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Optimization of sensors based on encapsulated algae for pesticide detection in water

机译:基于封装藻类的杀虫剂检测传感器优化

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摘要

Pesticides represent a significant source of contamination for urban and suburban surface, ground and seawaters. Whole-cell algal biosensors are sensitive, cheap and adaptable early-warning systems, which are capable of detecting pesticides both in situ and continuously in discharges and receiving ecosystems. Here we designed and optimized a new biosensor with a microalgae immobilization method based on double encapsulation in alginate beads/silica gel, which has been proven safe for algae in previous studies. Pesticide detection was assessed by chlorophyll fluorescence disturbance using the two algae strains Chlorella vulgaris and Pseudokirchneriella subcapitata. Three pesticides (diuron, atrazine and isoproturon) were used to optimize and assess the sensor's performance. The first step was to select the optimal silica hydrogel (based on porosity and optical properties) to design the sensor. Two parameters were adjusted to obtain the best contact between microalgae and pesticides, optimizing pesticide detection: algal concentrations in the alginate beads and thickness of the silica gel around the algal beads. Finally, the biosensor's performance was assessed with pesticide solutions and the lowest detection limit was obtained with C. vulgaris exposed to diuron (10 mg L~(-1)).
机译:杀虫剂代表城市和郊区,地面和海洋水域的重要污染来源。全细胞藻类生物传感器是敏感的,便宜和适应性的早期预警系统,能够在原位和持续的放电和接收生态系统中检测农药。在这里,我们设计并优化了一种新的生物传感器,所述微藻固定方法基于海藻酸盐珠/硅胶中的双重包封,在先前的研究中已被证明是对藻类的安全性。使用两种藻类菌株和伪核菌和伪高压Chranella和Pseudoknirchneriella subcapitata评估杀虫剂检测。使用三种农药(Diuron,亚尿嘧啶和IsoProturon)来优化和评估传感器的性能。第一步是选择最佳二氧化硅水凝胶(基于孔隙率和光学性质)以设计传感器。调整了两种参数,以获得微藻和农药之间的最佳接触,优化农药检测:藻类珠粒中的藻类浓度和硅凝胶周围的硅凝胶的厚度。最后,使用农药溶液评估生物传感器的性能,并通过暴露于Diuron的C.Vulgaris获得最低的检测限(10mg L〜(-1))。

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  • 来源
    《Analytical methods》 |2019年第48期|共11页
  • 作者单位

    Universit'e de Lyon ENTPE CNRS UMR5023 LEHNA 3 Rue Maurice Audin 69518 Vaulx-en-Velin France;

    INQUIMAE-DQIAQF Universidad de Buenos Aires Facultad de Ciencias Exactas y Naturales Ciudad Universitaria Pab. II C1428EHA Buenos Aires Argentina;

    INQUIMAE-DQIAQF Universidad de Buenos Aires Facultad de Ciencias Exactas y Naturales Ciudad Universitaria Pab. II C1428EHA Buenos Aires Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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