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      "title_narrative":["Solar Battery Hub"],
      "description_narrative":["There is a major challenge in making electricity accessible in off-grid communities in Nigeria as well as other parts of the world with limited energy access. While connected microgrid solutions have great potential, there is a real need for flexible and rapidly deployable solutions that can enable productive and transient electricity users to access affordable electricity.\n\nThe Solar Battery Hub brings a brand-new dimension to microgrid technologies for off-grid communities. By offering an entirely flexible solution to energy use with a new commercial model, the solution improves on and adds to more traditional, connected microgrid solutions. By focusing on productive users of energy, markets will be stimulated, accelerating the growth of clean energy and associated opportunities in rural parts of Nigeria.\n\nThe Solar Battery Hub will consist of a small solar array, connected to batteries of various sizes and capacities. This will enable productive energy users such as schools, medical centres, and markets stall operators to rent the batteries and take only the energy they need when they need it. This will reduce the overall cost burden of investing in fully connected micro-grid systems, which are often unaffordable or take a long time to get up and running.\n\nDuring the project, we shall develop and refine a design for the solution based on extensive market research, including direct engagement with rural communities in Nigeria. We shall then test and demonstrate the solution on a small scale to seek feedback and inform future developments.\n\nAs well as helping to contribute to improved energy access and the prosperity that this brings, the Solar Battery Hub will address a range of wider challenges, including:\n\n* Food Waste; enabling cooling for market stalls will help reduce the 45% of food currently wasted due to perishing in high temperatures.\n* Health: the solution will enable primary healthcare centres to be powered, enabling drugs and vaccines to be stored for longer (by refrigerating) and lighting for night-time operations.\n* Skills: by powering schools and education centres, the solution will help develop skills for young people in rural communities.\n* Income: having temporary power solutions will enable small businesses and stalls to prosper, increasing economic activities.\n* Equity: bringing power to rural areas will help narrow the gap between rural and city communities. Also 80% of market stall operators are women, enabling greater opportunity for gender equality.","There is a major challenge in making electricity accessible in off-grid communities in Nigeria as well as other parts of the world with limited energy access. While connected microgrid solutions have great potential, there is a real need for flexible and rapidly deployable solutions that can enable productive and transient electricity users to access affordable electricity.\n\nThe Solar Battery Hub brings a brand-new dimension to microgrid technologies for off-grid communities. By offering an entirely flexible solution to energy use with a new commercial model, the solution improves on and adds to more traditional, connected microgrid solutions. By focusing on productive users of energy, markets will be stimulated, accelerating the growth of clean energy and associated opportunities in rural parts of Nigeria.\n\nThe Solar Battery Hub will consist of a small solar array, connected to batteries of various sizes and capacities. This will enable productive energy users such as schools, medical centres, and markets stall operators to rent the batteries and take only the energy they need when they need it. This will reduce the overall cost burden of investing in fully connected micro-grid systems, which are often unaffordable or take a long time to get up and running.\n\nDuring the project, we shall develop and refine a design for the solution based on extensive market research, including direct engagement with rural communities in Nigeria. We shall then test and demonstrate the solution on a small scale to seek feedback and inform future developments.\n\nAs well as helping to contribute to improved energy access and the prosperity that this brings, the Solar Battery Hub will address a range of wider challenges, including:\n\n* Food Waste; enabling cooling for market stalls will help reduce the 45% of food currently wasted due to perishing in high temperatures.\n* Health: the solution will enable primary healthcare centres to be powered, enabling drugs and vaccines to be stored for longer (by refrigerating) and lighting for night-time operations.\n* Skills: by powering schools and education centres, the solution will help develop skills for young people in rural communities.\n* Income: having temporary power solutions will enable small businesses and stalls to prosper, increasing economic activities.\n* Equity: bringing power to rural areas will help narrow the gap between rural and city communities. 