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化学工程系——郭旸

2024年11月04日 17:22  点击:[]

郭旸男,19951月生,山东巨野县人,工学博士

主要简历:2017年毕业于中国矿业大学矿物加工工程专业获工学学士,2023年毕业于中国矿业大学化学工艺专业获工学博士。

现任职务及荣誉:现任山东石油化工学院化学工程系党支部副书记曾获中国矿业大学优秀毕业生,中国矿业大学优秀博士学位论文等荣誉。

主讲课程:安全系统工程,化工应急技术与管理,二氧化碳捕集分离原理与技术

研究方向及学术成就:

1.煤系固废的脱灰提质-协同资源化-污染物释放监测与控制研究;

2.多源分级多孔材料的制备及CO2捕集性能研究;

3.储能材料的合成与应用研究。

共计发表SCIEI论文等学术期刊论文36篇,其中以第一作者发表SCI论文7篇;共获授权中国发明专利5项,国际发明专利1项,实用新型专利1项;参与国家自然科学基金2项,国家重点研发计划项目2项,横向项目4项;兼任Fuel, MoleculesSustainability, Materials, Applied SciencesSCI学术期刊审稿人。

代表性的论文和著作:

(1) Processing of coal gasification fine slag by different physical separation methods: Fate of typical heavy metals and comparison analysis on products[J]. Separation and Purification Technology, 2022: 122675. 位次1/9

(2) Multifaceted evaluation of distribution, occurrence, and leaching features of typical heavy metals in different-sized coal gasification fine slag from Ningdong region, China: A case study[J]. Science of The Total Environment, 2022, 831: 154726. 位次1/8

(3) Comparative study on the structure characteristics, combustion reactivity, and potential environmental impacts of coal gasification fine slag with different particle size fractions[J]. Fuel, 2022, 311: 122493. 位次1/9

(4) Investigation on co-combustion of coal gasification fine slag residual carbon and sawdust char blends: Physiochemical properties, combustion characteristic and kinetic behavior[J]. Fuel, 2021, 292: 120387. 位次1/9

(5) Evaluation of the thermal behavior, synergistic catalysis, and pollutant emissions during the co-combustion of sewage sludge and coal gasification fine slag residual carbon[J]. Catalysts, 2021, 11(10): 1142. 位次1/8

(6) Pore structure and fractal characteristic analysis of gasification-coke prepared at different high-temperature residence times[J]. ACS Omega, 2020, 5(35): 22226-22237. 位次1/6

(7) 配煤对气化焦孔隙结构及分形特征的影响[J].煤炭转化, 2019,42(01):40-47. 位次1/7

(8) Co-combustion of carbon-rich fraction from coal gasification fine slag and biochar: Gas emission, ash sintering, heavy metals evolutions and environmental risk evaluation[J]. Chemical Engineering Journal2023471:144312. 位次2/8

(9) Multitudinous components recovery, heavy metals evolution and environmental impact of coal gasification slag: A review[J]. Chemosphere, 2023, 338:139473. 位次2/10

(10) Recycling residual carbon from gasification fine slag and its application for preparing slurry fuels[J]. ACS Sustainable Chemistry & Engineering, 2020, 8(23): 8830-8839. 位次2/8

(11) Dewatering mechanism of gasification fine slag by coupled mechanical force fields and its potential guidance for efficient dewatering process[J]. Fuel Processing Technology, 2020, 205: 106459. 位次2/7

(12) A new separation flowsheet for resources recovery from waste coal gasification fine slag black water and its benefits analysis[J]. Process Safety and Environmental Protection, 2022, 164: 836-845. 位次2/10

(13) Construction of n, o codoped petal-like hierarchical porous carbon with an ultrahigh specific surface from waste bamboo for high-performance supercapacitors[J]. Industrial & Engineering Chemistry Research, 2022, 61(43): 16034-16049. 位次2/8

代表性教学科研成果及发明专利:

(1) 一种配入高比例低品质煤的气化焦及其制备方法,ZL2018112860914, 发明专利 .

(2) 一种调控由高比例低品质煤制备的气化焦灰熔点的方法,ZL2018112854595, 发明专利.

(3) 一种煤气化细渣残炭与生物质快速热解油混合制备浆体燃料的方法, ZL2020107361025, 发明专利.

(4) 一种煤气化细渣快速脱水、型块脱模装置及方法,ZL2022100304463, 发明专利.

(5) 一种真空抽滤-机械挤压集成的煤气化细渣连续脱水腔体及方法,ZL2022100300636, 发明专利.

(6) Method for digesting briquette based on hydrothermal synthesis reaction kettle and determining mercury and arsenic in briquette by atomic fluorescence spectrometry. 202210389850.X, 国际发明专利.



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