利用微生物燃料电池从屠宰场废物中发电

J. Jo, Oladepo Kt, Oyegoke So
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摘要

这项研究利用屠宰场废物发电,目的是消除这种废物的污染影响。为了实现这项研究的目的,在尼日利亚西南部奥松州的伊莱- ife地区随机选择了三个屠宰场。采用互动和调查方法,确定了每天、每周和每月屠宰的奶牛和山羊的平均数量;随后对产生的废物量进行了估计。从屠宰场的水源收集水样。废水样本也在屠宰场加工过程的不同精心挑选的阶段收集。废水样品在空气中暴露6 ~ 48小时。然后使用标准程序对水和废水样本进行物理化学分析。采用标准的方法和合适的材料制备盐桥,组装微生物燃料电池。随后,进行了电气设置,将屠宰场废水引入室内,并进行了发电和评估。观察并记录电压、压降、功率和电流读数,为期六(6)天(131-144小时)。调查显示,每个屠宰场平均每天屠宰两头牛。结果显示,每个屠宰场每天产生的废物量为100-120公斤。淡水样本的pH值在世卫组织标准范围内(6.98至7.05);废水的平均pH值显示为碱性。此外,淡水样品的TS、TSS和BOD值分别达到世界卫生组织标准(340 ~ 440 mg/l)、200 ~ 220 mg/l和240 ~ 600 mg/l),而废水样品的值过高。一般来说,暴露在空气中时间最长的废物产生的电压值最小。该研究得出结论,利用微生物燃料电池从屠宰场废物中发电是可能的。
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Generation of Electricity from Abattoir Waste Using Microbial Fuel Cell
This study undertook the generation of electricity from abattoir waste with the aim of eliminating the polluting effects of this waste. To achieve the aim of the study, three abattoirs were randomly selected within Ile-Ife in Osun State, southwest Nigeria. Using interactive and investigative methods, the average number of cows and goats that were slaughtered daily, weekly and monthly was established; and the amount of waste generated was subsequently estimated. Water samples were collected from water sources for the abattoirs. Wastewater samples were also collected at different carefully selected stages of the abattoir processes. The wastewater samples were exposed to air for 6 hours to 48 hours. The water and wastewater samples were then subjected to physico-chemical analysis, using standard procedures. Using standard method and appropriate materials, salt bridge was prepared and Microbial Fuel Cells (MFC) were assembled. Subsequently, electrical set up was done, abattoir wastewater introduced into the chamber and electricity generated and evaluated. Voltage, voltage drop, power and current readings were observed and recorded for a period of six (6) days (between 131-144 hours). Surveys revealed that an average of two (2) cows was slaughtered daily in each abattoir. Results showed that the quantity of waste generated from each abattoir per day stands at 100-120 kg per day. For fresh water samples, the pH fell within WHO standard (6.98 to 7.05); while the average pH value for the wastewaters showed that it is basic. Also, for fresh water samples, TS, TSS and BOD values met WHO standard (340 to 440 mg/l), 200 to 220 mg/l and 240 to 600 mg/l) respectively, while the values were excessively high for wastewaters. Generally, the voltage generated from waste with longest exposure to air had the least values. The study concluded that electricity generation is possible from abattoir waste using microbial fuel cells.
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