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Techno-Economic Assessment of Whey Protein-Based Plastic Production from a Co-Polymerization Process

机译:共聚合工艺生产基于乳清蛋白的塑料的技术经济评估

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摘要

Bio-based plastics, produced from natural and renewable sources, have been found to be good replacers to petroleum-based plastics. However, economic analyses have not been carried out for most of them, specifically those from whey. In this study, a techno-economic assessment of the industrial-scale production of plastics from whey protein is carried out considering two different scenarios: (1) low-cost dairy waste whey (DWP) and (2) purchased whey protein concentrate (WPC), as feedstocks, using SuperPro Designer software. Key economic indicators such as operating cost, capital investment, annual revenue, payback time, and return-on-investment (ROI), were analyzed. Sensitivity analyses of different parameters were performed to account for market fluctuations and other uncertainties, using Scenario 2 as the base case. Results showed that both scenarios have the capacity of producing over 3200 metric tons/year (t/y) (or 5.5 t/batch) of plastic. With the unit selling price of plastic set at $7,000/t, both the scenarios showed profitable outcomes with the plant’s payback time of 3.7 and 2.4 years, and ROI of 27.1% and 42.2%, for Scenario 1 and Scenario 2, respectively. Sensitivity analyses showed that the unit plastic selling price was the most sensitive parameter, followed by the amount of feedstock WPC, and the number of batches.
机译:由天然和可再生资源生产的生物基塑料被发现是石油基塑料的良好替代品。但是,尚未对其中大多数进行经济分析,尤其是对乳清的经济分析。在这项研究中,针对乳清蛋白的塑料工业规模生产进行了技术经济评估,其中考虑了两种不同的情况:(1)低成本乳制品废乳清(DWP)和(2)购买的乳清蛋白浓缩物(WPC) )作为原料,使用SuperPro Designer软件。分析了关键的经济指标,例如运营成本,资本投资,年收入,投资回收期和投资回报率(ROI)。以方案2为基础,对不同参数进行敏感性分析以解决市场波动和其他不确定性。结果表明,这两种方案均具有生产超过3200公吨/年(t / y)(或5.5吨/批次)塑料的能力。将塑料的单位价格定为$ 7,000 / t时,两种情况均显示出有利可图的结果,方案1和方案2的投资回收期分别为3.7年和2.4年,投资回报率分别为27.1%和42.2%。敏感性分析表明,单位塑料销售价格是最敏感的参数,其次是原料WPC的数量和批次数量。

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