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[{"model": "core.projectfund", "pk": 27548, "fields": {"project": 4745, "organisation": 4, "amount": 100007, "start_date": "2012-03-01", "end_date": "2013-08-30", "raw_data": 43422}}]
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[{"model": "core.projectfund", "pk": 19660, "fields": {"project": 4745, "organisation": 4, "amount": 100007, "start_date": "2012-03-01", "end_date": "2013-08-30", "raw_data": 21925}}]
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[{"model": "core.projectorganisation", "pk": 74861, "fields": {"project": 4745, "organisation": 6022, "role": "LEAD_ORG"}}]
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{"title": ["", "Novel Hydrolysis Stage for High Throughput Anaerobic Digestion"], "description": ["", "\nCurrent commercial Anaerobic Digestion (AD) plants are inefficient, low-tech and large scale,\nonly capable of reliable operation within a very narrow range of operating conditions. New\nGeneration Biogas is exploiting research by North Wyke Research into AD and modern\nprocess control technology to develop a high throughput Anaerobic Digester (HTAD). A\nsignificant increase in biogas productivity will radically change the economics of small\nAnaerobic Digesters and realise an unfulfilled need for Single Farm AD plants and cost\neffective sewage processing by Water Companies. Research strongly indicates that a very\nsignificant increase in biogas productivity can be achieved. A payback period for most\nfeedstocks of the order of 5 years or less is predicted, significantly less for higher energy\nfeedstocks.\nAD takes place primarily in 2 phases: Hydrolysis during which the feedstock is broken down\ninto simpler soluble organic compounds and Methanogenesis during which the hydrolysed\nfeedstock is decomposed and synthesised to produce biogas. Recent laboratory research\nindicates that significant improvements can be made in the performance of Hydrolysis in\nsmall reactors on a range of feedstocks through the use of thermal, mechanical and enzyme\npre-treatments. The potential gain in performance arise from operation at lower temperatures\nleading to lower plant operating costs and at higher rates leading to reduced reactor size and\nreduced capital costs. These when employed with enhanced methanogenesis will lead to\nsignificant gains in biogas productivity. The feasibility study will build on that laboratory\nresearch and aim to demonstrate that the Advanced Hydrolysis results can be reproduced at an\nindustrial scale and applied within the environment of a highly controlled, high throughput\nreactor.\nA range of pre-treatments will be tested with a variety of feedstocks. The results will be\ndeveloped and then applied in a commercial High Throughput Anaerobic Digester.\n\n"], "extra_text": ["", "\n\n\n\n"], "status": ["", "Closed"]}
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{"external_links": [17695]}
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[{"model": "core.project", "pk": 4745, "fields": {"owner": null, "is_locked": false, "coped_id": "923edc69-9510-4e39-b0ac-c7c81c20653d", "title": "", "description": "", "extra_text": "", "status": "", "start": null, "end": null, "raw_data": 21911, "created": "2022-04-11T01:39:15.418Z", "modified": "2022-04-11T01:39:15.418Z", "external_links": []}}]
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