用于研究废水处理过程中生物过程的友好型生物反应器模拟器(BioReSIM)

R. Gil, María Isabel Pariente Castillo, I. Vasiliadou, Iván Rodríguez Hernández, F. M. Castillejo, J. A. Hernandez
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引用次数: 3

摘要

废水处理的生物过程本质上是动态系统,因为进水废水流速、浓度组成和相关微生物的适应行为都有很大变化。此外,当进水或操作条件发生变化时,污泥停留时间(SRT)是了解生物反应器性能的关键因素。由于SRT通常在10-30天的范围内,生物反应器的性能需要在定期的实验室演示中进行长时间的监测,限制了在实验实验室实践中可以获得的知识。为了克服这一缺陷,数学模型和计算机模拟是描述生化过程和预测生物反应器在不同工作条件和进水废水组成变化下的整体性能的有用工具。该模型的数学解可能是困难的,因为可以考虑许多生化过程。此外,生物反应器描述(质量平衡等)需要用与代数表达式相关的偏微分方程或/和常微分方程表示的模型,这需要复杂的计算代码来获得数值解。可以使用不同类型的数学建模软件,从能够自由定义模型的大自由度模拟器(如AQUASIM)到封闭的预定义模型结构程序(如BIOWIN)。第一种方法通常需要很长的学习曲线,而第二种方法对于特定的废水处理系统来说可能过于死板。作为替代方案,我们提出了生物反应器SIM模拟器(BioReSIM),这是一个MATLAB代码,用于模拟顺序间歇反应器(SBR)和旋转生物接触器(RBC)作为废水处理的悬浮和附着生物质的生物系统。该BioReSIM允许通过友好的图形用户界面评估简单和复杂的动力学生物模型,以及生物反应器的操作条件,避免开发复杂的代码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Friendly-Biological Reactor SIMulator (BioReSIM) for studying biological processes in wastewater treatment processes
Biological processes for wastewater treatments are inherently dynamic systems because of the large variations in the influent wastewater flow rate, concentration composition and the adaptive behavior of the involved microorganisms. Moreover, the sludge retention time (SRT) is a critical factor to understand the bioreactor performances when changes in the influent or in the operation conditions take place. Since SRT are usually in the range of 10-30 days, the performance of biological reactors needs a long time to be monitored in a regular laboratory demonstration, limiting the knowledge that can be obtained in the experimental lab practice. In order to overcome this lack, mathematical models and computer simulations are useful tools to describe biochemical processes and predict the overall performance of bioreactors under different working operation conditions and variations of the inlet wastewater composition. The mathematical solution of the model could be difficult as numerous biochemical processes can be considered. Additionally, biological reactors description (mass balance, etc.) needs models represented by partial or/and ordinary differential equations associated to algebraic expressions, that require complex computational codes to obtain the numerical solutions. Different kind of software for mathematical modeling can be used, from large degree of freedom simulators capable of free models definition (as AQUASIM), to closed predefined model structure programs (as BIOWIN). The first ones usually require long learning curves, whereas the second ones could be excessively rigid for specific wastewater treatment systems. As alternative, we present Bio logical Re actor SIM ulator (BioReSIM), a MATLAB code for the simulation of sequencing batch reactors (SBR) and rotating biological contactors (RBC) as biological systems of suspended and attached biomass for wastewater treatment, respectively. This BioReSIM allows the evaluation of simple and complex kinetic biological models, as well as operational conditions of the bioreactors through a friendly and graphic user interface, avoiding the development of complex codes.
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来源期刊
Attic-Revista d Innovacio Educativa
Attic-Revista d Innovacio Educativa EDUCATION & EDUCATIONAL RESEARCH-
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