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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >High yielding tropical energy crops for bioenergy production: Effects of plant components, harvest years and locations on biomass composition
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High yielding tropical energy crops for bioenergy production: Effects of plant components, harvest years and locations on biomass composition

机译:生物能源生产的高产热带能源作物:植物成分,收获年份和生物量组成的影响

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摘要

The composition of lignocellulosic feedstock, which depends on crop type, crop management, locations and plant parts, significantly affects the conversion efficiency of biomass into biofuels and biobased products. Thus, this study examined the composition of different parts of two high yielding tropical energy crops, Energycane and Napier grass, collected across three locations and years. Significantly higher fiber content was found in the leaves of Energycane than stems, while fiber content was significantly higher in the stems than the leaves of Napier grass. Similarly, fiber content was higher in Napier grass than Energycane. Due to significant differences in biomass composition between the plant parts within a crop type, neither biological conversion, including anaerobic digestion, nor thermochemical pretreatment alone is likely to efficiently convert biomass components into biofuels and biobased products. However, combination of anaerobic digestion with thermochemical conversion technologies could efficiently utilize biomass components in generating biofuels and biobased products.
机译:木质纤维素原料的组成,取决于作物类型,作物管理,地点和植物零部件,显着影响生物质转化为生物燃料和生物燃料产品的转化效率。因此,本研究检测了两个高产热带能源作物,能源核和纳皮尔草的不同部分的组成,在三个地点和年份收集。在能量晶叶中发现显着较高的纤维含量比茎,而纤维含量在茎中明显高于纳米尔草的叶子。类似地,纤维含量高于磁能的缺点。由于作物类型的植物部件之间的生物量组成的显着差异,既不是单独的生物转化,包括厌氧消化,也不是热化学预处理,也可能将生物质组分有效地转化为生物燃料和生物燃料产品。然而,具有热化学转换技术的厌氧消化的组合可以有效地利用生物量组分在产生生物燃料和生物燃料产品中。

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