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      "description_narrative":["ECOSMART:2 will demonstrate the smart integration of a novel, enhanced anaerobic digestion (AD) process with solar technology to form the basis of a circular economy model, providing affordable, clean, secure energy access. Through development and operation of the ECOSMART:2 modules, new integrated UK-Nigerian enterprises and supply chains will be established, aligning social and gender considerations with economic and environmental benefits. With a focus on valorising agri/food waste streams (e.g. cassava and water hyacinth), ECOSMART:2 will ensure a high proportion of beneficiaries are women and those on low incomes.\n\nECOSMART:2 will build on the consortium's expertise, utilising locally available materials and low-cost components to ensure affordability, and reducing feedstock retention time through system design to to accelerate the AD process. It will also produce soil amenders and fertiliser to replace expensive, synthetic fertilisers, thus supporting local, sustainable agricultural practices.\n\nWith a 4.5-year payback, this model of affordable, low carbon, secure bioenergy will tap into Nigeria's £7.45Bn microgrid market to support enterprise and capacity building opportunities with operator training and local manufacture as well as up-skilling both upstream and downstream enterprises/supply chains for the provision of feedstock and the sale of energy and fertiliser. AD and control systems will be adapted by UK SMEs for global commercial opportunities. With a focus on flexible energy use and affordability, advances in demand-side management and microgrid technology, ECOSMART:2 presents developing countries with an opportunity to leapfrog expensive, centralised infrastructure.","ECOSMART:2 will demonstrate the smart integration of a novel, enhanced anaerobic digestion (AD) process with solar technology to form the basis of a circular economy model, providing affordable, clean, secure energy access. Through development and operation of the ECOSMART:2 modules, new integrated UK-Nigerian enterprises and supply chains will be established, aligning social and gender considerations with economic and environmental benefits. With a focus on valorising agri/food waste streams (e.g. cassava and water hyacinth), ECOSMART:2 will ensure a high proportion of beneficiaries are women and those on low incomes."],
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      "iati_identifier":"GB-GOV-26-ISPF-IUK-2BC54TT-VALJQAG-JEZBCTQ",
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      "reporting_org_narrative":["DEPARTMENT FOR SCIENCE, INNOVATION AND TECHNOLOGY"],
      "title_narrative":["Mobile Power’s combined ‘battery-as-a-service’ and ‘vehicle-as-a-service’ business model pilot in rural Nigeria"],
      "description_narrative":["Transport in Nigeria is reliant on fuel that is expensive, often poor quality & reliant on government subsidy. Nigeria is Africa's biggest oil producing country but subsidises fuel resulting in a cost to the state.\n\nTechnical advances in electric vehicles in China and India has seen an explosion in cheap electric motorbikes and electric agricultural tricycles. Africa has the richest renewable energy resources on the planet in the form of solar and biomass. However the issue is power distribution not generation. An innovate battery technology is needed to unlock an electric vehicle revolution in rural Africa.\n\nMobile Power has designed and tested an energy distribution ecosystem that supplies affordable, clean power to poor households and enterprises in off-grid communities across West Africa using a pay-as-you-go smart battery rental system. The core innovation is in the cost-effective distribution of electricity off-grid. Mobile Power's batteries are charged at solar charging stations called \"MOPO Hubs\". The MOPO Batteries are then rented directly from the Hub or distributed through MOPO Agents using our smart battery technology. Our inbuilt security system prevents unauthorised activation of battery packs and unauthorised charging.\n\nThis project will focus on the rural Nigeria market providing clean affordable power to 75 villages by:\n\nREPLACING HOUSEHOLD GENERATORS: The MOPO Batteries provide electricity for households and micro-enterprises for phone charging, lights, TVs, radios and run other DC appliances such as freezers, sewing machines or agricultural machinery.\nIMPROVING RURAL TRANSPORT NETWORKS: The MOPO Batteries will power electric motorbikes and agricultural tricycles, using a battery swap model, renting out the motorbikes and batteries. This rental model makes it affordable to the market - cheaper than fossil-fuel alternatives.\nBIOMASS PILOT: Our MOPO Hubs will be powered mostly by solar but we will also charge the batteries using electricity generated from cassava waste through the PyroGenesys' PyroPower process. A site has already been identified in Oyo State as a pilot site. This will demonstrate our model with multiple renewable energy sources.