| 王思,魏继国,张方东,刘苇,侯庆喜.基于高得率浆的纤维素微纤丝的制备及其在浆张增强中的应用[J].中国造纸,2019,38(3):1-8 |
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| 基于高得率浆的纤维素微纤丝的制备及其在浆张增强中的应用 |
| Preparation of Lignin Contained Cellulose Microfibril Based on High Yield Pulps and Its Application in Enhancing Handsheets’ Physical Properties |
| 收稿日期:2018-10-18 |
| DOI:10.11980/j.issn.0254-508X.2019.03.001 |
| 关键词: 高得率浆 P-RC APMP 含木素的纤维素微纤丝 物理强度 |
| Key Words:high yield pulps P-RC APMP lignin contained cellulose microfibril (L-CMF) physical properties |
| 基金项目:国家自然科学基金项目(31770634);天津市自然科学基金项目(17 JCYBJC20600);天津科技大学青年教师创新基金(2015LG30)。 |
| 作者 | 单位 | | 王思1 | 1. 天津科技大学天津市制浆造纸重点实验室,天津,300457 | | 魏继国2 | 2. 河南焦作瑞丰纸业有限公司,河南焦作,454950 | | 张方东1 | 1. 天津科技大学天津市制浆造纸重点实验室,天津,300457 | | 刘苇1,* | 1. 天津科技大学天津市制浆造纸重点实验室,天津,300457 | | 侯庆喜1 | 1. 天津科技大学天津市制浆造纸重点实验室,天津,300457 |
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| 摘要:本研究采用化学和机械相结合的方法处理杨木P-RC APMP(木素含量22.73%),制备了一种含木素的纤维素微纤丝(Lignin contained cellulose microfibril,L-CMF),对其进行了分析和表征;并将L-CMF应用于浆张抄造,研究了L-CMF对浆张物理性能的影响。结果表明,采用TEMPO氧化法与高压均质相结合所制备的L-CMF直径约为200~400 nm,羧基含量为1165.29 mmol/kg;L-CMF能有效提高漂白硫酸盐针叶木浆(BSKP)、杨木P-RC APMP以及两者配抄后浆张的物理强度。当L-CMF添加量为7%,杨木P-RC APMP配比为30%时,L-CMF对浆张的增强效果尤为明显,浆张的抗张指数和耐破指数分别比空白样提高30.2%和50.4%;但L-CMF的加入会使浆张的松厚度、白度和不透明度略有降低。 |
| Abstract:To extend the application of high yield pulps, the lignin contained cellulose microfibril (L-CMF) was prepared by treating poplar P-RC APMP (lignin content of 22.73%) with chemical and mechanical methods. The resultant L-CMF was obtained by TEMPO-mediated oxidation and homogenization treatment. The L-CMF’ main characteristics were analyzed, and their application in enhancing handsheets’ physical properties was also investigated. The results showed that the diameter of the L-CMF was 200~400 nm, and carboxyl content was 1165.29 mmol/kg; the L-CMF could effectively improve the physical strength of all handsheets prepared by BSKP, poplar P-RC APMP, and the mixture of these two kind of pulps with different ratios. When the proportion of P-RC APMP in the mixtures was 30% and the dosage of L-CMF was 7.0%, the physical strength of the handsheet was improved significantly, the tensile index and burst index were increased by 30.2% and 50.4%, respectively. However, the bulk, brightness, and opacity were slightly reduced. |
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