Department of Chemical Engineering and Energy Sustainability, Faculty of Engineering, Universiti Malaysia Sarawak (UNIMAS), 94300 Kota Samarahan, Sarawak, Malaysia.
Department of Chemical Engineering and Energy Sustainability, Faculty of Engineering, Universiti Malaysia Sarawak (UNIMAS), 94300 Kota Samarahan, Sarawak, Malaysia.
Bioresour Technol. 2016 Sep;216:478-85. doi: 10.1016/j.biortech.2016.05.112. Epub 2016 May 28.
An air-cathode MFC-adsorption hybrid system, made from earthen pot was designed and tested for simultaneous wastewater treatment and energy recovery. Such design had demonstrated superior characteristics of low internal resistance (29.3Ω) and favor to low-cost, efficient wastewater treatment and power generation (55mW/m(3)) with average current of 2.13±0.4mA. The performance between MFC-adsorption hybrid system was compared to the standalone adsorption system and results had demonstrated great pollutants removals of the integrated system especially for chemical oxygen demand (COD), biochemical oxygen demand (BOD3), total organic carbon (TOC), total volatile solids (TVS), ammoniacal nitrogen (NH3-N) and total nitrogen (TN) because such system combines the advantages of each individual unit. Besides the typical biological and electrochemical processes that happened in an MFC system, an additional physicochemical process from the activated carbon took place simultaneously in the MFC-adsorption hybrid system which would further improved on the wastewater quality.
一种空气阴极 MFC-吸附混合系统,由土陶制成,用于同时进行废水处理和能量回收。这种设计表现出低内阻(29.3Ω)的优越特性,有利于低成本、高效的废水处理和发电(55mW/m(3)),平均电流为 2.13±0.4mA。MFC-吸附混合系统的性能与独立吸附系统进行了比较,结果表明,集成系统具有更好的污染物去除效果,特别是对化学需氧量(COD)、生化需氧量(BOD3)、总有机碳(TOC)、总挥发性固体(TVS)、氨氮(NH3-N)和总氮(TN),因为该系统结合了各个单元的优势。除了在 MFC 系统中发生的典型生物和电化学过程外,MFC-吸附混合系统中同时发生了来自活性炭的附加物理化学过程,这将进一步改善废水质量。