Department of Logistics Engineering, Dongguan Polytechnic, Dongguan City 523808, China.
Research Center of Natural Cosmeceuticals Engineering, Xiamen Medical College, Xiamen 361008, China.
Sensors (Basel). 2019 Mar 22;19(6):1418. doi: 10.3390/s19061418.
Chromium (VI) [Cr(VI)] compounds display high toxic, mutagenic, and carcinogenic potential. Biological analysis techniques (e.g., such as enzyme-based or cell-based sensors) have been developed to measure Cr(VI); however, these biological elements are sensitive to the environment, limited to measuring trace Cr(VI), and require deployment offsite. In this study, a three-stage single-chambered microbial fuel cell (SCMFC) biosensor inoculated with YC211 was developed for in situ, real-time, and continuous Cr(VI) measurement. A negative linear relationship was observed between the Cr(VI) concentration (5⁻30 mg/L) and the voltage output using an SCMFC at 2-min liquid retention time. The theoretical Cr(VI) measurement range of the system could be extended to 5⁻90 mg/L by connecting three separate SCMFCs in series. The three-stage SCMFC biosensor could accurately measure Cr(VI) concentrations in actual tannery wastewater with low deviations (<7%). After treating the wastewater with the SCMFC, the original inoculated remained dominant (>92.5%), according to the next-generation sequencing analysis. The stable bacterial community present in the SCMFC favored the reliable performance of the SCMFC biosensor. Thus, the three-stage SCMFC biosensor has potential as an early warning device with wide dynamic range for in situ, real-time, and continuous Cr(VI) measurement of tannery wastewater.
六价铬(Cr(VI))化合物具有高毒性、致突变性和致癌性。已经开发了生物分析技术(例如基于酶或基于细胞的传感器)来测量 Cr(VI);然而,这些生物元件对环境敏感,仅限于测量痕量 Cr(VI),并且需要在现场外部署。在这项研究中,开发了一种三阶段单室微生物燃料电池(SCMFC)生物传感器,该生物传感器接种了 YC211,用于原位、实时和连续的 Cr(VI)测量。使用 SCMFC 在 2 分钟的液体保留时间下,观察到 Cr(VI)浓度(5⁻30 mg/L)与电压输出之间呈负线性关系。通过将三个单独的 SCMFC 串联连接,可以将系统的理论 Cr(VI)测量范围扩展到 5⁻90 mg/L。三阶段 SCMFC 生物传感器可以准确测量实际制革废水中的 Cr(VI)浓度,偏差小于 7%(%)。根据下一代测序分析,用 SCMFC 处理废水后,原始接种物仍占主导地位(>92.5%)。SCMFC 中存在的稳定细菌群落有利于 SCMFC 生物传感器的可靠性能。因此,三阶段 SCMFC 生物传感器具有作为原位、实时和连续 Cr(VI)测量制革废水的宽动态范围的预警装置的潜力。