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    Authors: Qirui Li;

    Managing and sharing data during a research project has clear advantages. It allows one to quickly find and understand the data when one needs to use it. It also gives continuity if project staff leave or new researchers join, and it avoids unnecessary duplication. A Data Management Plan (DMP) helps to save time and effort and makes the research and data-sharing process easier. By considering in advance what data will be created and how one can organize the necessary support concerning personal data and compliance with the General Data Protection Regulation (GDPR) and the UK General Data Protection Regulation (UK GDPR) legislations and protection of individual Intellectual Property Rights (IPR).

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    Authors: Stefanoni; Latterini; Attolico;

    The exploitation of industrial crops for the production of ligno-cellulosic compounds and vegetable oil on marginal lands relies on efficient harvesting and logistics’ strategies. The present deliverable goes through the difficulties encountered from harvesting to dispatchment of indrustrial crops highlighting prons and cons of the currently available technologies to improve the whole value chain in the following categories: lignocellulosic crops (fiber, herbaceous perennial and Short-Medium Rotation Coppice (SRC-MRC)) and oil crops. The two sections are indipendently investigated focusing on harvesting and densifiction of the biomass to reduce cost and increase profitability. The information provided within the present document was gathered from experimental data collected on fields, from literature review and background knowledge gained from collaboration in previous research projects. Regarding fiber crop (in particular hemp) it is possible to say that there are several solutions available to harvest this species, which should be properly selected according to the crop features and to the aim of the cultivation, i.e. fiber and seed-fiber. Focusing on lignocellulosic crops, the present deliverable focused mainly on miscanthus, describing the possible alternative solutions which are generally based on cutting the plants and densify them through chipping and/or baling. Harvesting systems for SRC and MRC have been instead experiencing a substantial change in the last years, shifting from dedicated systems for biomass harvesting and densification to semi or fully mechanized harvesting approaches, derived from forestry sector, in order to produce fiber wood from the main stem and biomass from branches and tops. Finally, concerning oil crops, it is possible to say that, among the investigated ones, camelina and castor can efficiently be harvested with conventional combine harvesters equipped with cereal and sunflower header respectively. Castor bean harvesting is instead still a great challenge, indeed the present deliverable highlights how a sunflower header is a better option than a cereal one, but however many concerns are still present regarding seed loss and quality of the collected product.

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    Authors: Maar, Marie; van der Meeren, Gro I.; Danielsen, Finn; Hansen, Cecilie; +6 Authors

    This report summarizes the discussions during two virtual meetings with different stakeholders with interest in the Barents Sea and off-Greenland ecosystems, respectively. The meetings were based on the work from Task 6.8 “Demonstrations for fisheries and environmental management agencies” and Task 6.2. “Improved ecosystem understanding and management”. Stakeholders represented a broad specter of marine- and maritime-related authorities in Norway, Greenland and Denmark, the fishing industry, the Conservation of Arctic Flora and Fauna (CAFF) working group of the Arctic Council, Greenland Institute of Natural Resources, INTAROS partners and participants from other EU projects. The presentations of the monitoring and model results were refined and angled to be of relevance and use for the participating stakeholders. The stakeholders were in general interested in the approach, results, and conclusions. The discussion made it clear that as users in charge of sectorial human activity management, they valued scientific testing and suggestions for improving ecosystem understanding. They recommended that the next step could be to look at not only national data set indicators, but also relate those to an Arctic international setting. The Norwegian Environmental Agency suggested that a climate approach would be useful also for the Barents Sea. Likewise, the more complex food web indicators presented for the Barents Sea could be useful to apply to the Greenland coastal system. Stakeholders from both geographic areas emphasized that data from long-term monitoring of key variables is important for their work and that models can be useful as supporting information on indicators and future scenarios if the model uncertainty is assessed and explained. These seminars highlight the importance of inviting stakeholders responsible for all sectors of marine-related human activities to dialogues on research and monitoring of the climate, natural resources and ecosystems. In a fast-changing scientific world, with an increasing amount of knowledge, it is important to make available, timely and in the right format, the best possible information.

