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Upcycled Handwoven Grow Pot Big (GPB0424-006)

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

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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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Sustainability Factors:

  1. Upcycling:
    • Concept: Upcycling involves transforming waste materials or useless products into new materials or products of better quality or environmental value. The Upcycled Handwoven Grow Pot Big uses discarded materials (such as old fabrics or fibers) to create new pots, reducing the need for virgin resources.
    • Impact: This process minimizes waste and the energy required to produce new raw materials. According to a study published in Waste Management, upcycling can significantly lower the environmental impact compared to traditional recycling or manufacturing processes.
  2. Handwoven Technique:
    • Concept: Handweaving involves minimal use of mechanized processes. This reduces energy consumption and emissions associated with industrial manufacturing.
    • Impact: Handweaving significantly cuts down on the carbon footprint compared to machine-based production. Research in Journal of Cleaner Production highlights that traditional craftsmanship often has a smaller carbon footprint due to reduced energy use.
  3. Longevity and Reusability:
    • Concept: Handwoven grow pots are often more durable than their mass-produced counterparts. They can be reused multiple times and often have a longer lifespan.
    • Impact: Increased product lifespan means fewer replacements are needed over time, reducing overall resource consumption and waste. Studies in Environmental Science & Technology show that extending the lifecycle of products can lead to substantial reductions in overall carbon emissions.

Carbon Footprint Factors:

  1. Material Source:
    • Concept: Using upcycled materials reduces the need for new raw materials, which are energy-intensive to produce. The carbon footprint of new materials (like synthetic fibers) is often high due to extraction and manufacturing processes.
    • Impact: By repurposing existing materials, the carbon footprint associated with material extraction and initial processing is avoided. According to a report from Environmental Impact Assessment Review, upcycled materials often have a lower carbon footprint than newly manufactured ones.
  2. Production Process:
    • Concept: The production process for upcycled handwoven pots is less industrialized. This reduces energy consumption and greenhouse gas emissions associated with manufacturing.
    • Impact: The less mechanized and more manual nature of handweaving results in lower energy use and fewer emissions. A study in Sustainable Production and Consumption indicates that artisanal and manual production techniques generally result in lower carbon footprints.
  3. Transportation and Distribution:
    • Concept: Handwoven products often have smaller and more localized production scales. This can reduce the need for long-distance transportation.
    • Impact: Local production minimizes transportation emissions. Research in Transportation Research Part D suggests that shorter supply chains contribute significantly to lowering overall carbon emissions.

References:

  1. Waste Management – Discusses the environmental benefits of upcycling.
  2. Journal of Cleaner Production – Examines the reduced environmental impact of traditional craftsmanship.
  3. Environmental Science & Technology – Explores the benefits of extending product lifecycles.
  4. Environmental Impact Assessment Review – Compares the carbon footprint of upcycled materials versus new materials.
  5. Sustainable Production and Consumption – Analyzes the carbon footprint of manual versus mechanized production processes.
  6. Transportation Research Part D – Evaluates the impact of shorter supply chains on carbon emissions.

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