[1] |
李学军,王永金,刘尚友,等.烟梗处理技术综述[J].轻工科技,2012(11):24.
|
[2] |
黄志强,包秀萍,高锐.烟梗及其制品提质处理的研究进展[J].河南农业科学,2013,42(10):1.
|
[3] |
姚二民,周利军,李晓,等.微波膨胀烟梗技术及其应用研究进展[J].轻工学报,2017,32(3):43.
|
[4] |
KONSTANTINOU E,FOTOPOULOU F,DROSOS A,et al.Tobacco-specific nitrosamines:A literature review[J].Food and Chemical Toxicology,2018,118:198.
|
[5] |
郭高飞,刘朝贤,李斌,等.烟粉和烟丝的热解燃烧特性及反应动力学分析[J].烟草科技,2019,52(6):90.
|
[6] |
宋丽丽,张永良,张志平,等.白腐菌液体发酵降解烟梗木质素的研究[J].轻工学报,2019,34(1):36.
|
[7] |
汤朝起,盛科,金永明,等.不同产地不同部位烤烟烟梗品质评价[C]//上海烟草学会.上海市烟草系统2011年度优秀学术论文集(工程技术类).上海:[出版者不详],2011:91.
|
[8] |
杨滢,周顺,王孝峰,等.不同结构烟草纤维素的燃烧热解特性[J].烟草科技,2017,50(5):38.
|
[9] |
秦国鑫,李斌,鲁端峰,等.烟草生物质燃烧特性与机理研究[J].烟草科技,2015,48(1):76.
|
[10] |
廖津津,李巧灵,陈国钦,等.升温速率对卷烟烟丝快速热解的影响[J].烟草科技,2016,49(10):44.
|
[11] |
王昭,戴亚,马扩彦,等.基于分布活化能模型的烟草燃烧动力学特性研究[J].烟草科技,2016,49(12):71.
|
[12] |
张亚平,宁敏,周顺,等.国内典型烤烟烟叶的燃烧行为与动力学特性分析[J].安徽农业科学,2015,43(3):200.
|
[13] |
王莉,王驰,葛少林,等.再造烟叶的纤维和组织微观结构及热解性能分析[J].烟草科技,2016,49(10):66.
|
[14] |
CARDOSO C R,MIRANDA M R,SANTOS K G,et al.Determination of kinetic parameters and analytical pyrolysis of tobacco waste and sorghum bagasse[J].Journal of Analytical and Applied Pyrolysis,2011,92(2):392.
|
[15] |
SLUITER A,HAMES B,RUIZ R,et al.Determination of structural carbohydrates and lignin in biomass[J].Laboratory Analytical Procedure,2008,1617:1.
|
[16] |
杨海健,丁红营,于国东,等.咔唑比色法测定造纸法再造烟叶中的果胶含量[J].分析试验室,2012,31(6):100.
|
[17] |
国家烟草专卖局.烟草及烟草制品总植物碱的测定连续流动法:YC/T 160-2002[S].北京:中国标准出版社,2002.
|
[18] |
国家烟草专卖局.烟草及烟草制品水溶性糖的测定连续流动法:YC/T 159-2002[S].北京:中国标准出版社,2002.
|
[19] |
吴舜,楼宏铭,莫贤科,等.中红外光谱法测定烟草中的木质素[J].烟草科技,2014(10):67.
|
[20] |
WAN J,WANG Y,XIAO Q.Effects of hemicellulose removal on cellulose fiber structure and recycling characteristics of eucalyptus pulp[J].Bioresource Technology,2010,101:4577.
|
[21] |
周顺,王孝峰,何庆,等.烟草及烟草制品燃烧&热解检测分析技术研究进展[J].中国烟草学报,2017,23(2):130.
|
[22] |
周顺,王程辉,徐迎波,等.烤烟、白肋烟和香料烟的燃烧行为和热解气相产物比较[J].烟草科技,2011(2):35.
|
[23] |
SUN Y,HE Z,TU R,et al.The mechanism of wet/dry torrefaction pretreatment on the pyrolysis performance of tobacco stalk[J].Bioresource Technology,2019,286:121390.
|
[24] |
王月侠,葛善礼,贾涛,等.烟梗化学组成的分析[J].烟草科技,1996(3):16.
|
[25] |
米兰,王保兴,周桂园,等.再造烟叶烟梗原料化学成分及梗膏感官质量分析[J].湖北农业科学,2019,58(5):80.
|
[26] |
PANDEY K K,PITMAN A J.FTIR studies of the changes in wood chemistry flowing decay by brown-rot and white-rot fungi[J].International Biodeterioration and Biodegradation,2003,52:151.
|
[27] |
PAREEK N,GILLGREN T,JNSSON L J.Adsorption of proteins involved in hydrolysis of lignocellulose on lignins and hemicelluloses[J].Bioresource Technology,2013,148:70.
|
[28] |
宋丽丽,张志平,王光路,等.不同预处理方法对烟杆酶解产糖和结构特征的影响[J].轻工学报,2019,34(3):52.
|
[29] |
RUDAKIYA D M,GUPTE A.Assessment of white rot fungus mediated hardwood degradation by FTIR spectroscopy and multivariate analysis[J].Journal of Microbiological Methods,2019,157:123.
|
[30] |
SILVA G G D,ROUAU S G.Successive centrifugal grinding and sieving of wheat straw[J].Powder Technology,2011,208(2):266.
|
[31] |
宋丽丽.白腐菌高效改性木质素促进秸秆酶解反应机制研究[D].武汉:华中科技大学,2013.
|
[32] |
DHYANI V,BHASKAR T.A comprehensive review on the pyrolysis of lignocellulosic biomass[J].Renewable Energy,2018,129:695.
|
[33] |
ZI W,CHEN Y,PAN Y,et al.Pyrolysis,morphology and microwave absorption properties of tobacco stem materials[J].Science of the Total Environment,2019,683:341.
|
[34] |
CAI J X,LI B,CHEN C Y,et al.Hydrothermal carbonization of tobacco stalk for fuel application[J].Bioresource Technology,2016,220:305.
|
[35] |
WHITE J E,CATALLO W J,LEGENDRE B L.Biomass pyrolysis kinetics:A comparative critical review with relevant agricultural residue case studies[J].Journal of Analytical and Applied Pyrolysis,2011,91(1):1.
|
[36] |
朱大恒,韩锦峰,周御风.利用产香微生物发酵生产烟用香料技术及其应用[J].烟草科技,1997(1):30.
|