Nature Bio-Fertilizer

GPL-37 Condensed Solution

items #HS-8605

The Power of GPL-37 Chain Reaction Technology

Engineered for commercial farming, our GPL-37 condensed solution is the global first unique complex organic fertilizer. Featuring a 4000x ultra-concentrated liquid fermented formulation, it activates inter-chain reactions spanning infiltration, conversion, circulation, transfer, production, and restoration. When combined with standard NPK or Urea fertilizers, plant nutrient uptake efficiency surges from 3-15% up to an amazing 39-52%, while slashing conventional fertilizer usage by over 50% and drastically reducing global shipping and storage costs.

Technology: Global 1st Complex Organic Chain Reaction Agent
(75% Dry Basis Vegetable Extracts)
Ultra-Dilution: 1 : 4,000 to 6,000 (17ml – 25ml per 100L water)
Yield Impact: Proven 20% to 200% crop increase with $3.00/Ha unit cost efficiency
Certification: UK OF&G Certified Organic (Regn No. UKE0540)

core advantages (Key Features)

01

Combines standard NPK or Urea with our GPL-37 chain reaction agent, surging plant nutrient uptake efficiency from 3-15% up to an astonishing 39-52% .

Surviving the Deluge: The 20-Day Flood Test at Kang Vineyard
hs 8605 test 18

This content is blocked because it requires YouTube cookies.

Proven Resilience:
Zero Fruit Cracking, Zero Softening, 18.2° Sweetness After 20 Days Submerged.

When a relentless 20-day rainstorm left Changhua’s demonstration vineyards completely submerged, neighboring orchards faced catastrophic crop loss. Yet, the Kang Vineyard—treated with GPL-37 Chain Reaction Organic Fertilizer—remained entirely unaffected. By engineering superior root system mobility and simultaneous cellular growth, GPL-37 prevents rot, secures harvest quality, and delivers a remarkable 18.2° sweetness under extreme climate stress. Watch the unfiltered documentary to witness real agricultural resilience in action.

Global Field Test Results & Crop Success
Potted Plant 1 1 Edited

This content is blocked because it requires YouTube cookies.