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  • SDSN - Greece
  • 2021-2021
  • Publications
  • Research software
  • European Commission
  • EC|H2020

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Banduka; Alexopoulou;

    Industrial crops can provide valuable resources for high value products and bioenergy. The MAGIC project therefore aims to promote the sustainable development of resource-efficient and economically profitable industrial crops grown on marginal lands. In order to achieve this goal, four databases were developed. An up-to-date database of existing resource-efficient industrial crops provides relevant information on agronomic crop characteristics, input requirements, yield performance and quality traits for various end use applications (WP1). Meanwhile, the Decision Support System (DSS) actively involves farmers and end users and supports their decision process depending on the specifics of the individual surroundings. In parallel, a third database maps current and future marginal lands in Europe. These are characterized and analyzed, in order to provide a spatially explicit classification that serves as a base for the development of sustainable best-practice options for industrial crops (WP2). An additional a Bio2Match tool support practicioners in identifying suitable opportunities by collecting information on conversion technologies for various biomass crops growing on European Marginal Lands. The four MAGIC-databases aim at maximizing the economic benefits of marginal lands by integrating sustainability aspects (covering environment, society and economy) of the value chains (WP6). Success stories of industrial crops in EU regions address technical, environmental, economic and social issues to produce policy recommendations and best-practice guidelines for their promotion at local/regional level (WP7). All project results, databases, maps and the DSS- and Bio2Match-tool serve as dissemination tools in order to increase the awareness of farmers and various other stakeholder groups and establish strong links with the EIP AGRI (WP8) and related partner projects like PANACEA, BIKE and BECOOL. The following report introduces all executed dissemination activities of the project months 1- 48 in order to introduce the project’s objectives and its results to a broad international audience and maximize the positive socioeconomic and environmental impact. These summarize the achievements and tasks of WP8.

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    ZENODO
    Other literature type . 2021
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    Project deliverable . 2021
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    Authors: Felice Sartori; Ilaria Piccoli; Riccardo Polese; Antonio Berti;

    The evaluation of the effects of conservation agriculture during the transition from conventional tillage to no-tillage requires numerous indicators to be considered. For this purpose, we monitored changes in a multi-parameter dataset during a three-year experiment that combined three tillage intensities (conventional tillage—CT; minimum tillage—MT; and no tillage—NT) with three soil covering managements (tillage radish cover crop, winter wheat cover crop and bare soil). Using a multivariate analysis, we developed a Relative Sustainability Index (RSI) based on 11 physical (e.g., bulk density and penetration resistance), chemical (e.g., soil organic carbon and pH) and biological soil properties (e.g., earthworm density) to evaluate cropping systems sustainability. The RSI was most affected by tillage intensity showing higher RSI values (i.e., better performances) in reduced tillage systems. Specifically, the RSI under NT was 42% greater than that of CT and 13% greater than that of MT. Soil covering had little impact on the RSI. Among the tested parameters, the RSI was increased most by saturated hydraulic conductivity (+193%) and earthworm density (+339%) across CT and NT treatments. Our results suggest that conservation agriculture and, particularly, reduced tillage systems, have the potential to increase farm environmental and agronomic sustainability.

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    ZENODO; Land
    Other literature type . Article . 2021 . Peer-reviewed
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    DOAJ-Articles
    Article . 2022
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    DOAJ
    Article . 2021
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      Other literature type . Article . 2021 . Peer-reviewed
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      Land
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Tregear, Angela; Sayed, Maysara; Brennan, Mary; Brečić, Ružica; +20 Authors

    The study presented in this chapter sought to assess the sustainability outcomes of different procurement models for primary school meals services in five European countries. Based on environmental impact analysis, this chapter reports on the size and composition of the carbon footprints of the procurement models and analyses the contributions to overall carbon emissions of the various activities in the supply chains for meals services. It was found that while the transportation of food by suppliers to schools contributed somewhat to overall carbon footprints, other variables have a more significant impact, in particular the amount of meat on the menu and the choice of waste disposal method. The chapter concludes by discussing which actions stakeholders should prioritize to improve the environmental impacts of public food procurement. The research for this chapter was funded under European Union H2020 grant agreement 678024.

