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An innovative reactor-type biosensor for BOD rapid measurement

机译:用于BOD快速测量的创新型反应器式生物传感器

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摘要

Biochemical oxygen demand (BOD) is one of the most important and widely used parameters for characterizing the organic pollution of water and wastewater. In this paper, a novel reactor-type biosensor for rapid measurement of BOD was developed, based on using immobilized microbial cell (IMC) beads as recognition bio-element in a completely mixed reactor which was used as determining chamber, replacing the traditionally used membrane as recognition bio-element. The IMC beads were freely suspended in the aqueous solution, so the mass transfer resistance for dissolved oxygen and organic compounds significantly reduced, and the quantity of the microbial cells used as recognition element can be easily adjusted, in comparison with the traditional membrane-type BOD biosensor, in which exists a unadjustable contradiction between the quantity of biomass and the thickness of the bio-membrane, thus limiting the stability and the detection limit. This novel kind of BOD biosensor significantly increased the sensitivity of the response, the detecting precision and prolonged the life time of the recognition element. The experimental data showed that the most appropriate temperature for biochemical reaction in the reactor was 30 degrees C, and the IMC beads could keep the bioactivity for about 70 d at the detecting frequency of 8 times every day. The standard deviation of repeatability and the reproducibility of responses were within 13.4% and 5.0%, respectively, which are within acceptable bias limits, and meet the requirement of BOD rapid measurement.
机译:生化需氧量(BOD)是表征水和废水中有机污染的最重要且广泛使用的参数之一。基于固定化微生物细胞(IMC)珠作为识别混合室中的识别生物元素,开发了一种新颖的反应器型生物需氧量的快速测量方法,该传感器用作测定室,代替了传统的膜作为公认的生物元素。 IMC珠自由地悬浮在水溶液中,因此与传统的膜型BOD相比,可显着降低对溶解氧和有机化合物的传质阻力,并可轻松调节用作识别元件的微生物细胞的数量生物传感器,其中生物质的量与生物膜的厚度之间存在不可调节的矛盾,从而限制了稳定性和检测极限。这种新型的BOD生物传感器显着提高了响应的灵敏度,检测精度并延长了识别元件的使用寿命。实验数据表明,反应器中最适合生化反应的温度为30℃,且IMC磁珠在每天8次检测频率下可保持约70 d的生物活性。重复性和响应重现性的标准偏差分别在13.4%和5.0%之内,均在可接受的偏差范围内,并满足BOD快速测量的要求。

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