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    Authors: Agnarsson, Sveinn; Smárason, Birgir Örn; Dillman, Kevin;

    This report consists of a risk assessment of the value-chain of the four alternative protein producers taking part in the NextGenProteins project. Two of the firms, Mutatec and EntoCube, have developed technology to produce proteins from insects, one, ARBIOM, is engaged in the production of single-cell proteins (SCP) and the fourth, VAXA, produces proteins from microalgae. The risk assessment was conducted using information gathered for the Deliverable 6.3 in NextGenProteins which provided a thorough analysis of the input-output structure of the production and processing of each firm, and this mapping formed the basis for questions that were put to representatives of each of the four firms. The risk assessment is therefore based on a qualitative methodology. In the first step, representatives from each firm were asked to go carefully through each stage in the production and processing of their protein products and identify any risks. Participants were also asked about to identify risk in other stages of the value chain. In the second step, participants in the risk assessment assigned likelihoods to each risk identified. In the third step, participants were asked to estimate the maximum impact of each risk. The final step in the analysis consisted of the risk evaluation. The risk level was defined by a combination of the likelihood level and the impact score. The risk assessment was done in a qualitative manner and involved no numerical values. The risk assessment revealed that the number of risk factors identified in each case varied somewhat between firms. In three of the four case-studies, most of the risks identified were either minor or moderate, but many of the risks identified in the fourth case were either categorized as major or severe. This is not surprising, given that the analysis was qualitative in nature and therefore based on subjective risk evaluation. Although the four companies have all developed technology to produce alternative proteins, the production and processing differ. Some of the risks identified are therefore idiosyncratic and firm-specific. There are, however, two sets of risks that are common to all the four companies. The first concerns the risk of being unable to attract funding, which is of special relevance for start-up firms that may particularlyfind it difficult to attract the necessary funds. The other risk factor concerns the willingness of consumers to accept the new, alternative proteins. This risk can be mitigated by better marketing, more information and greater transparency.

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    Authors: Momi, Sara; Barbero, Cristina; Messervey, Thomas;

    Executive Summary This deliverable (D8.4) contains the REACT’s Market Analysis. REACT project aims to guide and promote a full ecosystem of digital and hard solutions, from which citizens and public entities (local communities) having the role of consumers or prosumers or even prosumagers, and several energy operators (manufacturers of RE and storage technologies, developers of digital solutions, aggregators, ESCOs and energy utilities, DSOs and TSOs) can benefit The REACT System is under validation as a tool aiming to facilitate the business activities within the LV grid, offering services to several players in need to interact with grid operators, and the same DSOs in charge of the grid management. The aim of this REACT Market Analysis is multiple:  To ease the process by which REACT partners can be facilitated on how the decarbonization of geographic islands can be done and is feasible by matching RES technologies to energy flexibility enabled by digital platforms and solutions.  To prepare the right knowledge and benchmarking context for several business model taking shape at REACT level. As there is a real chance to validate the solution on energy communities, under the form of Renewable Energy Community (REC)1, through this Market Analysis there is the chance to understand all the factors having a beneficial for islanders to manage demand and/or offer of energy production in a smart and efficient way.  To support the consortium in the activities related to replication and scaling up of the REACT solutions for the follower islands (WP7). The consortium has started co- shaping the methodology which could be applied to different types of intervention, starting from the assessment of local assets at energy and economic level (e.g., existing installations – either on fossil or RES technologies; economic sectors linked to energy uses and needs; types of building stocks and their characteristics and uses), including the recognition of strategic infrastructures (especially the ones that are key for permitting data transfer).  To understand what is currently in place at each of the 3 Countries hosting the flagship REACT pilots: Ireland, Spain, and Italy. Specific focus has been provided on the legislative, regulatory and policy framework (with details on the schemes in place for the islands of such countries), which also impact the subsidies, grants, but also charges and levies in place at financial level.  To understand how the REACT identified stakeholders are positioned toward the REACT solution in terms of interest, power, pains, and gains. Besides, thanks to several connections of the REACT consortium, a benchmark of global players and projects, included other EU-funded (mainly H2020) projects gives the framework of how REACT is positioned at RTD and networking level.  To support the consortium in making the link between what has been identified through the identification and further refinement of the Key Exploitable Results (KERs) and the derived Business Models and Exploitation pathways (still under discussion among partners). In terms of technologies, they can include PV, WT, batteries / storage technologies (including Power-2-Hydrogen or a combination of them). A specific place is reserved to ICT platforms of REACT nature that, together with data management and control and smart metering represent an important role on Demand Response (DR) and energy flexibility through REs in islands.

