Face Razor gives you a gentle yet precise shave. Crafted from recycled plastic, it’s kind to both your skin and the planet. Features an ergonomic handle with a secure anti-slip grip, ensuring superior control even in wet conditions. More than just a face razor; it doesn’t just remove hair but also gently exfoliates dead skin cells leaving you with a radiant glow. Add a touch of stye to your routine with our lilac, tiffany blue & peach razors. Zero cuts, bumps or pain. Only flawless results. ✨

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1. Material Choice:

Reusable Materials:
  • Stainless Steel and Aluminum: Many sustainable face razors are made from durable materials like stainless steel or aluminum, which have long lifespans and can be recycled at the end of their use. These materials are also less likely to degrade quickly compared to plastic, reducing waste. Reference: Stainless steel has a high recyclability rate, with about 90% of end-of-life stainless steel being collected and recycled, reducing the need for virgin material production and thereby lowering the overall carbon footprint .

2. Reduced Waste:

Replaceable Blades:
  • Minimalistic Design: Sustainable razors often use a minimalistic design where only the blades need to be replaced. This reduces the amount of waste generated compared to disposable razors, where the entire unit is discarded after a few uses. Reference: The Environmental Protection Agency (EPA) has highlighted that reducing material waste significantly lowers the carbon footprint of products by minimizing the need for raw material extraction and processing .

3. Manufacturing Processes:

Efficient Production:
  • Energy-Efficient Manufacturing: Sustainable razor manufacturers may use energy-efficient processes and renewable energy sources in their production lines. This decreases the carbon emissions associated with the manufacturing process. Reference: According to a study on manufacturing processes, energy efficiency improvements and the use of renewable energy can reduce the carbon footprint of metal products by up to 50% .

4. Longevity and Durability:

Long-Lasting Products:
  • Extended Product Lifespan: Products designed for long-term use have a lower overall environmental impact because they don’t need to be replaced as frequently. A face razor made from durable materials can last many years, spreading the initial manufacturing impact over a longer period and thus reducing its annual carbon footprint. Reference: A study published in the Journal of Industrial Ecology found that extending the lifespan of durable goods significantly reduces their environmental impact compared to short-lived products .

5. End-of-Life Management:

Recycling and Disposal:
  • Recyclable Components: When the materials used in face razors are easily recyclable, the end-of-life impact is minimized. Stainless steel and aluminum, for example, can be efficiently recycled with minimal energy input compared to the production of new materials. Reference: The recycling of metals like aluminum and stainless steel requires significantly less energy than producing them from raw ore. Aluminum recycling, for instance, uses only about 5% of the energy required to produce new aluminum .

Scientific Explanation:

The carbon footprint of a product is influenced by the sum of all greenhouse gas emissions associated with its lifecycle, including raw material extraction, manufacturing, transportation, usage, and disposal. By focusing on sustainable materials, efficient manufacturing, waste reduction, product longevity, and effective recycling, the overall carbon emissions can be significantly reduced.
  1. Raw Material Extraction: Using recycled metals instead of virgin materials reduces energy consumption and associated emissions.
  2. Manufacturing Efficiency: Implementing energy-efficient technologies and renewable energy sources during production lowers greenhouse gas emissions.
  3. Usage Phase: Long-lasting products need fewer replacements, distributing the initial carbon footprint over a longer period.
  4. End-of-Life Management: Efficient recycling processes minimize emissions compared to disposing of materials in landfills.

Conclusion:

A face razor product is considered sustainable and has a low carbon footprint due to its use of durable, recyclable materials, efficient manufacturing processes, reduced waste generation, long product lifespan, and effective end-of-life management. These factors collectively contribute to a significant reduction in greenhouse gas emissions throughout the product's lifecycle.
  1. Material Extraction and Processing:
    • Identify the types and quantities of materials used (e.g., stainless steel, aluminum, plastic).
    • Calculate the carbon emissions associated with extracting and processing these materials.
  2. Manufacturing:
    • Determine the energy consumption and emissions during the manufacturing process.
    • Include emissions from the production of parts, assembly, and packaging.
  3. Transportation:
    • Calculate emissions from transporting raw materials to the manufacturing site.
    • Include emissions from shipping the finished product to distribution centers and retailers.
  4. Usage:
    • Estimate emissions associated with the usage phase if applicable (e.g., maintenance, cleaning).
  5. End-of-Life:
    • Assess emissions from disposal or recycling processes.

Example Estimate for a Typical Face Razor

1. Material Extraction and Processing:
  • Stainless Steel: Approximately 6 kg CO2e per kg of stainless steel.
  • Aluminum: Approximately 14 kg CO2e per kg of aluminum.
  • Plastic: Approximately 3 kg CO2e per kg of plastic.
Assuming a typical face razor weighs 100 grams (0.1 kg) with 80% stainless steel, 10% aluminum, and 10% plastic:
  • Stainless Steel: 0.08 kg x 6 kg CO2e = 0.48 kg CO2e
  • Aluminum: 0.01 kg x 14 kg CO2e = 0.14 kg CO2e
  • Plastic: 0.01 kg x 3 kg CO2e = 0.03 kg CO2e
Total for Materials: 0.65 kg CO2e 2. Manufacturing:
  • Energy consumption for manufacturing a small metal product: Approximately 1 kg CO2e.
Total for Manufacturing: 1 kg CO2e 3. Transportation:
  • Emissions for transporting materials and finished product: Approximately 0.5 kg CO2e.
Total for Transportation: 0.5 kg CO2e 4. Usage:
  • Minimal emissions during usage for a non-electric razor: Negligible.
5. End-of-Life:
  • Recycling of metals: Small net emissions due to energy savings from recycling.
  • Assume recycling efficiency: Approximately -0.1 kg CO2e (net savings).
Total for End-of-Life: -0.1 kg CO2e

Total Carbon Footprint Estimate

  • Materials: 0.65 kg CO2e
  • Manufacturing: 1 kg CO2e
  • Transportation: 0.5 kg CO2e
  • End-of-Life: -0.1 kg CO2e
Estimated Total Carbon Footprint: 2.05 kg CO2e per face razor

References:

  1. Recycling Rates of Metals - International Stainless Steel Forum.
  2. EPA Waste Reduction Model (WARM) - United States Environmental Protection Agency.
  3. Energy Efficiency in Manufacturing - Journal of Cleaner Production.
  4. Product Longevity and Environmental Impact - Journal of Industrial Ecology.
  5. Energy Savings from Recycling - Aluminum Association.

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