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Aspen Plus 过程模拟模型:从厌氧生物洗涤器中的 VOC 排放物中生产沼气。

Aspen Plus process-simulation model: Producing biogas from VOC emissions in an anaerobic bioscrubber.

机构信息

Research Group on Environmental Engineering (GI(2)AM), Department of Chemical Engineering, Universitat de València, Av. de la Universitat s/n, 46100, Burjassot, Spain.

Research Group on Environmental Engineering (GI(2)AM), Department of Chemical Engineering, Universitat de València, Av. de la Universitat s/n, 46100, Burjassot, Spain.

出版信息

J Environ Manage. 2018 May 1;213:530-540. doi: 10.1016/j.jenvman.2018.02.040. Epub 2018 Feb 21.

Abstract

A process-simulation model for a novel process consisted of an anaerobic bioscrubber was developed in Aspen Plus. A novel approach was performed to implement the anaerobic reactor in the simulation, enabling it to be connected to the scrubber. The model was calibrated and validated using data from an industrial prototype that converted air emissions polluted with volatile organic compounds with an average daily concentration of 1129 mgC Nm into bioenergy for more than one year. The scrubber, which showed a removal efficiency within 83-93%, was successfully predicted with an average absolute relative error of 5.2 ± 0.08% using an average height-to-theoretical-plate value of 1.05 ± 0.08 m and 1.37 ± 0.11 m for each of the two commercial packing materials used, respectively. The anaerobic reactor, which treated up to 24 kg of chemical oxygen demand m d with efficiencies of about 93%, was accurately simulated, both in effluent-stream characteristics and in the biogas stream. For example, the average absolute error between the experimental biogas production and the model values was 19.6 ± 18.9%. The model proved its capability as a predictive tool and an aid in design, resulting in savings of time and money for practitioners. In addition, the approach proposed can be expanded to other bioprocesses that include unit operations.

摘要

开发了一种新型厌氧生物洗涤器过程模拟模型,该模型使用 Aspen Plus 实现。采用了一种新方法将厌氧反应器集成到模拟中,使其能够与洗涤器连接。该模型使用经过一年以上时间,将污染挥发性有机化合物的空气排放量转化为生物能源的工业原型数据进行了校准和验证,其平均日浓度为 1129mgC Nm。洗涤器的去除效率在 83-93%之间,使用平均理论板高度为 1.05±0.08m 和分别为 1.37±0.11m 的两种商业包装材料,成功预测了其去除效率,平均绝对相对误差为 5.2±0.08%。处理能力高达 24kg 化学需氧量 m d 的厌氧反应器,效率约为 93%,其流出物特性和沼气流都得到了准确模拟。例如,实验沼气产量和模型值之间的平均绝对误差为 19.6±18.9%。该模型证明了其作为预测工具和设计辅助的能力,为从业者节省了时间和资金。此外,所提出的方法可以扩展到其他包括单元操作的生物过程。

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