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Sensors, Biosensors, and Analytical Technologies for Aquaculture Water Quality

机译:用于水产养殖水质的传感器,生物传感器和分析技术

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摘要

In aquaculture industry, fish, shellfish, and aquatic plants are cultivated in fresh, salt, or brackish waters. The increasing demand of aquatic products has stimulated the rapid growth of aquaculture industries. How to effectively monitor and control water quality is one of the key concerns for aquaculture industry to ensure high productivity and high quality. There are four major categories of water quality concerns that affect aquaculture cultivations, namely, (1) physical parameters, e.g., pH, temperature, dissolved oxygen, and salinity, (2) organic contaminants, (3) biochemical hazards, e.g., cyanotoxins, and (4) biological contaminants, i.e., pathogens. While the physical parameters are affected by climate changes, the latter three are considered as environmental factors. In this review, we provide a comprehensive summary of sensors, biosensors, and analytical technologies available for monitoring aquaculture water quality. They include low-cost commercial sensors and sensor network setups for physical parameters. They also include chromatography, mass spectrometry, biochemistry, and molecular methods (e.g., immunoassays and polymerase chain reaction assays), culture-based method, and biophysical technologies (e.g., biosensors and nanosensors) for environmental contamination factors. According to the different levels of sophistication of various analytical techniques and the information they can provide (either fine fingerprint, highly accurate quantification, semiquantification, qualitative detection, or fast screening), we will comment on how they may be used as complementary tools, as well as their potential and gaps toward current demand of real-time, online, and/or onsite detection.
机译:在水产养殖工业中,鱼类,贝类和水生植物植物在新鲜,盐或咸水中培养。水产品的需求越来越多地刺激了水产养殖产业的快速增长。如何有效监控和控制水质是水产养殖业的关键问题之一,以确保高生产率和高质量。有四大类水质担心,影响水产养殖培养,即(1)物理参数,例如pH,温度,溶解氧和盐度,(2)有机污染物,(3)生物化学危害,例如氰毒素, (4)生物污染物,即病原体。虽然物理参数受气候变化的影响,但后三个被认为是环境因素。在本文中,我们提供了用于监测水产养殖水质的传感器,生物传感器和分析技术的全面摘要。它们包括低成本的商业传感器和用于物理参数的传感器网络设置。它们还包括色谱法,质谱,生物化学和分子方法(例如,免疫测定和聚合酶链反应测定),培养基方法和用于环境污染因子的生物物理技术(例如,生物传感器和纳米传感器)。根据各种分析技术的不同层次和他们可以提供的信息(精细指纹,高精度的定量,半定量,定性检测或快速筛查),我们将评论它们如何用作互补工具,如以及他们对当前实时,在线和/或现场检测的潜力和差距。

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