程军 教授 博士 浙江省 研究领域: 新能源,环保,储能 研究方向: · 碳中和、智慧能源、储能、新能源、节能环保 · CO2减排转化利用、可再生合成燃料、氢能、生物质能、太阳能等 所在单位: 浙江大学

基本信息

所在单位:
浙江大学
机构细分:
能源工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
专家介绍:
程军,浙江大学教授,博士生导师。长江学者特聘教授,国家万人计划领军人才,科技部中青年科技创新领军人才,教育部新世纪优秀人才,全国百篇优秀博士学位论文获得者。1996年毕业于山东大学热能动力工程专业获学士学位,2002年毕业于浙江大学能源环境工程专业获博士学位,同年留校在浙江大学能源工程学院任教,2008-2009年赴美国普林斯顿大学作访问学者,2009年晋升为教授,2018年受聘浙江大学求是特聘科研岗教授,2021年入选长江学者特聘教授。现兼任中国环境增值产业技术创新战略联盟副理事长,国际期刊Carbon Resources Conversion副主编、国际期刊International Journal of Coal Science & Technology编委,全国煤炭标准化委员会委员,中国藻业协会专家委员会委员,中国生物质能专业委员会委员。
研究领域为碳中和、智慧能源、储能、新能源和节能环保,重点研究CO2减排转化利用、可再生合成燃料、氢能、生物质能、太阳能等高效清洁转化理论和技术。主要研究方向:(1)风光储能制可再生合成燃料(绿氢/绿氨/甲醇等);(2)CO2电解还原制甲醇和微生物电化学制甲烷;(3)CO2微藻转化利用生物质多联产等。主持负责完成了国家重点研发项目、国家863项目、国家自然科学基金、973课题、支撑计划课题、国家国际合作专项等国家级项目15项和省部级项目10项,是国家重点研发项目“二氧化碳烟气微藻减排技术”的项目负责人和国家863项目“燃煤烟气CCUS关键技术”的首席专家。第一或通讯作者已发表国际期刊SCI论文300余篇,近五年SCI他引3500余次,爱思唯尔2020中国高被引学者。第一完成人出版国家标准2项,已授权发明专利60余项(其中第一完成人30余项)。2004年获全国百篇优秀博士学位论文奖,2011年入选教育部新世纪优秀人才,2013年获浙江省青年科技奖,2014年入选科技部中青年科技创新领军人才,2016年入选国家万人计划领军人才,2021年入选长江学者特聘教授。2001和2009年两次获得国家科技进步二等奖,2017年获得浙江省自然科学一等奖(排名第一)。
专家荣誉:
1. 2021年入选长江学者特聘教授
2. 2016年入选国家万人计划领军人才
3. 2014年入选科技部中青年科技创新领军人才 
4. 2014年获得浙江省杰出青年基金 
5. 2013年获浙江省青年科技奖 
6. 2011年入选教育部新世纪优秀人才支持计划 
7. 2004年获全国百篇优秀博士学位论文奖:炉内高温燃烧两段脱硫的机理研究 
8. 2017年获浙江省自然科学一等奖(第1完成人):微生物转化生物质制油气燃料的能质传递强化机理 
9. 2009年获国家科技进步二等奖:水煤浆代油洁净燃烧技术及产业化应用 
10. 2001年获国家科技进步二等奖:煤的优化配制、催化洁净燃烧及产业化应用

科研能力

研究领域:
新能源,环保,储能
研究方向:
· 碳中和、智慧能源、储能、新能源、节能环保
· CO2减排转化利用、可再生合成燃料、氢能、生物质能、太阳能等
论文著作:
1.   Jun Cheng*, Xian Yang, Xiao Yang, et al. Hierarchical Ni3S2@2D Co MOF nanosheets as efficient hetero-electrocatalyst for hydrogen evolution reaction in alkaline solution. Fuel Processing Technology, 2022, 229: 107174-107183.
2.   Jun Cheng*, Hao Guo , Xiao Yang, et al. Phosphotungstic acid-modified zeolite imidazolate framework (ZIF-67) as an acid-base bifunctional heterogeneous catalyst for biodiesel production from microalgal lipids. Energy Conversion and Management, 2021, 232: 113872-113882.
3.   Jun Cheng*, Shuzheng Liu, Wangbiao Guo, et al. Developing staggered woven mesh aerator with three variable-micropore layers in recycling water pipeline to enhance CO2 conversion for improving Arthrospira growth. Science of the Total Environment, 2021, 760: 143941-143949.
4.   Jun Cheng*, Xiao Yang, XiaoXu Xuan, et al. Efficient hybrid solar-to-alcohol system via synergistic catalysis between well-defined Cu–N4 sites and its sulfide (CuS). Chemical Engineering Journal, 2020, 392: 123799-123806.
5.   Jun Cheng*, Hui Li, Lingkan Ding, et al. Improving hydrogen and methane co-generation in cascading dark fermentation and anaerobic digestion: The effect of magnetite nanoparticles on microbial electron transfer and syntrophism. Chemical Engineering Journal, 2020, 397: 125394 -125408.
6.   Jun Cheng*, Yali Wang, Niu Liu, et al. Enhanced CO2 selectivity of mixed matrix membranes with carbonized Zn/Co zeolitic imidazolate frameworks. Applied Energy, 2020, 272: 115179- 115187.
