1. 合肥工业大学机械工程学院,安徽 合肥 2300092. 安徽环态生物能源科技开发有限公司,安徽 宣城 242200
收稿日期:
2018-09-03修回日期:
2018-09-30出版日期:
2019-06-22发布日期:
2019-06-20通讯作者:
马培勇Hybrid molding characteristics of three components of biomass based on SLMD
Haiyun SUN1, Peiyong MA1*, Yongqiang XING1, Xianjun XING1, Mingming CHEN21. School of Mechanical Engineering, Hefei University of Technology, Hefei, Anhui 230009, China2. Anhui Huantai Bioenergy Technology Development Co., Ltd., Xuancheng, Anhui 242200, China
Received:
2018-09-03Revised:
2018-09-30Online:
2019-06-22Published:
2019-06-20Contact:
Peiyong Ma 摘要/Abstract
摘要: 采用单纯形格子混料设计法(SLMD)建立了生物质三组分致密成型性能指标预测模型,并进行了实验验证。结果表明,比能耗和松弛密度回归方程的相关系数均大于0.9998,与实验数据的最大相对误差分别为3.82%和0.5166%。生物质成型过程中三组分对其有一定的交互作用,纤维素比例越高,比能耗越大,松弛密度越小;木质素比例越高,比能耗越小,但比例过高,比能耗有略微上升趋势;半纤维素比例越高,松弛密度越大。用棉花秸秆、毛竹和玉米秸秆进行实验验证,比能耗和松弛密度回归模型的最大相对误差分别为2.64%和1.0342%,表明模型对实际生物质有一定的预测效果。
引用本文
孙海韵 马培勇 邢勇强 邢献军 陈明明. 基于SLMD预测生物质三组分混合成型特性[J]. 过程工程学报, 2019, 19(3): 575-580.
Haiyun SUN Peiyong MA Yongqiang XING Xianjun XING Mingming CHEN. Hybrid molding characteristics of three components of biomass based on SLMD[J]. Chin. J. Process Eng., 2019, 19(3): 575-580.
使用本文
导出引用管理器 EndNote|Ris|BibTeX
链接本文:http://www.jproeng.com/CN/10.12034/j.issn.1009-606X.218274
http://www.jproeng.com/CN/Y2019/V19/I3/575
参考文献
参考文献: [1] NEVILLE A. New Technologies Advance Biomass for Power Generation[J]. Power, 2012. [2] BINDER J B, RAINES R T. Simple Chemical Transformation of Lignocellulosic Biomass into Furans for Fuels and Chemicals[J]. Journal of the American Chemical Society, 2009, 131(5): 1979-1985. [3] STEFANIDIS S D, KALOGIANNIS K G ILIOPOULOU E F. A Study of Lignocellulosic Biomass Pyrolysis via the Pyrolysis of Cellulose, Hemicellulose and Lignin[J]. Journal of Analytical & Applied Pyrolysis, 2014, 105(5): 143-150. [4] WANG S, GUO X, WANG K, et al. Influence of the Interaction of Components on the Pyrolysis Behavior of Biomass [J]. Journal of Analytical & Applied Pyrolysis, 2011, 91(1): 183-189. [5] BOCCI E, SISINNI M, MONETI M et al. State of Art of Small Scale Biomass Gasification Power Systems: A Review of the Different Typologies[J]. Energy Procedia, 2014, 45: 247-256. [6] MOHAN D, PITTMAN C U, STEELE P H. Pyrolysis of Wood/Biomass for Bio-Oil: A Critical Review [J] . Energy & Fuels, 2006, 20(3): 848--889. [7] Feedstock .S.M. Process Variables Influencing. Biomass Densification[D].Canada University of Saskatchewan, 2008. [8] 陈 啸. 基于混料设计的原料成分对颗粒饲料产品成型特性的影响[J]. 饲料工业, 2018(9). [8] CHEN Xiao. Influence of Raw Material Composition Based on Mixing Design on Forming Characteristics of Pellet Feed Products[J] . Feed Industry, 2018(9) . [9] 樊永胜, 蔡忆昔, 李小华,等. 基于slmd的生物质热解动力学预测模型[J]. 农业机械学报, 2015, 46(5): 179-184. [9] FAN Yongsheng, CAI Yixi, LI Xiaohua et al. Prediction Model of Biomass Pyrolysis Kinetic Based on SLMD[J]. Transactions of the Chinese Society for Agricultural Machinery, 2015, 46(5): 179-184. [10] 杨建杰, 张桂香, 杨 琴, 等. 不同原料基质栽培平菇的生物学研究[J]. 西北林学院学报, 2016, 31(3): 170-174. [10] YANG Jianjie, ZHANG Guixiang, YANG Qin, et al. Biology Research of Pleurotus ostreatus Cultivated in Different Raw Materials[J]. Journal of Northwest Forestry University, 2016, 31 (3): 170-174. [11] AZEVEDO S, CUNHA L M, MAHAJAN P V. et al. Application of Simplex Lattice Design for Development of Moisture Absorber for Oyster Mushrooms[J]. Procedia Food Science, 2011, 1: 184-189. [12] NGUN B K, MOHAMAD H, KATSUMATA K I, et al. Using Design of Mixture Experiments to Optimize Triaxial Ceramic Tile Compositions Incorporating Cambodian Clays[J]. Applied Clay Science, 2014, 87(4): 97-107. [13] 秦丽元, 张世慧, 高忠志,等. 生物炭与木质素混合成型及其燃烧特性研究[J]. 农业机械学报, 2017, 48(4): 276-283. [13] QIN Liyuan, ZHANG Shihui, Gao Zhongzhi, et al. Molding Fuel and Combustion Characteristics of Biochar and Lignin[J]. Transactions of the Chinese Society for Agricultural Machinery, 2017, 48(4): 276-283. [14] 孙 亮, 孙 清, 接 鑫, 等. 稻壳热压成型工艺参数试验[J]. 农业机械学报, 2010, 41(1): 96-100. [14] SUN Liang, SUN Qing, JIE Xin, et al. Main Technological Parameters of Rice Hull Hot Briquetting[J]. Transactions of the Chinese Society for Agricultural Machinery, 2010, 41(1): 96-100. [15] 赵钟声, 刘一星, 沈 隽. 落叶松、杨木热处理材及压缩材热动态力学特性分析[J]. 东北林业大学学报, 2008, 36(4): 17-19. [15] ZHAO Zhong, LIU Yixing, SHEN Jun. Thermodynamic Property of Heat Treated and Compressed Larch and Poplar Wood[J]. Journal of Northeast Forestry University, 2008, 36(4): 17-19. |
相关文章 0
No related articles found! |
PDF全文下载地址:
http://www.jproeng.com/CN/article/downloadArticleFile.do?attachType=PDF&id=3272