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BBI-2020-SO1-D1
BBI-2020-SO1-D1: Resolve supply-chain hurdles for turning residual waste streams into functional molecules for food and/or non-food market applications
Specific Challenge:Residual streams from various industries contain functional molecules that could be used for food and non-food market applications. The functions of interest depend on the intended use of the final products that operators intend to make with the targeted molecules. Residual streams are any streams that are not main products of an industrial operation and are disposed of at low or no value. They include residues from the agricultural, livestock, marine, aquatic, fisheries, food processing, forestry and forest-based industry sectors.
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Specific Challenge:Residual streams from various industries contain functional molecules that could be used for food and non-food market applications. The functions of interest depend on the intended use of the final products that operators intend to make with the targeted molecules. Residual streams are any streams that are not main products of an industrial operation and are disposed of at low or no value. They include residues from the agricultural, livestock, marine, aquatic, fisheries, food processing, forestry and forest-based industry sectors.

Today, most of these residual streams either find low-value applications that are mainly based on their calorific content (i.e. they are used as fuel), or they are not used at all, often because of supply-chain constraints. The supply-chain constraints could be due to a variety of reasons, including: (i) the relatively long distances between where the residues are generated and where they can be processed; (ii) the low density and/or high water content of the residues; (iii) the capacity of available processing units exceeding available local feedstock.

It is crucial that the functional molecules from these re... ver más

Specific Challenge:Residual streams from various industries contain functional molecules that could be used for food and non-food market applications. The functions of interest depend on the intended use of the final products that operators intend to make with the targeted molecules. Residual streams are any streams that are not main products of an industrial operation and are disposed of at low or no value. They include residues from the agricultural, livestock, marine, aquatic, fisheries, food processing, forestry and forest-based industry sectors.

Today, most of these residual streams either find low-value applications that are mainly based on their calorific content (i.e. they are used as fuel), or they are not used at all, often because of supply-chain constraints. The supply-chain constraints could be due to a variety of reasons, including: (i) the relatively long distances between where the residues are generated and where they can be processed; (ii) the low density and/or high water content of the residues; (iii) the capacity of available processing units exceeding available local feedstock.

It is crucial that the functional molecules from these residual streams be separated in a way that is cost-efficient, energy-efficient and eco-efficient. This will mean that these molecules can be made available for subsequent use in higher-value applications, which will provide significant employment and income opportunities for the primary sectors and may improve the commercial sustainability of existing processes.

Fully enjoying the opportunities of these functional molecules will only be possible if the availability of the residual streams can be maximised by resolving any supply-chain constraints.

Various technologies exist to separate and convert the functional molecules from residual streams into high added-value intermediates and products. However, the applicability of these technologies depends on sustainable integration of the feedstock supply. The specific challenge is to resolve supply chain hurdles and enable the recovery and processing of functional molecules in residual streams from various sectors.

The specific challenge is to resolve supply chain hurdles and enable the recovery and processing of functional molecules in residual streams from various sectors.


Scope:Create and integrate a sustainable supply-chain system into a value chain that is capable of using available or new technologies to use functional molecules in residual streams in high-value food and/or non-food applications.

The scope of this topic includes all necessary steps to collect, transport and store the residual streams being targeted at the processing site. These steps could include pre-treatment actions if they are necessary to transport and/or store any of the targeted residual streams. The quantities, qualities and physical original physical locations of these streams determine the optimal location and size of the operational site that they integrate into. The operational sites can be either centralised large-scale biorefineries, or small/medium-scale processing units, or a combination thereof.

Proposals must be suitable for direct acceptance and implementation by farmers, foresters or fishers, depending on the supply chain addressed. Proposals therefore need to include these actors in the related primary sector as strategic partner(s) leading the value chain. The involved primary producers should participate in the design of the value chain and benefit from its results. In order to increase the participation of primary producers, it is recommended to promote the participation of relevant cooperatives as members of the consortium, as well as to foster the role of advisors or innovation brokers to support (‘speak on behalf of’) primary producers during the project implementation. Proposals should consider establishing an advisory board of primary producers that collaborates with the consortium by advising on and measuring the impact of the project.