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    Authors: Fernández; Sagarna; Cerezo; Alexopoulou; +10 Authors

    One of the MAGIC Project targets is “to maximise stakeholder’ mobilization and enhance the impact of the project activities and outcomes for promoting the cultivation of industrial crops on marginal land”. In this line, practice abstracts (PA’s) are short summaries that describe main information that can serve end users in their daily practice. Following the guidelines of the EIP-AGRI and their common format, MAGIC will produce as many PA’s as required for dissemination over the entire duration of the project. PA’s will feed the newsletter and webpage of EIP-AGRI with easily understandable practical knowledge that is expected to reach a broader public. This document presents twenty practice abstracts that introduce the potential or expected results at the end of the project. This report is a living document which will be updated as project progresses and results are available.

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    Authors: Panoutsou, Calliope;

    Low input cultivation of industrial crops in land with biophysical marginality can provide valuable resources for biobased products and bioenergy. Important marginality challenges that were improved with the cultivation of industrial crops in marginal land in the understudy Good Practice case studies include among others shallow soil depth, low fertility and light sandy soils, soil contamination, low water availability, limiting rooting conditions and steep slopes. The work in this report discusses the key findings for the characteristics of the selected industrial crops and the marginality challenges improved with their cultivation. Following it discusses the level of potential transferability for the lessons learnt per key attribute (biophysical- environmental, economic, and social) and development stage to other European regions.

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    Authors: Panoutsou, Calliope;

    During the last decade, the concept of marginal land have received high attention both in research and policy formation. The Magic project aims to improve scientific evidence and create new knowledge based on the extensive experience of the project partners with the cultivation of industrial crops in land facing a range of biophysical marginality constraints across Europe. Within this research framework, the work presented in this report, analyses success stories of selected industrial crops in European regions addressing biophysical/ environmental, economic, and social issues. The methodological approach provides a conceptual link of Value Chain Analysis (VCA), and a two- dimensional perspective (value chain’s key attributes in the form of competitive priorities (CP) and their performance in the different development stages) to analyse a set of Good Practice cases that cultivate industrial crops in marginal land. The work presented here, uses a set of indicators, and evaluates the performance of the understudy Good Practice cases in the land use and biomass production stages. Following it discusses the relevance (in terms of creating competitive advantages once applied properly) of the under study competitive priorities across the development stages. Results from this analysis illustrate how the cultivation of industrial crops in land with low soil fertility, high salinity, sandy soils, unfavourable texture and stoniness, contamination, etc. can help overcome both the biophysical challenges but also the socio-economic ones with providing outlets to rural communities for supporting the provision of raw materials to the biobased sectors. The findings aim to inform on performance of industrial crops in land with biophysical marginality and facilitate the development of policy recommendations and Good Practice guidelines to promote the appropriate sourcing of renewable materials from marginal land at local/regional level.