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    Edinburgh Research Explorer
    Part of book or chapter of book . 2021
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      Edinburgh Research Explorer
      Part of book or chapter of book . 2021
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Connop, Stuart; Georgiou, Pauline; Dick, Gillian; Dymek, Dominika; +16 Authors

    From its outset, the ambition of Connecting Nature (CN) was clear: to support cities in delivering a scaled-up nature-based solutions (NBS) project and also, importantly, to bring together global innovation and state-of-the-art to support cities on a journey towards mainstreaming nature-based solutions in policy and practice. Whilst barriers and drivers have evolved across the duration of the project, a summary of those identified by the cities at the start of their journeys was presented in Deliverable 8. These barriers represent a multifaceted challenge, with complex universal, and unique, barriers in every city. Within Connecting Nature, the mechanisms required for mainstreaming were embedded into the parameters of the Framework. Developed with the Front Runner Cities, these comprise of: Technical Solutions; Governance; Financing and business models; Nature-based enterprises; Co-production, Impact Assessment, and Reflexive Monitoring. The aim of these Elements is to provide a holistic suite of tools and approaches to enable local authority teams to co-produce a transition towards mainstreaming. As represented by the infinity loop of the Connecting Nature framework figure, there is no singular entry point for this mainstreaming process. This is reflected in the three Front Runner City approaches. Each adopted a very different process for embedding and implementing the Framework, each starting from different elements and working through different strategies, depending on the experience of the city, the governance structures at the start of the process, and the skills of the Connecting Nature team. Working in partnership with the Front Runner Cities through this process provided a unique insight into not only how each city approached it, but also how these approaches compared and contrasted. What was clear from this overview, was that no single approach to tackling this complex challenge could be evaluated as being optimal and that a key part of mainstreaming nature-based solutions in cities is an organic self-learning trial and error approach to the Framework elements. Suggested citation: Connop, S., Georgiou, P., Dick, G., Dymek, D., Dziubala, A., Gherase, P. M., Hölscher, K., Kelly, S., Lodder, M., Madajczyk, N., McQuaid, S., Nash, C., Osipiuk, A., Quartier, M., Sermpezi, R., Vandergert, P., Van De Sijpe, K., van der Have, C., Vos, P. and Collier, M.J. (2021). Connecting Nature Deliverable 11: Report on progress of nature-based solution implementation - Front-runner City progress. Brussels, DG Research & Innovation. https://doi.org/10.5281/zenodo.10054135

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    ZENODO
    Report . 2021
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    ZENODO
    Report . 2021
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      Report . 2021
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      Report . 2021
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    Authors: Alexopoulou; Tsipas; Iordanoglou;

    MAGIC deliverable D4.2 aims to provide farmers’ guidelines on how selected industrial crops could be grown on marginal lands. In MAGIC project a total number of 20 industrial crops had been selected as the most promising to be grown on marginal lands facing natural constraints in Europe. During the project lifetime a large number of field trials had been carried on around 15 industrial crops and below farmers’ guidelines are being provided based on project’s experiences.

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    Authors: Vico, G; Berghuijs, HNC;

    Public Report within the EU H2020 DIVERSify project - https://plant-teams.org Executive Summary This deliverable report describes the applicability of the Minimalist Mixture Model ��� M3 ��� as a prototype tool for predicting performance of innovative plant teams. M3 has been developed as part of the work conducted in DIVERSify within WP3. M3, and its most recent further developments, are briefly described. The emphasis is on the general structure of the model, and the data needed for its calibration, running and validation. In addition, this report presents two applications of M3 to predict the performance of existing and novel plant teams. In the first application, M3 is used to determine the performance of plant teams differing from the existing ones for specific parameters, thus helping in the identification of key traits for superior performance, and hence potential innovative plant teams that should be prioritized in breeding. In the second application, M3 is used to determine the stability of a plant team performance in the face of variable climatic conditions, including those projected for the future.

