Techno-Economic Modelling of Bioclarified Water Recovery from Petroleum Wastewater Using ASPEN Software and Box-Behnken Design

Augustine K. Osoh, Okereke E. Aru, gwe J. Eze, O. Adeyi, Okolo B. Ibezim, J. A. Adeyi, K. Nwosu‐Obieogu, Oke E. Olusola
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Abstract

Application and efficiency of bio-coagulants for petroleum wastewater biocoagulation, flocculation, and sedimentation (bioclarification) are still confined to laboratory proof-of-concept practice. The scale-up process design of bio-clarified water recovery from petroleum wastewater has been a major research lacuna. This paper presents ASPEN Base Case Scale-Up Simulation (BCSUS) using optimum laboratory experimental data and techno-economic predictive models for bioclarified water production from petroleum wastewater. The BCSUS, process design, and economics were performed in the ASPEN Batch Process Developer V10 environment. Predictive models for predicting and optimizing techno-economic parameters such as return on investment (ROI), payback time (PBT), and production rate (PR) were achieved in RSM via the Box-Behnken Design (BBD) technique of Design Expert V13. The base case techno-economic model gave batch size, annual production cost, Total Capital Investment (TCI), PBT, and ROI of 406kg, $9195, $631484, 5.18 years, and 17%, respectively, at the selling price of 2 $0.225. The regression models gave R values of 0.9984 for ROI and 0.9920 for PBT, while the production rate was 0.8867. This study shows that a petroleum wastewater bioclarification scale-up design is feasible.
利用 ASPEN 软件和箱式贝肯设计建立石油废水生物净化水回收技术经济模型
生物混凝剂在石油废水生物混凝、絮凝和沉淀(生物澄清)中的应用和效率仍局限于实验室概念验证实践。从石油废水中回收生物澄清水的放大工艺设计一直是一个重大研究空白。本文采用最佳实验室实验数据和技术经济预测模型,对从石油废水中生产生物澄清水进行 ASPEN 基本案例放大模拟(BCSUS)。BCSUS、工艺设计和经济学在 ASPEN Batch Process Developer V10 环境中进行。用于预测和优化投资回报率 (ROI)、投资回收期 (PBT) 和生产率 (PR) 等技术经济参数的预测模型是通过 Design Expert V13 的盒式贝肯设计 (BBD) 技术在 RSM 中实现的。在销售价格为 0.225 美元的情况下,基础技术经济模型得出的批量规模、年生产成本、总资本投资 (TCI)、投资回收期 (PBT) 和投资回报率分别为 406 千克、9195 美元、631484 美元、5.18 年和 17%。投资回报率和 PBT 的回归模型 R 值分别为 0.9984 和 0.9920,而生产率为 0.8867。这项研究表明,石油废水生物放大设计是可行的。
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