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Chemical composition of maize stover fraction versus methane yield and energy value in fermentation process

机译:玉米秸秆部分的化学组成与发酵过程中甲烷产量和能量值的关系

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Maize stover is a morphologically diverse biomass, consisting of cobs, leaves, husks and stalks. Technological solutions allow separation of maize stover fractions depending on harvest term, tissular and chemical composition. Different chemical compositions of lignocellulose biomasses affect energy efficiency of specific fractions in methane fermentation. The aim of this study was to correlate the chemical composition of maize stover fractions (cobs, husks, leaves and stalks) with methane yield and energy value while considering different harvest times for biogas fermentation. Pearson correlation coefficients were calculated for all results, with a very strong negative correlation (r = -0.86) between methane yield and lignin content in the maize stover fractions. The lowest methane yield (185.3 m~3/Mg of TS) and the longest HRT (40 days) activity of maize stalks were obtained from those samples. Moderately negative correlation between methane yield and cellulose content (r = 0.53) or between methane yield and Na content (r = -0.52) were also observed. This helps explain why the lowest methane yields were found in peduncles with high levels of sodium, cellulose and lignin.
机译:玉米秸秆是一种形态多样的生物质,由穗轴,叶片,果壳和秸秆组成。技术解决方案可以根据收获期,组织和化学成分分离玉米秸秆。木质纤维素生物质的不同化学组成会影响甲烷发酵中特定馏分的能量效率。这项研究的目的是在考虑沼气发酵的不同收获时间的同时,将玉米秸秆各部分(穗轴,果壳,叶和茎)的化学成分与甲烷产量和能量值相关联。计算出所有结果的皮尔逊相关系数,并且玉米秸秆组分中甲烷产量与木质素含量之间具有非常强的负相关性(r = -0.86)。从这些样品中获得了最低的甲烷产量(185.3 m〜3 / Mg TS)和最长的HRT活性(40天)。还观察到甲烷产率与纤维素含量(r = 0.53)或甲烷产率与Na含量(r = -0.52)之间中等程度的负相关。这有助于解释为什么在钠,纤维素和木质素含量高的花梗中发现最低的甲烷产量。

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