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    Authors: Scordia, Danilo;

    The objective of this task was to present a large group of data on the suitability of selected industrial crops to marginal soils, helping to clarify the constraints associated with their cultivation under low-input practices. The experimental field trials included the following annual oil [industrial hemp (Cannabis sativa L.), safflower (Carthamus tinctorius L.), crambe (Crambe abyssinica Hochst.), camelina (Camelina sativa L.), Ethiopian mustard (Brassica carinata A. Braun), castor (Ricinus communis L.)] and carbohydrate crops [biomass sorghum (Sorghum bicolor L. Moench)]; perennial, lignocellulosic, herbaceous, such as giant reed (Arundo donax L.), miscanthus (Miscanthus spp.), African fodder cane (Saccharum spontaneum L. spp. aegyptiacum Willd. Hackel), tall wheatgrass (Thinopyrum ponticum (Podp.) and switchgrass (Panicum virgatum L.), and woody crops [Siberian elm (Ulmus pumila L.) and willow (Salix spp.)]. Low-input agricultural practices were applied to the above industrial crops with the main aim to ascertain their performances in sites affected by biophysical limitations across Europe. European countries were grouped, according to the European climatic stratification proposed by Metzger et al. (2005), in three main agro-ecological zone: Mediterranean, Atlantic and Continental. Biophysical limitations are essentially those reported in the JRC study (Rossiter et al., 2014), which alone or in combination leads to negative synergies to crop yield. MAGIC, through this task, will provide hints on how the cultivation of these crops in marginal soils can mitigate indirect land-use change (iLUC) risks, in accordance with the sustainability criteria set in the Directive (EU) 2018/2001 and to meet the European Green Deal towards an EU climate neutral in 2050.

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    Authors: Dumitru, Adina; Peralbo Rubio, Eva; Tomé Lourido, David; Collier, Marcus J.; +4 Authors

    The development of the Connecting Nature Impact Assessment Framework has been accompanied by a series of resources that can be used by cities whose objective is to build capacity to mainstream impact assessment as part of their nature-based solutions policies and plans. Together, they form an impact assessment toolkit for cities. The objective of this Deliverable is to provide a brief description of each of the elements of the toolkit, while the resources and tools themselves can be consulted online, by following the provided links in Appendices I and II. All these materials have been uploaded to websites and platforms so that the elements are easily searchable and downloadable by users. The resources generated fall into the following four categories: 1) Impact assessment plans, results, and integration of data for the Connecting Nature frontrunner cities 2) Finding inspiration: nature-based solutions repositories and databases: OPPLA, the EU Repository of Nature-Based Solutions, and the NBS data and knowledge base created by Dushkova and Haase (2020). 3) The CO-IMPACT tool to design bespoke impact assessment plans, a decision-support tool for the design of monitoring and evaluation plans, with suggestions for appropriate indicators and methodologies. It is one of the main innovations in the project. 4) Additional monitoring and evaluation resources for cities, including handbooks and indicator factsheets to support cities in impact assessment The deliverable also presents the Connecting Nature plans for ensuring the sustainability of project innovations beyond the official end of the project. It describes the design of the Connecting Nature Resource Center, an online repository of searchable resources embedded in the European platform OPPLA. In addition to these five main sections, this document has two appendices. The first one the main resources, and includes keywords, location, description, uses of the product, and associated links. In the second appendix, the impact assessment video trainings are listed, along with links to the videos for easy access. All the resources presented in this Deliverable make up an interactive, online toolkit to support nature-based solutions impact assessment and deployment in cities. containing innovative evidence-based demonstrations for nature-based solutions deployment in cities. The toolkit will also be presented at the CN final Summit in Genk and will seek to stimulate emerging partnerships to support impact assessment plans and investments in cities. Suggested citation: Dumitru, A., Peralbo Rubio, E., Tomé Lourido, D., Collier, M.J., Dick, G., Mahony, P., Porter, J., Sermpezi, R. (2022). Connecting Nature Deliverable 3: Interactive, online toolkit containing innovative evidence-based demonstrations for nature-based solutions deployment in cities. DOI: https://doi.org/10.5281/zenodo.7010945

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    Authors: Qirui Li;

    Managing and sharing data during a research project has clear advantages. It allows one to quickly find and understand the data when one needs to use it. It also gives continuity if project staff leave or new researchers join, and it avoids unnecessary duplication. A Data Management Plan (DMP) helps to save time and effort and makes the research and data-sharing process easier. By considering in advance what data will be created and how one can organize the necessary support concerning personal data and compliance with the General Data Protection Regulation (GDPR) and the UK General Data Protection Regulation (UK GDPR) legislations and protection of individual Intellectual Property Rights (IPR).

