Juang Der-Fong
Department of Healthcare Administration, Mei-Ho Institute of Technology, 23, Ping-Kuang Road, Nei Pu, Ping Tong 912, Taiwan, ROC.
Bioresour Technol. 2005 Jan;96(1):31-40. doi: 10.1016/j.biortech.2004.03.005.
Filamentous bulking is one of the solid-liquid separation problems always seen in activated sludge process. The addition of synthetic polymer is always one of the popular ways for the treatment plant operator to immediately solve the poor sludge settling problem. Therefore, it may be interesting to understand the effects of synthetic polymer on the filamentous bacteria in activated sludge. In this study, synthetic polymer was applied to a lab-scale wastewater treatment system with the filamentous bulking problem. The population structure of filamentous bacteria and sludge characteristics were investigated under different conditions. When synthetic polymer was added into the system, it was found that poor sludge settleability caused by filamentous bulking was temporarily solved and filamentous branches growing outside the flocs were damaged or inhibited. However, filamentous growth was still observed inside the flocs. After the addition of polymer was halted, filamentous branches extended out of the flocs immediately. Very serious filamentous bulking occurred and sludge settleability became much worse than that occurring before the addition of polymer. And, it took several weeks for the system to return to normal operation.
丝状膨胀是活性污泥法中常见的固液分离问题之一。添加合成聚合物一直是污水处理厂操作人员立即解决污泥沉降性能差问题的常用方法之一。因此,了解合成聚合物对活性污泥中丝状菌的影响可能会很有意思。在本研究中,将合成聚合物应用于一个存在丝状膨胀问题的实验室规模污水处理系统。研究了不同条件下丝状菌的种群结构和污泥特性。当向系统中添加合成聚合物时,发现由丝状膨胀引起的污泥沉降性能差的问题得到了暂时解决,并且絮体外部生长的丝状分支受到破坏或抑制。然而,在絮体内部仍观察到丝状生长。停止添加聚合物后,丝状分支立即延伸出絮体。发生了非常严重的丝状膨胀,污泥沉降性能变得比添加聚合物之前更差。而且,系统需要数周时间才能恢复正常运行。