岗 位: | 研究员 |
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最高学历: | 博士研究生 |
研究方向: | 生物制氢、生物天然气、天然气水合物、环境工程、生物能源、气体能源利用、生物太阳能利用技术、微生物燃料电池、生物碳捕获与生物转化技术等多个领域。 |
联系电话: | 0532-58782861 |
电子邮件: | guorb@qibebt.ac.cn |
通讯地址: | 山东省青岛市崂山区松岭路189号 |
1.中国海洋大学硕士生导师;
2.城市生物质燃气产业技术创新战略联盟理事;
3.国家畜禽养殖废弃物资源化利用科技创新联盟专家委员;
4.中国沼气学会理事。
1. Yuan, X., Shi, X., Zhang, D., Qiu, Y., Guo, R*., Wang, L.Biogas production and microcystin biodegradation in anaerobic digestion of blue algae.Energy & Environmental Science,2011,4(4):1511.
2. Shanfei Fu#, Shujuan Lian#, Irini Angelidaki, and Rongbo Guo*. Micro-aeration: an attractive strategy to facilitate anaerobic digestion. Trends In Biotechnology,2022, 1–13. https://doi.org/10.1016/j.tibtech.2022.09.008
3. Shujuan Lian, Xiaoshuang Shi, Mingyi Lu, Mengdan Zhang, Xiaohuan Dong, Xu Li, Quan Feng, Rongbo Guo*. Accelerated adsorption of tetracyclines and microbes with FeOn(OH)m modified oyster shell: its application on biotransformation of oxytetracycline in anaerobic enrichment culture. Chemical Engineering Journal, 2021, 11.130499
4. Shan-Fei Fu, Fei Wang, Xiao-Shuang Shi, Rong-Bo Guo*. Impacts of microaeration on the anaerobic digestion of corn straw and the microbial community structure. chemical Engineering Journal,2016,287:523-528.
5. Shi, X. S., Yuan, X. Z., Wang, Y. P., Zeng, S. J., Qiu, Y. L., Guo, R. B.*, Wang, L. S. Modeling of the methane production and pH value during the anaerobic co-digestion of dairy manure and spent mushroom substrate.Chemical Engineering Journal,2014,244:258-263.
6. Wang F.; Guo G.; Luo S.J.; Guo R.B.*. Grafting of nano-Ag particles on –SO3 -coated nanopolymers for promoting methane hydrate formation. Journal of Materials Chemistry A,2017, 5, 18486–18493
7. Fei Wang, Gang Guo, Sheng-Jun Luo, Rong-Bo Guo*. Preparation of -SO3--coated nanopromoters for methane hydrate formation: effects of the existence pattern of -SO3- groups on the promotion efficiency. Journal of Materials Chemistry A, 2017,5, 2640-2648
8. Fengyuan Zhang#, Quan Feng#, Ying Chen, Xiaoshuang Shi, Kang Qin, Mingyi Lu, Fan Qin, Shanfei Fu, Rongbo Guo*, Enhancement of biological nitrogen removal performance from low C/N municipal wastewater using novel carriers based on the nano-Fe3O4, Bioresource Technology,2022,363:127914.https://doi.org/10.1016/j.biortech.2022.127914.
9. Yuan, X. Z., Shi, X. S., Yuan, C. X., Wang, Y. P., Qiu, Y. L., Guo, R. B.*, Wang, L. S. Modeling anaerobic digestion of blue algae: stoichiometric coefficients of amino acids acidogenesis and thermodynamics analysis. Water Research, 2014, 49:113-123.
10. Xu Li, Xiao Shuang Shi, Mingyi Lu, Yuzhong Zhao, Rong-Bo Guo*,Hui Peng. Improved nitrogen conservation capacity during composting of dairy manure amended with oil shale semi-coke as the porous bulking agent. Journal of Hazardous Materials, 2020, 388.
11. Zhiman Yang., Xu, X.,Dai, M., Wang, L., Shi, X., Guo, R.*. Combination of bioaugmentation and biostimulation for remediation of paddy soil contaminated with 2,4-dichlorophenoxyacetic acid. Journal of Hazardous Materials. 2018, 353,490-495
12. Zeng, S., Yuan, X., Shi, X., Qiu, Y. Effect of inoculum/substrate ratio on methane yield and orthophosphate release from anaerobic digestion of Microcystis spp. Journal of Hazardous Materials, 2010,178(1-3):89-93.