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Determn. of formaldehyde concn. in aq. media - using pH sensor carrying microorganisms which oxidise formaldehyde to acid, in rapid, simple and inexpensive process without using added reagents

机译:确定。甲醛浓度在水介质-使用pH传感器携带带有将甲醛氧化为酸的微生物的过程,快速,简单且廉价,而无需使用添加的试剂

摘要

The concn. of HCHO in an aq. medium is determined by: (1) immobilising an HCHO-utilising microorganism, able to generate a pH change in the medium, on the pH-sensitive surface of a sensor, the organism being positioned between the surface and a water-insoluble membrane permeable to HCHO and pH-changing products; (2) contacting the sensor with a known amt. of aq. solns. of known HCHO concn. and buffer capacity 10 micromole-10 mmole/l, and detecting the resulting change in pH (as measurement signal) over a specified length of time; (3) contacting the sensor with a similar soln. of unknown HCHO content and repeating the measurement; and then (4) determn. of HCHO content by comparing results of steps (2) and (3). Also new is an appts. contg. the modified sensor. Pref. the microorganism is Pseudomonas putida J3 strain. USE/ADVANTAGE - This method is simple, rapid, inexpensive, reliable, specific and selective, and can be used in microbiology, chemistry, medicine, environmental protection and various industries. It does not require expensive or toxic reagents (e.g. exogenous co-enzymes) and can be applied to analysis of HCHO in air (once this has been brought into soln.).
机译:该concn。水溶液中的HCHO培养基的确定方法如下:(1)将能够在培养基中产生pH变化的利用HCHO的微生物固定在传感器的pH敏感表面上,该生物位于该表面与可透过水的不溶于水的膜之间HCHO和改变pH的产品; (2)用已知的amt接触传感器。的solns。已知的HCHO concn。缓冲容量为10微摩尔-10毫摩尔/升,并在规定的时间内检测pH值的变化(作为测量信号); (3)用类似的溶液接触传感器。未知的HCHO含量并重复测量;然后(4)确定。比较步骤(2)和(3)的结果,确定HCHO含量。一个新的也是appts。续修改后的传感器。首选微生物是恶臭假单胞菌J3菌株。使用/优势-该方法简单,快速,便宜,可靠,特异和选择性,可用于微生物学,化学,医药,环境保护和各种行业。它不需要昂贵或有毒的试剂(例如外源性辅酶),并且可以用于空气中HCHO的分析(一旦将其引入溶液中)。

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