Bugosen Sergio, Mantilla Ivan D, Tarazona-Vasquez Francisco
Department of Chemical Engineering, Universidad de Ingenieria y Tecnologia - UTEC, Jr. Medrano Silva 165, Lima 04, Peru.
Bryan Research & Engineering, LLC, 3131 Briarcrest Dr., Bryan, TX, 77802, USA.
Heliyon. 2020 Dec 23;6(12):e05778. doi: 10.1016/j.heliyon.2020.e05778. eCollection 2020 Dec.
The purpose of this research is to demonstrate through a techno-economic assessment that aniline can be industrially produced using a profitable and inherently safer process than the ones currently employed. The aniline production process was designed using process simulation software. From this, the mass and energy balances were determined, the equipment sizing was performed and the net present value (NPV) was calculated to be USD 93.5 million. Additionally, a heat integration analysis was carried out in order to improve process profitability, obtaining a new NPV of USD 97.5 million. The economic sensitivity analysis showed that the process could withstand fixed capital investment changes of up to +89%, weighted average cost of capital changes between 16-24% and a decrease in cyclohexylamine demand of up to 44%. The conceptual design is still profitable when aniline price is varied in a range of 1224-1840 $/t and phenol cost in a range of 815-1178 $/t.
本研究的目的是通过技术经济评估证明,与目前采用的工艺相比,苯胺可以采用一种更具盈利性且本质上更安全的工艺进行工业化生产。苯胺生产工艺使用过程模拟软件进行设计。据此确定了质量和能量平衡,进行了设备选型,并计算出净现值(NPV)为9350万美元。此外,还进行了热集成分析以提高工艺盈利能力,新的净现值为9750万美元。经济敏感性分析表明,该工艺能够承受高达+89%的固定资本投资变化、16 - 24%的加权平均资本成本变化以及高达44%的环己胺需求下降。当苯胺价格在1224 - 1840美元/吨范围内变化且苯酚成本在815 - 1178美元/吨范围内变化时,概念设计仍具盈利性。