Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves
Bush - Men’s Hemp Blazer adamleaves

Bush | Men's Hemp Blazer

With its straight silhouette and notch lapel, this outfit, which is made from natural hemp yarn, invites you to ease yourself into infinite bliss. Only its cotton satin interior stresses the cotton interlining, which blends perfectly with any attire and any mood. You'll wear this blazer for days on end and will find it hard to take it off when summer arrives.
Regular price ₹ 10,750.00
Sale price ₹ 10,750.00 Regular price
Unit price
Fabric & Origin: Hemp
Bloom White
Certified Natural Luxury
Human Hand Artistry
7-Day Returns & Exchanges
Secure Checkout
Bush - Men’s Hemp Blazer adamleaves

Bush | Men's Hemp Blazer

Behind The Design

How It's Made

The Material Difference

Hemp vs. Polyester

Life-cycle assessment · per kg of finished fiber · cradle-to-gate (raw material extraction through primary fiber processing)

Hemp Polyester
Water 4,000–6,000 L 62–200 L
Energy 15–35 MJ 108–217 MJ
CO2 0.8–2.0 kg 2.0–27.2 kg
Source Renewable Fossil fuel
Fertilizer & pesticides Minimal to none None (industrial synthesis instead)
Microplastics None High
End of life Biodegradable Non-biodegradable

Better Moderate Higher impact

The trade-off: Hemp is significantly better for climate and relies on renewable materials and energy, but is more water-intensive than synthetic fibers. Polyester uses far less water but carries a much larger carbon and energy footprint.

Why the ranges vary: Figures span a range because manufacturing conditions differ globally — polyester made in a coal-powered facility sits at the high end of the CO2 range, while a facility running on cleaner energy sits at the low end.

Methodology & data notes
  • Water: Hemp's figure includes agricultural water, much of it natural rainfall ("green water"). Polyester's water use is mostly for equipment cooling during chemical synthesis.
  • Energy: Polyester relies on energy-intensive petroleum cracking and polymerization. Hemp's footprint comes mainly from farm machinery and mechanical fiber processing.
  • CO2: Hemp acts as a carbon sink while growing, lowering its net emissions. Polyester's emissions vary with the energy grid — coal vs. renewables — used in manufacturing.
  • Source: Hemp relies on annual crop cycles and topsoil health. Polyester is derived entirely from petroleum and natural gas extraction.
  • Fertilizer & pesticides: Hemp is naturally pest-resistant and is typically grown without synthetic pesticides, needing little to no fertilizer. Polyester uses no agricultural chemicals, but its production relies on petrochemical catalysts and industrial processing chemicals instead.
  • Microplastics: Polyester sheds synthetic microfibers during washing, which accumulate in marine ecosystems. Hemp is a natural cellulosic fiber and does not shed plastic.
  • End of life: Untreated hemp naturally decomposes and can be composted. Polyester can persist in landfills for centuries, though it can be mechanically recycled.

Our Process

From Fibre to Finish

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