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[{"model": "core.projectfund", "pk": 30614, "fields": {"project": 7838, "organisation": 4, "amount": 250012, "start_date": "2011-09-30", "end_date": "2013-10-31", "raw_data": 48964}}]
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[{"model": "core.projectfund", "pk": 22753, "fields": {"project": 7838, "organisation": 4, "amount": 250012, "start_date": "2011-09-30", "end_date": "2013-10-31", "raw_data": 36108}}]
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[{"model": "core.projectorganisation", "pk": 86190, "fields": {"project": 7838, "organisation": 2347, "role": "PARTICIPANT_ORG"}}]
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[{"model": "core.projectorganisation", "pk": 86189, "fields": {"project": 7838, "organisation": 2347, "role": "LEAD_ORG"}}]
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[{"model": "core.projectperson", "pk": 53374, "fields": {"project": 7838, "person": 10748, "role": "PM_PER"}}]
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{"title": ["", "Microbial Fuel Cell Development and Optimisation"], "description": ["", "\nThe objective of this project is to develop a market ready microbial fuel cell (MFC) which\nwill enable food & drink and other processing industries to produce biogas from the organic\nfraction of its wastewater for effective fuel switching from fossil gas to renewable biogas. The\nMFC therefore; produces hydrogen biogas to replace natural gas for single point emitters,\nsignificantly reduces the chemical oxygen demand (COD) in waste water and produces\nnitrogen rich microbial biomass as a substitute for mineral fertiliser. This project will build on\nthe successful outputs of a recent TSB funded feasibility study that transferred microbial fuel\ncell (MFC) technology from the laboratory (18L bench scale) to an industrial demonstration\nproject (1,000L unit). The current 1000L MFC reduces 70% of organic compounds in solution\ninto hydrogen biogas and delivers a reduction of 66% in nitrates (converting slurry to grey\nwater) per day. The deliverable for this project will be a 25,000L unit - similar in size to a\nstandard 40 foot lorry container - that can operate on an industrial level. To put this into\ncontext, it is anticipated that a dairy farm with 200 cows would require three of these units to\neffectively process all of its waste. Lindhurst will utilise its engineering expertise and work\nwith the University of Nottingham (through the KTP scheme) with Arla Food UK plc as an\ninitial route to market. Arla has a 44% share of the fresh milk and cream market in the UK -\noperating 8 dairies. One site, producing 7.5mL of milk per week operates a 2MW gas boiler.\nThe milk process water alone contains 4MW of energy. Thus there is a potential for Arla to\nproduce 2.8MW of biogas using MFCs from its effluent, enabling fuel switching an annual\ncarbon saving of 3,000t for this site alone. MFC is applicable across multiple industries and\ntherefore provides the UK with a huge potential for energy and carbon saving and for the\ndevelopment of a novel technology with global potential.\n\n"], "extra_text": ["", "\n\n\n\n"], "status": ["", "Closed"]}
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{"external_links": [28267]}
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[{"model": "core.project", "pk": 7838, "fields": {"owner": null, "is_locked": false, "coped_id": "d5b1af92-9dee-47c8-a0ab-a6c6cbe799a8", "title": "", "description": "", "extra_text": "", "status": "", "start": null, "end": null, "raw_data": 36092, "created": "2022-04-11T01:46:34.494Z", "modified": "2022-04-11T01:46:34.494Z", "external_links": []}}]
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