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Simulation for the Performance and Economic Evaluation of Conventional Activated Sludge Process Replacing by Sequencing Batch Reactor Technology in a Petroleum Refinery Wastewater Treatment Plant

机译:炼油厂污水处理厂中按顺序反应堆技术替代常规活性污泥工艺的性能和经济评价模拟

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Treatment of the petroleum refinery wastewater containing complex chemicals using biological processes is usually challenging because of the inhibition and/or toxicity of these matters when they serve as microbial substrates. In addition, performance modeling and cost evaluation of processes are essential for designing, construction, and forecasting future economic requirements of the petroleum refinery wastewater treatment plants (PRWWTPs). In this study, the performance and economics of conventional activated sludge (CAS) process replacing by sequencing batch reactor (SBR) technology in a two train PRWWTP were evaluated using simulation. The final treated effluent characteristics for the PRWWTPs containing CAS + CAS and SBR + CAS processes under steady state conditions were studied and evolution of the main parameters of the final effluent during the 30 days of simulation for these plants were investigated. Finally, the total project construction, operation labor, maintenance, material, chemical, energy, and amortization costs of these plants were estimated and compared. Results demonstrated that the project construction cost of PRWWTP containing CAS + CAS processes was lower than that of PRWWTP containing SBR + CAS processes and the energy and amortization costs for both plants were higher in comparison with the operation, maintenance, material, and chemical costs. Note that this study is a computer simulation and drawing general conclusions only on the basis of computer simulation may be insufficient.
机译:使用生物过程处理包含复杂化学物质的炼油厂废水通常具有挑战性,因为这些物质在用作微生物底物时会受到抑制和/或毒性。此外,过程的性能建模和成本评估对于设计,建造和预测炼油厂废水处理厂(PRWWTP)的未来经济需求至关重要。在这项研究中,使用模拟方法评估了在两列火车PRWWTP中用顺序分批反应器(SBR)技术代替常规活性污泥(CAS)工艺的性能和经济性。研究了稳态条件下含有CAS + CAS和SBR + CAS工艺的PRWWTP的最终处理废水特性,并研究了这些植物在30天模拟过程中最终废水主要参数的演变。最后,估算并比较了这些工厂的总项目建设,运营人工,维护,材料,化学,能源和摊销成本。结果表明,包含CAS + CAS流程的PRWWTP的项目建设成本低于包含SBR + CAS流程的PRWWTP的项目建设成本,与运行,维护,材料和化学成本相比,两家工厂的能源和摊销成本均较高。注意,本研究是计算机仿真,仅在计算机仿真的基础上得出一般结论可能是不够的。

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