Carbon-Based Absorbents
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Technology Overview
This invention presents carbon aerogels synthesized from the pyrolysis of dried cotton, a common waste material. The aerogels exhibit low density, high adsorption capacity, and high thermal and electrical conductivity, making them suitable for applications like oil spill cleanups.
CATEGORY
TECHNOLOGY READINESS LEVEL (TRL)
Environmental safety and protection
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Selective Oil Absorption:
Hydrophobic, superoleophilic aerogel absorbs fuel oils and lubricants while repelling seawater, enabling rapid spill response in ports and open seas.
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Sustainable Material Solution:
Made from waste cotton feedstock, supporting circular economy goals and Environmental, Social, and Governance targets in maritime operations.
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Reusable & Cost-Effective:
Recovered oil can be extracted through squeezing or distillation, allowing multiple reuse cycles and reducing response costs.
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High Capacity for Heavy Fuels:
Outperforms conventional sorbents, particularly for viscous bunker fuels and marine diesel.
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Safe Lifecycle Management:
Produces minimal hazardous by-products and allows safe burn-off of absorbed pollutants, supporting secure handling and disposal.
Maritime Use Cases

The carbon-based aerogel materials could be used to develop advanced oil spill cleanup solutions for maritime environments, improving the efficiency and effectiveness of responding to oil spills and mitigating the environmental impact on marine ecosystems.

The aerogel-based sorbents could be deployed on ships, offshore platforms, or coastal areas to rapidly contain and absorb oil spills, enabling more effective and targeted cleanup operations.

The lightweight and reusable nature of the aerogels could also make them suitable for integration into maritime infrastructure, such as booms or skimmers, to enhance the overall oil spill response capabilities in the industry.
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