7.   Jun Cheng*, Xiao Yang, Xiaoxu Xuan, et al. Efficient Conversion of Carbon Dioxide on Atomically Dispersed Metal−Nx Species-Anchored Porous Carbon with Embedded CuxCoy Nanoparticles by Accelerating Electron Separation. ACS Sustainable Chemistry & Engineering, 2020, 8: 5994-6002.
8.   Jun Cheng*, Zhenyi Wang, Hongxiang Lu, et al. Hydrogen Sulfide Improves Lipid Accumulation in Nannochloropsis oceanica through Metabolic Regulation of Carbon Allocation and Energy Supply. ACS Sustainable Chemistry & Engineering, 2020, 8: 2481-2489.
9.   Jun Cheng*, Yanmei Song, Yi Miao, et al. Three-Stage Shear-Serrated Aerator Broke CO2 Bubbles To Promote Mass Transfer and Microalgal Growth. ACS Sustainable Chemistry & Engineering, 2020, 8: 939-947.
10. Jun Cheng*, Hao Guo, Yi Qiu, et al. Switchable solvent N, N, N′, N′-tetraethyl-1, 3-propanediamine was dissociated into cationic surfactant to promote cell disruption and lipid extraction from wet microalgae for biodiesel production. Bioresource Technology, 2020, 312: 123607-123613.
11. Jun Cheng*, Haiquan Dong, Haihua Zhang, et al. Improving CH4 production and energy conversion from CO2 and H2 feedstock gases with mixed methanogenic community over Fe nanoparticles. Bioresource Technology, 2020, 314: 123799-123806.
12. Jun Cheng*, Liangchen Yue, Junjie Hua, et al. Hydrothermal alkali pretreatment contributes to fermentative methane production of a typical lipid from food waste through co-production of hydrogen with methane. Bioresource Technology, 2020, 306: 123164-123171.
13. Jun Cheng*, Junjie Hua, Ting Kang, et al. Nanoscale zero-valent iron improved lactic acid degradation to produce methane through anaerobic digestion. Bioresource Technology, 2020, 317: 124013-124020.
14. Jun Cheng*, Yali Wang, Leiqing Hu, et al. Using lantern Zn/Co-ZIF nanoparticles to provide channels for CO2 permeation through PEO-based MMMs. Journal of Membrane Science, 2020, 597: 117644-117651.
15. Jun Cheng*, Xiao Yang, Xiaoxu Xuan, et al. Development of an efficient catalyst with controlled sulfur vacancies and high pyridine nitrogen content for the photoelectrochemical reduction of CO2 into methanol. Science of the Total Environment, 2020, 702: 134981-134989.
16. Jun Cheng*, Yanxia Zhu, Ke Li, et al. Calcinated MIL-100(Fe) as a CO2 adsorbent to promote biomass productivity of Arthrospira platensis cells. Science of the Total Environment, 2020, 699: 134375-134383.
17. Jun Cheng*, Niu Liu, Yali Wang, et al. Nitrogen-doped microporous carbon material decorated with metal nanoparticles derived from solid Zn/Co zeolitic imidazolate framework with high selectivity for CO2 separation. Fuel, 2020, 265: 116972-116986.
18. Jun Cheng* Xin Lai, Qing Ye, et al. Numerical simulation on optimizing flow field and flashing-light effect in jet-aerated tangential swirling-flow plate photobioreactor to improve microalgal growth. Chemical Engineering Science, 2020, 215: 115371-115380.
19. Jun Cheng*, Yi Qiu, Ze Zhang, et al. Mixing Food Waste and Microalgae to Simutaneously Improve Biodiesel Production Through Transesterification and Bio-Crude Production Through Hydrothermal Liquefaction. Journal of Biobased Materials and Bioenergy, 2020, 14(1): 40-49.
20. Jun Cheng*, Xiaoxu Xuan, Xiao Yang, et al. Selective reduction of CO2 to alcohol products on octahedral catalyst of carbonized Cu(BTC) doped with Pd nanoparticles in a photoelectrochemical cell. Chemical Engineering Journal, 2019, 358: 860-868.
21. Jun Cheng*, Niu Liu, Leiqing Hu, et al. Polyethyleneimine entwine thermally-treated Zn/Co zeolitic imidazolate frameworks to enhance CO2 adsorption. Chemical Engineering Journal, 2019, 364: 530-540.
22. Jun Cheng*, Liangchen Yue, Junjie Hua, et al. Hydrothermal heating with sulphuric acid contributes to improved fermentative hydrogen and methane co-generation from Dianchi Lake algal bloom. Energy Conversion and Management, 2019, 192: 282-291.
23. Jun Cheng*, Zhenyi Wang, Hongxiang Lu, et al. Hydrogen Sulfide Promotes Cell Division and Photosynthesis of Nannochloropsis oceanica with 15% Carbon Dioxide. ACS Sustainable Chemistry & Engineering, 2019, 7: 16344-16354.
24. Jun Cheng*, Junchen Xu, Qing Ye, et al. Strengthening mass transfer of carbon dioxide microbubbles dissolver in a horizontal tubular photo-bioreactor for improving microalgae growth. Bioresource Technology, 2019, 277: 11-17.