\n\nWomen make up 60-80% of the Nigerian farmers and yet have significantly less access to motorised transport than men. This is associated with typical gender-related roles (greater responsibility for children), gender-related financial and economic situations (less access to money) and gender-related expectations about access to transport. Tearfund Nigeria will work in these 75 communities to provide Transforming Masculinities training that has been proven to improve gender equality and women's access to clean electricity and transport.","This project will focus on the rural Nigeria market providing clean affordable power to 75 villages by:\n\nREPLACING HOUSEHOLD GENERATORS: The MOPO Batteries provide electricity for households and micro-enterprises for phone charging, lights, TVs, radios and run other DC appliances such as freezers, sewing machines or agricultural machinery.\nIMPROVING RURAL TRANSPORT NETWORKS: The MOPO Batteries will power electric motorbikes and agricultural tricycles, using a battery swap model, renting out the motorbikes and batteries. This rental model makes it affordable to the market - cheaper than fossil-fuel alternatives.\nBIOMASS PILOT: Our MOPO Hubs will be powered mostly by solar but we will also charge the batteries using electricity generated from cassava waste through the PyroGenesys' PyroPower process. A site has already been identified in Oyo State as a pilot site. This will demonstrate our model with multiple renewable energy sources."],
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      "participating_org_narrative":["DEPARTMENT FOR SCIENCE, INNOVATION AND TECHNOLOGY","INNOVATE UK","INNOVATE UK","MOBILE POWER LTD"],
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      "contact_info_email":["enquiries@odamanagement.org"],
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      "default_lang":"en",
      "iati_identifier":"GB-GOV-26-ISPF-IUK-2BC54TT-4PCSDLJ-69HMYAD",
      "reporting_org_ref":"GB-GOV-26",
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      "title_narrative":["Cool Efficiency in West Africa"],
      "description_narrative":["Cooling infrastructure - fridges and freezers - are vital for commerce, home use and for preserving medication, vaccinations and food. Unlike many off-grid solar energy systems, cooling solutions must operate as close to 24/7 as possible to ensure there is little/no wastage and are therefore subject to 'over-specification', leading to high energy system costs. In addition, when using a solar system to power a fridge, there are multiple issues that can interrupt the power supply including faults on the solar, battery or load sides, tampering, incorrectly sized systems or low energy yield due to poor weather.\n\nThis project brings together a consortium of companies that seek to solve these issues so that project partners Focus Energy and Koolboks can offer a higher quality and easier to manage cooling services for customers in West Africa. To do this, the project builds on Inclusive Energy's remote monitoring system, Cloud Solar, and will seek to develop data modelling and machine learning techniques with both the live data and meta-data to deliver insights to cooling service providers and their customers. As well as reacting to faults and issues that have already occurred, the project will investigate and develop a solution to provide predictive maintenance for a range of issues including predicting the end of life of the batteries and predicting probable system issues such as lack of energy availability.\n\nThese issues can then be mitigated with sophisticated load shedding and controls via the Cloud Solar charge controller, along with alerts for the solar system owners and providers to advise on energy saving techniques. Therefore, the project proposes development of 3 parallel and integrated capabilities: (1) analyse, (2) forecast, (3) mitigate.\n\nInclusive Energy will work with Koolboks and, Focus Energy, and their West African customers, to ensure that the insights are relevant and that the user interface is fit for purpose.","Cooling infrastructure - fridges and freezers - are vital for commerce, home use and for preserving medication, vaccinations and food. Unlike many off-grid solar energy systems, cooling solutions must operate as close to 24/7 as possible to ensure there is little/no wastage and are therefore subject to 'over-specification', leading to high energy system costs. In addition, when using a solar system to power a fridge, there are multiple issues that can interrupt the power supply including faults on the solar, battery or load sides, tampering, incorrectly sized systems or low energy yield due to poor weather.\n\nThis project brings together a consortium of companies that seek to solve these issues so that project partners Focus Energy and Koolboks can offer a higher quality and easier to manage cooling services for customers in West Africa. To do this, the project builds on Inclusive Energy's remote monitoring system, Cloud Solar, and will seek to develop data modelling and machine learning techniques with both the live data and meta-data to deliver insights to cooling service providers and their customers. As well as reacting to faults and issues that have already occurred, the project will investigate and develop a solution to provide predictive maintenance for a range of issues including predicting the end of life of the batteries and predicting probable system issues such as lack of energy availability.