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    Authors: Stefanoni; Latterini; Attolico;

    The exploitation of industrial crops for the production of ligno-cellulosic compounds and vegetable oil on marginal lands relies on efficient harvesting and logistics’ strategies. The present deliverable goes through the difficulties encountered from harvesting to dispatchment of indrustrial crops highlighting prons and cons of the currently available technologies to improve the whole value chain in the following categories: lignocellulosic crops (fiber, herbaceous perennial and Short-Medium Rotation Coppice (SRC-MRC)) and oil crops. The two sections are indipendently investigated focusing on harvesting and densifiction of the biomass to reduce cost and increase profitability. The information provided within the present document was gathered from experimental data collected on fields, from literature review and background knowledge gained from collaboration in previous research projects. Regarding fiber crop (in particular hemp) it is possible to say that there are several solutions available to harvest this species, which should be properly selected according to the crop features and to the aim of the cultivation, i.e. fiber and seed-fiber. Focusing on lignocellulosic crops, the present deliverable focused mainly on miscanthus, describing the possible alternative solutions which are generally based on cutting the plants and densify them through chipping and/or baling. Harvesting systems for SRC and MRC have been instead experiencing a substantial change in the last years, shifting from dedicated systems for biomass harvesting and densification to semi or fully mechanized harvesting approaches, derived from forestry sector, in order to produce fiber wood from the main stem and biomass from branches and tops. Finally, concerning oil crops, it is possible to say that, among the investigated ones, camelina and castor can efficiently be harvested with conventional combine harvesters equipped with cereal and sunflower header respectively. Castor bean harvesting is instead still a great challenge, indeed the present deliverable highlights how a sunflower header is a better option than a cereal one, but however many concerns are still present regarding seed loss and quality of the collected product.

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    Authors: Maar, Marie; van der Meeren, Gro I.; Danielsen, Finn; Hansen, Cecilie; +6 Authors

    This report summarizes the discussions during two virtual meetings with different stakeholders with interest in the Barents Sea and off-Greenland ecosystems, respectively. The meetings were based on the work from Task 6.8 “Demonstrations for fisheries and environmental management agencies” and Task 6.2. “Improved ecosystem understanding and management”. Stakeholders represented a broad specter of marine- and maritime-related authorities in Norway, Greenland and Denmark, the fishing industry, the Conservation of Arctic Flora and Fauna (CAFF) working group of the Arctic Council, Greenland Institute of Natural Resources, INTAROS partners and participants from other EU projects. The presentations of the monitoring and model results were refined and angled to be of relevance and use for the participating stakeholders. The stakeholders were in general interested in the approach, results, and conclusions. The discussion made it clear that as users in charge of sectorial human activity management, they valued scientific testing and suggestions for improving ecosystem understanding. They recommended that the next step could be to look at not only national data set indicators, but also relate those to an Arctic international setting. The Norwegian Environmental Agency suggested that a climate approach would be useful also for the Barents Sea. Likewise, the more complex food web indicators presented for the Barents Sea could be useful to apply to the Greenland coastal system. Stakeholders from both geographic areas emphasized that data from long-term monitoring of key variables is important for their work and that models can be useful as supporting information on indicators and future scenarios if the model uncertainty is assessed and explained. These seminars highlight the importance of inviting stakeholders responsible for all sectors of marine-related human activities to dialogues on research and monitoring of the climate, natural resources and ecosystems. In a fast-changing scientific world, with an increasing amount of knowledge, it is important to make available, timely and in the right format, the best possible information.

