Economic supply chain modelling of industrial insect production in the Netherlands

M. Leipertz, H. Hogeveen, H.W. Saatkamp
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Abstract

Defatted larvae meal (dLM), specifically from black soldier flies, could help overcome the animal protein gap. As insect production is an emerging sector, current economic research is scarce and very diverse. Thus, the aim of this research was to develop a simulation model that enables the analysis of full industrial scale costs of producing dLM and to provide insight in the distribution of these costs in the insect supply chain. The deterministic supply chain model is built on three modules, technical, transition and economic module, which all follow a previously defined supply chain structure and allow to extract quantity and price information for intermediate or final products. The model was parameterized and checked for plausibility in multiple consultation rounds with the INSECTFEED consortium and business partners. Additionally, model behaviour was checked with scenario, sensitivity, and break-even price analyses. In the default situation 5.57 tDM raw substrate and 26.7 million neonates are required to produce 1 tDM dLM for a price of €5,116/tDM. Most costs are added in the raw substrate delivery (€1,952/tDM) and production and collection (€821/tDM) step. Important cost factors are the raw substrate (€1,939/tDM) and building and inventory (€1,459/tDM). Parameters with high relative response rate towards the price of dLM are the feed conversion rate, dry matter percentage of larvae, raw substrate price, larvae density, labour wage and growth rate. To reach break-even prices for substituting fish meal with alive grown larvae (AGL) (€1,318/tDM AGL), improving production parameters is not sufficient. Just changing prices of raw substrate to −€78/tDM or frass to €1,175/tDM would enable a profitable operation. However, these are not deemed as realistic in mass production. Although there is some insecurity in data, the model results are the most realistic representation of industrial scale production amounts and costs.
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荷兰工业昆虫生产的经济供应链模型
脱脂幼虫粉(dLM),特别是来自黑兵蝇的脱脂幼虫粉(dLM),可以帮助克服动物蛋白缺口。由于昆虫生产是一个新兴行业,目前的经济研究很少,而且非常多样化。因此,本研究旨在开发一个模拟模型,以分析生产 dLM 的全部工业规模成本,并深入了解这些成本在昆虫供应链中的分布情况。确定性供应链模型建立在三个模块上,即技术模块、过渡模块和经济模块,它们都遵循先前定义的供应链结构,可以提取中间产品或最终产品的数量和价格信息。在与 INSECTFEED 财团和商业伙伴的多轮磋商中,对模型进行了参数化并检查其合理性。此外,还通过情景分析、敏感性分析和盈亏平衡价格分析对模型行为进行了检查。在默认情况下,生产 1 tDM dLM 需要 5.57 tDM 原料基质和 2,670 万新生儿,价格为 5,116 欧元/tDM。大部分成本增加在原料基质的运送(1952 欧元/tDM)和生产与收集(821 欧元/tDM)环节。重要的成本因素是原料基质(1939 欧元/tDM)以及建筑和库存(1459 欧元/tDM)。饲料转化率、幼虫干物质百分比、原料基质价格、幼虫密度、劳动力工资和生长率等参数对 dLM 价格的相对响应率较高。要达到用活体幼虫(AGL)替代鱼粉的盈亏平衡价格(1,318 欧元/tDM AGL),仅改善生产参数是不够的。只需将原料基质的价格降至 -78欧元/tDM,或将鱼粉的价格降至 1,175 欧元/tDM,就能实现盈利。然而,这些在大规模生产中并不现实。尽管数据存在一些不确定性,但模型结果最真实地反映了工业规模生产的数量和成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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