\n\nThese issues can then be mitigated with sophisticated load shedding and controls via the Cloud Solar charge controller, along with alerts for the solar system owners and providers to advise on energy saving techniques. Therefore, the project proposes development of 3 parallel and integrated capabilities: (1) analyse, (2) forecast, (3) mitigate.\n\nInclusive Energy will work with Koolboks and, Focus Energy, and their West African customers, to ensure that the insights are relevant and that the user interface is fit for purpose."],
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      "participating_org_narrative":["DEPARTMENT FOR SCIENCE, INNOVATION AND TECHNOLOGY","INNOVATE UK","INNOVATE UK","INCLUSIVE ENERGY LTD"],
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      "title_narrative":["Development of a HIGH Capacity FLEXible Energy Storage System for Mini-Grid Application in Sub-Sahara Africa (High ESS)"],
      "description_narrative":["This collaborative project will develop and demonstrate a new technology (HIGHFLEX) that consists of a high-capacity flexible energy storage systems (HIGHFLEX ESS) integrated with innovative Battery Management System (BMS); Power Conditioning Unit (PCU) and intelligent monitoring and performance management system (Digital Twin) for mini grid applications in hot climates. The new technology is a portable and scalable system that facilitates:\n\nQuick development of mini grids in SSA.\nStorage of high-capacity energy generated from clean power sources during peak hours for off-peak utilisation.\nDelivering reliable and affordable power system through innovative solutions e.g., Digital twin, second life battery, real-time performance management and heat control system.\nThe project's vision is to rapidly accelerate access to affordable off-grid electricity from clean energy sources in SSA.\n\nThe project taps into the expanding global mini grid markets to offer affordable energy access for social mobility and inclusion in SSA communities not served by main power grids. HIGHFLEX will facilitate steady supply of electricity to rural and unserved areas and reduce energy access gaps between rural and urban communities in SSA where inaccessibility to affordable electricity is one of the main drivers of poverty to over 600 million people.\n\nThis project has chosen Nigeria as a case for deployment of HIGHFLEX technology because of its over 200 million population and majority of its rural population (48% of its total population) do not have access to affordable and low carbon electricity.\n\nThe project addresses barrier (access to electricity) to adoption of advancements in healthcare system; developing new technologies for agriculture, commerce, education; and entrepreneurship. HIGHFLEX makes it possible to deliver low carbon electricity to unlock sustainable economic development in SSA communities. This will empower women and children to lead more productive lives and have a better wellbeing. This will in turn encourage gender equality by learning digital and modern skills, which gives girls and women equal access to education, healthcare and enterprise.\n\nFurthermore, access to clean energy via mini grid will reduce crime and social unrest, since majority of the population would be productively engaged (Bloomberg 2020). This will lead to improved human security and cohesive communities and societies driven by mutual objective for sustainable development. HIGHFLEX will accelerate access to affordable and low carbon clean energy from bio-diesel, solar and wind (SDG 7), which lower environmental impacts from continued use of diesel-powered generators in Nigeria (world's leading generator consumer) to combat climate change effects (SDG 13).","This collaborative project will develop and demonstrate a new technology (HIGHFLEX) that consists of a high-capacity flexible energy storage systems (HIGHFLEX ESS) integrated with innovative Battery Management System (BMS); Power Conditioning Unit (PCU) and intelligent monitoring and performance management system (Digital Twin) for mini grid applications in hot climates. The new technology is a portable and scalable system that facilitates:\n\nQuick development of mini grids in SSA.\nStorage of high-capacity energy generated from clean power sources during peak hours for off-peak utilisation.\nDelivering reliable and affordable power system through innovative solutions e.g., Digital twin, second life battery, real-time performance management and heat control system.\nThe project's vision is to rapidly accelerate access to affordable off-grid electricity from clean energy sources in SSA.