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作 者:赵志明[1] 程飞[1] 吴海杨 胡佳艺[1] 刘文波[1]
机构地区:[1]东北林业大学材料科学与工程学院,黑龙江哈尔滨150040
出 处:《中国造纸》2016年第7期13-18,共6页China Pulp & Paper
基 金:国家级大学生创新训练项目(201510225021);黑龙江省留学归国人员科学基金(LC2013C11)
摘 要:采用Na OH、尿素、硫脲等调配纸浆纤维改性试剂,先对纸浆纤维进行试剂改性,再采用超声波协同处理,利用改性纤维抄造高透气性能滤纸,探讨改性试剂质量分数、超声波功率、超声波处理时间等因素对改性效果的影响,通过对比分析改性前后纸浆纤维形态变化及所抄造滤纸的透气度、平均孔径、最大孔径、松厚度、零距抗张强度等指标来评价改性效果。结果表明,当改性试剂质量分数30%、超声波功率600 W,超声波处理时间15 min时,纤维改性效果最佳;且纤维发生了明显的润胀,有一定的分丝和微纤化现象,所抄造滤纸透气度由未改性的157.57 L/(m^2·s)提高到1041.16 L/(m^2·s);平均孔径由35.171μm提高到47.498μm;最大孔径由39.178μm提高到49.712μm;松厚度由3.16 cm^3/g提高到5.22 cm^3/g。Pulp fibers were modified in aqueous NaOH-urea-thiourea solution and treated with ultrasonic to prepare high-permeability filter paper. Effects of the agent concentration, ultrasound power and time of ultrasound treatment were studied. Comparing the morphological change of the fibers in modification and the main parameters of the filter papers ( permeability, pore size, bulk, and zero-span tensile strength) prepared with treated and untreated fibers to evaluate the effect of modification. The results showed that the ultrasound treatment process was most favorable at 600 W for 15 rain and the agent concentration was 30%, obviously swelling and fibrillation of the fibers, took place under the conditions. The permeability increased from 157.57 L/( m^2·s) to 1041.16 L/( m^2·s), average pore size increased from 35. 171 μm to 47. 498 μm, maximum pore size increased from 39. 178 μm to 49. 712μm, the bulk increased from 3.16 cm^3/g to 5.22 cm^3/g for the paper prepared with untreated and treated fibers respectively.
分 类 号:TS761.2[轻工技术与工程—制浆造纸工程]
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