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Reduced use of phosphorus and water in sequential dark fermentation and anaerobic digestion of wheat straw and the application of ensiled steam-pretreated lucerne as a macronutrient provider in anaerobic digestion

机译:减少磷和水在序贯的黑暗发酵和厌氧消化中的少量消化,并在Anaerobic消化中施用Ensiled蒸汽预处理Lucerne作为Macronutient提供者

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摘要

Abstract Background Current EU directives demand increased use of renewable fuels in the transportation sector but restrict governmental support for production of biofuels produced from crops. The use of intercropped lucerne and wheat may comply with the directives. In the current study, the combination of ensiled lucerne (Medicago sativa L.) and wheat straw as substrate for hydrogen and methane production was investigated. Steam-pretreated and enzymatically hydrolysed wheat straw [WSH, 76% of total chemical oxygen demand (COD)] and ensiled lucerne (LH, 24% of total COD) were used for sequential hydrogen production through dark fermentation and methane production through anaerobic digestion and directly for anaerobic digestion. Synthetic co-cultures of extreme thermophilic Caldicellulosiruptor species adapted to elevated osmolalities were used for dark fermentation. Results Based on 6 tested steam pretreatment conditions, 5 min at 200 °C was chosen for the ensiled lucerne. The same conditions as applied for wheat straw (10 min at 200 °C with 1% acetic acid) would give similar sugar yields. Volumetric hydrogen productivities of 6.7 and 4.3 mmol/L/h and hydrogen yields of 1.9 and 1.8 mol/mol hexose were observed using WSH and the combination of WSH and LH, respectively, which were relatively low compared to those of the wild-type strains. The combinations of WSH plus LH and the effluent from dark fermentation of WSH plus LH were efficiently converted to methane in anaerobic digestion with COD removal of 85–89% at organic loading rates of COD 5.4 and 8.5 g/L/day, respectively, in UASB reactors. The nutrients in the combined hydrolysates could support this conversion. Conclusions This study demonstrates the possibility of reducing the water addition to WSH by 26% and the phosphorus addition by 80% in dark fermentation with Caldicellulosiruptor species, compared to previous reports. WSH and combined WSH and LH were well tolerated by osmotolerant co-cultures. The yield was not significantly different when using defined media or hydrolysates with the same concentrations of sugars. However, the sugar concentration was negatively correlated with the hydrogen yield when comparing the results to previous reports. Hydrolysates and effluents from dark fermentation can be efficiently converted to methane. Lucerne can serve as macronutrient provider in anaerobic digestion. Intercropping with wheat is promising.
机译:摘要背景现有欧盟指令需求在运输部门的可再生燃料使用增加,但限制了政府支持,对生产的生物燃料生产。使用Intercropped Lucerne和小麦可能符合指令。在目前的研究中,研究了Ensiled Lucerne(Medicago Sativa L.)和小麦秸秆作为用于氢和甲烷产生的基材的组合。蒸汽预处理和酶促水解的小麦秸秆[WSH,76%的总化学需氧量(COD)]和Ensiled Lucerne(LH,24%的总鳕鱼)通过通过厌氧消化和甲烷产生通过黑暗发酵和甲烷产生的顺序氢气产生和直接用于厌氧消化。适用于渗透压升高的渗透压的极嗜热嗜热素的合成共培养物用于黑暗发酵。基于6个测试的蒸汽预处理条件的结果,为肠道朗塞选择5分钟。对小麦秸秆的施用条件相同(在200℃下10分钟,1%乙酸)将产生类似的糖产率。使用WSH和WSH和LH的组合观察6.7和4.3mmol / L / h和1.9和1.8mol / mol己糖的氢产率为1.9和1.8mol / mol Hexose,与野生型菌株相比相对较低。 WSH Plus LH的组合和WSH Plus LH的黑暗发酵的流出物在厌氧消化中有效地转化为厌氧消化中的甲烷,分别在COD 5.4和8.5g / L /天的有机加载率下去除85-89% UASB反应堆。合并水解产物中的营养物可支持这种转化。结论本研究表明,与以前的报告相比,磷在与Caldicellulosirosuptor物种的黑暗发酵中减少了26%的含水量和80%的磷加入的可能性。 WSH和合并的WSH和LH被Osmotolerant的共同培养物耐受良好。使用具有相同浓度糖的定义培养基或水解产物时,产量没有显着差异。然而,当将结果与先前的报告进行比较时,糖浓度与氢屈服呈负相关。可以有效地将来自黑色发酵的水解酸盐和流出物有效地转化为甲烷。卢塞恩可以作为厌氧消化的Macronutrient提供者。与小麦的间作是有前途的。

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