Sensors for Biomass Monitoring in Vegetated Green Infrastructure: A Review

环境科学 生态调节池 生物量(生态学) 生物修复 过程(计算) 遥感 校准 雨水 计算机科学 污染 地表径流 生态学 地质学 统计 数学 生物 操作系统
作者
Farhad Jalilian,Caterina Valeo,Angus Chu,Rustom B. Bhiladvala
出处
期刊:Sensors [Multidisciplinary Digital Publishing Institute]
卷期号:23 (14): 6404-6404 被引量:2
标识
DOI:10.3390/s23146404
摘要

Bioretention cells, or rain gardens, can effectively reduce many contaminants in polluted stormwater through phytoremediation and bioremediation. The vegetated soil structure develops bacterial communities both within the soil and around the vegetation roots that play a significant role in the bioremediative process. Prediction of a bioretention cell's performance and efficacy is essential to the design process, operation, and maintenance throughout the design life of the cell. One of the key hurdles to these important issues and, therefore, to appropriate designs, is the lack of effective and inexpensive devices for monitoring and quantitatively assessing this bioremediative process in the field. This research reviews the available technologies for biomass monitoring and assesses their potential for quantifying bioremediative processes in rain gardens. The methods are discussed based on accuracy and calibration requirements, potential for use in situ, in real-time, and for characterizing biofilm formation in media that undergoes large fluctuations in nutrient supply. The methods discussed are microscopical, piezoelectric, fiber-optic, thermometric, and electrochemical. Microscopical methods are precluded from field use but would be essential to the calibration and verification of any field-based sensor. Piezoelectric, fiber-optic, thermometric, and some of the electrochemical-based methods reviewed come with limitations by way of support mechanisms or insufficient detection limits. The impedance-based electrochemical method shows the most promise for applications in rain gardens, and it is supported by microscopical methods for calibration and validation.

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