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Preliminary Study on Sustainable NPK Slow-Release Fertilizers Based on Byproducts and Leftovers: A Design-of-Experiment Approach

机译:基于副产品和残羹剩饭的可持续NPK缓释肥的初步研究:实验方法

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In this study, an organic nitrogen-based coating was developed based on black soldier fly (BSF) prepupae reared on poultry dejections and deposited on ceramic lightweight aggregates (LWAs), containing phosphorous (P) and potassium (K) from agroresidues, leading to a complete nitrogen, phosphorus, and potassium (NPK) fertilizer. To obtain a resistant coating with good adhesion to LWAs, different plasticizing agents were tested (e.g., glycerol, cellulose, and polyethylene glycol). The coating formulation was optimized through a design-of-experiment (DoE) approach to correlate the effect of each mixture component on the coating’s performance. BSF biomass was characterized through chemical and thermal routes, as well as the final coated LWAs, confirming their general agreement to fertilizer’s requirements. Release tests in static conditions highlighted the barrier action of the coating, preventing uncontrolled release of potassium and phosphorus contained in the LWAs as well as the release of nitrogen after 21 days (near to 20%). Germination and growth tests indicated a valuable increase of the growth index, whereas the germination process is limited by the coating barrier effect. This work proposes a new product in the field of slow-release fertilizers designed by rational methodologies and innovative materials based on waste valorization, fully in agreement with a circular economy perspective.
机译:在这项研究中,基于饲养的黑色士兵飞行(BSF)Prepupae开发了有机氮涂层,并沉积在陶瓷轻质聚集体(LWAS)上,含有磷(P)和来自Agrorateidues的钾(K),导致完全氮,磷和钾(NPK)肥料。为了获得具有良好粘附的耐粘附涂层,测试了不同的增塑剂(例如,甘油,纤维素和聚乙二醇)。通过实验设计(DOE)方法优化涂料制剂,以将每种混合物组分的作用与涂层的性能相关联。 BSF生物质的特点是化学和热线以及最终涂层的LWA,确认其对肥料的要求。静态条件下的释放试验强调了涂层的阻隔作用,防止了在LWAs中包含的钾和磷的不受控制的释放以及21天后释放氮(近20%)。萌发和生长试验表明了生长指标的有价值增加,而萌发过程受涂层屏障效应的限制。这项工作提出了一种新产品,通过理性方法和基于废物价的基于废物储存,完全与循环经济的观点完全一致。

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