\n\nThe project taps into the expanding global mini grid markets to offer affordable energy access for social mobility and inclusion in SSA communities not served by main power grids. HIGHFLEX will facilitate steady supply of electricity to rural and unserved areas and reduce energy access gaps between rural and urban communities in SSA where inaccessibility to affordable electricity is one of the main drivers of poverty to over 600 million people.\n\nThis project has chosen Nigeria as a case for deployment of HIGHFLEX technology because of its over 200 million population and majority of its rural population (48% of its total population) do not have access to affordable and low carbon electricity.\n\nThe project addresses barrier (access to electricity) to adoption of advancements in healthcare system; developing new technologies for agriculture, commerce, education; and entrepreneurship. HIGHFLEX makes it possible to deliver low carbon electricity to unlock sustainable economic development in SSA communities. This will empower women and children to lead more productive lives and have a better wellbeing. This will in turn encourage gender equality by learning digital and modern skills, which gives girls and women equal access to education, healthcare and enterprise.\n\nFurthermore, access to clean energy via mini grid will reduce crime and social unrest, since majority of the population would be productively engaged (Bloomberg 2020). This will lead to improved human security and cohesive communities and societies driven by mutual objective for sustainable development. HIGHFLEX will accelerate access to affordable and low carbon clean energy from bio-diesel, solar and wind (SDG 7), which lower environmental impacts from continued use of diesel-powered generators in Nigeria (world's leading generator consumer) to combat climate change effects (SDG 13)."],
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      "default_currency":"GBP",
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      "iati_identifier":"GB-GOV-26-ISPF-IUK-2BC54TT-QEVK3CS-WVUE82D",
      "reporting_org_ref":"GB-GOV-26",
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      "reporting_org_narrative":["DEPARTMENT FOR SCIENCE, INNOVATION AND TECHNOLOGY"],
      "title_narrative":["Energy Intelligence: smart insights for affordable clean energy"],
      "description_narrative":["enee.io increases access to reliable and affordable energy by improving the life and efficiency of energy systems. Through plug-and-play sensors, mobile phone applications and web-based reporting, enee.io provides customers with the information they need to optimize energy usage, improve energy system health and safeguard backup power supplies.\n\nWe focus on helping people in developing countries who pay disproportionately high amounts for energy and suffering from pollution caused by diesel generators. enee.io is the fitness tracker for energy systems\n\nThe enee.io product is a low-cost plug-and-play intelligent energy monitoring system (iEMS). The iEMS consists of simple proprietary IoT sensors that are installed on each source of energy generation (solar, grid and diesel generators), storage (batteries) and consumption (residential or commercial & industrial premises). The collected data from the sensors is transmitted to the enee.io cloud based servers where data analysis is provided through our proprietary algorithms. Alerts, insights, and energy performance information is provided through our mobile and web applications.\n\nThe EC10 project will incorporate AI into our platform to combine data to allow users to fully optimise their energy system. These include how to increase energy availability and resilience; identification of maintenance required to extend asset life and improve performance and total energy cost analysis.\n\nThe iEMS is affordable and simple to use, representing a quantum leap as a data-driven enabler for households and businesses. We estimate savings of $1900 over 5 years for an $160 investment.\n\nThe iEMS will increase access for millions of people, to reliable, affordable, and clean energy by providing users with the information they need to optimise their energy system. Allowing them to 'right size' their energy assets and minimise operational costs. Ultimately reducing the reliance on costly and highly polluting diesel generators.\n\nThere are no other products available on the market that provide this combination of low-cost and cutting-edge technology","enee.io increases access to reliable and affordable energy by improving the life and efficiency of energy systems. Through plug-and-play sensors, mobile phone applications and web-based reporting, enee.io provides customers with the information they need to optimize energy usage, improve energy system health and safeguard backup power supplies.\n\nWe focus on helping people in developing countries who pay disproportionately high amounts for energy and suffering from pollution caused by diesel generators. enee.io is the fitness tracker for energy systems\n\nThe enee.io product is a low-cost plug-and-play intelligent energy monitoring system (iEMS). The iEMS consists of simple proprietary IoT sensors that are installed on each source of energy generation (solar, grid and diesel generators), storage (batteries) and consumption (residential or commercial & industrial premises). The collected data from the sensors is transmitted to the enee.io cloud based servers where data analysis is provided through our proprietary algorithms. Alerts, insights, and energy performance information is provided through our mobile and web applications.