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Anaerobic digestion of macroalgae: Methane potentials, pre-treatment, inhibition and co-digestion

机译:大型藻类的厌氧消化:甲烷潜力,预处理,抑制作用和共同消化

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In the present study we tested four macroalgae species - harvested in Denmark - for their suitability of bioconversion to methane. In batch experiments (53 °C) methane yields varied from 132 ml g volatile solids ~(-1) (VS) for Gracillaria vermiculophylla, 152 ml g VS~(-1) for Ulva lactuca, 166 ml g VS~(-1) for Chaetomorpha linum and 340 ml g VS~(-1) for Saccharina latissima following 34 days of incubation. With an organic content of 21.1% (1.5-2.8 times higher than the other algae) S. latissima seems very suitable for anaerobic digestion. However, the methane yields of U. lactuca, G. vermiculophylla and C. linum could be increased with 68%, 11% and 17%, respectively, by pretreatment with maceration. U. lactuca is often observed during 'green tides' in Europe and has a high cultivation potential at Nordic conditions. Therefore, U. lactuca was selected for further investigation and co-digested with cattle manure in a lab-scale continuously stirred tank reactor. A 48% increase in methane production rate of the reactor was observed when the concentration of U. lactuca in the feedstock was 40% (VS basis). Increasing the concentration to 50% had no further effect on the methane production, which limits the application of this algae at Danish centralized biogas plant.
机译:在本研究中,我们测试了四种在丹麦收获的大型藻类是否适合生物转化为甲烷。在分批实验(53°C)中,甲烷生成量从ver藜草的132 ml g挥发性固体〜(-1)(VS),Ulva lactuca的152 ml g VS〜(-1),166 ml g VS〜(-1孵化34天后,对Chaetomorpha linum而言为),对Saccharina latissima为340 ml g VS〜(-1)。 latissima的有机物含量为21.1%(比其他藻类高1.5-2.8倍),似乎非常适合厌氧消化。但是,通过浸软预处理,U。lactuca,G。vermiculophylla和C. linum的甲烷产率分别可以提高68%,11%和17%。在欧洲,经常在绿潮中观察到U. lactuca,它在北欧条件下具有很高的栽培潜力。因此,选择了U. lactuca进行进一步研究,并在实验室规模的连续搅拌釜反应器中与牛粪一起进行了消化。当原料中的U. lactuca浓度为40%(以VS为基准)时,观察到反应器的甲烷生产率提高了48%。将浓度增加到50%对甲烷的生产没有进一步影响,这限制了这种藻类在丹麦集中式沼气厂的应用。

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