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Anaerobic biodegradability of fish remains: experimental investigation and parameter estimation

机译:鱼类厌氧生物可降解性:实验研究和参数估计

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摘要

The generation of organic waste associated with aquaculture fish processing has increased significantly in recent decades. The objective of this study is to evaluate the anaerobic biodegradability of several fish processing fractions, as well as water treatment sludge, for tilapia and sturgeon species cultured in recirculated aquaculture systems. After substrate characterization, the ultimate biodegradability and the hydrolytic rate were estimated by fitting a first-order kinetic model with the biogas production profiles. In general, the first-order model was able to reproduce the biogas profiles properly with a high correlation coefficient. In the case of tilapia, the skin/fin, viscera, head and flesh presented a high level of biodegradability, above 310 mLCH(4) gCOD(-1), whereas the head and bones showed a low hydrolytic rate. For sturgeon, the results for all fractions were quite similar in terms of both parameters, although viscera presented the lowest values. Both the substrate characterization and the kinetic analysis of the anaerobic degradation may be used as design criteria for implementing anaerobic digestion in a recirculating aquaculture system.
机译:近几十年来,与水产养殖鱼类加工有关的有机废物的产生已大大增加。这项研究的目的是评估在循环水产养殖系统中养殖的罗非鱼和st鱼物种的几种鱼类加工级分以及水处理污泥的厌氧生物降解性。在对底物进行表征后,通过将一级动力学模型与沼气生产曲线拟合来估算最终生物降解性和水解速率。通常,一阶模型能够以高相关系数正确地再现沼气剖面。在罗非鱼的情况下,皮肤/鳍,内脏,头和肉呈现出高水平的生物降解性,高于310 mLCH(4)gCOD(-1),而头和骨则显示出低的水解速率。对于st鱼,尽管内脏呈现最低值,但在两个参数方面,所有级分的结果都非常相似。底物表征和厌氧降解的动力学分析都可以用作在循环水产养殖系统中实施厌氧消化的设计标准。

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