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Adsorptive performance of granular activated carbon in aquaculture and aquaria: A simplified method

机译:水产养殖和水族养殖中粒状活性炭的吸附性能:简化方法

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摘要

A principle concern for aquaculturists and aquarium hobbyists is the control and removal of dissolved organic matter. Granular activated carbon is a well-established medium for the adsorption of dissolved organic substances associated with these issues. The selection of activated carbon for aquaria and aquaculture is not well established due to innate heterogeneity of these waters. The means to completely characterize adsorption between carbon sources are generally not available to end users providedtheir level of expertise and/or resources at their disposal. This study introduces a relatively simple method for characterizing activated carbon quality and filter performance utilizing readily available and relatively safe indicator compounds to testadsorptive capabilities between different sources of granular activated carbon. Methylene blue and a commercial mix of humic and tannic substances were used to comparatively test adsorptive performance between two filter groups (i.e., sources of granularactivated carbon) by tracking spectral absorbance with nonlinear regression statistics and validating removal trends against mature aquaculture water. Greater adsorptive capacities were consistently observed in one filter group throughout the indicatortesting battery. Similar findings were observed between the two indicator tests, thereby confirming the method. This method can be adopted by commercial aquaculture operations or aquarists to assist in comparatively screening particular types, particle sizes, and sources of granular activated carbon for specific water quality and engineering requirements.
机译:Aquaculturisturs和Aquarium Hobbyists对Aquaculturisturs和水族馆的原则是对溶解有机物的控制和去除。粒状活性炭是一种良好的培养基,用于吸附与这些问题相关的溶解有机物质。由于这些水域的天生的异质性,对水族馆和水产养殖的活性炭的选择并不充分。完全表征碳源在碳源之间吸附的手段通常不可用的最终用户提供所提供的专业知识和/或资源。本研究介绍了一种相对简单的方法,用于表征活性炭质量和过滤性能,利用易于获得的和相对安全的指示剂化合物在不同粒状活性炭的不同来源之间的磷酸化能力。通过跟踪具有非线性回归统计数据的光谱吸光度并验证成熟水产养殖水的光谱吸光度,亚甲基蓝和腐殖质和单宁物质的商业组合在两个过滤基团(即,细粒活化碳的来源)之间进行比较。在整个可食用电池的一个过滤器组中一致地观察到更大的吸附能力。在两个指示器测试之间观察到类似的发现,从而确认该方法。该方法可以通过商业水产养殖业务或Aquarises采用,以协助进行比较筛选特定类型,粒度和粒状活性炭的来源,以进行特定的水质和工程要求。

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