Explore the words cloud of the INCOVER project. It provides you a very rough idea of what is the project "INCOVER" about.
The following table provides information about the project.
Coordinator |
ASOCIACION DE INVESTIGACION METALURGICA DEL NOROESTE
Organization address contact info |
Coordinator Country | Spain [ES] |
Project website | http://incover-project.eu/ |
Total cost | 8˙432˙456 € |
EC max contribution | 7˙209˙032 € (85%) |
Programme |
1. H2020-EU.3.5.4. (Enabling the transition towards a green economy and society through eco-innovation) |
Code Call | H2020-WATER-2015-two-stage |
Funding Scheme | IA |
Starting year | 2016 |
Duration (year-month-day) | from 2016-06-01 to 2019-07-31 |
Take a look of project's partnership.
Taking into account the current global water scarcity and the expensive operation and maintenance cost of wastewater treatment, INCOVER concept has been designed to move wastewater treatment from being primarily a sanitation technology towards a bio-product recovery industry and a recycled water supplier. A wastewater specific Decision Support System methodology will be tailored to the INCOVER technologies and provide data and selection criteria for a holistic wastewater management approach Three added-value plants treating wastewater from three case-studies (municipalities, farms and food and beverage industries) will be implemented, assessed and optimised concurrently. INCOVER plants will be implemented at demonstration scale in order to achieve Technology Readiness Level(TRL) of 7-8 to ensure straightforward up scaling to 100,000 population equivalents (PE). INCOVER added-value plants will generate benefits from wastewater offering three recovery solutions: 1) Chemical recovery (bio-plastic and organic acids) via algae/bacteria and yeast biotechnology; 2) Near-zero-energy plant providing upgraded bio-methane via pre-treatment and anaerobic co-digestion systems; 3) Bio-production and reclaimed water via adsorption, biotechnology based on wetlands systems and hydrothermal carbonisation. To improve added-value production efficiency, INCOVER solutions will include monitoring and control via optical sensing and soft-sensors INCOVER solutions will reduce at least a 50% overall operation and maintenance cost of wastewater treatment through the use of wastewater as a source for energy demand and added-value production to follow UE circular economy strategy. In addition, strategies to facilitate the market uptake of INCOVER innovations will be carried out in order to close the gap between demonstration and end-users An estimated turnover of 188 million€ for INCOVER lead-users is expected after the initial exploitation strategy of 5 years implementing 27 INCOVER solutions
INCOVER case-study 1 | Demonstrators, pilots, prototypes | 2020-04-23 03:25:43 |
Hydrothermal carbonisation process for bio-solids beneficial use | Documents, reports | 2020-04-23 03:25:43 |
Project Website and communication material | Websites, patent fillings, videos etc. | 2020-04-23 03:25:44 |
Report on the contribution to the standardization | Documents, reports | 2020-04-23 03:25:44 |
DSS and ICT tool: guidelines on use and operation | Demonstrators, pilots, prototypes | 2020-04-23 03:25:44 |
Communication and Dissemination plan | Documents, reports | 2020-04-23 03:25:44 |
INCOVER case-study 2 | Demonstrators, pilots, prototypes | 2020-04-23 03:25:44 |
Communication and Dissemination Material | Documents, reports | 2020-04-23 03:25:44 |
INCOVER case-study 3 | Demonstrators, pilots, prototypes | 2020-04-23 03:25:44 |
Smart irrigation systems at demo scale | Demonstrators, pilots, prototypes | 2020-04-23 03:25:43 |
Take a look to the deliverables list in detail: detailed list of INCOVER deliverables.
year | authors and title | journal | last update |
---|---|---|---|
2017 |
Andreas Aurich, Jörg Hofmann, Robert Oltrogge, Mike Wecks, Roger Gläser, Laura Blömer, Stephan Mauersberger, Roland A. Müller, Dieter Sicker, Athanassios Giannis Improved Isolation of Microbiologically Produced (2 R ,3 S )-Isocitric Acid by Adsorption on Activated Carbon and Recovery with Methanol published pages: 866-870, ISSN: 1083-6160, DOI: 10.1021/acs.oprd.7b00090 |
Organic Process Research & Development 21/6 | 2020-04-23 |
2018 |
Lucie Moeller, Aline Bauer, Andreas Zehnsdorf, Mi-Yong Lee, Roland Mueller. Anaerobic co-digestion of waste yeast biomass from citric acid production and waste frying fat published pages: , ISSN: 0000-0000, DOI: |
Journal of Engineering in Life Sciences Volume 18, page 425-433 | 2020-04-23 |
2018 |
David MarÃn; Esther Posadas; Patricia Cano; Victor Pérez; Raquel Lebrero; Raul Munoz. A yearly evaluation of outdoors biogas upgrading in a pilot scale high rate algal pond. published pages: , ISSN: 0000-0000, DOI: |
Bioresource technology Submitted | 2020-04-23 |
2019 |
Enrica Uggetti, Joan GarcÃa, Juan Antonio Ãlvarez, MarÃa Jesús GarcÃa Galán. Start-up of a microalgae-based treatment system within the biorefinery concept: from wastewater to bioproducts. published pages: , ISSN: 0000-0000, DOI: |
Water Science and Technology In press | 2020-04-23 |
2017 |
Rodero M.R; Ãngeles-Torres R; Marin D; Diaz I; Colzi A; Posadas E; Lebrero R; Muñoz R Biogas purification and upgrading technologies published pages: Chapter 11, ISSN: , DOI: |
Biogas: Fundamentals,Process, and Operation Chapter 11 | 2020-04-23 |
2018 |
David MarÃn; Esther Posadas; Patricia Cano; Victor Pérez; Raquel Lebrero; Raul Munoz. Influence of the seasonal variation of environmental conditions on biogas upgrading in an outdoors pilot scale high rate algal pond. published pages: , ISSN: 0000-0000, DOI: |
Bioresource technology In press | 2020-04-23 |
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The information about "INCOVER" are provided by the European Opendata Portal: CORDIS opendata.
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