[1] |
刘民昌,刘洋,文武,等.成丝工艺对梗丝物理质量的影响[J].烟草科技,2019,52(10):79-84.
|
[2] |
周利军,郑力文,李洪涛,等.压梗和切梗工序对片状梗丝成丝特性的影响[J].中国烟草学报,2020,26(5):47-53.
|
[3] |
周雅宁.烟梗加工处理技术与设备研究进展[J].中国烟草学报,2019,25(2):121-129.
|
[4] |
丁美宙,刘欢,刘强,等.梗丝形态对细支卷烟加工及综合质量的影响[J].食品与机械,2017,33(9):197-202.
|
[5] |
廖晓祥,赵云川,邹泉,等.梗丝形态对细支卷烟品质稳定性的影响[J].烟草科技,2016,49(10):74-80.
|
[6] |
夏鸣,李金广,乔国宝,等.烤烟的燃烧特性及动力学分析[J].烟草科技,2012(11):38-41,50.
|
[7] |
张果,岳先领,叶建斌,等.不同涂布率再造烟叶的热解特性及动力学分析[J].食品与机械,2021,37(5):39-46.
|
[8] |
宋丽丽,魏涛,杨旭,等.烟梗结构特征及其热解特性研究[J].轻工学报,2020,35(6):27-34.
|
[9] |
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):90-98.
|
[10] |
范红梅,喻赛波,谭海风,等.不同梗丝微观结构和燃烧特性差异及其对卷烟的影响[J].烟草科技,2018,51(8):53-60.
|
[11] |
CHEN X F,MA X Q,PENG X W,et al.Conversion of sweet potato waste to solid fuel via hydrothermal carbonization[J].Bioresource Techno-logy,2018,249:900-907.
|
[12] |
FAN Y Y,LI L W,TIPPAYAWONG N,et al.Quantitative structure-reactivity relationships for pyrolysis and gasification of torrefied xylan[J].Energy,2019,188:116119.
|
[13] |
LIANG M,ZHANG K,LEI P,et al.Fuel properties and combustion kinetics of hydrochar derived from co-hydrothermal carbonization of tobacco residues and graphene oxide[J].Biomass Conversion and Biorefinery,2020,10(1):189-201.
|
[14] |
WU W X,MEI Y F,ZHANG L,et al.Kinetics and reaction chemistry of pyrolysis and combustion of tobacco waste[J].Fuel,2015,156:71-80.
|
[15] |
梁淼,张明建,鲁端峰,等.热解温度对竹粉炭理化结构及燃烧性能的影响[J].化工进展,2020,39(1):278-286.
|
[16] |
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):76-81.
|
[17] |
MA Z Q,CHEN D Y,GU J,et al.Determination of pyrolysis characteristics and kinetics of palm kernel shell using TGA-FTIR and model-free integral methods[J].Energy Conversion and Management,2015,89:251-259.
|
[18] |
王乐,王亚林,李志强,等.电加热卷烟烟芯段温度分布和烟气关键成分逐口变化:第1部分实验[J].烟草科技,2021,54(3):31-39.
|