Mechanical Engineering, Faculty of Engineering and Physical Sciences, University of Southampton, Southampton SO17 1BJ, United Kingdom.
Department of Geography and Environmental Science, University of Reading, Reading RG6 6AH, United Kingdom.
Environ Sci Technol. 2024 Feb 13;58(6):2956-2965. doi: 10.1021/acs.est.3c08207. Epub 2024 Jan 30.
Monitoring nutrients in the soil can provide valuable information for understanding their spatiotemporal variability and informing precise soil management. Here, we describe an autonomous analyzer for the real-time monitoring of nitrate in soil. The analyzer can sample soil nitrate using either microdialysis or ultrafiltration probes placed within the soil and quantify soil nitrate using droplet microfluidics and colorimetric measurement. Compared with traditional manual sampling and lab analysis, the analyzer features low reagent consumption (96 μL per measurement), low maintenance requirement (monthly), and high measurement frequency (2 or 4 measurements per day), providing nondrifting lab-quality data with errors of less than 10% using a microdialysis probe and 2-3% for ultrafiltration. The analyzer was deployed at both the campus garden and forest for different periods of time, being able to capture changes in free nitrate levels in response to manual perturbation by the addition of nitrate standard solutions and natural perturbation by rainfall events.
监测土壤中的养分可以提供有价值的信息,帮助了解其时空变异性,并为精确的土壤管理提供信息。在这里,我们描述了一种用于实时监测土壤中硝酸盐的自主分析仪。该分析仪可以使用微透析或超滤探头从土壤中提取土壤硝酸盐样本,并使用液滴微流控和比色测量法来定量土壤硝酸盐。与传统的手动采样和实验室分析相比,该分析仪具有低试剂消耗(每次测量 96 μL)、低维护要求(每月)和高测量频率(每天 2 或 4 次测量)的特点,使用微透析探头可以提供误差小于 10%的无漂移实验室质量数据,使用超滤探头则可以提供 2-3%的误差。该分析仪在校园花园和森林中进行了不同时间的部署,能够捕捉到由于添加硝酸盐标准溶液的人工干扰和降雨事件的自然干扰而导致的游离硝酸盐水平的变化。