Case Studies


Proven in Real Emergencies

See how our 40x absorbent delivered results when it mattered most.

2020 Kumamoto Flood Disaster, Japan

On July 4, 2020, Kumamoto Prefecture was struck by record-breaking torrential rains. River embankments collapsed, triggering landslides and destroying a gas station — causing a major fuel oil leak that spread rapidly with floodwaters.

The Japanese disaster response team immediately deployed our meltblown nano absorbent technology. Even in extremely turbulent and muddy flood conditions, it precisely locked and efficiently removed the oil.

This response showcased our technology’s exceptional adaptability in harsh environments, earning full recognition from local authorities and becoming the classic success story for composite oil spill handling in flood disasters.

2020 Wakashio Tanker Spill, Mauritius

On July 25, 2020, the Japanese bulk carrier Wakashio ran aground off Mauritius, triggering a major heavy fuel oil spill of over 1,000 tons. The incident severely threatened the Indian Ocean ecosystem, fisheries, and tourism.

Japanese government departments and international emergency teams urgently deployed our meltblown nano composite high-performance oil absorbent. Thanks to its rapid containment and highly selective absorption, the spill was effectively controlled and prevented from spreading.

This event demonstrated our technology’s ability to minimize ecological damage, earning high recognition from the Japanese government, international organizations, and Mauritius authorities — becoming the global benchmark for heavy fuel oil spill response.


How Our Patented Technology Achieves 40x+ Performance

Our 40x Meltblown Nano Absorbent is built on a proprietary composite structure that integrates advanced meltblown technology with nano-functional materials.

Meltblown Technology Precise control of fiber diameter (1-10μm) and optimized mold flow create a uniform multi-porous skeletal framework, providing a stable base for nano-material loading.

Nano Material Super-oleophilic surface modification through micro-roughness and chemical activity synergistically enhances oil molecule capture efficiency.

Composite Structure The multi-layer gradient design combines a micro-level fiber skeleton with nano-level functional coatings, delivering dual mechanisms:

  • Macro-pore rapid adsorption for instant oil capture
  • Micro-pore long-term locking for permanent retention

This innovative architecture delivers absorption capacity exceeding 40 times its own weight (peak up to 67x) — far surpassing conventional absorbents.

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