微生物燃料电池处理炼钢工业废水的探索性研究

M. Saleh, M. Yalvaç, Luey Halef, Muhammed Şahin Hekim, H. Arslan
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引用次数: 0

摘要

干肉饼业在土耳其的食品行业中占有重要地位。该工业产生的废水可以被认为是生物废物。微生物燃料电池(MFC)是一项相对较新的技术,旨在处理废水并产生直接能源。本研究旨在探讨微生物燃料电池技术对炼钢工业废水中以化学需氧量(COD)表示的有机物的降解效率。此外,它旨在研究从这类废水中形成电力的可能性。本研究采用MFC -双腔系统。利用1.5 L含3%生物质的焦化工业废水。测量了COD和电压。炼钢工业废水的COD为28800 mg/L。采用MFC系统后,COD降至2560 mg/L,去除率达91%。一级动力学模型最适合COD去除,相关系数(R2)为0.95。最大电压为0.448伏,平均电压为0.180伏。每1平方米的平均电压为45伏。通过探索性研究,MFC可用于炼钢工业废水的处理和发电。但要与其他治疗方法相结合才能达到标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BULGUR INDUSTRY WASTEWATER TREATMENT BY MICROBIAL FUEL CELL – EXPLORATORY STUDY
The bulgur industry has importance in the food sector in Turkey. The wastewater generated from this industry can be considered biowaste. The microbial fuel cells (MFC) are a relatively new technique aiming to treat the wastewater and producing direct energy. This study aims to explore the degradation efficiency of the organic matters expressed as chemical oxygen demand (COD) founded in bulgur industry wastewater by microbial fuel cell techniques. Furthermore, it aims to study the potential formation of electricity from this type of wastewater. In this study, the MFC – double chamber system was performed. 1.5 L bulgur industry wastewater containing 3% of biomass was used. The COD and the voltage were measured. The COD generated from the bulgur industry wastewater was 28800 mg/L. After using the MFC system, the COD was decreased to reach 2560 mg/L with a removal efficiency of 91%. 1st order kinetic model had the best fit for COD removal with a correlation coefficient (R2) of 0.95. The maximum and average voltages were 0.448 Volt and 0.180 Volt, respectively. The average voltage for every 1 m2 was 45 volt. As a result of the exploratory study, the MFC can be used to treat the bulgur industry wastewater and generating energy. But it should be combined with other treatment methods to meet the standards.
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