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底物比例对微生物燃料电池中碳、氮、硫和磷同步转化的影响。

Effect of substrate ratios on the simultaneous carbon, nitrogen, sulfur and phosphorous conversions in microbial fuel cells.

作者信息

Tariq Madiha, Wang Jin, Malik Adeel Jalal, Akhter Mohammed Salim, Mahmood Qaisar

机构信息

Department of Environmental Sciences, COMSATS University Islamabad, Abbottabad Campus, Pakistan.

Department of Landscape and Architecture, School of Design, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Heliyon. 2021 Jun 17;7(6):e07338. doi: 10.1016/j.heliyon.2021.e07338. eCollection 2021 Jun.

Abstract

The columbic efficiency, removal efficiency and voltage production of seven different combinations of carbon (acetic acid, albumin and sucrose) with nutrients (C:N, C:P, C:S, C:N:S, C:P:S, C:N:P and C: N:S:P) were investigated at three different ratios (20:1, 15:1 and 10:1). The effects of various pH values were also explored for these combinations of carbon, and sulfur compounds (pH 6-8). The highest columbic efficiency (75.8%), COD removal efficiency (86%) and voltage (667 mV) were recorded when the acetic acid was used in the MFC and the lowest columbic efficiency (12.8%), removal efficiency (37.6%) and voltage (145 mV) were observed in case of albumin. A marked increase in columbic efficiency, removal efficiency and voltage production were seen with the rise in the pH value from 6 to 8. The lowest columbic efficiency, removal efficiency and voltage production were seen at pH 6 and highest at pH 8. At each investigated pH, the highest removal efficiency, columbic efficiency, and voltage were found at substrate ratio of 20:1 while lower at 10:1. At all pH values, the carbon to nutrient ratios seemed to have followed a similar trend i.e., the COD removal efficiency, columbic efficiency and voltage generation was found in the order C:N > C:N:S > C:N:S:P > C:N:P > C:S > C:P:S > C:P. In all cases, nitrogen showed a higher removal as compared to phosphorous and sulfur.

摘要

研究了碳(乙酸、白蛋白和蔗糖)与营养物质(C:N、C:P、C:S、C:N:S、C:P:S、C:N:P和C:N:S:P)的七种不同组合在三种不同比例(20:1、15:1和10:1)下的库伦效率、去除效率和电压产生情况。还探讨了这些碳组合以及硫化合物在不同pH值(pH 6 - 8)下的影响。当在微生物燃料电池中使用乙酸时,记录到最高的库伦效率(75.8%)、化学需氧量去除效率(86%)和电压(667 mV),而在白蛋白的情况下观察到最低的库伦效率(12.8%)、去除效率(37.6%)和电压(145 mV)。随着pH值从6升高到8,库伦效率、去除效率和电压产生均显著增加。在pH 6时观察到最低的库伦效率、去除效率和电压产生,在pH 8时最高。在每个研究的pH值下,在底物比例为20:1时发现最高的去除效率、库伦效率和电压,而在10:1时较低。在所有pH值下,碳与营养物质的比例似乎遵循相似的趋势,即化学需氧量去除效率、库伦效率和电压产生的顺序为C:N > C:N:S > C:N:S:P > C:N:P > C:S > C:P:S > C:P。在所有情况下,与磷和硫相比,氮的去除率更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d1a/8233142/a8d0433a7b84/gr1.jpg

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