25. Jun Cheng*, Yanmei Song, Wangbiao Guo, et al. Developing microporous fibrous-diaphragm aerator to decrease bubble generation diameter for improving microalgal growth with CO2 fixation in a raceway pond. Bioresource Technology, 2019, 276: 28-34.
26. Jun Cheng*, Yanxia Zhu, Ze Zhang, et al. Modification and improvement of microalgae strains for strengthening CO2 fixation from coal-fired flue gas in power plants. Bioresource Technology, 2019, 291: 121850-121861.
27. Jun Cheng*, Yanxia Zhu, Xiaodan Xu, et al. Enhanced biomass productivity of Arthrospira platensis using zeolitic imidazolate framework-8 as carbon dioxide adsorbents. Bioresource Technology, 2019, 294: 122118-122125.
28. Jun Cheng*, Xin Lai, Qing Ye, et al. A novel jet-aerated tangential swirling-flow plate photobioreactor generates microbubbles that enhance mass transfer and improve microalgal growth. Bioresource Technology, 2019, 288: 121531-121538.
29. Jun Cheng*, Ze Zhang, Xi Zhang, et al. Hydrodeoxygenation and hydrocracking of microalgae biodiesel to produce jet biofuel over H3PW12O40-Ni/hierarchical mesoporous zeolite Y catalyst. Fuel, 2019, 245: 384-391.
30. Jun Cheng*, Xiaoxu Xuan, Xiao Yang, et al. Enhanced photoelectrochemical hydrogenation of green-house gas CO2 to high-order solar fuel on coordinatively unsaturated metal-N sites containing carbonized Zn/Co ZIFs. International Journal of Hydrogen Energy 2019, 44: 21597 -21606.
31. Jun Cheng*, Ze Zhang, Xi Zhang, et al. Continuous hydroprocessing of microalgae biodiesel to jet fuel range hydrocarbons promoted by Ni/hierarchical mesoporous Y zeolite catalyst. International Journal of Hydrogen Energy 2019, 44: 11765-11773.
32. Jun Cheng*, Liangchen Yue, Lingkan Ding, et al. Improving fermentative hydrogen and methane production from an algal bloom through hydrothermal/steam acid pretreatment. International Journal of Hydrogen Energy 2019, 44: 5812-5820.
33. Jun Cheng*, Ze Zhang, Xi Zhang, et al. Sulfonated mesoporous Y zeolite with nickel to catalyze hydrocracking of microalgae biodiesel into jet fuel range hydrocarbons. International Journal of Hydrogen Energy 2019, 44: 1650-1658.
34. Jun Cheng*, Hui Li, Jiabei Zhang, et al. Enhanced dark hydrogen fermentation of Enterobacter aerogenes /HoxEFUYH with carbon cloth. International Journal of Hydrogen Energy 2019, 44: 3560-3568.
35. Jun Cheng*, Fan Zhou, Xiaoxu Xuan, et al. The catalytic effect of the Na and Ca-rich industrial wastes on the thermal ignition of coal combustion. Chinese Journal of Chemical Engineering, 2019, 27: 2467-2471.
36. Jun Cheng*, Wangbiao Guo, Chengyi Cai, et al. Alternatively permutated conic baffles generate vortex flow field to improve microalgal productivity in a raceway pond. Bioresource Technology, 2018, 249: 212-218.
37. Jun Cheng*, Wangbiao Guo, Kubar Ameer Ali, et al. Promoting helix pitch and trichome length to improve biomass harvesting efficiency and carbon dioxide fixation rate by Spirulina sp. in 660m2 raceway ponds under purified carbon dioxide from a coal chemical flue gas. Bioresource Technology, 2018, 261: 76-85.
38. Jun Cheng*, Wangbiao Guo, Yanmei Song, et al. Enhancing vorticity magnitude of turbulent flow to promote photochemical efficiency and trichome helix pitch of Arthrospira platensis in a raceway pond with conic baffles. Bioresource Technology, 2018, 269: 1-8.
39. Jun Cheng*, Yi Miao, Wangbiao Guo, et al. Reduced generation time and size of carbon dioxide bubbles in a volute aerator for improving Spirulina sp. growth. Bioresource Technology, 2018, 270: 352-358.
40. Jun Cheng*, Junchen Xu, Hongxiang Lu, et al. Generating cycle flow between dark and light zones with double paddlewheels to improve microalgal growth in a flat plate photo-bioreactor. Bioresource Technology, 2018, 261: 151-157.
41. Jun Cheng*, Qing Ye, Ke Li, et al. Removing ethinylestradiol from wastewater by microalgae mutant Chlorella PY-ZU1 with CO2 fixation. Bioresource Technology, 2018, 249: 284-289.
42. Jun Cheng*, Yannan Li, Leiqing Hu, et al. CO2 absorption and diffusion in ionic liquid [P66614] [Triz] modified molecular sieves SBA-15 with various pore lengths. Fuel Processing Technology, 2018, 172: 216-224.
43. Jun Cheng*, Fan Zhou, Tingting Si, et al. Mechanical strength and combustion properties of biomass pellets prepared with coal tar residue as a binder. Fuel Processing Technology, 2018, 179: 229-237.