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    ZENODO
    Report . 2021
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    Report . 2021
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    Authors: Nikolaos Lapidakis; Georgios A. Fragkiadakis;

    The aim of cheese manufacturers is to produce high quality and safe products. Along the food chain of “milk to cheese and food products”, milk is collected, transferred, and managed in a standardized manner; processing results in safe, ready-to-eat products, of high nutritional quality. Soft, acid cheeses are prepared in various regions of Greece, mainly from ewe milk, goat milk, or their mixtures. They are produced from the rennet and/or acid coagulation of thermally-treated, full-fat milk undergoing acidification/curdling and ripening. Xygalo Siteias is a Greek soft cheese, produced in the area of Siteia, Crete, where it was recognized as PDO in 2011. It is close—more in texture and less in taste—with other cream cheeses PDO of Greece, such as Pichtogalo of Chania, and Katiki Domokou, still it differs in the preparation technique as well as in its physicochemical, biochemical, microbiological, and organoleptic characteristics. In this review, we focus on the processing and characteristics of Xygalo Siteias, mentioning perspectives for the further microbiological characterization of the product, the determination of its shelf-life in combination with new packaging-materials, as well as the attention it deserves as a food important for breeders, the local economy, and consumers, since it is associated with the Cretan-Mediterranean diet type.

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    Authors: Alessandro Suardi; Sergio Saia; Vincenzo Alfano; Negar Rezaei; +3 Authors

    Pruning residues can have a high quality as feedstock for energy purposes and are largely available in Europe. However, it is still an untapped resource. Such scarce use is due to the need to optimize their supply chain in term of collection machines and the associate cost of collection. A modular chipper (prototype PC50) for pruning harvest was developed. Such prototype is adaptable to various harvesting logistics and may produce a higher quality woodchip compared with the one produced by shredders available in the market. In this work, we tested the performance and quality of the product delivered by the prototype PC50 in various conditions and plant species, after a modulation of the machine settings (counter-rotating toothed rollers [CRR] speed), loading systems ([LS], either big bag or container), and knife types ([KT], either discontinuous hoe shaped knives or continuous helicoidal knives). To take into account of the covariates in the experiment (Cropping season and plant species), LSmeans were computed to have an unbiased estimate of the treatments means. The modulation of LS and KT scarcely affected the performance of the machine. In particular, the choice of the KT affected the field efficiency when the LS was a Tilting box but not a Big Bag. Whereas the continuous knife resulted in a 97% higher material capacity compared to hoe shape knives, the last of which the amount of short sized (<16 mm) fractions compared to helicoidal knives. No role of the CCR was found on the machine performance, but increasing CRR speed reduced the chip apparent bulk density and the fraction chips with a size <8 mm.

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    Authors: Spanish Co-Ops;

    The MAGIC project aims to promote the sustainable development of efficient and beneficial industrial crops on marginal lands. A database and a crop support system have been developed, including detailed agricultural information to be of great use to farmers. In addition, marginal lands in Europe have also been analysed and several optimal crops have been proposed, with the aim of developing sustainable best practice options for industrial crops. The impact of MAGIC will be maximised by integrating the sustainability aspects (encompassing environment, society, and economy) of value chains. Work Package 8 - Dissemination and link establishment with EIP AGRI, seeks to propagate the project results, database, maps and DSS tool in order to enhance farmers’ knowledge, plus creating strong links with EIP AGRI. Therefore, MAGIC’s network efforts were necessary in order to achieve and validate the stablished goals through a multi-actor approach. This deliverable aims to present the interaction held between MAGIC project partners and the COPA-COGECA, the organisation that represents farmers and cooperatives at European level. In this sense, several interactions were held to update COPA-COGECA’s related Working Groups (WGs) about the expected outcomes and the final results from the project. In addition, the involvement of Spanish Co-ops at the EIP-AGRI Subgroup of Innovation (SoI), representing COPA-COGECA, was a useful position to jointly support and update MAGIC activities.

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    Authors: Rafael González-Almenara; Pablo Rodríguez de Arriba; Francesco Crespi; David Sánchez; +2 Authors

    This manuscript investigates the supercritical carbon dioxide (sCO2) power cycle employed in the power block of concentrated solar power (CSP) plants—solar tower—as an alternative for solar desalination, developed with either distillation or reverse osmosis. This concept is investigated as a possible up-scaling of the SOLMIDEFF project, originally based on a hot-air micro gas turbine combined with a solar dish collector. For the upscaled concept, five different sCO2 cycles are considered, chosen amongst the best-performing configurations proposed in the literature for CSP applications, and modelled with Thermoflex software. The influence of ambient conditions is studied, considering two minimum cycle temperatures (35 °C and 50 °C), corresponding to Santa Cruz de Tenerife and Abu Dhabi, respectively. The results show that the low temperatures at the inlet of the heat rejection unit compromise the viability of distillation technologies. On the other hand, the high thermal efficiency achieved by these cycles, especially with the recompression and partial cooling layouts, reduces the specific energy consumption when combined with reverse osmosis (RO), below that of photovoltaic (PV)+RO. Feed-water preheating is explored as a solution to further reduce energy consumption, concluding that its actual interest is not clear and strongly depends on the location considered and the corresponding water quality standards.

