Fang Tengyue, Bo Guangyong, Zhang Zijie, Ma Jian
State Key Laboratory of Marine Environmental Science, College of the Environment and Ecology, Xiamen University, Xiamen 361102, People's Republic of China.
National Observation and Research Station for the Taiwan Strait Marine Ecosystem, Xiamen University, Zhangzhou 363000, People's Republic of China.
Anal Chem. 2022 Aug 16;94(32):11307-11314. doi: 10.1021/acs.analchem.2c02000. Epub 2022 Aug 2.
High-frequency field nutrient analyzers offer a promising technology to solve time-consuming and laborious sampling problems in dynamic and complex river-estuarine-coastal ecosystems. However, few studies on the simultaneous underway analysis of five key nutrients (ammonium, nitrite, nitrate, phosphate, and silicate) in seawaters are available because of the limitations of the technique. In this study, a state-of-the-art autonomous portable analyzer for the shipboard analysis of nutrients in the environment of varied salinities and concentration ranges was reported. The analyzer consisted of compact hardware that was well suited for shipboard deployment with minimal maintenance. Moreover, a novel LabVIEW-based software program was developed, containing additional functions such as automated calibration curve generation, autodilution of high-concentration samples, and a user-friendly interface for multiparameter analysis using a single instrument. After the optimization of chemical reactions and work flow chart, the analyzer exhibited low limits of detection, a large linear range with automated dilution, and relative standard deviations of less than 2% ( = 11). Compared to other flow-based techniques, this analyzer is more portable and consumes less reagent with an autonomous data processing function and applicability within a broad salinity range (0-35). The analyzer was successfully applied for real-time analysis in the Jiulong River Estuary-Xiamen Bay with excellent on-site accuracy and applicability. The relationship between high spatial resolution nutrient concentrations and salinities showed very different patterns in estuarine and coastal areas, indicating the benefit of using an underway automated analyzer for chemical mapping in a dynamic environment.
高频现场营养分析仪为解决动态复杂的河口海岸生态系统中耗时费力的采样问题提供了一项很有前景的技术。然而,由于技术限制,关于海水中五种关键营养物质(铵、亚硝酸盐、硝酸盐、磷酸盐和硅酸盐)同时进行现场分析的研究很少。在本研究中,报道了一种最先进的用于在不同盐度和浓度范围内对环境中的营养物质进行船上分析的自主便携式分析仪。该分析仪由紧凑的硬件组成,非常适合船上部署且维护量最小。此外,还开发了一种基于LabVIEW的新型软件程序,它具有诸如自动生成校准曲线、高浓度样品自动稀释以及使用单一仪器进行多参数分析的用户友好界面等附加功能。在对化学反应和工作流程图进行优化后,该分析仪具有低检测限、自动稀释的大线性范围以及小于2%(n = 11)的相对标准偏差。与其他基于流动的技术相比,该分析仪更便于携带,试剂消耗更少,具有自主数据处理功能且在宽盐度范围(0 - 35)内适用。该分析仪已成功应用于九龙江河口 - 厦门湾的实时分析,具有出色的现场准确性和适用性。高空间分辨率营养物质浓度与盐度之间的关系在河口和沿海地区呈现出非常不同的模式,这表明在动态环境中使用现场自动分析仪进行化学测绘的益处。