Resultados totales (Incluyendo duplicados): 11
Encontrada(s) 2 página(s)
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:606
Libro o Monografía (book). 2016

THE AQUACROSS INNOVATIVE CONCEPT. DELIVERABLE 3.1. EUROPEAN UNION’S HORIZON 2020 FRAMEWORK PROGRAMME FOR RESEARCH AND INNOVATION GRANT AGREEMENT NO. 642317.

  • Gómez, C.M.
  • Delacámara, G.
  • Arévalo-Torres, J.
  • Barbière, J.
  • Barbosa , A.L.
  • Boteler, B.
  • Culhane, F.
  • Daam, M.
  • Gosselin, M-P.
  • Hein, T.
  • Iglesias-Campos, A.
  • Jähnig, S.
  • Lago, M.
  • Langhans, S.
  • Martínez-López, J.
  • Nogueira, A.
  • Lillebø, A.
  • O’Higgins, T.
  • Piet, G.
  • Pletterbauer, F.
  • Pusch, M.
  • Reichert, P.
  • Robinson, L.
  • Rouillard, J
  • Schlüter, M.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:606
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Repositorio Institucional del Instituto IMDEA Agua
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Repositorio Institucional del Instituto IMDEA Agua
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:731
Libro o Monografía (book). 2016

THE AQUACROSS INNOVATIVE CONCEPT. DELIVERABLE 3.1. EUROPEAN UNION’S HORIZON 2020 FRAMEWORK PROGRAMME FOR RESEARCH AND INNOVATION GRANT AGREEMENT NO. 642317.

  • Gómez, C.M.
  • Delacámara, G.
  • Arévalo-Torres, J.
  • Barbière, J.
  • Barbosa , A.L.
  • Boteler, B.
  • Culhane, F.
  • Daam, M.
  • Gosselin, M-P.
  • Hein, T.
  • Iglesias-Campos, A.
  • Jähnig, S.
  • Lago, M.
  • Langhans, S.
  • Martínez-López, J.
  • Nogueira, A.
  • Lillebø, A.
  • O’Higgins, T.
  • Piet, G.
  • Pletterbauer, F.
  • Pusch, M.
  • Reichert, P.
  • Robinson, L.
  • Rouillard, J.
  • Schlüter, M.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:731
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:731
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:731
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oai:eprints.imdea-agua.org:731

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:732
Libro o Monografía (book). 2017

DEVELOPING THE AQUACROSS ASSESSMENT FRAMEWORK. DELIVERABLE 3.2, AQUACROSS, EUROPEAN UNION’S HORIZON 2020 FRAMEWORK PROGRAMME FOR RESEARCH AND INNOVATION GRANT AGREEMENT NO. 642317.

  • Gómez, C.M.
  • Delacámara, G.
  • Jähnig, S.
  • Mattheiss, V.
  • Langhans, S.
  • Domisch, S
  • Hermoso, V.
  • Piet, G.
  • Martínez-López, J.
  • Lago, M.
  • Boteler, B.
  • Rouillard, J.
  • Abhold, K.
  • Reichert, P.
  • Schuwirth, N.
  • Hein, T.
  • Pletterbauer, F.
  • Funk, A
  • Nogueira, A.
  • Lillebø, A.
  • Daam, M.
  • Teixeira, H.
  • Robinson, L.
  • Culhane, F.
  • Schlüter, M.
  • Martin, R
  • Iglesias-Campos, A.
  • Barbosa , A.L.
  • Arévalo-Torres, J.
  • O’Higgins, T.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:732
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:732
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Repositorio Institucional del Instituto IMDEA Agua
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:732

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:897
Libro o Monografía (book). 2017

SCENARIO DEVELOPMENT. DELIVERABLE 7.2, AQUACROSS, EUROPEAN UNION’S HORIZON 2020 FRAMEWORK PROGRAMME FOR RESEARCH AND INNOVATION GRANT AGREEMENT NO. 642317

  • Martin, R
  • Fryers, K.
  • Schlüter, M.
  • Barbosa , A.L.
  • Iglesias-Campos, A.
  • Arévalo-Torres, J.
  • Barbière, J.
  • Delacámara, G.
  • Gómez, C.M.
  • Arenas, M.
  • Domisch, S
  • Langhans, S.
  • Martínez-López, J.
  • Villa, F
  • Balbi, S
  • Schuwirth, N
  • Rouillard, J.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:897
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:897
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Repositorio Institucional del Instituto IMDEA Agua
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:897

