Enhancement of processability, surface, and mechanical properties of paper based on rice straw pulp using biopolymers for packaging applications

July 2019 Pub Date : 2019-08-01 DOI:10.32964/tj18.7.431
Shubhang Bhardwaj, N. Bhardwaj, Y. S. Negi
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引用次数: 4

Abstract

Two biopolymers, chitosan and oxidized starch, were used as wet-end additives to improve the strength properties of the paper because of their biodegradable and non-hazardous qualities. The present study reports the improvement in surface and strength properties of packaging-grade paper made with rice straw pulp using biopolymers, chitosan, oxidized starch, and surface sizing added at the wet end of the paper machine. Use of chitosan at all doses from 0.5 to 10 kg/ton enhanced important surface and strength properties of paper. The breaking length, tear index, burst index, ring crush strength, stretch, tensile energy absorption index, and Taber stiffness of the paper with 10 kg/ton of chitosan as a wet-end additive showed 22%, 14%, 20%, 59%, 16%, 44%, and 48% improvement, respectively, in comparison to control, (i.e, without its addition). The Cobb60 was also reduced by 45%, showing better resistance to water in comparison to rice straw paper alone. The effects of chitosan added at the wet end on the paper surface were investigated using Fourier transform infrared spectroscopy (FTIR). The use of 10 kg/ton of chitosan at the wet end reduced the color and total suspended solids in the back water of the papermaking system by 55% and 51%, respectively. Further enhancement in the surface and strength properties of paper was observed following surface sizing with oxidized starch.
用生物聚合物增强包装用稻草浆纸的加工性能、表面和机械性能
采用壳聚糖和氧化淀粉两种生物聚合物作为湿端助剂,以提高纸的强度性能,因为它们具有可生物降解和无害的特性。本研究报道了在纸机湿端添加生物聚合物、壳聚糖、氧化淀粉和表面施胶,以改善包装级纸的表面和强度性能。使用0.5至10公斤/吨剂量的壳聚糖可增强纸张的重要表面和强度特性。湿端添加10 kg/t壳聚糖后,纸张的断裂长度、撕裂指数、破裂指数、环压强度、拉伸力、拉伸能吸收指数和Taber刚度分别比未添加壳聚糖的对照提高22%、14%、20%、59%、16%、44%和48%。Cobb60也减少了45%,与单独的稻草纸相比,表现出更好的耐水性。利用傅里叶变换红外光谱(FTIR)研究了湿端添加壳聚糖对纸张表面的影响。在湿端使用10 kg/t的壳聚糖,可使造纸系统背水中的颜色和总悬浮物分别降低55%和51%。用氧化淀粉施胶后,纸张的表面和强度性能得到进一步提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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