jili Qu | Geotechnical Engineering | Best Researcher AwardΒ
Prof. jili Qu, Kashgar University, China.
Publication profile
Scopus
Education and Experience
Β Ph.D. in Underground Engineering, Tongji University, Shanghai, 2002
Β M.Sc. in Engineering Geology, Nanjing University, Shanghai, 1993
Β B.Eng. in Hydrogeology and Engineering Geology, Guilin University of Technology, Shanghai, 1985
Β Professor, School of Civil Engineering, Kashgar University, 2021-present
Β Associate Professor, University of Shanghai for Science and Technology, 2005-2021
Β Postdoctoral Fellow, Civil Engineering, Shanghai Jiao Tong University, 2002-2005
Suitability For The Award
Professional DevelopmentΒ
Awards and Honors
Β Excellent Teacher, University of Shanghai for Science and Technology, 2020
Β Reading Star, University of Shanghai for Science and Technology, 2020
Β Second Prize Nomination, Shanghai Natural Science Award, 2020
Β First PrizeΒ in Engineering Practice Innovation, University of Shanghai for Science and Technology, 2017
Β Outstanding Instructor, Summer Social Practice, University of Shanghai for Science and Technology, 2012
Β Third Prize, CABR Cup, Huaxia Construction Science and Technology, 2011
Β Second Prize, Shanghai Teaching Achievements, Shanghai Education Commission, 2010
Β Excellent Head Teacher, School of Environment and Architecture, 2009
Publications
- Enhancing Aeolian Sand Stability Using Microbially Induced Calcite Precipitation TechnologyΒ βΒ Scientific Reports, 2024, 14(1), 23876Β
Β (Cited by: 0) - Roles of Corn Starch and Gellan Gum in Changing Unconfined Compressive Strength of Shanghai Alluvial ClayΒ βΒ Science and Engineering of Composite Materials, 2024, 31(1), 20240002Β
Β (Cited by: 1) - Geotechnical Properties of Yellow Silty Sand Soil Modified by Bio-Stimulation with Presence of NiCl2Β βΒ IOP Conference Series: Earth and Environmental Science, 2021, 938(1), 012001Β
Β (Cited by: 0) - Using the Tape Extensometer for Possibilities of Landslide Monitoring or Other PurposesΒ βΒ IOP Conference Series: Earth and Environmental Science, 2021, 906(1), 012026Β
Β (Cited by: 0) - Research on the Effect of Urease on Energy Absorption in Shanghai Clay by Unconfined Compressive TestΒ βΒ IOP Conference Series: Earth and Environmental Science, 2021, 719(4), 042060Β
Β (Cited by: 0) - Roes of Curing Conditions on Properties of Soil Reinforced with Palm Fiber and LimeΒ βΒ Emerging Materials Research, 2021, 10(1), pp. 90β102Β
Β (Cited by: 1) - Function of Palm Fiber in Stabilization of Alluvial Clayey Soil in Yangtze River EstuaryΒ βΒ Journal of Renewable Materials, 2021, 9(4), pp. 767β787Β
Β (Cited by: 20) - Strength and Deformation Behavior of Shanghai Andesite Under Various Strain Rates in Uniaxial Loading TestΒ βΒ Geomechanics and Geoengineering, 2021, 16(1), pp. 44β51Β
Β (Cited by: 0) - Comparison of Secondary Crushing Operations Through Cone and Horizontal Shaft Impact CrushersΒ βΒ SGEM International Multidisciplinary Scientific GeoConference, 2020Β
Β (Cited by: 2)
Β at East China Normal University. With extensive experience in civil engineering, he has made notable contributions to soil stabilization and sustainable infrastructure. Prof. Qu earned his Ph.D. from Tongji University and has since led numerous research projects focused on microbial mineralization, soil corrosion resistance, and eco-friendly construction methodsΒ
. As a faculty member at Kashgar University, he plays a pivotal role in advancing resilient engineering practices and environmental research. Widely recognized for his innovative work, Prof. Qu has received multiple awards for excellence in teaching and researchΒ
. Over the years, he has spearheaded pioneering research on microbial soil reinforcement, long-term weathering resistance, and corrosion-resistant soil stabilization. His work addresses key challenges in civil engineering, particularly the environmental impact of geotechnical practices and sustainable construction techniques. Prof. Qu has hosted multiple high-impact research projects funded by national and provincial agenciesΒ
. Through his research and academic leadership, he contributes to innovations in civil engineering, supporting resilient and eco-friendly infrastructure development.
. A significant aspect of his research investigates the durability and corrosion resistance of bio-reinforced soils, which are critical for long-term infrastructure stability. His projects also explore the use of organic and green materials in soil modification for ecological applicationsΒ
.