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Banduka; Alexopoulou;

    Industrial crops can provide valuable resources for high value products and bioenergy. The MAGIC project therefore aims to promote the sustainable development of resource-efficient and economically profitable industrial crops grown on marginal lands. In order to achieve this goal, four databases were developed. An up-to-date database of existing resource-efficient industrial crops provides relevant information on agronomic crop characteristics, input requirements, yield performance and quality traits for various end use applications (WP1). Meanwhile, the Decision Support System (DSS) actively involves farmers and end users and supports their decision process depending on the specifics of the individual surroundings. In parallel, a third database maps current and future marginal lands in Europe. These are characterized and analyzed, in order to provide a spatially explicit classification that serves as a base for the development of sustainable best-practice options for industrial crops (WP2). An additional a Bio2Match tool support practicioners in identifying suitable opportunities by collecting information on conversion technologies for various biomass crops growing on European Marginal Lands. The four MAGIC-databases aim at maximizing the economic benefits of marginal lands by integrating sustainability aspects (covering environment, society and economy) of the value chains (WP6). Success stories of industrial crops in EU regions address technical, environmental, economic and social issues to produce policy recommendations and best-practice guidelines for their promotion at local/regional level (WP7). All project results, databases, maps and the DSS- and Bio2Match-tool serve as dissemination tools in order to increase the awareness of farmers and various other stakeholder groups and establish strong links with the EIP AGRI (WP8) and related partner projects like PANACEA, BIKE and BECOOL. The following report introduces all executed dissemination activities of the project months 1- 48 in order to introduce the project’s objectives and its results to a broad international audience and maximize the positive socioeconomic and environmental impact. These summarize the achievements and tasks of WP8.

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    Authors: Felice Sartori; Ilaria Piccoli; Riccardo Polese; Antonio Berti;

    The evaluation of the effects of conservation agriculture during the transition from conventional tillage to no-tillage requires numerous indicators to be considered. For this purpose, we monitored changes in a multi-parameter dataset during a three-year experiment that combined three tillage intensities (conventional tillage—CT; minimum tillage—MT; and no tillage—NT) with three soil covering managements (tillage radish cover crop, winter wheat cover crop and bare soil). Using a multivariate analysis, we developed a Relative Sustainability Index (RSI) based on 11 physical (e.g., bulk density and penetration resistance), chemical (e.g., soil organic carbon and pH) and biological soil properties (e.g., earthworm density) to evaluate cropping systems sustainability. The RSI was most affected by tillage intensity showing higher RSI values (i.e., better performances) in reduced tillage systems. Specifically, the RSI under NT was 42% greater than that of CT and 13% greater than that of MT. Soil covering had little impact on the RSI. Among the tested parameters, the RSI was increased most by saturated hydraulic conductivity (+193%) and earthworm density (+339%) across CT and NT treatments. Our results suggest that conservation agriculture and, particularly, reduced tillage systems, have the potential to increase farm environmental and agronomic sustainability.

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    Authors: Tregear, Angela; Sayed, Maysara; Brennan, Mary; Brečić, Ružica; +20 Authors

    The study presented in this chapter sought to assess the sustainability outcomes of different procurement models for primary school meals services in five European countries. Based on environmental impact analysis, this chapter reports on the size and composition of the carbon footprints of the procurement models and analyses the contributions to overall carbon emissions of the various activities in the supply chains for meals services. It was found that while the transportation of food by suppliers to schools contributed somewhat to overall carbon footprints, other variables have a more significant impact, in particular the amount of meat on the menu and the choice of waste disposal method. The chapter concludes by discussing which actions stakeholders should prioritize to improve the environmental impacts of public food procurement. The research for this chapter was funded under European Union H2020 grant agreement 678024.