44. Jun Cheng*, Hongxiang Lu, Ke Li, et al. Enhancing growth-relevant metabolic pathways of Arthrospira platensis (CYA-1) with gamma irradiation from 60Co. RSC Advances., 2018, 8: 16824- 16833.
45. Jun Cheng*, Xiaoxu Xuan, Xiao Yang, et al. Preparation of a Cu(BTC)-rGO catalyst loaded on a Pt deposited Cu foam cathode to reduce CO2 in a photoelectrochemical cell. RSC Advances., 2018, 8: 32296–32303.
46. Jun Cheng*, Zongbo Yang, Junhu Zhou, et al. Improving the CO2 fixation rate by increasing flow rate of the flue gas from microalgae in a raceway pond. Korean Journal of Chemical Engineering, 2018, 35(2): 498-502.
47. Jun Cheng*, Yannan Li, Leiqing Hu, Jianzhong Liu, Junhu Zhou, Kefa Cen. Characterization of CO2 Absorption and Carbamate Precipitate in Phase-Change N Methyl-1,3-diaminopropane /N,N Dimethylformamide Solvent. Energy & Fuels, 2017, 31: 13972-13978.
48. Jun Cheng*, Yi Qiu, Jie Zhang, et al. Conversion of lipids from wet microalgae into biodiesel using sulfonated graphene oxide catalysts. Bioresource Technology, 2017, 244: 569-574.
49. Jun Cheng*, Hongxiang Lu, Xin He, et al. Mutation of Spirulina sp. by nuclear irradiation to improve growth rate under 15% carbon dioxide in flue gas. Bioresource Technology, 2017, 238: 650-656.
50. Jun Cheng*, Leiqing Hu, Yannan Li, et al. Improving CO2 permeation and separation performance of CO2-philicpolymer membrane by blending CO2 absorbents. Applied Surface Science, 2017, 410: 206-214.
51. Jun Cheng*, Ke Li, Yanxia Zhu, et al. Transcriptome sequencing and metabolic pathways of astaxanthin accumulated in Haematococcus pluvialis mutant under 15% CO2. Bioresource Technology, 2017, 228: 99-105.
52. Jun Cheng*, Min Liu, Wenlu Song, et al. Enhanced hydrogen production of Enterobacter aerogenes mutated by nuclear irradiation. Bioresource Technology, 2017, 227: 50-55.
53. Jun Cheng*, Jiabei Zhang, Richen Lin, et al. Ionic-liquid pretreatment of cassava residues for the cogeneration of fermentative hydrogen and methane. Bioresource Technology, 2017, 228: 348-354.
54. Jun Cheng*, Qing Ye, Zongbo Yang, et al. Microstructure and antioxidative capacity of the microalgae mutant Chlorella PY-ZU1 during tilmicosin removal from wastewater under 15% CO2. Journal of Hazardous Materials, 2017, 324: 414-419.
55. Jun Cheng*, Fan Zhou, Xiaoxu Xuan, et al. Comparison of the catalytic effects of eight industrial wastes rich in Na, Fe, Ca and Al on anthracite coal combustion. Fuel, 2017, 187: 398-402.
56. Jun Cheng*, Lingkan Ding, Richen Lin, et al. Fermentative biohydrogen and biomethane co-production from mixture of food waste and sewage sludge: Effects of physiochemical properties and mix ratios on fermentation performance. Applied Energy, 2016,184: 1-8.
57. Jun Cheng*, Yi Qiu, Rui Huang, et al. Biodiesel production from wet microalgae by using graphene oxide as solid acid catalyst. Bioresource Technology, 2016, 221: 344-349.
58. Jun Cheng*, Yannan Li, Leiqing Hu, et al. CO2 Adsorption Performance of Ionic Liquid [P66614][2-Op] Loaded onto Molecular Sieve MCM-41 Compared to Pure Ionic Liquid in Biohythane/Pure CO2 Atmospheres. Energy Fuels, 2016, 30: 3251-3256.
59. Jun Cheng*, Fan Zhou, Xiaoxu Xuan, et al. Cascade chain catalysis of coal combustion by Na–Fe–Ca composite promoters from industrial wastes. Fuel, 2016, 181: 820-826.
60. Jun Cheng*, Xin Wang, Tingting Si, et al. Pore fractal structures and combustion dynamics of cokes derived from the pyrolysis of typical Chinese power coals. Fuel Processing Technology, 2016, 149: 49-54.
61. Jun Cheng*, Qing Ye, Jiao Xu, et al. Improving pollutants removal by microalgae Chlorella PY-ZU1 with 15% CO2 from undiluted anaerobic digestion effluent of food wastes with ozonation pretreatment. Bioresource Technology, 2016, 216: 273-279.
62. Jun Cheng*, Ke Li, Zongbo Yang, et al. Gradient domestication of Haematococcus pluvialis mutant with 15% CO2 to promote biomass growth and astaxanthin yield. Bioresource Technology, 2016,216: 340-344.
63. Jun Cheng*, Lingkan Ding, Richen Lin, et al. Physicochemical characterization of typical municipal solid wastes for fermentative hydrogen and methane co-production. Energy Conversion and Management, 2016,117: 297-304.