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:903
PublicaciónArtículo científico (article). 2018

IMPLEMENTATION OF BIODIVERSITY AND ECOSYSTEM SERVICES IN AQUATIC ECOSYSTEM-BASED MANAGEMENT (EBM IN AQUATIC SYSTEMS)

  • Delacámara, G.
  • Gómez, C.M.
  • Jähnig, S.
  • Langhans, S.
  • Domisch, S
  • Hermoso, V.
  • Piet, G.
  • Martínez-López, J.
  • Lago, M.
  • Boteler, B.
  • Rouillard, J.
  • Reichert, P.
  • Schuwirth, N
  • Hein, T.
  • Pletterbauer, F.
  • Funk, A
  • Nogueira, A.
  • Lillebø, A.
  • Daam, M.
  • Teixeira, H.
  • Robinson, L.
  • Culhane, F.
  • Schlütter, M.
  • Martin, R.
  • Iglesias-Campos, A.
  • Barbosa , A.L.
  • Arévalo-Torres, J.
  • O’Higgins, T.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:903
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:903
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Repositorio Institucional del Instituto IMDEA Agua
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oai:eprints.imdea-agua.org:903

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1136
PublicaciónArtículo científico (article). 2020

DESALACIÓN SIN ENERGÍA, DESDE EL CONCEPTO A LA REALIDAD

  • Arévalo-Torres, J.
  • Hernández, N.
  • Zamora, P.
  • Ramírez-Moreno, M.
  • Ródenas, P.
  • Ortiz, J.M.
  • Esteve-Núñez, A.
  • Viñas-Castillo, J.M.
  • Amador Cabezali, D.
  • Rogalla, F.
  • Monsalvo, V.
Este artículo ilustra el proceso de escalado de la tecnología MDC (microbial desalination cell o celda de desalación microbiana) para el tratamiento de aguas, desde su concepción hace escasamente 10 años, capaz de tratar escasos mililitros, hasta la reciente construcción de la primera unidad piloto capaz de desalar hasta 3,6 m3/día.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1136
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1136
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oai:eprints.imdea-agua.org:1136

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:973
PublicaciónArtículo científico (article). 2019

COST-EFFECTIVE RESTORATION AND CONSERVATION PLANNING IN GREEN AND BLUE INFRASTRUCTURE DESIGNS. A CASE STUDY ON THE INTERCONTINENTAL BIOSPHERE RESERVE OF THE MEDITERRANEAN: ANDALUSIA (SPAIN) – MOROCCO

  • Barbosa , A.L.
  • Martín, B.
  • Hermoso, V.
  • Arévalo-Torres, J.
  • Barbière, J.
  • Martínez-López, J.
  • Domisch, S
  • Langhans, S.
  • Balbi, S
  • Villa, F
  • Delacámara, G.
  • Teixeira, H.
  • Nogueira, A.
  • Lillebø, A.
  • Gil-Jiménez, Y.
  • McDonald, H
  • Iglesias-Campos, A.
Green and Blue Infrastructure (GBI) is a network designed and planned to deliver a wide range of ecosystem services and to protect biodiversity. Existing GBI designs lacked a systematic method to allocate restoration zones. This study proposes a novel approach for systematically selecting cost-effective areas for restoration on the basis of biodiversity, ecosystem services, and ecosystem condition to give an optimal spatial design of GBI. The approach was tested at a regional scale, in a transboundary setting encompassing the Intercontinental Biosphere Reserve of the Mediterranean in Andalusia (Spain) – Morocco (IBRM), across three aquatic ecosystems: freshwater, coastal and marine. We applied Marxan with Zones to stakeholder-defined scenarios of GBI in the IBRM. Specifically, we aimed to identify management zones within the GBl that addressed different conservation, restoration and exploitation objectives. Although almost all conservation targets were achieved, our results highlighted that the proportion of conservation features (i.e., biodiversity, ecosystem services) that would be compromised in the GBl, and the proportion of provisioning services that would be lost due to conservation (i.e., incidental representation) are potentially large, indicating that the probability of conflicts between conservation and exploitation goals in the area is high. The implementation of restoration zones improved connectivity across the GBI, and also achieved European and global policy targets. Our approach may help guide future applications of GBI to implement the flexible conservation management that aquatic environments require, considering many areas at different spatial scales, across multiple ecosystems, and in transboundary contexts.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:973
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:973
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:973
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oai:eprints.imdea-agua.org:973