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      Edinburgh Research Explorer
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    Authors: Connop, Stuart; Georgiou, Pauline; Dick, Gillian; Dymek, Dominika; +16 Authors

    From its outset, the ambition of Connecting Nature (CN) was clear: to support cities in delivering a scaled-up nature-based solutions (NBS) project and also, importantly, to bring together global innovation and state-of-the-art to support cities on a journey towards mainstreaming nature-based solutions in policy and practice. Whilst barriers and drivers have evolved across the duration of the project, a summary of those identified by the cities at the start of their journeys was presented in Deliverable 8. These barriers represent a multifaceted challenge, with complex universal, and unique, barriers in every city. Within Connecting Nature, the mechanisms required for mainstreaming were embedded into the parameters of the Framework. Developed with the Front Runner Cities, these comprise of: Technical Solutions; Governance; Financing and business models; Nature-based enterprises; Co-production, Impact Assessment, and Reflexive Monitoring. The aim of these Elements is to provide a holistic suite of tools and approaches to enable local authority teams to co-produce a transition towards mainstreaming. As represented by the infinity loop of the Connecting Nature framework figure, there is no singular entry point for this mainstreaming process. This is reflected in the three Front Runner City approaches. Each adopted a very different process for embedding and implementing the Framework, each starting from different elements and working through different strategies, depending on the experience of the city, the governance structures at the start of the process, and the skills of the Connecting Nature team. Working in partnership with the Front Runner Cities through this process provided a unique insight into not only how each city approached it, but also how these approaches compared and contrasted. What was clear from this overview, was that no single approach to tackling this complex challenge could be evaluated as being optimal and that a key part of mainstreaming nature-based solutions in cities is an organic self-learning trial and error approach to the Framework elements. Suggested citation: Connop, S., Georgiou, P., Dick, G., Dymek, D., Dziubala, A., Gherase, P. M., Hölscher, K., Kelly, S., Lodder, M., Madajczyk, N., McQuaid, S., Nash, C., Osipiuk, A., Quartier, M., Sermpezi, R., Vandergert, P., Van De Sijpe, K., van der Have, C., Vos, P. and Collier, M.J. (2021). Connecting Nature Deliverable 11: Report on progress of nature-based solution implementation - Front-runner City progress. Brussels, DG Research & Innovation. https://doi.org/10.5281/zenodo.10054135

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    Authors: Alexopoulou; Tsipas; Iordanoglou;

    MAGIC deliverable D4.2 aims to provide farmers’ guidelines on how selected industrial crops could be grown on marginal lands. In MAGIC project a total number of 20 industrial crops had been selected as the most promising to be grown on marginal lands facing natural constraints in Europe. During the project lifetime a large number of field trials had been carried on around 15 industrial crops and below farmers’ guidelines are being provided based on project’s experiences.

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    Authors: Vico, G; Berghuijs, HNC;

    Public Report within the EU H2020 DIVERSify project - https://plant-teams.org Executive Summary This deliverable report describes the applicability of the Minimalist Mixture Model ��� M3 ��� as a prototype tool for predicting performance of innovative plant teams. M3 has been developed as part of the work conducted in DIVERSify within WP3. M3, and its most recent further developments, are briefly described. The emphasis is on the general structure of the model, and the data needed for its calibration, running and validation. In addition, this report presents two applications of M3 to predict the performance of existing and novel plant teams. In the first application, M3 is used to determine the performance of plant teams differing from the existing ones for specific parameters, thus helping in the identification of key traits for superior performance, and hence potential innovative plant teams that should be prioritized in breeding. In the second application, M3 is used to determine the stability of a plant team performance in the face of variable climatic conditions, including those projected for the future.

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    Authors: Nikolaos Lapidakis; Georgios A. Fragkiadakis;

    The aim of cheese manufacturers is to produce high quality and safe products. Along the food chain of “milk to cheese and food products”, milk is collected, transferred, and managed in a standardized manner; processing results in safe, ready-to-eat products, of high nutritional quality. Soft, acid cheeses are prepared in various regions of Greece, mainly from ewe milk, goat milk, or their mixtures. They are produced from the rennet and/or acid coagulation of thermally-treated, full-fat milk undergoing acidification/curdling and ripening. Xygalo Siteias is a Greek soft cheese, produced in the area of Siteia, Crete, where it was recognized as PDO in 2011. It is close—more in texture and less in taste—with other cream cheeses PDO of Greece, such as Pichtogalo of Chania, and Katiki Domokou, still it differs in the preparation technique as well as in its physicochemical, biochemical, microbiological, and organoleptic characteristics. In this review, we focus on the processing and characteristics of Xygalo Siteias, mentioning perspectives for the further microbiological characterization of the product, the determination of its shelf-life in combination with new packaging-materials, as well as the attention it deserves as a food important for breeders, the local economy, and consumers, since it is associated with the Cretan-Mediterranean diet type.