64. Jun Cheng*, Xin Wang, Tingting Si, et al. Ignition temperature and activation energy of power coal blends predicted with back-propagation neural network models. Fuel, 2016,173: 230–238.
65. Jun Cheng*, Ke Li, Zongbo Yang, et al. Enhancing the growth rate and astaxanthin yield of Haematococcus pluvialis by nuclear irradiation and high concentration of carbon dioxide stress. Bioresource Technology, 2016, 204: 49-54.
66. Jun Cheng*, Hongxiang Lu, Yun Huang, et al. Enhancing growth rate and lipid yield of Chlorella with nuclear irradiation under high salt and CO2 stress. Bioresource Technology, 2016, 203: 220-227.
67. Jun Cheng*, Zongbo Yang, Qing Ye, et al. Improving CO2 fixation with microalgae by bubble breakage in raceway ponds with up-down chute baffles. Bioresource Technology, 2016, 201: 174-181.
68. Jun Cheng*, Fan Zhou, Xin Wang, et al. Optimization of microwave dewatering of an Indonesian lignite. Fuel Processing Technology, 2016, 144: 71-78.
69. Jun Cheng*, Xin Wang, Tingting Si, et al. Maximum burning rate and fixed carbon burnout efficiency of power coal blends predicted with back-propagation neural network models. Fuel, 2016, 172: 170-177.
70. Jun Cheng*, Leiqing Hu, Yannan Li, et al. Improving CO2 permeability of ceramic hollow fibre-supported composite membranes by blending an ionic liquid in the Pebax/PEGDME selective layer. RSC Advances, 2016, 6: 2055-2064.
71. Jun Cheng*, Meng Zhang, Jianzhong Liu, et al. A Cu foam cathode used as a Pt–RGO catalyst matrix to improve CO2 reduction in a photoelectrocatalytic cell with a TiO2 photoanode. Journal of Materials Chemistry A. 2015,3:12947-12957.
72. Jun Cheng*, Meng Zhang, Gai Wu, et al. Optimizing CO2 reduction conditions to increase carbon atom conversion using a Pt-RGO||Pt-TNT photoelectrochemical cell. Solar Energy Materials and Solar Cells. 2015, 132: 606-614.
73. Jun Cheng* , Zongbo Yang, Qing Ye, et al. Enhanced flashing light effect with up-down chute baffles to improve microalgal growth in a raceway pond. Bioresource Technology. 2015, 190: 29-35.
74. Jun Cheng*, Rui Huang, Tao Li, et al. Physicochemical characterization of wet microalgal cells disrupted with instant catapult steam explosion for lipid extraction. Bioresource Technology. 2015, 191: 66-72.
75. Jun Cheng*, Zongbo Yang, Yun Huang, et al. Improving growth rate of microalgae in a 1191 m2 raceway pond to fix CO2 from flue gas in a coal-fired power plant. Bioresource Technology. 2015, 190: 235-241.
76. Jun Cheng*, Richen Lin, Lingkan Ding, et al. Fermentative hydrogen and methane cogeneration from cassava residues: Effect of pretreatment on structural characterization and fermentation performance. Bioresource Technology. 2015, 179: 407-413
77. Jun Cheng*, Lingkan Ding, Ao Xia, et al. Hydrogen production using amino acids obtained by protein degradation in waste biomass by combined dark- and photo-fermentation. Bioresource Technology. 2015, 179: 13-19
78. Jun Cheng*, Jiao Xu, Yun Huang, et al. Growth optimisation of microalga mutant at high CO2 concentration to purify undiluted anaerobic digestion effluent of swine manure. Bioresource Technology. 2015, 177:240-246
79. Jun Cheng*, Fan Zhou, Xin Wang, et al. Physicochemical properties of Indonesian lignite continuously modified in a tunnel-type microwave oven for slurribility improvement. Fuel. 2015,150:493-500.
80. Jun Cheng*, Fan Zhou, Xin Wang, et al. Physicochemical properties of wastewater produced from the microwave upgrading process of Indonesian lignite. Fuel. 2015,158:435-442.
81. Jun Cheng*, Leiqing Hu, Chaofan Ji, et al. Porous ceramic hollow fiber-supported Pebax/PEGDME composite membrane for CO2 separation from biohythane. RSC Advances. 2015, 5: 60453-60459.
82. Jun Cheng*, Xin Wang, Fan Zhou, et al. Physicochemical characterizations for improving the slurryability of Philippine lignite upgraded through microwave irradiation. RSC Advances. 2015, 5:14690 - 14696.
83. Jun Cheng*, Richen Lin, Wenlu Song, et al. Enhancement of fermentative hydrogen production from hydrolyzed water hyacinth with activated carbon detoxification and bacteria domestication. International Journal of Hydrogen Energy, 2015, 40: 2545-2551.
84. Jun Cheng*, Tao Li, Rui Huang, et al. Combustion dynamics of biodiesel produced by supercritical methanol transesterification. Fuel Processing Technology 2015, 131: 409-413
85. Jun Cheng*, Jia Feng, Tingting Ge, et al. Pyrolytic characteristics of biodiesel prepared from lipids accumulated in diatom cells with growth regulation. Journal of Bioscience and Bioengineering, 2015,120(2):161-166.