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:976
Libro o Monografía (book). 2018

AQUACROSS D9.2 CASE STUDY 2 REPORT. THE INTERCONTINENTAL BIOSPHERE RESERVE OF THE MEDITERRANEAN: ANDALUSIA (SPAIN) –MOROCCO. EUROPEAN UNION’S HORIZON 2020 FRAMEWORK PROGRAMME FOR RESEARCH AND INNOVATION GRANT AGREEMENT NO. 642317. TECHNICAL REPORT. EUROPEAN UNION (H2020 FP GRANT AGREEMENT)-AQUACROSS

  • Barbosa , A.L.
  • Martín, B.
  • Iglesias-Campos, A.
  • Arévalo-Torres, J.
  • Barbière, J.
  • Hermoso, V.
  • Domisch, S
  • Langhans, S.
  • Martínez-López, J.
  • García Padilla, M.
  • Gil-Jiménez, Y.
  • Delacámara, G.
  • Teixeira, H.
  • Lillebø, A.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:976
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:976
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:976
Ver en:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:976

Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1258
Libro o Monografía (book). 2021

MICROBIAL DESALINATION CELLS FOR LOW ENERGY DRINKING WATER

  • Salinas-Rodriguez, Sergio
  • Arévalo-Torres, J.
  • Ortiz, J.M.
  • Borrás, E.
  • Monsalvo, V.
  • Kennedy, M.
  • Esteve-Núñez, A.
The world's largest demonstrator of a revolutionary energy system in desalination for drinking water production is in operation. MIDES uses Microbial Desalination Cells (MDC) in a pre-treatment step for reverse osmosis (RO), for simultaneous saline stream desalination and wastewater treatment. MDCs are based on bio-electro-chemical technology, in which biological wastewater treatment can be coupled to the desalination of a saline stream using ion exchange membranes without external energy input. MDCs simultaneously treat wastewater and perform desalination using the energy contained in the wastewater. In fact, an MDC can produce around 1.8 kWh of bioelectricity from the energy contained in 1 m3 of wastewater. Compared to traditional RO, more than 3 kWh/m3 of electrical energy is saved. With this novel technology, two low-quality water streams (saline stream, wastewater) are transformed into two high-quality streams (desalinated water, treated wastewater) suitable for further uses. An exhaustive scaling-up process was carried out in which all MIDES partners worked together on nanostructured electrodes, antifouling membranes, electrochemical reactor design and optimization, life cycle assessment, microbial electrochemistry and physiology expertise, and process engineering and control. The roadmap of the lab-MDC upscaling goes through the assembly of a pre-pilot MDC, towards the development of the demonstrator of the MDC technology (patented). Nominal desalination rate between 4-11 Lm-2h-1 is reached with a current efficiency of 40 %. After the scalability success, two MDC pilot plants were designed and constructed consisting of one stack of 15 MDC pilot units with a 0.4 m2 electrode area per unit. This book presents the information generated throughout the EU funded MIDES project and includes the latest developments related to desalination of sea water and brackish water by applying microbial desalination cells.

Proyecto: //
DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1258
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1258
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1259
Libro o Monografía (book). 2021

CHAPTER 1: INTRODUCTION TO DESALINATION AND MICROBIAL DESALINATION CELLS

  • Salinas-Rodriguez, S.
  • Arévalo-Torres, J.
  • Ortiz, J.M.
  • Mendoza-Sammet, A.
  • Borrás, E.
  • Monsalvo, V.
  • Kennedy, M.
This chapter presents desalination as one of the technologies to alleviate water scarcity and its contribution to the sustainable development goals. An overview of the world and regional desalination capacity is presented and areas where desalination has potential for development are identified. The overall concept of the microbial desalination cells is presented and the areas where key innovations were developed is presented. A discussion on the energy costs and production costs in seawater reverse osmosis is briefly discussed.

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DOI:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1259
HANDLE:
Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1259
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Repositorio Institucional del Instituto IMDEA Agua
oai:eprints.imdea-agua.org:1259
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