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    Authors: Alessandro Suardi; Sergio Saia; Vincenzo Alfano; Negar Rezaei; +3 Authors

    Pruning residues can have a high quality as feedstock for energy purposes and are largely available in Europe. However, it is still an untapped resource. Such scarce use is due to the need to optimize their supply chain in term of collection machines and the associate cost of collection. A modular chipper (prototype PC50) for pruning harvest was developed. Such prototype is adaptable to various harvesting logistics and may produce a higher quality woodchip compared with the one produced by shredders available in the market. In this work, we tested the performance and quality of the product delivered by the prototype PC50 in various conditions and plant species, after a modulation of the machine settings (counter-rotating toothed rollers [CRR] speed), loading systems ([LS], either big bag or container), and knife types ([KT], either discontinuous hoe shaped knives or continuous helicoidal knives). To take into account of the covariates in the experiment (Cropping season and plant species), LSmeans were computed to have an unbiased estimate of the treatments means. The modulation of LS and KT scarcely affected the performance of the machine. In particular, the choice of the KT affected the field efficiency when the LS was a Tilting box but not a Big Bag. Whereas the continuous knife resulted in a 97% higher material capacity compared to hoe shape knives, the last of which the amount of short sized (<16 mm) fractions compared to helicoidal knives. No role of the CCR was found on the machine performance, but increasing CRR speed reduced the chip apparent bulk density and the fraction chips with a size <8 mm.

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    Authors: Spanish Co-Ops;

    The MAGIC project aims to promote the sustainable development of efficient and beneficial industrial crops on marginal lands. A database and a crop support system have been developed, including detailed agricultural information to be of great use to farmers. In addition, marginal lands in Europe have also been analysed and several optimal crops have been proposed, with the aim of developing sustainable best practice options for industrial crops. The impact of MAGIC will be maximised by integrating the sustainability aspects (encompassing environment, society, and economy) of value chains. Work Package 8 - Dissemination and link establishment with EIP AGRI, seeks to propagate the project results, database, maps and DSS tool in order to enhance farmers’ knowledge, plus creating strong links with EIP AGRI. Therefore, MAGIC’s network efforts were necessary in order to achieve and validate the stablished goals through a multi-actor approach. This deliverable aims to present the interaction held between MAGIC project partners and the COPA-COGECA, the organisation that represents farmers and cooperatives at European level. In this sense, several interactions were held to update COPA-COGECA’s related Working Groups (WGs) about the expected outcomes and the final results from the project. In addition, the involvement of Spanish Co-ops at the EIP-AGRI Subgroup of Innovation (SoI), representing COPA-COGECA, was a useful position to jointly support and update MAGIC activities.

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    Authors: Rafael González-Almenara; Pablo Rodríguez de Arriba; Francesco Crespi; David Sánchez; +2 Authors

    This manuscript investigates the supercritical carbon dioxide (sCO2) power cycle employed in the power block of concentrated solar power (CSP) plants—solar tower—as an alternative for solar desalination, developed with either distillation or reverse osmosis. This concept is investigated as a possible up-scaling of the SOLMIDEFF project, originally based on a hot-air micro gas turbine combined with a solar dish collector. For the upscaled concept, five different sCO2 cycles are considered, chosen amongst the best-performing configurations proposed in the literature for CSP applications, and modelled with Thermoflex software. The influence of ambient conditions is studied, considering two minimum cycle temperatures (35 °C and 50 °C), corresponding to Santa Cruz de Tenerife and Abu Dhabi, respectively. The results show that the low temperatures at the inlet of the heat rejection unit compromise the viability of distillation technologies. On the other hand, the high thermal efficiency achieved by these cycles, especially with the recompression and partial cooling layouts, reduces the specific energy consumption when combined with reverse osmosis (RO), below that of photovoltaic (PV)+RO. Feed-water preheating is explored as a solution to further reduce energy consumption, concluding that its actual interest is not clear and strongly depends on the location considered and the corresponding water quality standards.

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