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    Authors: Agnarsson, Sveinn; Smárason, Birgir Örn; Dillman, Kevin;

    This report consists of a risk assessment of the value-chain of the four alternative protein producers taking part in the NextGenProteins project. Two of the firms, Mutatec and EntoCube, have developed technology to produce proteins from insects, one, ARBIOM, is engaged in the production of single-cell proteins (SCP) and the fourth, VAXA, produces proteins from microalgae. The risk assessment was conducted using information gathered for the Deliverable 6.3 in NextGenProteins which provided a thorough analysis of the input-output structure of the production and processing of each firm, and this mapping formed the basis for questions that were put to representatives of each of the four firms. The risk assessment is therefore based on a qualitative methodology. In the first step, representatives from each firm were asked to go carefully through each stage in the production and processing of their protein products and identify any risks. Participants were also asked about to identify risk in other stages of the value chain. In the second step, participants in the risk assessment assigned likelihoods to each risk identified. In the third step, participants were asked to estimate the maximum impact of each risk. The final step in the analysis consisted of the risk evaluation. The risk level was defined by a combination of the likelihood level and the impact score. The risk assessment was done in a qualitative manner and involved no numerical values. The risk assessment revealed that the number of risk factors identified in each case varied somewhat between firms. In three of the four case-studies, most of the risks identified were either minor or moderate, but many of the risks identified in the fourth case were either categorized as major or severe. This is not surprising, given that the analysis was qualitative in nature and therefore based on subjective risk evaluation. Although the four companies have all developed technology to produce alternative proteins, the production and processing differ. Some of the risks identified are therefore idiosyncratic and firm-specific. There are, however, two sets of risks that are common to all the four companies. The first concerns the risk of being unable to attract funding, which is of special relevance for start-up firms that may particularlyfind it difficult to attract the necessary funds. The other risk factor concerns the willingness of consumers to accept the new, alternative proteins. This risk can be mitigated by better marketing, more information and greater transparency.

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    Authors: Momi, Sara; Barbero, Cristina; Messervey, Thomas;

    Executive Summary This deliverable (D8.4) contains the REACT’s Market Analysis. REACT project aims to guide and promote a full ecosystem of digital and hard solutions, from which citizens and public entities (local communities) having the role of consumers or prosumers or even prosumagers, and several energy operators (manufacturers of RE and storage technologies, developers of digital solutions, aggregators, ESCOs and energy utilities, DSOs and TSOs) can benefit The REACT System is under validation as a tool aiming to facilitate the business activities within the LV grid, offering services to several players in need to interact with grid operators, and the same DSOs in charge of the grid management. The aim of this REACT Market Analysis is multiple:  To ease the process by which REACT partners can be facilitated on how the decarbonization of geographic islands can be done and is feasible by matching RES technologies to energy flexibility enabled by digital platforms and solutions.  To prepare the right knowledge and benchmarking context for several business model taking shape at REACT level. As there is a real chance to validate the solution on energy communities, under the form of Renewable Energy Community (REC)1, through this Market Analysis there is the chance to understand all the factors having a beneficial for islanders to manage demand and/or offer of energy production in a smart and efficient way.  To support the consortium in the activities related to replication and scaling up of the REACT solutions for the follower islands (WP7). The consortium has started co- shaping the methodology which could be applied to different types of intervention, starting from the assessment of local assets at energy and economic level (e.g., existing installations – either on fossil or RES technologies; economic sectors linked to energy uses and needs; types of building stocks and their characteristics and uses), including the recognition of strategic infrastructures (especially the ones that are key for permitting data transfer).  To understand what is currently in place at each of the 3 Countries hosting the flagship REACT pilots: Ireland, Spain, and Italy. Specific focus has been provided on the legislative, regulatory and policy framework (with details on the schemes in place for the islands of such countries), which also impact the subsidies, grants, but also charges and levies in place at financial level.  To understand how the REACT identified stakeholders are positioned toward the REACT solution in terms of interest, power, pains, and gains. Besides, thanks to several connections of the REACT consortium, a benchmark of global players and projects, included other EU-funded (mainly H2020) projects gives the framework of how REACT is positioned at RTD and networking level.  To support the consortium in making the link between what has been identified through the identification and further refinement of the Key Exploitable Results (KERs) and the derived Business Models and Exploitation pathways (still under discussion among partners). In terms of technologies, they can include PV, WT, batteries / storage technologies (including Power-2-Hydrogen or a combination of them). A specific place is reserved to ICT platforms of REACT nature that, together with data management and control and smart metering represent an important role on Demand Response (DR) and energy flexibility through REs in islands.

