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基于染料还原的电子转移活性监测分析方法用于评估微生物燃料电池接种物的微生物电子转移活性。

Dye reduction-based electron-transfer activity monitoring assay for assessing microbial electron transfer activity of microbial fuel cell inocula.

机构信息

Department of Biosciences, Sri Sathya Sai Institute of Higher Learning, Prasanthi Nilayam, Puttaparthi, Andhra Pradesh - 515134, India.

Department of Biosciences, Sri Sathya Sai Institute of Higher Learning, Prasanthi Nilayam, Puttaparthi, Andhra Pradesh - 515134, India.

出版信息

J Environ Sci (China). 2020 Oct;96:171-177. doi: 10.1016/j.jes.2020.04.037. Epub 2020 May 30.

Abstract

Microbial fuel cells (MFC) utilize microbes as catalysts to convert chemical energy to electricity. Inocula used for MFC operation must therefore contain active microbial population. The dye reduction-based electron-transfer activity monitoring (DREAM) assay was employed to evaluate different inocula used in MFCs for their microbial bioelectrical activity. The assay utilizes the redox property of Methylene Blue to undergo color change from blue to colorless state upon microbial reduction. The extent of Methylene Blue reduction was denoted as the DREAM assay coefficient. DREAM assay was initially performed on a microbial culture along with the growth curve and estimation of colony forming units (CFUs). DREAM coefficient correlated to the CFU/mL obtained over time as growth progressed. The assay was then extended to water samples (domestic sewage, lake and a man-made pond) serving as inocula in MFCs. Domestic wastewater gave the highest DREAM coefficient (0.300 ± 0.05), followed by pond (0.224 ± 0.07) and lake (0.157 ± 0.04) water samples. Power density obtained conformed to the DREAM coefficient values, with the three samples generating power densities of 46.45 ± 5.1, 36.12 ± 3.2 and 25.08 ± 4.3 mW/m respectively. We have also studied the role of addition of various carbon sources and their concentrations towards improving the sensitivity of the assay. The DREAM assay is a rapid, easy-to-perform and cost-effective method to assess inocula for their suitability as anolytes in terms of electron transfer potential in MFCs.

摘要

微生物燃料电池(MFC)利用微生物作为催化剂将化学能转化为电能。因此,用于 MFC 运行的接种物必须含有活性微生物种群。染料还原电子转移活性监测(DREAM)测定法用于评估用于 MFC 的不同接种物的微生物生物电化学活性。该测定法利用亚甲蓝的氧化还原性质,在微生物还原作用下从蓝色变为无色状态,从而发生颜色变化。亚甲蓝还原的程度表示为 DREAM 测定系数。DREAM 测定法最初是在微生物培养物上进行的,同时还进行了生长曲线和菌落形成单位(CFU)的估计。随着生长的进行,DREAM 系数与随时间获得的 CFU/mL 相关。然后,该测定法扩展到用作 MFC 接种物的水样(生活污水、湖泊和人工池塘)。生活污水的 DREAM 系数最高(0.300 ± 0.05),其次是池塘(0.224 ± 0.07)和湖泊(0.157 ± 0.04)水样。获得的功率密度符合 DREAM 系数值,三个水样分别产生 46.45 ± 5.1、36.12 ± 3.2 和 25.08 ± 4.3 mW/m 的功率密度。我们还研究了添加各种碳源及其浓度对提高测定法灵敏度的作用。DREAM 测定法是一种快速、易于执行且具有成本效益的方法,可用于评估接种物作为 MFC 中电子转移潜力的合适电子供体。

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