Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > BRAAVOO will design an unmanned surveying vessel and marine buoy that carry biosensors to monitor marine pollutants

Abstract:
BRAAVOO will enable low-cost real-time measurements and has the potential to simplify marine environmental monitoring. The team led by CSIC Research Prof. Laura M. Lechuga, partner of the project and Group Leader at ICN2, is especially involved in the implementation of nanoinmunosensors based on a technology patented and licensed through CSIC by the ICN2 Group.

BRAAVOO will design an unmanned surveying vessel and marine buoy that carry biosensors to monitor marine pollutants

Barcelona, Spain | Posted on November 12th, 2014

As a result of multiple man-made pressures, there is a slow but steady degradation of marine water quality, both chemically and biologically. The European Project BRAAVOO (Biosensors, Reporters and Algal Autonomous Vessels for Ocean Operation) was launched in December 2013 as part of the EU strategies to mitigate this problem. The initiative is coordinated by Prof. Jan van der Meer from the University of Lausanne's Department of Fundamental Microbiology.

It comprises 9 partners from 7 different countries, and includes four research groups specialised in biosensor strategies and 5 different small or medium-sized enterprises (SMEs). The Institut Català de Nanociència i Nanotecnologia (Catalan Institute of Nanoscience and Nanotechnology - ICN2) holds a BRAAVOO meeting on November 13-14, hosted by CSIC Research Prof. Laura M. Lechuga, partner of the project and Group Leader of the ICN2 Nanobiosensors and Bioanalytical Applications Group.

BRAAVOO aims to develop unmanned surveying vessels and buoys, which will travel on the surface of the seas carrying 'Lab-in-a-Chip' modules for real-time monitoring of marine contaminants. The sensor modules will include all optical elements for biosensor signal detection, microelectronics for data storage, and microfluidics for automatic, programmable sample analyses. Biosensors are highly efficient and cost-effective tools, making the project an innovative solution for real-time in-situ measurement of high impact and difficult to measure marine pollutants. The project has the potential to simplify marine environmental monitoring, a complex logistical task ultimately carried out nowadays in expensive laboratories far away from the seawater.

The concept of BRAAVOO is based on a unique combination of three types of biosensors, which will enable both the detection of a number of specific marine priority pollutants and also of general biological effects that can be used for early warning. The Group led by Prof. Laura M. Lechuga is especially involved in the implementation of nanoinmunosensors based on a technology patented and licensed through CSIC by the ICN2 Group. These sensors facilitate the direct detection of molecular interactions between specific antibodies and the pollutant substances.

The consortium gathered at ICN2 unites expertise and access to relevant infrastructure and development for the entire range of necessary experimental methods (from maritime engineering to microbiology and nanotechnology). Molecular microbiologists, electrical engineers, chemists and marine biologists will validate the biosensor-derived measurements in real-life mesocosm settings.

####

For more information, please click here

Contacts:
Àlex Argemí
Phone: 937372607

Copyright © ICN2

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related News Press

News and information

Beyond wires: Bubble technology powers next-generation electronics:New laser-based bubble printing technique creates ultra-flexible liquid metal circuits November 8th, 2024

Nanoparticle bursts over the Amazon rainforest: Rainfall induces bursts of natural nanoparticles that can form clouds and further precipitation over the Amazon rainforest November 8th, 2024

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Marine/Watercraft

Strain-sensing smart skin ready to deploy: Nanotube-embedded coating detects threats from wear and tear in large structures July 15th, 2022

A sunlight-driven “self-healing” anti-corrosion coating May 27th, 2022

Quantum tech in space? Scientists design remote monitoring system for inaccessible quantum devices February 11th, 2022

Expanding the freedom of design: powder coating on FRP thanks to conductive gelcoats with graphene nanotubes March 3rd, 2021

Announcements

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Turning up the signal November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Environment

Nanoparticle bursts over the Amazon rainforest: Rainfall induces bursts of natural nanoparticles that can form clouds and further precipitation over the Amazon rainforest November 8th, 2024

New method in the fight against forever chemicals September 13th, 2024

Catalyzing environmental cleanup: A highly active and selective molecular catalyst and electrified membrane: Innovative electrochemical catalyst breaks down trichloroethylene pollutants at unprecedented rate September 13th, 2024

$900,000 awarded to optimize graphene energy harvesting devices: The WoodNext Foundation's commitment to U of A physicist Paul Thibado will be used to develop sensor systems compatible with six different power sources January 12th, 2024

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project