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Development of an NDIR CO2 Sensor-Based System for Assessing Soil Toxicity Using Substrate-Induced Respiration

机译:基于NDIR CO2传感器的土壤诱导呼吸评估土壤毒性的系统的开发

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摘要

The eco-toxicological indicators used to evaluate soil quality complement the physico-chemical criteria employed in contaminated site remediation, but their cost, time, sophisticated analytical methods and in-situ inapplicability pose a major challenge to rapidly detect and map the extent of soil contamination. This paper describes a sensor-based approach for measuring potential (substrate-induced) microbial respiration in diesel-contaminated and non-contaminated soil and hence, indirectly evaluates their microbial activity. A simple CO2 sensing system was developed using an inexpensive non-dispersive infrared (NDIR) CO2 sensor and was successfully deployed to differentiate the control and diesel-contaminated soils in terms of CO2 emission after glucose addition. Also, the sensor system distinguished glucose-induced CO2 emission from sterile and control soil samples (p ≤ 0.0001). Significant effects of diesel contamination (p ≤ 0.0001) and soil type (p ≤ 0.0001) on glucose-induced CO2 emission were also found. The developed sensing system can provide in-situ evaluation of soil microbial activity, an indicator of soil quality. The system can be a promising tool for the initial screening of contaminated environmental sites to create high spatial density maps at a relatively low cost.
机译:用于评估土壤质量的生态毒理学指标可补充污染场地修复所采用的物理化学标准,但其成本,时间,复杂的分析方法和原位不适用性对快速检测和绘制土壤污染程度构成了重大挑战。本文介绍了一种基于传感器的方法,用于测量柴油污染和未污染土壤中潜在的(基质诱导的)微生物呼吸,从而间接评估其微生物活性。使用廉价的非分散红外(NDIR)CO2传感器开发了一种简单的CO2传感系统,该系统已成功用于在添加葡萄糖后从CO2排放方面区分对照土壤和柴油污染的土壤。此外,传感器系统还可以从无菌和对照土壤样品中区分出葡萄糖诱导的CO2排放(p≤0.0001)。还发现了柴油污染(p≤0.0001)和土壤类型(p≤0.0001)对葡萄糖诱导的CO 2排放的显着影响。开发的传感系统可以对土壤微生物活性进行现场评估,这是土壤质量的指标。该系统可能是一个有前途的工具,用于对受污染的环境地点进行初始筛选,从而以相对较低的成本创建高空间密度图。

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