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    Authors: Fernández; Sagarna; Cerezo; Alexopoulou; +10 Authors

    One of the MAGIC Project targets is “to maximise stakeholder’ mobilization and enhance the impact of the project activities and outcomes for promoting the cultivation of industrial crops on marginal land”. In this line, practice abstracts (PA’s) are short summaries that describe main information that can serve end users in their daily practice. Following the guidelines of the EIP-AGRI and their common format, MAGIC will produce as many PA’s as required for dissemination over the entire duration of the project. PA’s will feed the newsletter and webpage of EIP-AGRI with easily understandable practical knowledge that is expected to reach a broader public. This document presents twenty practice abstracts that introduce the potential or expected results at the end of the project. This report is a living document which will be updated as project progresses and results are available.

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    Authors: Panoutsou, Calliope;

    Low input cultivation of industrial crops in land with biophysical marginality can provide valuable resources for biobased products and bioenergy. Important marginality challenges that were improved with the cultivation of industrial crops in marginal land in the understudy Good Practice case studies include among others shallow soil depth, low fertility and light sandy soils, soil contamination, low water availability, limiting rooting conditions and steep slopes. The work in this report discusses the key findings for the characteristics of the selected industrial crops and the marginality challenges improved with their cultivation. Following it discusses the level of potential transferability for the lessons learnt per key attribute (biophysical- environmental, economic, and social) and development stage to other European regions.

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    Authors: Panoutsou, Calliope;

    During the last decade, the concept of marginal land have received high attention both in research and policy formation. The Magic project aims to improve scientific evidence and create new knowledge based on the extensive experience of the project partners with the cultivation of industrial crops in land facing a range of biophysical marginality constraints across Europe. Within this research framework, the work presented in this report, analyses success stories of selected industrial crops in European regions addressing biophysical/ environmental, economic, and social issues. The methodological approach provides a conceptual link of Value Chain Analysis (VCA), and a two- dimensional perspective (value chain’s key attributes in the form of competitive priorities (CP) and their performance in the different development stages) to analyse a set of Good Practice cases that cultivate industrial crops in marginal land. The work presented here, uses a set of indicators, and evaluates the performance of the understudy Good Practice cases in the land use and biomass production stages. Following it discusses the relevance (in terms of creating competitive advantages once applied properly) of the under study competitive priorities across the development stages. Results from this analysis illustrate how the cultivation of industrial crops in land with low soil fertility, high salinity, sandy soils, unfavourable texture and stoniness, contamination, etc. can help overcome both the biophysical challenges but also the socio-economic ones with providing outlets to rural communities for supporting the provision of raw materials to the biobased sectors. The findings aim to inform on performance of industrial crops in land with biophysical marginality and facilitate the development of policy recommendations and Good Practice guidelines to promote the appropriate sourcing of renewable materials from marginal land at local/regional level.

