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Enzyme-based Process for Sustainable fertiliser from poultry manure

Enzyme-based Process for Sustainable fertiliser from poultry manure
家禽粪便可持续肥料的酶工艺
批准号:
10065995
负责人:
金额:
$10.44万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2023
资助国家:
英国
项目状态:
已结题
起止时间:
2023 至 --

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中文摘要
翻译
通货膨胀、乌克兰战争、燃料和天然气供应短缺、英国脱欧、食品安全和气候变化,我们通过增强一种全新的正在申请专利的基于生物技术的工艺来应对这些挑战,该工艺可以有效改进当前的有机肥料制造工艺,减少对天然气的依赖,并以更低的成本提高粮食生产。在这个应用程序中,我们将解释为什么以及如何酶技术可以做到它声称提供。这些说法将由我们的合作研究机构——生物可再生能源发展中心(BDC)进行测试。英国顶级农业大学哈珀亚当斯大学(HAU, LOHAS Recycling的分包商)将进行生命周期评估(LCA),以了解基于酶的过程的可持续性。有机农业废弃物,如畜禽粪便,含有对植物生长有价值的营养物质,特别是禽畜粪便,其营养物质的平衡混合,是制造有机肥料的完美原料,适用于各种作物和叶类植物和蔬菜。然而,如果没有有效和可持续的技术和工艺来管理和处理家禽,生物基材料会带来负面的环境影响,如氨排放、温室气体排放和河流污染。之前的工作是对来自英格兰和威尔士中部随机选择的农场的家禽粪便进行处理,包括肉鸡农场和鸡蛋农场。经scitech检测酶基工艺产出物的安全性(无致病菌),并经NRM比较前后的营养成分和有机物含量。经过12个月的自筹资金的测试和试验,支持了我们的申请和处理动物副产品:禽粪的工艺,已成功获得动植物卫生机构的新方法批准。我们还与HAU就西兰花生长试验开展了一个商业项目,以测试我们的新型肥料。结果是积极的:化学形态稳定,有机质丰富,田间施用后无臭(因为充分发酵),与合成肥料配合使用效果良好,氮肥利用率最高,但保持产量。这一呼吁为英国科学研究和创新基地合作应对这些挑战提供了一个机会。我们的目标是将有问题的粪肥原料的挑战转化为独特的酶技术,使英国有机肥料制造业更具弹性和可持续性。
英文摘要
Inflation, Ukraine war, the shortage of fuel and gas supply, Brexit, food security and climate change, we address these challenges by enhancing a brand new patent pending biotechnology based process that can improve the current organic fertiliser manufacturing process effectively, reduce the reliance on natural gas, and improve food production with lower cost.In this application, we will explain why and how the enzyme technology could do what it claims to deliver. The claims will be tested by our partner research organisation: The Biorenewables Development Centre (BDC). A Lifecycle Assessment (LCA) will be carried out by top UK Agricultural University: Harper Adams University (HAU, subcontractor to LOHAS Recycling) to see the sustainability of the enzyme-based process.Organic agricultural waste, such as livestock manure, contains valuable nutrients for plants' growth, especially poultry manure, its balanced blend of nutrients, as a perfect feedstock to manufacture organic-based fertiliser, that is suitable for a wide range of crops and leafy plants and vegetables. However, without the effective and sustainable technology and process to manage and treat the poultry, the bio-based material brings negative environmental impacts, such as ammonia emission, GHG emission and river pollution.Previous work has been done on processing the poultry manure from a random choice of farms in England and Mid Wales, including broiler farms and egg farms. The output from the enzyme-based process has been tested for its safety (free from pathogens) by Sci-Tech, and its nutrient content and organic matter comparing before and after the process by NRM. The 12 months self-funded tests and trials have supported our application and our process in treating animal by product: poultry manure, has been successfully approved by Animal and Plant Health Agent as a new method.We have also carried out a commercial project with HAU on the broccoli growth trials to test our novel fertiliser. The results are positive: stable chemical form, rich in organic matter, odourless after field application (because it is fully fermented), perform well in combination with synthetic fertiliser for the best Nitrogen Usage Efficiency, but maintaining the yield.This call offers an opportunity for the UK science research and innovation base collaborate to address the challenges. We aim to turn the challenge of problematic manure feedstock into golden opportunities with the unique enzyme technology for a more resilient and sustainable UK organic-based fertiliser manufacturing industry.
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