首页> 外文期刊>Journal of environmental monitoring: JEM >A near real-time system for continuously monitoring airborne subtilisin-type enzymes in the industrial atmosphere
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A near real-time system for continuously monitoring airborne subtilisin-type enzymes in the industrial atmosphere

机译:近实时系统,可在工业环境中连续监测空气中的枯草杆菌蛋白酶型酶

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We describe the development and validation of a portable system comprising an air sampler coupled to an automated flow injection analysis device.The system is able to monitor airborne concentrations of subtilisin-type enzymes in the workplace atmosphere on a continuous basis.Sampling is in two stages:using a sampling head that is designed to mimic human respiration at approx.1 m s~(-1)at a sampling rate of 600 1 min~(-1).In the second stage,the captured particles are deposited by impaction from the air stream onto the inner surface of a cyclone that is continuously washed with a jet of buffer solution.Deposited particles are then washed into a reservoir from which samples are taken every 5-6 min and injected automatically into a continuous flow injection analysis system.Proteolytic enzyme in the sample passes through a bioreactor maintained at about 40 deg C.This contains a cellulose solid phase matrix on which is covalently immobilised Texas Red-labelled gelatin as substrate.The passing enzyme partially digests the substrate releasing fluorophore that is detected down stream in a flow cell coupled to a fluorimeter.The system is calibrated using enzyme standards and the intensity of the resulting peaks from the ex-air samples is converted to airborne concentrations using a mathematical model programmed into a PC.The system has a limit of detection of 4.8 ng m~(-3)and a dynamic range of 5-60 ng m~(-3).The within assay precision (RSD)is 6.3-9.6% over this range.The within batch precision is 20.3% at 20 ng m~(-3)and the corresponding between batch value is 19.5%o.The system has been run for periods up to 8 h in the laboratory and for up to 4 h at a factory site and the values obtained compared with time-averaged values obtained from a conventional Galley sampler and in-house analysis when reasonable agreement of the results was observed.The stability of the system over 21 days of continuous use with standards injected periodically was studied.Linearity was observed for all the standard plots throughout.At the end of 21 days,after a total exposure equivalent to 2395 ng ml~(-1)of Savinase,the signal due to the 5.0 ng ml~(-1)standard was still easily detectable.
机译:我们描述了一个便携式系统的开发和验证,该系统包括一个与自动流动注射分析设备耦合的空气采样器,该系统能够连续监测工作场所大气中空气中枯草杆菌蛋白酶型酶的浓度,采样分为两个阶段:使用专门设计用于模拟人体呼吸的采样头,采样速率为600 1 min〜(-1),采样速率约为1 ms〜(-1)。空气流进入旋风分离器的内表面,然后用缓冲溶液进行连续冲洗,然后将沉积的颗粒冲洗到储液器中,每5-6分钟从储液器中取样一次,并自动注入连续流动注射分析系统中。样品中的酶通过维持在约40摄氏度的生物反应器,其中包含纤维素固相基质,其上共价固定了德克萨斯红标记的明胶作为底物。 ng酶部分消化底物释放的荧光团,该荧光团在与荧光计相连的流通池的下游被检测到。使用酶标准品对系统进行校准,并使用数学方法将来自空气样品的峰强度转换为空气传播浓度模型编程到PC中,系统的检出限为4.8 ng m〜(-3),动态范围为5-60 ng m〜(-3)。测定内准确度(RSD)为6.3-9.6%在此范围内。在20 ng m〜(-3)时,批内精度为20.3%,批间值之间的对应值为19.5%o。该系统在实验室中运行了长达8小时的时间,并且长达4当观察到合理的结果时,将其与工厂的h值进行比较,并将所得值与常规Galley采样器和内部分析获得的时间平均值进行比较。在连续使用标准品并连续注入21天后,系统的稳定性研究了线性度在21天结束时,在总暴露量相当于2395 ng ml〜(-1)的Savinase之后,仍很容易检测到5.0 ng ml〜(-1)标准产生的信号。

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