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氯化胆碱/尿素预处理水稻秸秆及其解离纤维结构性能的表征

Characterization of Choline Chloride/Urea Pretreated Rice Straw and Its Dissociative Fiber Structure and Properties

  • 摘要: 采用氯化胆碱/尿素低共熔溶剂(DES)体系预处理水稻秸秆,协同盘磨机械均质化处理对秸秆纤维进行解离,当DES添加量为秸秆质量的1.5%、2.5%、3.5%、4.5%时,制备的解离纤维浆料分别标记为DES-1.5%、DES-2.5%、DES-3.5%和DES-4.5%,并以未添加DES处理得到的样品为对照样(CK)。利用傅里叶红外光谱(FT-IR)、X射线衍射(XRD)仪、扫描电子显微镜和荧光显微镜对解离纤维的性能进行表征,通过NREL法分析不同DES添加量处理的解离纤维的化学组分,并计算盘磨机械能耗及解离纤维的成膜力学性能。结果表明:DES体系协同盘磨机械均质化预处理可通过氢键的竞争作用破坏LCC的连接,从而促进秸秆纤维的解离,利于纤维分丝帚化。与CK相比,当DES添加量为3.5%时,微纤丝角和结晶度分别由35.84°、41.3%提高至47.61°、50.1%,木质素质量分数下降了5.3个百分点,且秸秆纤维表面层断裂加剧,盘磨加工能耗降低了160 kW·h/t,该条件下制备的秸秆纤维地膜加权力学性能最好。荧光显微镜观察结果表明DES预处理可加速木质素向秸秆纤维表层的迁移和溶出。

     

    Abstract: The rice straw was pretreated by choline chloride/urea deep eutectic solvent(DES) system, and the pretreated straw fiber was dissociated by mechanical homogenization treatment. With the DES addition of 1.5%, 2.5%, 3.5% and 4.5% of the straw mass, the prepared dissociated fiber slurries were labeled as DES-1.5%, DES-2.5%, DES-3.5% and DES-4.5%, respectively, while the sample without DES treatment was used as the control(CK). The properties of the dissociated fibers were characterized by Fourier transform infrared spectroscopy(FT-IR), X-ray diffraction(XRD), scanning electron microscopy(SEM) and fluorescence microscopy. The chemical composition of the dissociated fibers treated by different methods was analyzed by NREL method, and the mechanical energy consumption of the disc mill and the film-forming mechanical properties of the dissociated fibers were studied. The results showed that the homogenization pretreatment of DES system combined with disc grinding machine could destroy the connection of LCC through the competition of hydrogen bonds, thus promoting the dissociation of straw fibers and facilitating the fibrillation of fibers. Compared with CK, when the addition amount of DES was 3.5%, the microfibril angle and crystallinity increased from 35.84° and 41.3% to 47.61° and 50.1%, respectively, in addition to a lignin content decrease by 5.3 percentage points. Moreover, the fracture of the surface layer of rice straw fiber increased, and the energy consumption of disc milling decreased by 160 kW·h/t. The straw fiber mulch prepared under this condition had the best weighted mechanical properties. The results of fluorescence microscopy showed that DES pretreatment could accelerate the migration and dissolution of lignin to the surface of straw fiber.

     

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