\n\nThe EC10 project will incorporate AI into our platform to combine data to allow users to fully optimise their energy system. These include how to increase energy availability and resilience; identification of maintenance required to extend asset life and improve performance and total energy cost analysis.\n\nThe iEMS is affordable and simple to use, representing a quantum leap as a data-driven enabler for households and businesses. We estimate savings of $1900 over 5 years for an $160 investment.\n\nThe iEMS will increase access for millions of people, to reliable, affordable, and clean energy by providing users with the information they need to optimise their energy system. Allowing them to 'right size' their energy assets and minimise operational costs. Ultimately reducing the reliance on costly and highly polluting diesel generators.\n\nThere are no other products available on the market that provide this combination of low-cost and cutting-edge technology"],
      "participating_org_ref":["GB-GOV-26","GB-GOV-32","GB-GOV-32","GB-COH-12189365"],
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      "iati_identifier":"GB-GOV-26-ISPF-IUK-2BC54TT-QEVK3CS-T9F3ND5",
      "reporting_org_ref":"GB-GOV-26",
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      "reporting_org_narrative":["DEPARTMENT FOR SCIENCE, INNOVATION AND TECHNOLOGY"],
      "title_narrative":["UNIQUE STEAM TO POWER GENERATOR SYSTEMS FOR DECENTRALISED THERMAL PLANTS AND SMALL WASTE INCINERATORS"],
      "description_narrative":["Nigeria and other ODA countries have limited and unreliable grid electricity supply which limits industrial growth and productivity. As a result of power intermittency and being offgrid, many industries are reliant on highly polluting costly diesel generators.\n\nHeliex Power manufactures a unique energy recovery technology based on twin-screw steam turbine, which is easy to retrofit, install and operate in industrial applications that produce waste heat. Saturated wet steam is common in these thermal processes, and industries benefit from a Heliex TST unit as its innovative expander technology is unique in working with saturated wet steam to generate power.\n\nCurrent version of Heliex has sold over 85 units across Europe, but requires reliable grid connectivity to operate, and so is unsuitable for ODA countries. The aim of this project is develop the electrical and control systems to allow offgrid/decentralised operation. Project developments include modifications to the electrical part of the unit, its control to the new system requirements, modifying steam components as identified during an engineering review, plus testing and certification of the equipment.\n\nThe solution offers an alternative to replace or reduce the power generated from diesel generators by industry with clean power generated by the Heliex unit. This cost-effective solution will also make it affordable for industrial customers to run their factories, especially with the removal of government diesel subsidies in Nigeria.\n\nLong term, Heliex with our local distributor in Nigeria, and in other ODA countries will further promote the installation of our equipment in industry significantly reducing carbon emissions.","Nigeria and other ODA countries have limited and unreliable grid electricity supply which limits industrial growth and productivity. As a result of power intermittency and being offgrid, many industries are reliant on highly polluting costly diesel generators.\n\nHeliex Power manufactures a unique energy recovery technology based on twin-screw steam turbine, which is easy to retrofit, install and operate in industrial applications that produce waste heat. Saturated wet steam is common in these thermal processes, and industries benefit from a Heliex TST unit as its innovative expander technology is unique in working with saturated wet steam to generate power.\n\nCurrent version of Heliex has sold over 85 units across Europe, but requires reliable grid connectivity to operate, and so is unsuitable for ODA countries. The aim of this project is develop the electrical and control systems to allow offgrid/decentralised operation. Project developments include modifications to the electrical part of the unit, its control to the new system requirements, modifying steam components as identified during an engineering review, plus testing and certification of the equipment.\n\nThe solution offers an alternative to replace or reduce the power generated from diesel generators by industry with clean power generated by the Heliex unit. This cost-effective solution will also make it affordable for industrial customers to run their factories, especially with the removal of government diesel subsidies in Nigeria.\n\nLong term, Heliex with our local distributor in Nigeria, and in other ODA countries will further promote the installation of our equipment in industry significantly reducing carbon emissions."],
