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1)  bagasse cellulose phosphate ester
甘蔗渣纤维素磷酸酯
1.
The optimum technological conditions were studied for the synthesis of bagasse cellulose phosphate ester by the reaction of bagasse cellulose as raw material with urea as catalyst.
甘蔗渣纤维素为原料 ,用尿素作催化剂 ,研究了甘蔗渣纤维素磷酸酯合成的最佳工艺条件。
2)  bagasse cellulose
甘蔗渣纤维素
1.
The recent progress of bagasse such as the structure,nature,modified method of bagasse cellulose and the comprehensive utilization of bagasse in industry,architecture industry,biology,agriculture and preventive medicine were summarized in this review.
综述了甘蔗渣的研究进展,包括甘蔗渣纤维素的结构、性质、改性方法及甘蔗渣在工业、建筑业、生物、农业及预防医学上的综合利用。
3)  bagasse cellulose xanthate
蔗渣纤维素黄原酸酯
1.
The alkalizing bagasse reacted with carbon disulfide to synthesize bagasse cellulose xanthate.
蔗渣纤维素经碱化后,与二硫化碳反应,得蔗渣纤维素黄原酸酯(CX)。
4)  bagasse fiber
甘蔗渣纤维
1.
Fabrication and mechanical properties of bagasse fiber reinforced polypropylene composites;
甘蔗渣纤维增强聚丙烯复合材料的制备和力学性能
2.
On the basis of the Weibull statistic and weakest-link theories,the statistical strength and distribution of bagasse fiber was analyzed,and the tensile strengths of the fiber-reinforced biodegradable composites were investigated.
以Weibull统计理论和最弱连接理论为基础,分析了甘蔗渣纤维的统计强度和强度分布,研究了其纤维增强可降解复合材料的拉伸强度。
5)  bagasse fibre
甘蔗渣纤维
1.
The biodegradable composites made from bagasse fibre and biodegraded resin were prepared by press forming,and the effects of alkali treatments on the fibres and composites were investigated.
利用压制成型的方法制备了甘蔗渣纤维增强全降解复合材料,探讨了碱处理对材料性能的影响。
2.
Biodegradable composites reinforced with bagasse fibre were prepared by a press forming,and the thermal properties of fibre and the flexural modulus of composites were investigated in view of the fibre content and length.
利用压制成型制备了甘蔗渣纤维增强可降解复合材料,分析了纤维的热分解性能,研究了纤维含有量和纤维长度对材料弯曲模量的影响,利用Cox剪滞法和材料的结构特点,探讨了一种新的修正模型对弯曲模量的预测。
6)  Amphoteric bagasse cellulose
两性甘蔗渣纤维素
补充资料:三醋酯纤维素中空纤维膜
分子式:
CAS号:

性质:又称三醋酯纤维素中空纤维膜。其非对称膜具有反渗透功能,而复合膜等具有气体分离功能。前者对3.5×10-2NaCl的海水的脱盐率为99.4%,透水量27.5~35.0m3/(日·元件),使用压力6.37~6.86MPa,pH值3~8,允许氯浓度(0.2~1.0)×10-6。后者的气体透过率1×10-4cm3/cm2·s·cmHg(7.5×10-5cm3/cm2·s·kPa),氢分离系数35~50,H2/CH4透过速度比92。制法是将三醋酸纤维素溶于二甲醇作为增塑剂进行“熔纺”,还可进一步涂复适当的聚合物制成复合膜。用途是海水和苦咸水淡化、氢气分离和纯氮制备等。

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