86. Jun Cheng*, Yaqiong Liu, Richen Lin, et al. Cogeneration of hydrogen and methane from the pretreated biomass of algae bloom in Taihu Lake. International Journal of Hydrogen Energy, 2014, 39: 18793-18802
87. Jun Cheng, Xin Wang, Rui Huang, et al. Producing Ethanol from Water Hyacinth through Simultaneous Saccharification and Fermentation with Acclimatized Yeasts. BioResources, 2014, 9(4): 7666-7680
88. Jun Cheng*, Jia Feng, Jing Sun, et al. Enhancing the lipid content of the diatom Nitzschia sp. by 60Co-γ irradiation mutation and high-salinity domestication. Energy, 2014, 78: 9-15
89. Jun Cheng*, Rui Huang, Tao Li, et al. Biodiesel from wet microalgae: Extraction with hexane after the microwave-assisted transesterification of lipids. Bioresource Technology, 2014, 170: 69-75
90. Jun Cheng*, Rui Huang, Tao Yu, et al. Biodiesel production from lipids in wet microalgae with microwave irradiation and bio-crude production from algal residue through hydrothermal liquefaction. Bioresource Technology. 2014, 151: 415-418
91. Jun Cheng*, Tao Li, Rui Huang, et al. Optimizing catalysis conditions to decrease aromatic hydrocarbons and increase alkanes for improving jet biofuel quality. Bioresource Technology, 2014, 158: 378-382
92. Jun Cheng*, Jing Sun, Yun Huang, et al. Fractal microstructure characterization of wet microalgal cells disrupted with ultrasonic cavitation for lipid extraction. Bioresource Technology, 2014, 170: 138-143
93. Jun Cheng*, Richen Lin, Ao Xia, et al. Sequential Generation of Fermentative Hydrogen and Methane from Swine Manure with Physicochemical Characterization. Energy & Fuels, 2014, 28: 563−570.
94. Jun Cheng*, Jia Feng, Ruolin Cheng, et al. Gene expression and metabolic pathways related to cell growth and lipid synthesis in diatom Nitzschia ZJU2 after two rounds of mutagenesis by g-rays. RSC Advances, 2014, 4, 28463-28470
95. Jun Cheng*, Meng Zhang, Gai Wu, et al. Photoelectrocatalytic Reduction of CO2 into Chemicals Using Pt-Modified Reduced Graphene Oxide Combined with Pt-Modified TiO2 Nanotubes. Environmental Science and Technology, 2014, 48, 7076-7084
96. Jun Cheng*, Yun Huang, Hongxiang Lu, et al. Oxidation product (NO3−) of NO pollutant in flue gas used as a nitrogen source to improve microalgal biomass production and CO2 fixation. RSC Advances, 2014, 4, 42147–42154
97. Jun Cheng*, Yun Huang, Jia Feng, et al. Mutate Chlorella sp. by nuclear irradiation to fix high concentrations of CO2. Bioresoure Technology. 2013,136: 496-501.
98. Jun Cheng*, Yun Huang, Jia Feng, et al. Improving CO2 fixation efficiency by optimizing Chlorella PY-ZU1 culture conditions in sequential bioreactors. Bioresource Technology. 2013, 144: 321-327.
99. Jun Cheng*, Jing Sun, Yun Huang. Dynamic microstructures and fractal characterization of cell wall disruption for microwave irradiation-assisted lipid extraction from wet microalgae. Bioresource Technology. 2013, 150: 67-72.
100.  Jun Cheng*, Tao Yu, Tao Li, et al. Using wet microalgae for direct biodiesel production via microwave irradiation. Bioresource Technology, 2013, 131:531-535.
101.  Jun Cheng*, Ao Xia, Huibo Su, et al. Promotion of H2 production by microwave-assisted treatment of water hyacinth with dilute H2SO4 through combined dark fermentation and photofermentation. Energy Conversion and Management, 2013, 73:329-334.
102.  Jun Cheng*, Ao Xia, Yaqiong Liu, et al. Combination of dark- and photo-fermentation to improve hydrogen production from Arthrospira platensis wet biomass with ammonium removal by zeolite. International Journal of Hydrogen Energy, 2012, 37(18):13330-13337.
103.  Jun Cheng*, Ao Xia, Wenlu Song, et al. Comparison between heterofermentation and autofermentation in hydrogen production from Arthrospira (Spirulina) platensis wet biomass. International Journal of Hydrogen Energy, 2012, 37(8):6536-6544.
104.  Jun Cheng*, Wenlu Song, Ao Xia, et al. Sequential generation of hydrogen and methane from xylose by two-stage anaerobic fermentation. International Journal of Hydrogen Energy, 2012, 37(18):13323-13329.
105.  Jun Cheng*, Huibo Su, Junhu Zhou, et al. Hydrogen production by mixed bacteria through dark- and photo- fermentation. International Journal of Hydrogen Energy, 2011, 36(1): 450-457.
106.  Jun Cheng*, Huibo Su, Junhu Zhou, et al. Microwave-assisted alkali pretreatment of rice straw to promote enzymatic hydrolysis and hydrogen production in dark- and photo- fermentation. International Journal of Hydrogen Energy, 2011, 36(3): 2093-2101.
