Title of article :
Impact of Salt on Bioelectricity Generation in a Dual-Chambered Microbial Fuel Cell Using Sago-Processing Wastewater
Author/Authors :
Muthukumar, M Environmental Engineering and Technology Laboratory - Department of Environmental Sciences - Bharathiar University - Coimbatore - 641 046, India , Shanmuga Priya, S Department of Chemistry - Rathinam Technical 1 Campus - Eachanari - Coimbatore - 641021, India , Sangeetha, T Environmental Engineering and Technology Laboratory - Department of Environmental Sciences - Bharathiar University - Coimbatore - 641 046, India
Pages :
11
From page :
376
To page :
386
Abstract :
Effect of NaCl on electricity generation, COD removal, reduction in carbohydrate and starch content in dual chambered, salt bridge Microbial Fuel Cells (MFCs) employing raw sago-processing wastewater with an organic load of 14,400 mg COD/l as substrate was evaluated. Four dual chambered MFCs were constructed and the study aimed to find out the impact of addition of NaCl which is carried out for effective MFC performance. Isolation and identification of microbes from initial influent and final effluent was performed using serial dilution, spread plate and selective agar techniques. Interestingly, it was found that the MFC in which NaCl was added to its cathode chamber was best in performance compared to other three MFCs, with a maximum voltage of 603mV and current of 6.03mA. It also documented that the maximum COD removal efficiency of 83% with a total reduction of carbohydrate and starch content from the wastewater was obtained. Utilizing sago wastewater for the production of bioelectricity from MFC technique is considered as a feasible and sustainable process.
Farsi abstract :
اثر نمك طعام (NaCl) بر توليد جريان الكتريسته و حذف COD همراه با كاهش نشانسته يا تركيبات قندي در پيل سوختي ميكروبي 14400 مورد ارزيابي قرار گرفت. اين مقاله چهار MFC داراي پل نمكي و با استفاده از فاضلاب نشاسته ساگو، غلظت 1/mg COD براي ارزيابي اثر نمك بر كارايي پيل ساخته شد. جداسازي و شناسايي ميكروارگانيزمها از جريان هاي ورودي و خروجي با روش رقيق سازي انجام گرديد. نكته جالب اينكه اثر نمك در كاتد سه پيل موجب كارايي موثر پيل سوختي ميكروبي گرديد. حداكثر ولتاژ mV 6 / 03 بدست آمده است. حداكثر بازدهي حذف COD بميزان 83٪ بوده است كه خود نشانه حذف تركيبات قندي و 603 و جريان mA نشاسته فاضلاب است. استفاده از فاضلاب در MFC براي توليد جريان بيو الكتريسته توجيح اقتصادي داشته و فرايند پايدار مي باشد.
Keywords :
Sago wastewater , NaCl , Conductivity , Power density , Internal resistance , COD removal
Journal title :
Astroparticle Physics
Serial Year :
2014
Record number :
2425933
Link To Document :
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