Baskaran Balraj, Muthukumarasamy Arulmozhi
Department of Electrical and Electronics Engineering, M. Kumarasamy College of Engineering, Karur-639113, India.
Department of Petrochemical Technology, BIT Campus, Anna University, Tiruchirappalli-620024, India.
IET Syst Biol. 2017 Aug;11(4):114-118. doi: 10.1049/iet-syb.2016.0048.
sp. with grey white mycelium was isolated from Kodiyakkarai marine segment of east coastal of India. The isolate produced spiny spores and did not produce any diffusible pigments. Various biochemical tests were carried out to confirm the isolate classification. The amylolytic enzyme activity was estimated using the isolated strain which was confirmed by golden yellowish zone formation after using the Gram's iodine stain. The amount of amylase produced by the isolate was 6.15 U/ml. Higher living cells always produce better enzymes, so that the process parameters especially pH was maintained in fermentation chamber for higher growth and also for large-scale growth. For maintaining the pH a mathematical process model was developed using the data obtained during the process. The addition of Kalman's filter along with proportional-integral-derivative controller gave better stability in pH. By maintaining of pH 7, growth rate was significantly increased from 0.51to 0.59 gm/l on day 5 which are discussed in the results and discussions.
从印度东海岸科迪亚卡拉伊海洋区域分离出一株带有灰白色菌丝体的菌株。该分离株产生带刺的孢子且不产生任何可扩散色素。进行了各种生化测试以确认该分离株的分类。使用分离菌株估计淀粉分解酶活性,在使用革兰氏碘染色后通过金黄色区域的形成得以证实。该分离株产生的淀粉酶量为6.15 U/ml。较高的活细胞总是能产生更好的酶,因此在发酵室中维持工艺参数尤其是pH值,以实现更高的生长以及大规模生长。为了维持pH值,利用过程中获得的数据开发了一个数学过程模型。加入卡尔曼滤波器和比例积分微分控制器可使pH值具有更好的稳定性。通过维持pH值为7,在第5天生长速率从0.51显著提高到0.59 g/l,这在结果与讨论中进行了阐述。