Proposals should include processing operations tailored to local circumstances. These operations will need to cope with availabilities, distances, qualities of the residual streams, possible variations in these qualities, etc. The business case underlying the proposal must include a feasibility assessment (technological and financial) of: (i) the associated processes at the envisaged scale; and (ii) combinations with other relevant processes.

The biomass-feedstock supply chain is an essential part of the expected project proposals. Proposals must include proof that sufficient quantities of the targeted residual streams are available and exploitable to effectively and sustainably maintain the business case for future upscaling to commercial levels.

Proposals should include upstream processes if needed (e.g. pre-treatments), conversion routes, and downstream processes. Cascading concepts are a relevant part of the proposals.

Proposals may include physical, chemical or biotechnological routes (or combinations of these).

The designed value chain aims specifically at using the inherent functions of the residual streams. It focuses therefore on producing intermediates that equal or outperform their fossil-based counterparts. The targeted high-end market applications are necessarily more valuable that the market applications of these streams in the energy sector.

Proposals should also include market actors in the targeted market sectors to ensure application and economic impact.

If proposals aim at food applications, they must also include considerations of consumer safety and consumer perception of the targeted consumer applications. Any potential hazards associated with the developed processes and products should be analysed to check that the products will comply with relevant EU legislation on chemicals risk management, toxicity and safety.

Proposals must address all the requirements for demonstration actions shown in Table 3 of the Introduction.

The technology readiness level (TRL) at the end of the project should be 6-7. Proposals should clearly state the starting and end TRLs of the key technology or technologies targeted in the project.

INDICATIVE FUNDING:

It is considered that proposals requesting a maximum contribution of EUR 7 million would be able to address this specific challenge appropriately. However, this does not preclude the submission and selection of proposals requesting other amounts.


Expected Impact:EXPECTED IMPACTS LINKED TO BBI JU KEY PERFORMANCE INDICATORS (KPIs):

contribute to KPI 1 — create at least one new cross-sector interconnection in the bio-based economy; contribute to KPI 2 — create at least one new bio-based value chain; contribute to KPI 6 — demonstrate at least two new consumer products containing bio-based food and/or non-food functional molecules that meet market requirements. ENVIRONMENTAL IMPACTS:

reduce overall CO2 emissions in the value chain by 20%, including from road transport where applicable; reduce landfill in the region of the selected processing location;contribute to the EU’s 2050 long-term strategy for a climate-neutral Europe by replacing fossil-based material with bio-based, renewable material. ECONOMIC IMPACTS:

extract at least 50% more value from the residual streams compared with the state of the art; produce at least one B2B or B2C product in sufficient quantities to allow validating the value chain. SOCIAL IMPACTS:

create new job opportunities in the bio-based sector in rural, coastal and/or urban areas; contribute to social development in the related primary sector(s) (e.g. rural, forest or coastal development) by adding new value-chains and by creating sustainable, high-tech jobs supported by educational and training steps as needed. TYPE OF ACTION: Innovation action – demonstration action.


Cross-cutting Priorities:Cross-cutting Key-Enabling Technologies (KETs)


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Temáticas Obligatorias del proyecto: Temática principal:

Características del consorcio

Ámbito Europeo : La ayuda es de ámbito europeo, puede aplicar a esta linea cualquier empresa que forme parte de la Comunidad Europea.
Tipo y tamaño de organizaciones: El diseño de consorcio necesario para la tramitación de esta ayuda necesita de:

