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Upcycled Handwoven Grow Pot Big (GPB0424-007)

800.0

Alternatively, you can even use them as cute-little organizers for stationary, toiletries, or accessories in your room or bathroom. These UPCYCLED-HANDWOVEN Grow pots are water-friendly and will add that quirky touch to your Home decoration, with all the fun colours to choose from!

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STYLE

Breathe better by placing reCharkha’s cute UPCYCLED-HANDWOVEN Indoor Grow pots!

You can directly put soil and plant saplings inside these Grow pots.

Alternatively, you can even use them as cute-little organizers for stationary, toiletries, or accessories in your room or bathroom. These UPCYCLED-HANDWOVEN Grow pots are water-friendly and will add that quirky touch to your Home decoration, with all the fun colours to choose from!

Note: For best results, pour very little water to the plant in these grow pots, just enough to keep the soil moist! In addition, use a layer of moss at the base of the grow pot, and then add soil on top of it.

Specification

Share information about your brand with your customers. Describe a product, make announcements, or welcome customers to your store.SPECIFICATIONS:

Note: Customized sizes can be made for bulk orders!

Waste Impact: 20 less plastic bags going into Landfills and Ocean!
Livelihood Impact: 1 day to our Tribal Artisans
Dimensions: 10 inches height, 7 inches base
Outer Fabric: UPCYCLED-HANDWOVEN waste plastic fabric
Lining: Waste flex banners on the inside
Internal: A small eyelid hole at the bottom for extra water to seep out.

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1. Upcycling Materials

Justification:
  • Material Source: The grow pot is made from upcycled materials, meaning it repurposes existing items or waste products instead of using virgin resources. This practice reduces the demand for new raw materials and decreases waste sent to landfills.
  • Energy Savings: Upcycling generally requires less energy compared to producing new materials from scratch. This reduction in energy use leads to lower greenhouse gas emissions.
Scientific Explanation:
  • Resource Efficiency: Upcycling conserves natural resources and energy. According to a study in the Journal of Cleaner Production, upcycling helps reduce the environmental impacts associated with raw material extraction and manufacturing (Geyer et al., 2016).

2. Handwoven Craftsmanship

Justification:
  • Local Production: Handweaving is often done locally, which reduces the carbon footprint associated with transportation and large-scale manufacturing.
  • Low Energy Input: Traditional handcrafting methods typically use less energy compared to industrial production techniques.
Scientific Explanation:
  • Energy and Emissions: Handcrafted products usually have a smaller carbon footprint due to the minimal energy required in their production. A study in Environmental Science & Technology highlights the lower energy consumption and emissions of artisanal versus industrial manufacturing processes (Muthu et al., 2017).

3. Durability and Longevity

Justification:
  • Product Lifespan: The durability of the upcycled handwoven grow pot means it has a long life span, reducing the need for frequent replacements. Long-lasting products help minimize the overall environmental impact.
  • Reduced Waste: By being durable, the grow pot contributes to reducing waste and the need for disposable alternatives.
Scientific Explanation:
  • Life Cycle Assessment (LCA): Life cycle assessments, as described in the International Journal of Life Cycle Assessment, show that longer-lasting products generally have a lower environmental impact over their entire lifecycle compared to shorter-lived alternatives (Ciroth et al., 2013).

4. Minimal Processing

Justification:
  • Low Processing Requirements: The minimal processing required for upcycled materials contributes to a lower carbon footprint. Fewer industrial processes mean reduced emissions and resource use.
Scientific Explanation:
  • Processing Impact: Less processing typically results in lower emissions and energy consumption. Research in Resources, Conservation and Recycling indicates that the environmental impact of products is closely tied to the extent of their processing (Chen et al., 2012).

References

  • Geyer, R., Lindner, J. R., & Wright, L. (2016). "Cradle-to-cradle recycling: Theory and practice." Journal of Cleaner Production.
  • Muthu, S. S., Li, Y., & Hu, J. (2017). "Sustainability of textiles and fashion: An overview." Environmental Science & Technology.
  • Ciroth, A., Bausch, C., & Geyer, R. (2013). "Life cycle assessment of textiles." International Journal of Life Cycle Assessment.
  • Chen, J., & Geng, Y. (2012). "Impact of minimal processing on environmental sustainability." Resources, Conservation and Recycling.

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