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    Authors: Scordia, Danilo;

    The objective of this task was to present a large group of data on the suitability of selected industrial crops to marginal soils, helping to clarify the constraints associated with their cultivation under low-input practices. The experimental field trials included the following annual oil [industrial hemp (Cannabis sativa L.), safflower (Carthamus tinctorius L.), crambe (Crambe abyssinica Hochst.), camelina (Camelina sativa L.), Ethiopian mustard (Brassica carinata A. Braun), castor (Ricinus communis L.)] and carbohydrate crops [biomass sorghum (Sorghum bicolor L. Moench)]; perennial, lignocellulosic, herbaceous, such as giant reed (Arundo donax L.), miscanthus (Miscanthus spp.), African fodder cane (Saccharum spontaneum L. spp. aegyptiacum Willd. Hackel), tall wheatgrass (Thinopyrum ponticum (Podp.) and switchgrass (Panicum virgatum L.), and woody crops [Siberian elm (Ulmus pumila L.) and willow (Salix spp.)]. Low-input agricultural practices were applied to the above industrial crops with the main aim to ascertain their performances in sites affected by biophysical limitations across Europe. European countries were grouped, according to the European climatic stratification proposed by Metzger et al. (2005), in three main agro-ecological zone: Mediterranean, Atlantic and Continental. Biophysical limitations are essentially those reported in the JRC study (Rossiter et al., 2014), which alone or in combination leads to negative synergies to crop yield. MAGIC, through this task, will provide hints on how the cultivation of these crops in marginal soils can mitigate indirect land-use change (iLUC) risks, in accordance with the sustainability criteria set in the Directive (EU) 2018/2001 and to meet the European Green Deal towards an EU climate neutral in 2050.

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    Authors: Dumitru, Adina; Peralbo Rubio, Eva; Tomé Lourido, David; Collier, Marcus J.; +4 Authors

    The development of the Connecting Nature Impact Assessment Framework has been accompanied by a series of resources that can be used by cities whose objective is to build capacity to mainstream impact assessment as part of their nature-based solutions policies and plans. Together, they form an impact assessment toolkit for cities. The objective of this Deliverable is to provide a brief description of each of the elements of the toolkit, while the resources and tools themselves can be consulted online, by following the provided links in Appendices I and II. All these materials have been uploaded to websites and platforms so that the elements are easily searchable and downloadable by users. The resources generated fall into the following four categories: 1) Impact assessment plans, results, and integration of data for the Connecting Nature frontrunner cities 2) Finding inspiration: nature-based solutions repositories and databases: OPPLA, the EU Repository of Nature-Based Solutions, and the NBS data and knowledge base created by Dushkova and Haase (2020). 3) The CO-IMPACT tool to design bespoke impact assessment plans, a decision-support tool for the design of monitoring and evaluation plans, with suggestions for appropriate indicators and methodologies. It is one of the main innovations in the project. 4) Additional monitoring and evaluation resources for cities, including handbooks and indicator factsheets to support cities in impact assessment The deliverable also presents the Connecting Nature plans for ensuring the sustainability of project innovations beyond the official end of the project. It describes the design of the Connecting Nature Resource Center, an online repository of searchable resources embedded in the European platform OPPLA. In addition to these five main sections, this document has two appendices. The first one the main resources, and includes keywords, location, description, uses of the product, and associated links. In the second appendix, the impact assessment video trainings are listed, along with links to the videos for easy access. All the resources presented in this Deliverable make up an interactive, online toolkit to support nature-based solutions impact assessment and deployment in cities. containing innovative evidence-based demonstrations for nature-based solutions deployment in cities. The toolkit will also be presented at the CN final Summit in Genk and will seek to stimulate emerging partnerships to support impact assessment plans and investments in cities. Suggested citation: Dumitru, A., Peralbo Rubio, E., Tomé Lourido, D., Collier, M.J., Dick, G., Mahony, P., Porter, J., Sermpezi, R. (2022). Connecting Nature Deliverable 3: Interactive, online toolkit containing innovative evidence-based demonstrations for nature-based solutions deployment in cities. DOI: https://doi.org/10.5281/zenodo.7010945

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