Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Applying Biosensors to Monitor Environmental Pollution in Harbors and Marine Protected Areas

View through CrossRef
Industrialization, urban effluents, maritime traffic, and harbor development have perniciously affected marine environments, especially in harbors and marine protected areas (MPAs). These environments now face unprecedented water contaminants like pesticides, microplastics, heavy metals, hydrocarbons, and other dangerous pollutants, which can gravely damage marine biodiversity and the overall ecosystem health. Monitoring pollution is made easier with traditional methodologies. However, these lack real-time, specific, sensitive, and even tailored attributes needed for effective surveillance in an environmental context. Biosensors, analytical devices incorporating biological recognition elements and physicochemical transducers, make it possible to detect ecological pollutants rapidly, accurately, and on-site. This article describes technological advances and fieldwork employing biosensors for pollution monitoring in harbors and MPAs, focusing on particular technological innovations. The use of various types of biosensors, such as enzymatic, microbial, immunosensors, and DNA-based sensors, is evaluated for their purpose-driven capability to monitor delineated pollutants. Connecting biosensors with wireless data communication systems and analytical platforms allows for data-driven continual assessments and timely responses through automated detection of pollution and contamination events. Marine environments pose unique problems such as biofouling, sensor calibration, and surface fouling, which impact the sensor's operational longevity. Discussed solutions are intended to improve the sensors' reliability, operability, and durability, including anti-fouling coatings, miniaturization, and automated deployment systems. Biosensors have been applied for environmental evaluations in various coastal areas, which have aided in improving marine resource management and conservation activities. All in all, the technological development of biosensors is a novel phenomenon in the marine environment. Biosensors enable real-time evaluation of pollution in harbors and marine protected areas. Furthermore, using biosensors to detect pollutants helps avert considerable harm to the ecology.
Title: Applying Biosensors to Monitor Environmental Pollution in Harbors and Marine Protected Areas
Description:
Industrialization, urban effluents, maritime traffic, and harbor development have perniciously affected marine environments, especially in harbors and marine protected areas (MPAs).
These environments now face unprecedented water contaminants like pesticides, microplastics, heavy metals, hydrocarbons, and other dangerous pollutants, which can gravely damage marine biodiversity and the overall ecosystem health.
Monitoring pollution is made easier with traditional methodologies.
However, these lack real-time, specific, sensitive, and even tailored attributes needed for effective surveillance in an environmental context.
Biosensors, analytical devices incorporating biological recognition elements and physicochemical transducers, make it possible to detect ecological pollutants rapidly, accurately, and on-site.
This article describes technological advances and fieldwork employing biosensors for pollution monitoring in harbors and MPAs, focusing on particular technological innovations.
The use of various types of biosensors, such as enzymatic, microbial, immunosensors, and DNA-based sensors, is evaluated for their purpose-driven capability to monitor delineated pollutants.
Connecting biosensors with wireless data communication systems and analytical platforms allows for data-driven continual assessments and timely responses through automated detection of pollution and contamination events.
Marine environments pose unique problems such as biofouling, sensor calibration, and surface fouling, which impact the sensor's operational longevity.
Discussed solutions are intended to improve the sensors' reliability, operability, and durability, including anti-fouling coatings, miniaturization, and automated deployment systems.
Biosensors have been applied for environmental evaluations in various coastal areas, which have aided in improving marine resource management and conservation activities.
All in all, the technological development of biosensors is a novel phenomenon in the marine environment.
Biosensors enable real-time evaluation of pollution in harbors and marine protected areas.
Furthermore, using biosensors to detect pollutants helps avert considerable harm to the ecology.

Related Results

Towards a better water resources management and control using bioelectrochemical systems
Towards a better water resources management and control using bioelectrochemical systems
(English) Freshwater is an extremely scarce yet essential resource for all life forms on planet Earth. Its quality directly impacts the development of human societies as well as th...
Antibody, DNA, and Enzyme-Based Biosensing Platforms as an On-Site Testing Kit
Antibody, DNA, and Enzyme-Based Biosensing Platforms as an On-Site Testing Kit
This comprehensive overview explores antibody-based and enzyme-based biosensors, alongside portable biosensors for point-of-care testing and biosensors in food safety. Antibody-bas...
Evaluating Forest Cover Changes in Protected Areas Using Geospatial Analysis in Chiang Mai, Thailand
Evaluating Forest Cover Changes in Protected Areas Using Geospatial Analysis in Chiang Mai, Thailand
Abstract Protected areas have been developed in Thailand to conserve the natural environment required for wildlife and human beings, and to prevent disasters. It is necessary to ad...
Environmental Decentralization, Environmental Regulation and Environmental Pollution: Evidence from China
Environmental Decentralization, Environmental Regulation and Environmental Pollution: Evidence from China
Environmental decentralization is an institutional factor that influences the effect of ecological environment governance. Based on panel data of provinces in China from 2008 to 20...
From Enzymatic Dopamine Biosensors to OECT Biosensors of Dopamine
From Enzymatic Dopamine Biosensors to OECT Biosensors of Dopamine
Neurotransmitters are an important category of substances used inside the nervous system, whose detection with biosensors has been seriously addressed in the last decades. Dopamine...
Marine environmental legislation in Qatar: Current mechanism and future challenges
Marine environmental legislation in Qatar: Current mechanism and future challenges
Marine Environmental Legislation in Qatar: Current Mechanism and Future Challenges Max-Planck Foundation, Heidelberg,Germany Omar Mohammed-Faraj, LL.M. Research Fellow The state of...
Marine Conservation in Chile: Historical Perspective, Lessons, and Challenges
Marine Conservation in Chile: Historical Perspective, Lessons, and Challenges
Abstract:  Chile is one of the world's leading countries in landings (catch) of marine resources. The pioneer studies of human impacts on coastal marine communi...
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED] Keanu Reeves CBD Gummies v1
[RETRACTED]Keanu Reeves CBD Gummies ==❱❱ Huge Discounts:[HURRY UP ] Absolute Keanu Reeves CBD Gummies (Available)Order Online Only!! ❰❰= https://www.facebook.com/Keanu-Reeves-CBD-G...

Back to Top