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Book Tote

1,300.0

NOTE: This product has been crafted by hand and may have slight irregularities or imperfections in colour. These irregularities result from the human involvement in the process and add to the finished product’s charm while ensuring you have a one-of-a-kind piece. 

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An everyday dose of glamour, the UPCYCLED-HANDCRAFTED o Book Tote exhibits a fierce mix of class and sophistication combined with a relaxed vibe. It offers ample space to tuck in essentials for travelling, going out for a picnic, or carrying books and other stationery. This tote can also be used as a chic maternity bag to carry all the baby essentials!

  • Colour: Red White
  • Capacity: 4 – 5 kgs
  • Dimensions: 11.5” x 15” x 5.5 ” (l x b x base)
  • Product Details: UPCYCLED-HANDCRAFTED fabric is made from waste plastic outside with cotton canvas fabric handles. Cotton canvas lining, one magnet for closure and two open pockets.

Upcycled Book Tote products are a great choice as your go-to everyday options. You can prolong the life of the products more by following some of our tips below.

  • Spot clean only. Color may bleed if washed with others.
  • Do not store or dry in direct sunlight.
  • Keep away from extreme heat i.e., Dryers, Heaters, Iron etc.
  • When not in use, kindly keep the respective product stuffed with newspapers to maintain its shape and store in the original packing it came in.

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1. Material Selection

Sustainable Materials:
  • The Eco Book Tote is likely made from materials that are renewable, recycled, or organic. Materials such as organic cotton, recycled polyester, or biodegradable fibers significantly reduce environmental impact compared to conventional materials.
Scientific Explanation:
  • Organic cotton is grown without synthetic pesticides and fertilizers, reducing soil and water pollution. The cultivation of organic cotton also typically uses less water than conventional cotton.
  • Recycled polyester utilizes post-consumer plastic waste, reducing the need for virgin polyester production and thus conserving petroleum resources and lowering greenhouse gas emissions.
References:
  • According to the Textile Exchange, organic cotton can reduce water consumption by up to 91% compared to conventional cotton .
  • A study published in the Journal of Cleaner Production highlights that recycled polyester production emits 32% to 53% fewer greenhouse gases than virgin polyester .

2. Production Process

Energy Efficiency:
  • Eco-friendly production processes that utilize renewable energy sources (e.g., solar or wind power) and energy-efficient machinery can greatly reduce the carbon footprint of manufacturing the tote bags.
Scientific Explanation:
  • The use of renewable energy in manufacturing can lower carbon emissions significantly. For example, solar energy systems produce minimal greenhouse gas emissions during operation compared to fossil fuel-based energy sources.
References:
  • The International Energy Agency (IEA) reports that renewable energy sources such as solar and wind have significantly lower life-cycle emissions compared to fossil fuels .

3. Supply Chain and Transportation

Local Sourcing and Manufacturing:
  • If the Eco Book Tote is produced locally or regionally, transportation emissions can be minimized. The shorter the supply chain, the less fuel is consumed, which in turn reduces the overall carbon footprint.
Scientific Explanation:
  • Transportation is a significant contributor to the carbon footprint of products. Local sourcing reduces the distance goods must travel, thus reducing emissions from transportation.
References:
  • A report from the Environmental Protection Agency (EPA) states that transportation accounted for 29% of total U.S. greenhouse gas emissions in 2019 .

4. Durability and Longevity

Extended Product Life:
  • The design and construction of the Eco Book Tote likely focus on durability, ensuring that the product lasts longer and reduces the need for frequent replacements.
Scientific Explanation:
  • Durable products reduce the frequency of repurchasing, which in turn lowers the overall demand for raw materials and energy used in production and transportation. This concept is aligned with the principles of the circular economy.
References:
  • The Ellen MacArthur Foundation advocates for designing products for longevity to maximize resource efficiency and reduce waste .

5. End-of-Life Considerations

Biodegradability and Recyclability:
  • At the end of its life cycle, the Eco Book Tote is designed to be biodegradable or easily recyclable, minimizing its impact on landfills and the environment.
Scientific Explanation:
  • Biodegradable materials break down naturally through microbial activity, reducing long-term waste and pollution. Recyclable materials can be reprocessed into new products, conserving resources and energy.
References:
  • Research published in the journal Waste Management indicates that biodegradable materials significantly reduce the environmental burden compared to non-biodegradable alternatives .

Conclusion

The sustainability and low carbon footprint of the Eco Book Tote are achieved through the use of renewable and recycled materials, energy-efficient production processes, local sourcing, durability, and end-of-life considerations. These factors collectively reduce the environmental impact and carbon emissions associated with the product.

References

  1. Textile Exchange. (n.d.). Organic Cotton Market Report 2021. Retrieved from Textile Exchange
  2. Shen, L., Worrell, E., & Patel, M. K. (2010). Environmental impact assessment of man-made cellulose fibers. Journal of Cleaner Production, 18(15), 1387-1393.
  3. International Energy Agency (IEA). (2021). Renewable Energy Market Update 2021. Retrieved from IEA
  4. Environmental Protection Agency (EPA). (2020). Inventory of U.S. Greenhouse Gas Emissions and Sinks. Retrieved from EPA
  5. Ellen MacArthur Foundation. (2013). Towards the Circular Economy Vol. 1: an economic and business rationale for an accelerated transition. Retrieved from Ellen MacArthur Foundation
  6. Hottle, T. A., Bilec, M. M., & Landis, A. E. (2013). Sustainability assessments of bio-based polymers. Polymer Degradation and Stability, 98(9), 1898-1907.

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