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一种通过高压喷雾添加粘结剂以改善生物质致密化的方法。

A Method of Adding Binder by High-Pressure Spraying to Improve the Biomass Densification.

作者信息

Ju Xiaonan, Zhang Kexin, Chen Zhongjia, Zhou Jianbo

机构信息

School of Engineering, Beijing Forestry University, Beijing 100083, China.

Forestry New Technology Research Institute, Chinese Academy of Forestry, Beijing 100091, China.

出版信息

Polymers (Basel). 2020 Oct 15;12(10):2374. doi: 10.3390/polym12102374.

Abstract

In order to cut down the usage amount of binder, mix it more evenly with the biomass raw materials and improve the quality of pellets in the densification process, this study explored the feasibility of promoting the densification of biomass by using a high-pressure spraying method to add liquid binder. In the study, a high-pressure sprayer was used to spray saturated brown sugar water into sawdust for densification tests. A three-factor orthogonal experiment was designed to analyze the physical characteristics of the pellets under different variables. Through analysis of range and multiple linear regression, the effect curve was drawn to analyze the impact of the high-pressure spraying method on densification. The results showed that under low compaction pressure of 14.9 MPa, the raw materials with adding 6% saturated brown sugar water can be densified into pellets, while the raw materials without binder cannot. Moreover, compared with the method of adding binder by stirring, the high-pressure spraying method obtained the pellets with fewer cracks on the surface and increased the relaxation density of pellets by 8.65%. Under high compaction pressure (75, 100, 124 and 149 MPa), the high-pressure spraying method has a significant effect on increasing the relaxation density, not only on the compressive strength.

摘要

为了减少粘结剂的用量,使其与生物质原料更均匀地混合,并在致密化过程中提高颗粒质量,本研究探讨了采用高压喷雾法添加液体粘结剂来促进生物质致密化的可行性。在该研究中,使用高压喷雾器将饱和红糖水喷入锯末中进行致密化试验。设计了一个三因素正交试验,以分析不同变量下颗粒的物理特性。通过极差分析和多元线性回归,绘制效应曲线来分析高压喷雾法对致密化的影响。结果表明,在14.9MPa的低成型压力下,添加6%饱和红糖水的原料可致密化为颗粒,而无粘结剂的原料则不能。此外,与搅拌添加粘结剂的方法相比,高压喷雾法获得的颗粒表面裂纹更少,颗粒的松弛密度提高了8.65%。在高成型压力(75、100、124和149MPa)下,高压喷雾法对提高松弛密度有显著效果,对抗压强度也有显著效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4750/7602856/321fa25ba568/polymers-12-02374-g001.jpg

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