Características del Proyecto

Requisitos de diseño: Duración:
Requisitos técnicos: Specific Challenge:Residual streams from various industries contain functional molecules that could be used for food and non-food market applications. The functions of interest depend on the intended use of the final products that operators intend to make with the targeted molecules. Residual streams are any streams that are not main products of an industrial operation and are disposed of at low or no value. They include residues from the agricultural, livestock, marine, aquatic, fisheries, food processing, forestry and forest-based industry sectors. Specific Challenge:Residual streams from various industries contain functional molecules that could be used for food and non-food market applications. The functions of interest depend on the intended use of the final products that operators intend to make with the targeted molecules. Residual streams are any streams that are not main products of an industrial operation and are disposed of at low or no value. They include residues from the agricultural, livestock, marine, aquatic, fisheries, food processing, forestry and forest-based industry sectors.
¿Quieres ejemplos? Puedes consultar aquí los últimos proyectos conocidos financiados por esta línea, sus tecnologías, sus presupuestos y sus compañías.
Capítulos financiables: Los capítulos de gastos financiables para esta línea son:
Personnel costs.
Los costes de personal subvencionables cubren las horas de trabajo efectivo de las personas directamente dedicadas a la ejecución de la acción. Los propietarios de pequeñas y medianas empresas que no perciban salario y otras personas físicas que no perciban salario podrán imputar los costes de personal sobre la base de una escala de costes unitarios
Purchase costs.
Los otros costes directos se dividen en los siguientes apartados: Viajes, amortizaciones, equipamiento y otros bienes y servicios. Se financia la amortización de equipos, permitiendo incluir la amortización de equipos adquiridos antes del proyecto si se registra durante su ejecución. En el apartado de otros bienes y servicios se incluyen los diferentes bienes y servicios comprados por los beneficiarios a proveedores externos para poder llevar a cabo sus tareas
Subcontracting costs.
La subcontratación en ayudas europeas no debe tratarse del core de actividades de I+D del proyecto. El contratista debe ser seleccionado por el beneficiario de acuerdo con el principio de mejor relación calidad-precio bajo las condiciones de transparencia e igualdad (en ningún caso consistirá en solicitar menos de 3 ofertas). En el caso de entidades públicas, para la subcontratación se deberán de seguir las leyes que rijan en el país al que pertenezca el contratante
Amortizaciones.
Activos.
Otros Gastos.
Madurez tecnológica: La tramitación de esta ayuda requiere de un nivel tecnológico mínimo en el proyecto de TRL 5:. Los elementos básicos de la innovación son integrados de manera que la configuración final es similar a su aplicación final, es decir que está listo para ser usado en la simulación de un entorno real. Se mejoran los modelos tanto técnicos como económicos del diseño inicial, se ha identificado adicionalmente aspectos de seguridad, limitaciones ambiéntales y/o regulatorios entre otros. + info.
TRL esperado:

Características de la financiación

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1.   Eligible countries: described in Annex A of the H2020 Work Programme.
      A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon 2020 projects. See the information in the Online Manual.
 
2. Eligibility and admissibility conditions: described in Annex B and Annex C of the Work Programme, with the derogation described in part 2.2.3 of the BBI JU Work Plan. 
Proposal page limits and layout: Please refer to Part B of the proposal template in the submission tool below.
3.   Evaluation:
Evaluation criteria, scoring and thresholds are described in Annex H of the H2020 Work Programme, with the exceptions described in part 2.2.6 of the BBI JU Work Plan.
Submission and evaluation processes are described in the Online Manual and the BBI JU Guide for applicants (RIA-IA-CSA).
 
4.   Indicative time for evaluation and grant agreement:
      Information on the outcome of evaluation: maximum 5 months from the deadline for submission.
      Signature of grant agreements: maximum 8 months from the deadline for submission.
5.   Proposal templates, evaluation forms a...
1.   Eligible countries: described in Annex A of the H2020 Work Programme.
      A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon 2020 projects. See the information in the Online Manual.
 
