Department of Civil Engineering, Regional Centre of Anna University, Tirunelveli, India.
Department of Civil Engineering, Regional Centre of Anna University, Tirunelveli, India.
Bioresour Technol. 2017 Oct;241:710-719. doi: 10.1016/j.biortech.2017.05.201. Epub 2017 Jun 2.
The objective of this study was to evaluate the effect of dioctyl sodium sulphosuccinate (DOSS, a surfactant) on lysis rate of sludge and specific energy required for sonic pretreatment of waste activated sludge (WAS). Different ultrasonic power levels, WAS concentrations, DOSS dosages, and specific energy levels were used to compare pretreatment efficiencies. At an optimum time of 10min with ultrasonic power level of 160W, DOSS coupled sonic pretreatment resulted in better lysis rate (24.7%) of sludge than sonic pretreatment (17.6%). Biodegradability estimation through non-linear regression modeling revealed that DOSS coupled ultrasound pretreatment of sludge showed better biodegradability with higher hydrolysis constant (about 0.25d) than sonic pretreatment (0.19d). Nearly six times less energy was required for DOSS coupled ultrasound pretreatment compared to that required for sonic pretreatment. Therefore, DOSS coupled ultrasound pretreatment makes the pretreatment process energetically positive.
本研究旨在评估琥珀酸二辛酯磺酸钠(DOSS,一种表面活性剂)对污泥裂解率和废活性污泥(WAS)超声预处理所需比能的影响。使用不同的超声功率水平、WAS 浓度、DOSS 剂量和比能量水平来比较预处理效率。在最佳超声功率水平 160W 和 10min 作用时间下,DOSS 耦合超声预处理的污泥裂解率(24.7%)明显优于超声预处理(17.6%)。通过非线性回归建模进行的可生物降解性估计表明,与超声预处理(0.19d)相比,DOSS 耦合超声预处理的污泥具有更好的可生物降解性,水解常数(约 0.25d)更高。与超声预处理相比,DOSS 耦合超声预处理所需的能量减少了近六倍。因此,DOSS 耦合超声预处理使预处理过程在能量上具有正效益。