107.  Jun Cheng*, Minghui Zhang, Wenlu Song, et al. Cogeneration of hydrogen and methane from Arthrospira maxima biomass with bacteria domestication and enzymatic hydrolysis. International Journal of Hydrogen Energy, 2011, 36(2): 1474-1481.
108.  Jun Cheng*, Binfei Xie, Junhu Zhou, et al. Cogeneration of H2 and CH4 from water hyacinth by two-step anaerobic fermentation. International Journal of Hydrogen Energy. 2010, 35(7): 3029-3035.
109.  Jun Cheng*, Yanchang Li, Junhu Zhou, et al. Maximum solid concentrations of coal water slurries predicted by neural network models. Fuel Processing Technology, 2010, 91 (12): 1832-1838.
110.  Jun Cheng*, Junhu Zhou, Jianzhong Liu, et al. Physicochemical Characterizations and Desulfurization Properties in Coal Combustion of Three Calcium and Sodium Industrial Wastes. Energy & Fuels, 2009, 23(5): 2506–2516
111.  Jun Cheng*, Junhu Zhou, Jianzhong Liu, et al. Transformations and Affinities for Sulfur of Chinese Shenmu Coal Ash in a Pulverized Coal Fired Boiler. Energy Sources, 2009, 31(11) : 956-966.
112.  Jun Cheng*, Junhu Zhou, Yanchang Li, et al. Effects of pore fractal structures of ultrafine coal water slurries on rheological behaviors and combustion dynamics. Fuel, 2008, 87(12): 2620-2627.
113.  Jun Cheng*, Junhu Zhou, Yanchang Li, et al. Improvement of Coal Water Slurry Property through Coal Physicochemical Modifications by Microwave Irradiation and Thermal Heat. Energy & Fuels, 2008, 22(4):2422-2428
114.  Jun Cheng*, Junhu Zhou, Jianzhong Liu, et al. Physicochemical properties of Chinese pulverized coal ash in relation to sulfur retention. Powder Technology, 2004, 146(3):169-175.
115.  Jun Cheng*, Junhu Zhou, Jianzhong Liu, et al. Sulfur removal at high temperature during coal combustion in furnaces: a review. Progress in Energy and Combustion Science, 2003, 29(5): 381-405.
116.  Xian Yang, Jun Cheng*, Xiao Yang, et al. MOF-derived Cu@Cu2O heterogeneous electrocatalyst with moderate intermediates adsorption for highly selective reduction of CO2 to methanol. Chemical Engineering Journal, 2022, 431: 134171-134180.
117.  Zhenyi Wang, Jun Cheng*, Wenlu Song, et al. CO2 gradient domestication produces gene mutation centered on cellular light response for efficient growth of microalgae in 15% CO2 from flue gas. Chemical Engineering Journal, 2022, 429: 131968-131987.
118.  Niu Liu, Jun Cheng*, Leiqing Hu, et al. Boosting CO2 transport of poly (ethylene oxide) membranes by hollow Rubik-like “expressway” channels with anion pillared hybrid ultramicroporous materials. Chemical Engineering Journal, 2022, 427: 130845-130861.
119.  Wangbiao Guo, Lingchong Feng, Zhenyi Wang, Jiansheng Guo, Donghyun Park, Brittany L. Carroll, Xing Zhang*, Jun Liu*, Jun Cheng*. In-situ high-resolution 3D imaging combined with proteomics and metabolomics reveals enlargement of subcellular architecture and enhancement of photosynthesis pathways in nuclear-irradiated Chlorella pyrenoidosa. Chemical Engineering Journal, 2022, 430: 133037-133048.
120.  Hao Guo, Jun Cheng*, Yuxiang Mao, et al. Synergistic effect of ultrasound and switchable hydrophilicity solvent promotes microalgal cell disruption and lipid extraction for biodiesel production. Bioresource Technology, 2022, 343: 126087-126093.
121.  Santosh Kumar , Jun Cheng*, Dongwei Jia, et al. Enhancing microalgae production by installing concave walls in plate photobioreactors. Bioresource Technology, 2022, 345: 126479-126485
122.  Haiquan Dong , Jun Cheng*, Hui Li , et al. Electron transfer from Geobacter sulfurreducens to mixed methanogens improved methane production with feedstock gases of H2 and CO2. Bioresource Technology, 2022, 347: 126680-126687.
123.  Haiquan Dong , Liangchen Yue , Jun Cheng*, et al.  Microbial electrochemical degradation of lipids for promoting methane production in anaerobic digestion. Bioresource Technology, 2022, 345: 126467-126474.
124.  Niu Liu, Jun Cheng*, Wen Hou, et al. Bottom-up synthesis of two-dimensional composite via CuBDC-ns growth on multilayered MoS2 to boost CO2 permeability and selectivity in Pebax-based mixed matrix membranes. Separation and Purification Technology, 2022, 282: 120007-120023.
125.  Niu Liu, Jun Cheng*, Wen Hou, et al. Mg2(dobdc) crystals adhere to Matrimid matrix membranes bridged by diethylenetriamine (DETA) as an adhesion agent for efficient CO2 separation. Separation and Purification Technology, 2022, 278: 119635-119652.
