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Mediated biochemical oxygen demand biosensors for pulp mill wastewaters

机译:纸浆厂废水的介导生化需氧量生物传感器

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摘要

Mediated microbial sensors utilizing two different yeast isolates (SPT1 and SPT2) were developed for the estimation of biochemical oxygen demand (BOD). Measurements of glucose/glutamic acid (GGA) standard solution with potassium ferricyanide mediation resulted in linear ranges extending from the detection limits (i.e. 2 and 5 ppm BOD) to 100 and 200 ppm BOD for the SPT1- and SPT2-based sensors, respectively. The standard error of the mean (SEW for 10 ppm. BOD measurements was 10.1% (SPT1) and 3.9% (SPT2). Response reproducibility had 10.6% error between three identically prepared SPT1 sensors. Response times for concentrations of 20 ppm BOD were within 10 minutes. For pulp mill effluent, the detection limits were 2 (SPT1) and 1 (SPT2) ppm BOD, with SEMs of 3.6% and 14.3% for the SPT1 and SPT2 sensors, respectively. Based on the results obtained in this study, it is concluded that SPT2 is the more suitable biocatalyst for pulp mill wastewater analysis.;While 18S rRNA gene sequence analyses, including BLAST homology searches, have suggested that isolate SPT1 is a close relative of Candida sojae (99.8% homology), no close matches have been found for isolate SPT2. The closest match for SPT2 was to Candida krusei (76.0% homology). Evidence from biochemical tests, fatty acid analysis, and 18S rRNA gene sequence analyses, indicates that isolate SPT2 is a novel yeast species.
机译:开发了利用两种不同的酵母分离物(SPT1和SPT2)的介导微生物传感器,用于估算生化需氧量(BOD)。用铁氰化钾介导的葡萄糖/谷氨酸(GGA)标准溶液的测量导致线性范围从基于SPT1和SPT2传感器的检测极限(即2和5 ppm BOD)分别扩展到100和200 ppm BOD。平均值的标准误差(SEW为10 ppm,BOD测量值为10.1%(SPT1)和3.9%(SPT2)。在三个相同制备的SPT1传感器之间,响应重现性误差为10.6%,对于20 ppm BOD浓度,响应时间在10分钟,对于纸浆厂废水,检测限为2(SPT1)和1(SPT2)ppm BOD,SPT1和SPT2传感器的SEM分别为3.6%和14.3%。结论:SPT2是更适合纸浆厂废水分析的生物催化剂。;虽然18S rRNA基因序列分析(包括BLAST同源性搜索)表明,分离的SPT1是大豆假丝酵母的近亲(99.8%同源性),没有紧密匹配。已经发现分离株SPT2,最接近的菌株是克鲁斯假丝酵母(Candida krusei)(76.0%同源性),从生化测试,脂肪酸分析和18S rRNA基因序列分析的证据表明,分离株SPT2是一种新型酵母。

著录项

  • 作者

    Trosok, Steve Peter Matyas.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Microbiology.;Environmental engineering.
  • 学位 M.Sc.
  • 年度 2000
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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