Effect of Substrate-to-Inoculum Ratio and Temperatures During the Start-up of Anaerobic Digestion of Fish Waste

Arma Yulisa, Chayanee Chairattanawat, S. Park, Md Abu Hanifa Jannat, Seokhwan Hwang
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引用次数: 2

Abstract

The high protein and lipid content of fish waste makes mono-digestion a difficult bioprocess for an anaerobic digestion (AD) system. On the other hand, the massive increase in fish and seafood consumption worldwide has led to an inevitable fish waste mono-AD. Therefore, this study was conducted to investigate the effects of food-to-microorganisms (F/M) ratios and temperatures during the start-up period of fish waste mono-digestion. F/M ratios of 0.5, 1, 2, and 3 on a g-COD/g-VSS basis were operated at 35°C and 45°C, representing mesophilic and hyper-mesophilic conditions, respectively. The increase in F/M ratio improved the maximum methane (CH4) production rate at both temperatures. However, F/M ratio of 0.5 generated the highest CH4 yield in mesophilic and hyper-mesophilic conditions (0.23±0.00 L-CH4/g-CODinput). Further increase in F/M ratio decreased CH4 yield up to 21.74% and 39.13% when the reactors were operated at 35°C and 45°C, respectively. When reactors were supplied with FM ratios of 0.5, 1, and 2, hyper-mesophilic temperature improved methanogenesis by up to 2.61% and shortened the lag phase by 22.88%. Meanwhile, F/M ratio 3 at 45°C decreased cumulative CH4 production by up to 26.57% and prolonged the lag phase by 10.19%. The result of this study is beneficial to managing the input substrate of a batch-AD system that treats fish waste as a sole substrate.
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底物接种比和温度对鱼粪厌氧消化启动过程的影响
鱼类废物的高蛋白和脂质含量使得单消化成为厌氧消化(AD)系统的一个困难的生物过程。另一方面,全球鱼类和海鲜消费的大量增加导致了不可避免的鱼类废物单一ad。因此,本研究旨在探讨鱼粪单消化启动期食物微生物比(F/M)和温度的影响。以g-COD/g-VSS为基础,F/M比分别为0.5、1、2和3,分别在35°C和45°C条件下进行,分别代表中温和超中温条件。F/M比的增加提高了两种温度下的最大甲烷(CH4)产率。而在中温和超中温条件下,F/M比为0.5时CH4产率最高(0.23±0.00 L-CH4/g-CODinput)。进一步提高F/M比,在35℃和45℃运行时,CH4产率分别下降21.74%和39.13%。在FM比为0.5、1和2的条件下,超亲中温可使产甲烷率提高2.61%,使滞后期缩短22.88%。同时,在45°C条件下,F/M比3使累积CH4产量减少26.57%,滞后期延长10.19%。本研究的结果有利于管理将鱼类废物作为唯一底物的分批- ad系统的输入底物。
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