126.  Xiao Yang, Trinny Tat, Alberto Libanori, Jun Cheng*, Xiaoxu Xuan, Niu Liu, Xian Yang, Junhu Zhou, Ardo Nashalian, Jun Chen*. Single-atom catalysts with bimetallic centers for high- performance electrochemical CO2 reduction. Materials Today, 2021, 45: 54-61.
127.  Xiao Yang, Jun Cheng*, Xian Yang, et al. Boosting Electrochemical CO2 Reduction by Controlling Coordination Environment in Atomically Dispersed Ni@NxCy Catalysts. ACS Sustainable Chemistry & Engineering, 2021, 9: 6438-6445
128.  Yanmei Song, Jun Cheng*, Yi Miao, et al. SO2 Impurity in Simulated Flue Gas with 15% CO2 Affects Dynamic Bubble Dissolution and Arthrospira Photosynthetic Growth. ACS Sustainable Chemistry & Engineering, 2021, 9, 5580-5589.
129.  Niu Liu, Jun Cheng*, Wen Hou, et al. Pebax-based mixed matrix membranes loaded with graphene oxide/core shell ZIF-8@ZIF-67 nanocomposites improved CO2 permeability and selectivity. Journal of Applied Polymer Science, 2021, 138: 50553- 50568.
130.  Yanmei Song, Jun Cheng*, Xin Lai, et al. Developing a three-dimensional tangential swirl plate photobioreactor to enhance mass transfer and flashlight effect for microalgal CO2 fixation. Chemical Engineering Science, 2021, 244: 116837-116844.
131.  Jing Sun, Jun Cheng*, Zongbo Yang, et al. Effect of Hg2+ on the microphysical and chemical properties of oil-producing Nannochloropsis sp. Algal Research, 2021, 60: 102525-102533.
132.  Wenlu Song, Rui Huang, Hao Guo, Chunguang Yin, Chuanling Wang, Jun Cheng*, Weijuan Yang. Characterization of wet microalgal cells pretreated with steam for lipid Extraction. Chinese Journal of Chemical Engineering, 2021, 37: 114-120.
133.  Junchen Xu, Jun Cheng*, Yali Wang, et al. Strengthening CO2 dissolution with zeolitic imidazolate framework-8 nanoparticles to improve microalgal growth in a horizontal tubular photobioreactor. Chemical Engineering Journal, 2021, 405: 126062-126072.
134.  Zhenyi Wang, Jun Cheng*, Xiangdong Zhang, et al. Metabolic pathways of Chlorella sp. cells induced by exogenous spermidine against nitric oxide damage from coal-fired flue gas. Bioresource Technology, 2021, 328: 124827-124836.
135.  Ameer Ali Kubar, Jun Cheng*, Santosh Kumar, et al. Strengthening mass transfer with the Tesla-valve baffles to increase the biomass yield of Arthrospira platensis in a column photobioreactor. Bioresource Technology, 2021, 320: 124337-124343.
136.  Santosh Kumar, Jun Cheng*, Ameer Ali Kubar, et al. Orange light spectra filtered through transparent colored polyvinyl chloride sheet enhanced pigment content and growth of Arthrospira cells. Bioresource Technology, 2021, 319, 124179-124186.
137.  Yanxia Zhu, Jun Cheng*, Ze Zhang, et al. Promoting extracellular polymeric substances to alleviate phenol toxicity in Arthrospira platensis at high carbon dioxide concentrations. Journal of Cleaner Production, 2021, 290: 125167-125175.
138.  Hui Li, Jun Cheng*, Haiquan Dong, et al. Zeolitic imidazolate framework-derived porous carbon enhances methanogenesis by facilitating interspecies electron transfer: Understanding fluorimetric and electrochemical responses of multi-layered extracellular polymeric substances. Science of the Total Environment, 2021, 781: 146447-146461.
139.  Liangchen Yue, Jun Cheng*, Junjie Hua, et al. A sodium percarbonate/ultraviolet system generated free radicals for degrading capsaicin to alleviate inhibition ofmethane production during anaerobic digestion of lipids and food waste. Science of the Total Environment, 2021, 761: 143269-143281.
140.  Feifei Chu, Jun Cheng*, Wen Hou, et al. Fecitrate converted from Fe2O3 particles in coal-fired flue gas promoted microalgal biomass and lipid productivities. Science of the Total Environment, 2021, 760: 143405-143413.
141.  Yanxia Zhu, Ze Zhang, Xiaodan Xu, Jun Cheng*, et al. Simultaneous promotion of photosynthesis and astaxanthin accumulation during two stages of Haematococcus pluvialis with ammonium ferric citrate. Science of the Total Environment, 2021, 750: 141689-141695.
142.  Liangchen Yue, Jun Cheng*, Suqin Tang, et al. Ultrasound and microwave pretreatments promote methane production potential and energy conversion during anaerobic digestion of lipid and food wastes. Energy, 2021, 228: 120525-120536.
143.  Rui Huang, Jun Cheng*, Wenlu Song, et al. Physicochemical characterizations of microalgal methyl esters extracted with hexane and refined by vacuum distillation at different temperatures. Fuel, 2021, 297: 120779-120785.
144.  Yanxia Zhu, Ze Zhang, Jun Cheng*, et al
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