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IOT Based Self-Powered Oil Spill Detector Patent
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Preventing crises
Research into improving environmental monitoring is crucial for our ability to understand, address, and mitigate the growing challenges posed by climate change, pollution, habitat destruction, and other environmental threats.
Not only does it provide the data and insights necessary for informed decision-making at the individual, community, and governmental levels, enhanced monitoring techniques and technologies enable us to track changes in air and water quality, biodiversity, and ecosystems more accurately and in real-time, facilitating early detection of environmental issues and the implementation of timely interventions.
This research is fundamental for safeguarding our planet's health and ensuring a sustainable future for generations to come.
Market research.
To tackle this problem, various existing market-available solutions are examined and subsequently implemented for laboratory testing. The study evaluates multiple sensing techniques, including the Visible spectrum, Polarimetric, Infrared (IR), Laser Fluorosensors, and RF sensing, aiming to assess their advantages and shortcomings.
Sensor performance.
Additionally, the research conducts a detailed analysis of stand-alone sensors such as RF, capacitive, and IR. Prior to assessing sensor availability in the market, Electromagnetic Interference (EMI) analysis is conducted to ensure the sensors' performance integrity.
Understanding hydrocarbons.
The research recognises the complexities associated with detecting hydrocarbon spills, considering factors like the type of hydrocarbons, their location, proximity to sensitive environments, and other environmental variables. These parameters are crucial for planning a response to hydrocarbon spills, but their determination can be time-consuming. Furthermore, the study acknowledges the environmental impact of detection systems, which may inadvertently consume hydrocarbons and contribute to carbon emissions.