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      "title_narrative":["Decentralised Energy Market Access And Co-finance (DEMA2C)"],
      "description_narrative":["UNSDG 7 targets to achieve universal energy access by 2030, unfortunately, based on the current trajectory there is still a gap and it may be growing. This is so given that globally, about 789 million people (597 million of whom are in sub-Saharan Africa SSA do not have access to energy. Moreover, limited coverage, high interconnection costs, high energy and unreliable supply are the primary challenges of using conventional grid connections for both rural and urban areas. This would have been the opportunity for decentralised grids e.g. solar to fill the gap, especially off-grid communities completely cut-off from the main grid, unfortunately, renewables intermittency and high upfront costs are strong deterrents, moreover, there is a low affinity for financing micro-grid generation because investors struggle to track their ROI. The current set-up/technologies supporting DERs particularly solar are yet to overcome the peak generation and peak consumption mismatch nor track ROI.\n\nThe DEMA2C consortium including Innovation Consultancy & Entrepreneurship (lead Partner), OtaskiES, Wave Insight, Moneda, MAD and Edo State Ministry of Infrastructure will be developing a technology that will enable the creation of a unified renewables-based grid that can supply on-demand green energy to off-grid communities. The technology will bridge the intermittency of the renewable delivering on-demand energy supply by optimising the link between generation and consumption without additional panels, high storage bank costs nor resorting to fossil-fuelled generators. It will also offer an energy-as-a-service model supported by an innovative payment platform with real-time ROI tracking for investors. This will stimulate investment into DERs to meet SDG 7 target by attracting investors that up to now have been shying away from investing in renewables-based micro grid. Successful deployment of DEMA2C will also enable prosumers are able to get an ROI 5X faster than when they would be just self-consuming their generated capacity. The clean energy DEMA2C enabled micro-grid will facilitate the avoidance of e1.04CO2kg/kW in emissions by replacing the use of generators.","UNSDG 7 targets to achieve universal energy access by 2030, unfortunately, based on the current trajectory there is still a gap and it may be growing. This is so given that globally, about 789 million people (597 million of whom are in sub-Saharan Africa SSA do not have access to energy. Moreover, limited coverage, high interconnection costs, high energy and unreliable supply are the primary challenges of using conventional grid connections for both rural and urban areas. This would have been the opportunity for decentralised grids e.g. solar to fill the gap, especially off-grid communities completely cut-off from the main grid, unfortunately, renewables intermittency and high upfront costs are strong deterrents, moreover, there is a low affinity for financing micro-grid generation because investors struggle to track their ROI. The current set-up/technologies supporting DERs particularly solar are yet to overcome the peak generation and peak consumption mismatch nor track ROI.\n\nThe DEMA2C consortium including Innovation Consultancy & Entrepreneurship (lead Partner), OtaskiES, Wave Insight, Moneda, MAD and Edo State Ministry of Infrastructure will be developing a technology that will enable the creation of a unified renewables-based grid that can supply on-demand green energy to off-grid communities. The technology will bridge the intermittency of the renewable delivering on-demand energy supply by optimising the link between generation and consumption without additional panels, high storage bank costs nor resorting to fossil-fuelled generators. It will also offer an energy-as-a-service model supported by an innovative payment platform with real-time ROI tracking for investors. This will stimulate investment into DERs to meet SDG 7 target by attracting investors that up to now have been shying away from investing in renewables-based micro grid. Successful deployment of DEMA2C will also enable prosumers are able to get an ROI 5X faster than when they would be just self-consuming their generated capacity. The clean energy DEMA2C enabled micro-grid will facilitate the avoidance of e1.04CO2kg/kW in emissions by replacing the use of generators."],
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      "title_narrative":["Ubuntu Energy"],