2. Eligibility and admissibility conditions: described in Annex B and Annex C of the Work Programme, with the derogation described in part 2.2.3 of the BBI JU Work Plan. 
Proposal page limits and layout: Please refer to Part B of the proposal template in the submission tool below.
3.   Evaluation:
Evaluation criteria, scoring and thresholds are described in Annex H of the H2020 Work Programme, with the exceptions described in part 2.2.6 of the BBI JU Work Plan.
Submission and evaluation processes are described in the Online Manual and the BBI JU Guide for applicants (RIA-IA-CSA).
 
4.   Indicative time for evaluation and grant agreement:
      Information on the outcome of evaluation: maximum 5 months from the deadline for submission.
      Signature of grant agreements: maximum 8 months from the deadline for submission.
5.   Proposal templates, evaluation forms and model grant agreements (MGA):
BBI Research and Innovation Action (BBI-RIA)
Specific rules and funding rates: described in 2.2.4 of the BBI JU Work Plan.
Proposal templates are available after entering the submission tool below.
Standard evaluation form
BBI JU MGA - Multi-Beneficiary
BBI JU MGA Annex 2
BBI JU MGA Annex 4
H2020 Annotated Grant Agreement
BBI Innovation Action Demonstration (BBI-IA-DEMO)
and BBI Innovation Action Flagship (BBI-IA-FLAG)
Specific rules and funding rates: described in 2.2.4 of the BBI JU Work Plan.
Proposal templates are available after entering the submission tool below.
Standard evaluation form (IA)
BBI JU MGA - Multi-Beneficiary
BBI JU MGA Annex 2
BBI JU MGA Annex 4
H2020 Annotated Grant Agreement
BBI Coordination and Support Action (BBI-CSA)
Specific rules and funding rates: described in 2.2.4 of the BBI JU Work Plan.
Proposal templates are available after entering the submission tool below.
Standard evaluation form
BBI JU MGA Multi-Beneficiary
BBI JU MGA Annex 2
BBI JU MGA Annex 4
H2020 Annotated Grant Agreement
6. Additional requirements:
Technology readiness levels (TRL)
 
Members of consortium are required to conclude a consortium agreement, in principle prior to the signature of the grant agreement.
7.   Open access must be granted to all scientific publications resulting from Horizon 2020 actions.
Where relevant, proposals should also provide information on how the participants will manage the research data generated and/or collected during the project, such as details on what types of data the project will generate, whether and how this data will be exploited or made accessible for verification and re-use, and how it will be curated and preserved.
Open access to research data
The Open Research Data Pilot has been extended to cover all Horizon 2020 topics for which the submission is opened on 26 July 2016 or later. Projects funded under this topic will therefore by default provide open access to the research data they generate, except if they decide to opt-out under the conditions described in Annex L of the H2020 main Work Programme. Projects can opt-out at any stage, that is both before and after the grant signature.
Note that the evaluation phase proposals will not be evaluated more favourably because they plan to open or share their data, and will not be penalised for opting out.
Open research data sharing applies to the data needed to validate the results presented in scientific publications. Additionally, projects can choose to make other data available open access and need to describe their approach in a Data Management Plan.
Projects need to create a Data Management Plan (DMP), except if they opt-out of making their research data open access. A first version of the DMP must be provided as an early deliverable within six months of the project and should be updated during the project as appropriate. The Commission already provides guidance documents, including a template for DMPs. See the Online Manual.
Eligibility of costs: costs related to data management and data sharing are eligible for reimbursement during the project duration.
The legal requirements for projects participating in this pilot are in the article 29.3 of the Model Grant Agreement.
8.   Additional documents
BBI JU Work Plan
Table 3 of BBI JU Work Plan (standard requirements for proposals)
BBI JU Scientific Innovation and Research Agenda (SIRA)
BBI JU Derogation to H2020 Rules for Participation
BBI JU Regulation of Establishment
H2020 Regulation of Establishment
H2020 Rules for Participation
H2020 Specific Programme
BBI JU Call 2020 FAQs for applicants
BBI JU Guide for applicants 
Garantías:
No exige Garantías
No existen condiciones financieras para el beneficiario.

Información adicional de la convocatoria

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