Journal Publications
- [21]Nantao Wang#, Hao Zhan*(詹昊), Xiuzheng Zhuang, Bin Xu, Xinming Wang, Xiuli Yin, Chuangzhi Wu*.Torrefaction of waste wood-based panels: More understanding from the combination of upgrading and denitrogenation properties[J].Fuel Processing Technology, 2020, 20: 106462.
- [22]Xiuzheng Zhuang#, Yanpei Song, Xinming Wang, Hao Zhan*(詹昊), Xiuli Yin*, Chuangzhi Wu, Peng Wang.Pyrolysis of hydrothermally pretreated biowastes: The controllability on the formation of NOx precursors[J].Chemical Engineering Journal, 2020, 393: 124727.
- [23]宋艳培#, 庄修政, 詹昊, 阴秀丽*, 吴创之.污泥水热液化工艺的参数优化研究进展[J].石油学报(石油加工), 2020, 36 (1) : 212-220.
- [24]Xiuzheng Zhuang#, Yanpei Song, Hao Zhan(詹昊), Xiaotao Bi, Xiuli Yin*, Chuangzhi Wu.Pyrolytic conversion of biowaste-derived hydrochar: Decomposition mechanism of specific components[J].Fuel, 2020, 266: 117106.
- [25]Xiuzheng Zhuang#, Yanpei Song, Hao Zhan(詹昊), Xiuli Yin*, Chuangzhi Wu.Influences of microstructural alternations and inorganic catalysis on the thermochemical conversion of biowaste-derived hydrochar[J].Fuel Processing Technology, 2019, 199: 106304.
- [26]Xiuzheng Zhuang#, Yanpei Song, Hao Zhan(詹昊), Xiuli Yin*, Chuangzhi Wu.Gasification performance of biowaste-derived hydrochar: The properties of products and the conversion processes[J].Fuel, 2019, 260: 116320.
- [27]Xiuzheng Zhuang#, Hao Zhan(詹昊), Yanpei Song, Xiuli Yin*, Chuangzhi Wu.Structure-reactivity relationships of biowaste-derived hydrochar on subsequent pyrolysis and gasification performance[J].Energy Conversion and Management, 2019, 199: 112014.
- [28]宋艳培#, 庄修政, 詹昊, 王南涛, 阴秀丽*, 吴创之.污泥与褐煤共水热碳化的协同特性研究[J].化工学报, 2019, 70 (8) : 3132-3141.
- [29]Yanpei Song*, Hao Zhan(詹昊), Xiuzheng Zhuang, Xiuli Yin#, Chuangzhi Wu.Synergistic characteristics and capabilities of co-hydrothermal carbonization of sewage sludge/lignite mixtures[J].Energy & Fuels, 2019, 33 (09) : 873-8745.
- [30]Hao Zhan#(詹昊), Xiuzheng Zhuang#, Yanpei Song, Guozhang Chang, Zhikang Wang, Xiuli Yin, Xinming Wang*, Chuangzhi Wu*.Formation and regulatory mechanisms of N-containing gaseous pollutants during stage-pyrolysis of agricultural biowastes[J].Journal of Cleaner Production, 2019, 236: 117706.
- [31]赵伟#, 袁洪友, 黄艳琴, 詹昊, 阴秀丽, 吴创之*.中药生物质原料与药渣热解特性对比研究[J].太阳能学报, 2019, 40 (6) : 1684-1692.
- [32]Hao Zhan#,*(詹昊), Xiuzheng Zhuang, Yanpei Song, Jianguo Liu, Sheng Li, Guozhang Chang, Xiuli Yin, Chuangzhi Wu, Xinming Wang*.A review on evolution of nitrogen-containing species during selective pyrolysis of waste wood-based panels[J].Fuel, 2019, 253: 1214-1228.
- [33]Xiuzheng Zhuang#, Yanpei Song, Hao Zhan(詹昊), Xiuli Yin*, Chuangzhi Wu.Synergistic effects on the co-combustion of medicinal biowastes with coals of different ranks[J].Renewable energy, 2019, 140: 380-389.
