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Process and cost modeling of lactic acid recovery from fermentation broths by membrane-based process

机译:基于膜工艺从发酵液中回收乳酸的工艺和成本模型

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Process and cost models for lactic acid recovery from fermentation broths at an annual capacity of 100,000 kg were developed as a research tool to evaluate an alternate process technology. The models were developed using SuperPro (R) Designer software by gathering the optimized data from the laboratory scale experiments. Sizing of unit operations, chemicals and utility consumptions, and estimation of capital and operating costs with the cost breakdown analysis were acquired from the simulation. A membrane-based process design was proposed in this study. The processes mainly consisted of microfiltration for cell removal, a series of ultrafiltration for eliminating proteins, and the integrated reverse osmosis systems to recover, pre-concentrate, and pre-purify lactic acid. Among the 3 proposed process designs, the in-parallel membrane-based process exhibited the highest lactic acid recovery yield, while the purity remained sufficiently high compared to commercial-grade products. The number of unit operations was found to be responsible for high production cost, in terms of both investment and operating costs. Omitting centrifugation and ultrafiltration at a 30-kDa molecular weight cut-off and use of the in parallel integrated brackish water reverse-osmosis membrane units could lower operating costs by 23-31% for various fermentation broths that entered the downstream processing units.
机译:已开发出年产能为10万公斤的从发酵液中回收乳酸的工艺和成本模型,作为评估替代工艺技术的研究工具。通过从实验室规模的实验中收集优化的数据,使用SuperPro Designer软件开发了模型。从模拟中获得了单位运营,化学品和公用事业消耗的规模,以及通过成本细分分析进行的资本和运营成本估算。在这项研究中提出了基于膜的工艺设计。该过程主要包括用于细胞去除的微滤,用于去除蛋白质的一系列超滤以及用于回收,预浓缩和预纯化乳酸的集成反渗透系统。在提出的3种工艺设计中,基于平行膜的工艺显示出最高的乳酸回收率,而与工业级产品相比,纯度仍保持足够高。从投资和运营成本两方面来看,单位运营的数量是造成高生产成本的原因。在分子量截断值30kDa时省略离心和超滤,并使用并行集成的微咸水反渗透膜装置,对于进入下游加工装置的各种发酵液,可将运行成本降低23-31%。

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