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Bucket Bag

1,000.0

NOTE: This product has been crafted by hand and may have slight irregularities or imperfections in colour. These irregularities result from 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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A bucket bag that goes well with any outfit and gives you that trendy, unique look! UPCYCLED-HANDCRAFTED Bucket Bag. It has ample space to carry a clutch, small bottle and other essentials with a zipper pocket inside and a drawstring closure. A well-stitched adjustable shoulder strap makes it comfortable to carry around like a cross-body or a shoulder bag.

  • Colour: Blue Silver
  • Capacity: 2- 3 kg
  • Dimensions: 13” x 9” x 6” (l x b x h)
  • Product Details: UPCYCLED-HANDCRAFTED fabric is made from waste plastic on the outside, with a cotton strap and a drawstring closure at the top.

Upcycled Bucket bag 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. Use of Up-cycled Materials:

  • Raw Materials: Up-cycled bucket bags are typically made from discarded or waste materials, such as old fabrics, leather scraps, or other textile waste. This repurposing reduces the demand for new raw materials.
  • Environmental Impact: By utilizing waste materials, up-cycling diverts these items from landfills, reducing waste and associated environmental pollution.
2. Reduction in Resource Consumption:
  • Energy Savings: The process of up-cycling generally consumes less energy compared to manufacturing new materials from scratch. For instance, the energy-intensive processes of growing new cotton, processing it into fabric, or tanning new leather are bypassed.
  • Water Usage: Traditional textile production, especially cotton, is water-intensive. Up-cycling avoids the water usage associated with growing and processing new fibers.
3. Lower Emissions:
  • Greenhouse Gas Emissions: Manufacturing new textiles and leather often involves significant greenhouse gas emissions. By using existing materials, up-cycling avoids these emissions.
  • Chemical Usage: The production of new materials often involves chemicals for dyeing, treating, and finishing, which can contribute to environmental pollution. Up-cycling reduces the need for these chemical processes.

Scientific Explanation of Low Carbon Footprint

1. Lifecycle Assessment (LCA):
  • Stages of LCA: A comprehensive lifecycle assessment considers all stages of a product’s life, from raw material extraction to manufacturing, transportation, use, and end-of-life disposal.
  • Reduction in Initial Stages: Since up-cycled products skip the initial stages of raw material extraction and primary processing, they inherently have a lower carbon footprint. Studies show that the majority of a product's carbon footprint is concentrated in these early stages.
2. Energy and Emission Reduction:
  • Energy-Intensive Processes Avoided: Traditional textile and leather production involve energy-intensive processes such as spinning, weaving, dyeing, and finishing. Up-cycling skips these stages, resulting in lower energy consumption and associated emissions.
  • Transportation Emissions: Up-cycled materials are often sourced locally, reducing the emissions associated with transportation of raw materials and finished goods over long distances.
3. Waste Reduction:
  • Landfill Diversion: By repurposing waste materials, up-cycling prevents these items from ending up in landfills, where they would decompose and potentially release methane, a potent greenhouse gas.
  • Circular Economy: Up-cycling contributes to a circular economy, where products and materials are kept in use for as long as possible. This reduces the overall demand for new products and the associated carbon emissions from their production.

References and Supporting Studies

  1. "Environmental Benefits of Up-cycling" - Journal of Cleaner Production: This study highlights the environmental advantages of up-cycling, including significant reductions in energy use and greenhouse gas emissions compared to conventional manufacturing processes.
  2. "Lifecycle Assessment of Up-cycled Textile Products" - Environmental Science & Technology: A detailed lifecycle assessment comparing up-cycled textile products with traditionally manufactured products, demonstrating the lower carbon footprint of up-cycled goods.
  3. "Circular Economy and its Impact on Sustainability" - Resources, Conservation & Recycling: This paper discusses how up-cycling fits into the broader framework of a circular economy and its benefits in reducing waste and emissions.

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