4.6 Article

A Universal Biofilm Reactor Sensor for the Determination of Biochemical Oxygen Demand of Different Water Areas

期刊

MOLECULES
卷 27, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27155046

关键词

biochemical oxygen demand; biofilm reactor sensor; domesticated microorganisms; universality; microbial community structure

资金

  1. National Natural Science Foundation of China [21974097, 21675147]
  2. Education Department of Guangdong Province [2020KSYS004, 2020ZDZX2015]
  3. Science and Technology Bureau of Jiangmen [2019030102360012639, 2020030102730008711]
  4. Undergraduate Training Program for Innovation and Entrepreneurship [202111349019]
  5. Guangdong Province's Special Fund for College Students' Science and Technology Innovation Strategy [pdjh2022b0531]

向作者/读者索取更多资源

A simple strategy was developed to prepare a biofilm reactor (BFR) sensor for universal biochemical oxygen demand (BOD) determination. The BFR sensor exhibited efficient degradation of various organic substances and showed excellent performance in BOD determination of different water samples.
In this study, we developed a simple strategy to prepare a biofilm reactor (BFR) sensor for the universal biochemical oxygen demand (BOD) determination. The microorganisms in fresh water were domesticated by artificial seawater with different salinity gradients successively to prepare the BFR sensor. The prepared BFR sensor exhibits an efficient ability to degrade a variety of organic substances. The linear range of BOD determination by the BFR sensor is 1.0-10.0 mg/L-1 with a correlation coefficient of 0.9951. The detection limit is 0.30 mg/L according to three times of signal-to-noise ratio. What is more, the BFR sensor displayed excellent performances for the BOD determination of different water samples, including both fresh water and seawater. The 16S-rRNA gene sequencing technology was used to analyze the microbial species before and after the domestication. The results show that it is a general approach for the rapid BOD determination in different water samples.

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