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非饱和土壤中生物降解的在线估计

On-line estimation of biodegradation in an unsaturated soil.

作者信息

Schoefs O, Perrier M, Dochain D, Samson R

机构信息

Chemical Engineering Department, University of Technology of Compiègne, PO Box 20.529, 60205 Compiègne Cedex, France.

出版信息

Bioprocess Biosyst Eng. 2003 Nov;26(1):37-48. doi: 10.1007/s00449-003-0336-y. Epub 2003 Sep 25.

Abstract

The objective of this study was to develop a model-based estimator of biodegradation in unsaturated soil. This would allow real-time assessment of the efficiency of treatment bioprocesses, such as bioventilation and biopile, and eventually permit optimization through the implementation of control strategies. Based on a reduced-order model, an asymptotic observer was designed to estimate on-line the contaminant concentration, using carbon dioxide measurement. Two observer-based estimators were built to approximate: (1) the specific microbial growth rate; and (2) the biocontact kinetics representing the soil resistance to contaminant biodegradation. State observers and parameter estimators were confronted with the experimental results of biodegradation in microcosms. Hexadecane was used as the model compound, representing petroleum hydrocarbons. Three water contents, corresponding to 20%, 50% and 80% of the water-holding capacity, were tested. The asymptotic observer is able to predict hexadecane depletion with an error on the overall time trajectories of 13%, 8% and 4% for the dry, intermediate and wet soils, respectively, which is acceptable given that all the biokinetic parameters were identified from a biodegradation experiment in liquid phase. The observer-based estimator of the specific microbial growth rate, based on the CO(2) measurement, was successfully calibrated using the off-line measurements of hexadecane as validation data, and allowed estimation of the time when biodegradation switched from a microbial to a biocontact limitation. The biocontact kinetics was also identified on-line, using an estimator based on the hexadecane not in biocontact. These results are very encouraging with respect to the potential for on-line assessment of the performance of treatment bioprocesses in unsaturated soils.

摘要

本研究的目的是开发一种基于模型的非饱和土壤生物降解估算器。这将能够实时评估生物通风和生物堆等处理生物过程的效率,并最终通过实施控制策略实现优化。基于降阶模型,设计了一种渐近观测器,利用二氧化碳测量在线估算污染物浓度。构建了两个基于观测器的估算器来近似:(1)特定微生物生长速率;(2)代表土壤对污染物生物降解抗性的生物接触动力学。状态观测器和参数估算器与微观世界中生物降解的实验结果进行了对比。十六烷被用作模型化合物,代表石油烃。测试了三种含水量,分别对应田间持水量的20%、50%和80%。渐近观测器能够预测十六烷的消耗,对于干燥、中等湿度和湿润土壤,在整个时间轨迹上的误差分别为13%、8%和4%,考虑到所有生物动力学参数均从液相生物降解实验中确定,这是可以接受的。基于二氧化碳测量的特定微生物生长速率的基于观测器的估算器,使用十六烷的离线测量作为验证数据成功进行了校准,并能够估算生物降解从微生物限制转变为生物接触限制的时间。还使用基于未发生生物接触的十六烷的估算器在线确定了生物接触动力学。这些结果对于非饱和土壤中处理生物过程性能的在线评估潜力而言非常令人鼓舞。

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