Zeng Shan-wen, Wang Ze-yu, Gao Jing, Liu Dong, Zhang Dai-jun, Lu Pei-li
Huan Jing Ke Xue. 2015 May;36(5):1713-9.
Activated sludge process is an important approach for industrial Polyhydroxyalkanoate ( PHA ) production. Off-line measurement with a time lag and complex analysis, is a common method for PHA, but is not suitable for the process control of PHA production. Based on a model for simultaneous storage and growth-soluble microbial products (SSAG-SMP), it is assumed that there is the linear relationship between the PHA synthesized and OUR or HPR, respectively. Further, a novel method to estimate PHA content based on in-situ monitoring data of oxygen uptake rate (OUR) and hydrogen-ion production rate (HPR) is established in this paper. The results of modeling OUR and HPR under different substrate concentrations showed that oxygen consumption proportion (kPHA,OUR) and proton consumption proportion (kPHA,HPR) of PHA synthesis were 0.67 and 0.57, respectively. The predicted results based on the linear relationship were essentially consistent with measured ones, and indicated that the method is feasible
活性污泥法是工业生产聚羟基脂肪酸酯(PHA)的重要方法。离线测量存在时间滞后且分析复杂,是测定PHA的常用方法,但不适用于PHA生产的过程控制。基于同时储存和生长的可溶性微生物产物(SSAG-SMP)模型,假定PHA合成量分别与OUR或HPR之间存在线性关系。此外,本文建立了一种基于氧摄取率(OUR)和氢离子产生率(HPR)原位监测数据估算PHA含量的新方法。不同底物浓度下OUR和HPR的建模结果表明,PHA合成的氧消耗比例(kPHA,OUR)和质子消耗比例(kPHA,HPR)分别为0.67和0.57。基于线性关系的预测结果与实测结果基本一致,表明该方法可行。