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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Demand-driven biogas production from sugar beet silage in a novel fixed bed disc reactor under mesophilic and thermophilic conditions
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Demand-driven biogas production from sugar beet silage in a novel fixed bed disc reactor under mesophilic and thermophilic conditions

机译:在融合和嗜热条件下新型固定床圆盘反应器中的糖束青贮饲料中需求驱动的沼气生产

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A newly developed fixed bed disc reactor (FBDR) which combines biofilm formation on biofilm carriers and reactor agitation in one single system was assessed for its applicability to demand-driven biogas production by variable feeding of sugar beet silage. Five different feeding patterns were studied at an organic loading of 4 gVS L-1 d(-1) under mesophilic and thermophilic conditions. High methane yields of 449462 LN kgVS were reached. Feeding variable punctual loadings caused immediate response with 1.2- to 3.5-fold increase in biogas production rates within 15 min. Although variable feeding did not induce process instability, a temporary decrease in pH-value and methane concentration below 40% occurred. Thermophilic temperature was advantageous as it resulted in a more rapid, higher methane production and less pronounced decrease in methane content after feeding. The FBDR was demonstrated to be well-suited for flexible biogas production, but further research and comparison with traditional reactor systems are required. (C) 2017 Elsevier Ltd. All rights reserved.
机译:将生物膜形成的新开发的固定床盘反应器(FBDR)进行了一种单一系统中的生物膜载体和反应器搅拌,以通过可变喂养甜菜青贮饲料的需求驱动的沼气生产。在中抚化和嗜热条件下,在4 GVS L-1 D(-1)的有机载量下研究了五种不同的喂养模式。达到449462 kgV的高甲烷产率。饲料可变准时的载荷在15分钟内提高沼气生产率的直接响应。虽然可变进料未诱导工艺不稳定性,但暂时降低pH值和低于40%以下的pH值和甲烷浓度。嗜热温度有利,因为它导致饲喂后更快速,更高的甲烷生产和甲烷含量的减少较小。对于柔性沼气生产,表明FBDR被证明是非常适合的,但需要进一步研究和比较传统的反应堆系统。 (c)2017 Elsevier Ltd.保留所有权利。

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