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The characteristic changes of rice straw fibers in anaerobic digestion and its effect on rice straw-reinforced composites

机译:稻草纤维在厌氧消化中的特征变化及其对水稻吸管复合材料的影响

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摘要

Rice straw (RS) was utilized to produce biogas, and its biogas residues (BR) were studied on different degradation time. When rice straw was digested, much biogas was produced with average 50% methane. In anaerobic condition, non-fiber contents were mainly digested in the initial 10 days. Meanwhile, the surface of rice straw fibers became rough and its onset decomposition temperature also rose from 170 degrees C to 210 degrees C. Cellulose and hemicellulose were digested from 10 days to 30 days, and it determined that the cellulose crystallinity declined from 44.9% to 40.1% and hydroxyl groups was also seen to decrease, which conduces to the reduction of polarity and hydroscopicity. However, lignin was hardly digested in the whole anaerobic process. Inevitably, lignin was accumulated to contribute to the thermal stability and mechanical properties of rice straw fibers. Furthermore, rice straw/low-density polyethylene (RS/LDPE) and biogas residues/low-density polyethylene (BR/LDPE) composites were prepared. Compared with RS/LDPE composites, BR/LDPE composites showed obviously better tensile and flexural properties. Consequently, biogas residues of rice straw have better chemical and physical properties than the undigested rice straw.
机译:利用稻草(RS)产生沼气,并在不同的降解时间内研究其沼气残留物(BR)。消化稻草时,用平均50%甲烷生产了很多沼气。在厌氧条件下,主要在最初10天内消化非纤维内容物。同时,稻草纤维的表面变得粗糙,其发病分解温度也从170℃升高至210℃。从10天至30天消化纤维素和半纤维素,并确定纤维素结晶度从44.9%下降到还观察到40.1%和羟基降低,减少了极性和嗜湿性的降低。然而,在整个厌氧过程中难以消化木质素。不可避免地,累积木质素以有助于稻草纤维的热稳定性和机械性能。此外,制备稻草/低密度聚乙烯(RS / LDPE)和沼气残留物/低密度聚乙烯(BR / LDPE)复合材料。与RS / LDPE复合材料相比,BR / LDPE复合材料明显呈现出更好的拉伸和弯曲性能。因此,稻草秸秆的沼气残留物具有比未消化的稻草更好的化学和物理性质。

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