Institute of Analytical Chemistry and Food Chemistry , Graz University of Technology , Stremayrgasse 9 , 8010 Graz , Austria.
Idronaut S.r.l. , Via Monte Amiata 10 , 20861 Brugherio , Monza and Brianza , Italy.
Environ Sci Technol. 2018 Jul 3;52(13):7399-7408. doi: 10.1021/acs.est.8b00578. Epub 2018 Jun 13.
The occurrence and intensity of (harmful) algal blooms (HABs) have increased through the years due to rapidly changing environmental conditions. At the same time, the demand for low-cost instrumentation has increased substantially, enabling the real-time monitoring and early-stage detection of HABs. To meet this challenge, we have developed a compact multi-wavelength fluorometer for less than 400 USD. This is possible by using readily available and low-cost optical and electronic components. Its modular design results in a highly versatile and flexible monitoring tool. The algae detection module enables a continuous identification and control of relevant algal groups based on their spectral characteristics with a detection limit of 10 cells per liter. Besides its usage as a benchtop module in the laboratory, the algae module has been integrated into submersible housings and applied in coastal environments. During its first in situ application in the Port of Genoa, seawater samples of mixed algal composition were used to demonstrate the successful discrimination of cyanobacteria and dinophytes as well-known toxin producing classes. Fabrication, operation, and performance as well as its first in situ application are addressed.
由于环境条件的迅速变化,有害藻类大量繁殖(HAB)的发生和强度近年来有所增加。与此同时,对低成本仪器的需求大幅增加,使 HAB 的实时监测和早期检测成为可能。为了应对这一挑战,我们开发了一种价格低于 400 美元的紧凑型多波长荧光计。这是通过使用现成的低成本光学和电子元件实现的。其模块化设计可实现高度通用和灵活的监测工具。藻类检测模块能够根据其光谱特征连续识别和控制相关藻类群,检测限为每升 10 个细胞。除了在实验室中用作台式模块外,藻类模块还已集成到潜水外壳中,并应用于沿海环境。在其首次在热那亚港的现场应用中,使用混合藻类组成的海水样本证明了成功区分蓝藻和甲藻作为已知的产毒类。介绍了其制造、操作和性能以及首次现场应用。