Eco-focused projects often struggle to balance performance, durability, and true sustainability: many hydrogels work well but raise end‑of‑life concerns, while some “green” options degrade too quickly or inconsistently, risking crop stress and reapplication costs. Verifying real bio‑content and degradability claims is another hurdle, as is meeting stricter carbon and regulatory targets without inflating budgets. Supply variability of bio‑based feedstocks can affect quality and scale.
These challenges drive demand for materials that document lower footprint and controlled breakdown while maintaining reliable soil‑water performance—gaps the Potassium Polyacrylate BIOSK™ series is designed to address with its 10%–30% bio‑based composition and enhanced degradability.
|
BIOSK-205 |
BIOSK-220 |
BIOSK-230 |
The Bio-SK series of Potassium Polyacrylate is formulated with 10%~30% bio-based materials, showcasing a commitment to environmental friendliness and sustainability.
Featuring excellent degradability, Bio-SK series minimizes environmental impact, offering a responsible solution for applications where biodegradability is crucial.
By incorporating bio-based materials, Bio-SK series contributes to lowering carbon emissions, aligning with eco-conscious practices for a more sustainable future.
Bio-SK series' environmentally friendly composition makes it suitable for a wide range of applications, supporting eco-sensitive industries and initiatives.
With its bio-based formulation and exceptional degradability, Bio-SK series represents a responsibly engineered solution, balancing performance with environmental stewardship.
Potassium Polyacrylate Bio-SK Series with added bio-based materials is an environmentally friendly variant that includes 10%~30% bio-derived components. This formulation is designed for improved degradability while maintaining the water absorption properties of the polymer.
The addition of bio-based materials enhances the environmental friendliness of Potassium Polyacrylate Bio-SK Series by incorporating renewable resources. This reduces reliance on non-renewable sources and promotes a more sustainable product.
The benefits include improved environmental sustainability, reduced carbon footprint, and enhanced degradability. The polymer maintains its water absorption capabilities while incorporating bio-based components for a greener agricultural solution.
Yes, it can be used in various soil types. Its versatility allows it to contribute to sustainable farming practices by offering a more eco-friendly alternative for water retention in the soil.
● Dry method (preferred, easiest to use)
1.Mix the dry product with the base fertilizer or soil
2.Mechanical or manual application/irrigation into the seeding furrow or root zone
3.Covering the soil → Normal irrigation
● Wet method (in areas with little rainfall and no irrigation)
1.Mix 1 gram with 200-300 milliliters of water. Allow it to absorb water for at least 30 minutes.
2.Place the gel in the seeding furrow or root zone, then cover with soil for sowing.
· Water retention ≠ water production; watering is necessary after application.
· Must be applied to the root zone soil layer, not scattered on the surface.
· Can be mixed with most granular fertilizers.
· Avoid prolonged exposure to strong ultraviolet light.
· Actual dosage can be adjusted slightly based on soil structure and drought conditions.
No.51-2, Wuyang Road, Qingdao, China