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M3R SIGNED

Microfluidic Multi-Micropollutant Remediation

Total Cost €

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EC-Contrib. €

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Partnership

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 M3R project word cloud

Explore the words cloud of the M3R project. It provides you a very rough idea of what is the project "M3R" about.

affordable    enzymes    made    efficient    foreseen    company    modifying    water    xenobiotic    perform    break    estradiol    of    alike    xenobiotics    day    wastewaters    sustainable    er    endocrine    chemical    superior    technologies    latest    pressures    area    hazardous    energy    below    considerable    solutions    drinking    pa    small    m3    pollution    wastewater    200    chemicals    microfluidics    structure    17    degradation    organisation    start    municipalities    nonylphenol    world    communities    recalcitrant    recommendations    monitoring    capability    bisphenol    health    ing    decided    reduce    lignin    re    industrial    expertise    rural    list    line    pollutants    compounds    innovative    host    voted    prompted    volume    substances    relate    similarity    benchmark    microfluidic    efficiency    beta    industries    patented    examine    microbiology    disrupting    treatment    layers    urban    combining    environmental    harmful    ligninolytic    environment   

Project "M3R" data sheet

The following table provides information about the project.

Coordinator
EDEN MICROFLUIDICS 

Organization address
address: 83 AVENUE PHILIPPE AUGUSTE
city: PARIS
postcode: 75011
website: n.a.

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country France [FR]
 Total cost 196˙707 €
 EC max contribution 196˙707 € (100%)
 Programme 1. H2020-EU.1.3.2. (Nurturing excellence by means of cross-border and cross-sector mobility)
 Code Call H2020-MSCA-IF-2019
 Funding Scheme MSCA-IF-EF-SE
 Starting year 2021
 Duration (year-month-day) from 2021-05-01   to  2023-04-30

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    EDEN MICROFLUIDICS FR (PARIS) coordinator 196˙707.00

Map

 Project objective

The rapidly growing impact of xenobiotic chemicals (Endocrine disrupting compounds) on the environment has prompted the development of new processes for the treatment of wastewaters produced by industries and municipalities. Recently, European Commission voted to re-examine its drinking water and commission decided to include three Endocrine disrupting compounds (Bisphenol A, Nonylphenol, and 17β-Estradiol) in the list of benchmark parameters for drinking-water monitoring, in line with latest recommendations of the World Health Organisation (WHO). Recently, the capability of lignin-modifying enzymes for degradation of xenobiotics and recalcitrant pollutants has generated a considerable research interest in this area of industrial/environmental microbiology. Lignin-modifying enzymes can be also used to break down and reduce the harmful activity of hazardous substances, due to the similarity of their chemical structure with that of lignin. The goal of this innovative project is to relate the expertise of the ER in ligninolytic enzymes with the expertise of a start-up in microfluidics and microfluidic systems. By combining these two technologies, we aim at creating a superior, more efficient system able to rapidly perform the treatment of wastewaters. The resulting system should be small, energy-efficient (involving low pressures, typically below 200 Pa), and made of a high number of microfluidic layers to allow for a high wastewater volume treatment (typically up to 50 m3/day). The high-volume high-efficiency target will be made possible using a microfluidic technology developed and patented by the host company. The resulting technology is foreseen to address the current challenge of increasing water pollution and bring affordable, sustainable solutions for all communities, large and urban or small and rural alike.

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The information about "M3R" are provided by the European Opendata Portal: CORDIS opendata.

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