      "description_narrative":["This project aims to build community resilience in sub-Saharan Africa using Energy Ubuntu as a vehicle. It is akin to the 'Uber of Energy', democratising power sharing, transforming wasted energy into community power, and empowering communities to drive their development through sustainable means. It seeks to transform waste energy to community power for productive use. It addresses the developmental challenges of lack of modern and clean energy access, energy poverty and the harmful effects of global warming by improving access to clean and reliable electricity and deriving new business and economic change models, and building capabilities and contributing to SDGs 1,3,4,5,7,8,9,11,12,13.\n\nNigeria's electricity sector faces a problem. Its Distributed Energy Resources (DERs) are sub-optimally utilized and substantially wasteful, while it has deficient electricity access of ~60%. Solar photovoltaic (PV) systems are up to 400% oversized or lack the mechanism required to utilize their generation potential. Some PV systems are up to 80% used during the weekdays but are 20% utilized on weekends. Rural communities only utilize about 5% of the potential PV energy. Yet, 85 million Nigerians have no electricity access, costing Nigeria $26 billion annually for self-generation using carbon-intensive generators, causing excessive carbon emissions and energy waste because excess generation cannot be fed into the grid.\n\nTo address this challenge, Energy Ubuntu delivers a design and pilot of a smart grid (SG) peer-to-peer (P2P) energy-sharing framework that enables the distribution of excess generation potential to energy consumers to enhance PV capacity utilization and minimize energy waste while providing clean and affordable electricity. It improves PV usage by incentivizing individuals or businesses to sell energy to potential consumers in a peer-to-peer system. The consumers will be SMEs and homes near solar PV systems in rural and urban communities.\n\nThe project will be implemented over two years with critical deliverables of smart grid design, energy trading software, energy data mining and machine learning models for energy supply, deployment of smart circuitry in 200 sites, energy trade, and the evolution of new business models and community resilience initiatives. It will be implemented by four teams, Greenage Technologies (Technical lead), Nithio (Technical partner), Oxford EPG (research lead), and DRE Partners Ltd (formerly Kula Foods) (Admin Lead).\n\nSome co-benefits can be derived from Energy Ubuntu, including sustainable community development and carbon emission reduction leading to improved standards of living while significantly decreasing CO2 emissions.","This project aims to build community resilience in sub-Saharan Africa using Energy Ubuntu as a vehicle. It is akin to the 'Uber of Energy', democratising power sharing, transforming wasted energy into community power, and empowering communities to drive their development through sustainable means. It seeks to transform waste energy to community power for productive use. It addresses the developmental challenges of lack of modern and clean energy access, energy poverty and the harmful effects of global warming by improving access to clean and reliable electricity and deriving new business and economic change models, and building capabilities and contributing to SDGs 1,3,4,5,7,8,9,11,12,13.\n\nNigeria's electricity sector faces a problem. Its Distributed Energy Resources (DERs) are sub-optimally utilized and substantially wasteful, while it has deficient electricity access of ~60%. Solar photovoltaic (PV) systems are up to 400% oversized or lack the mechanism required to utilize their generation potential. Some PV systems are up to 80% used during the weekdays but are 20% utilized on weekends. Rural communities only utilize about 5% of the potential PV energy. Yet, 85 million Nigerians have no electricity access, costing Nigeria $26 billion annually for self-generation using carbon-intensive generators, causing excessive carbon emissions and energy waste because excess generation cannot be fed into the grid.\n\nTo address this challenge, Energy Ubuntu delivers a design and pilot of a smart grid (SG) peer-to-peer (P2P) energy-sharing framework that enables the distribution of excess generation potential to energy consumers to enhance PV capacity utilization and minimize energy waste while providing clean and affordable electricity. It improves PV usage by incentivizing individuals or businesses to sell energy to potential consumers in a peer-to-peer system. The consumers will be SMEs and homes near solar PV systems in rural and urban communities.\n\nThe project will be implemented over two years with critical deliverables of smart grid design, energy trading software, energy data mining and machine learning models for energy supply, deployment of smart circuitry in 200 sites, energy trade, and the evolution of new business models and community resilience initiatives. It will be implemented by four teams, Greenage Technologies (Technical lead), Nithio (Technical partner), Oxford EPG (research lead), and DRE Partners Ltd (formerly Kula Foods) (Admin Lead).\n\nSome co-benefits can be derived from Energy Ubuntu, including sustainable community development and carbon emission reduction leading to improved standards of living while significantly decreasing CO2 emissions."],
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