- [34]庄修政#, 宋艳培, 詹昊, 阴秀丽*, 吴创之.水热污泥与煤在混燃过程中的协同效应特性研究[J].燃料化学学报, 2018, 46 (12) : 1437-1446.
- [35]Bin Xu#, Jianjun Xie*, Hao Zhan(詹昊), Xiuli Yin, Chuangzhi Wu, Hao Liu.Removal of toluene as a biomass tar surrogate in a catalytic non-thermal plasma process[J].Energy & Fuels, 2018, 32 (10) : 10709-10719.
- [36]Xiuzheng Zhuang#, Hao Zhan#(詹昊), Yanpei Song, Chao He, Yanqin Huang, Xiuli Yin*, Chuangzhi Wu.Insights into the evolution of chemical structures in lignocellulose and non-lignocellulose biowastes during hydrothermal carbonization (HTC)[J].Fuel, 2018, 236: 960-974.
- [37]Xiuzheng Zhuang#, Hao Zhan#(詹昊), Yanpei Song, Yanqin Huang, Xiuli Yin*, Chuangzhi Wu.Reutilization potential of antibiotic wastes via hydrothermal liquefaction: Bio-oil and aqueous phase characteristics[J].Journal of the Energy Institute, 2018, 92: 1537-1547.
- [38]庄修政#, 詹昊, 宋艳培, 阴秀丽*, 吴创之.两类药渣的水热提质效果及其燃烧特性研究[J].燃料化学学报, 2018, 46 (8) : 940-949.
- [39]Xiuzheng Zhuang#, Hao Zhan#(詹昊), Yanqin Huang, Yanpei Song, Xiuli Yin*, Chuangzhi Wu.Conversion of industrial biowastes to clean solid fuels via hydrothermal carbonization(HTC): Upgrading mechanism in relation to coalification process and combustion behavior[J].Bioresource Technology, 2018, 267: 17-29.
- [40]Yanqin Huang#, Huacai Liu, Hongyou Yuan, Hao Zhan(詹昊), Xiuzheng Zhuang, Song Yuan, Xiuli Yin*, Chuangzhi Wu.Relevance between chemical structure and pyrolysis behavior of palm kernel shell lignin[J].Science of the Total Environment, 2018, 633: 785-795.
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Zhan Isaac
Zip Code:c576f0c85848a14d10428d1b79269fc7d68bde9ba6ecb95648b168a03671c3821c778c2bedf0cae5d03c95a065c3a5efa4243241acb9eb6089885db6f9f3fa7f5b7491eb5af48e7ab43d253e29e0fa6991b0af260ac98903cc7fbca150cb2fc86cb6bd41d95f78a263ba3d6f6aa504ee56cdd8693f2e6f13b576940cee3633de
Postal Address:2babd2ffdde16ada952a41acec902102ecdee5fbd867cfd38bd2e3555af92cbd6b76de8b5dd8532ef2c401264ca6eadaf5fd7d5bdf3e6c22a24b43a560d74379891b2a9247f7b9a6eda083d2c1481ac653cdb13478d1691905a052b46d61baa9a0ac733b9b37a8c5ebbf6f4be807cbb6b216ac5cbc5b6757076c8be59320d490
Mobile:9a365bbb1fcaf95462948bf6b6c66675ee21cd16d3e52f125f3d1e79c9442f1f33e8a850d7b5789dd01d36e20ee68a4845faed89752d82c84d2b6c58f5f34ea4a73e36fee753c74670a3dcc949fbdce95ae0c44e052a3af58ec66bdefd14992d03c6a567b262d6e318cc3134d8d296c679d6f75e77f55a5193a3551cd96cbf8f
Email:2b786f017fd208ea4e956f69ee80d1fac1559b1e5ecbb7386e04c34a541be8af158970d23936f8ed3627e46505f37494b7092367fa863b38c5c11d800b9db7f2515c21c2ce1fcba27e7c80d8fdacccce7d34a9e454f639e996740b1d0f118adeb482620cdb1370324974f5bc98c80922efa1137502c2c436c7d3a84e9562073a
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