钱婷婷

中国科学院生态环境研究中心

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  • 钱婷婷
  • 助理研究员
  • 北京海淀区双清路18号
简历:

教育经历

1.2013年9月~2017年6月:中国地质大学,材料科学与工程专业,获工学博士学位 2.2011年9月~2013年6月:中国地质大学,材料工程专业,获工学硕士学位 3.2007年9月~2011年6月:中国地质大学,材料科学与工程专业,获工学学士学位

研究兴趣

1.下一代生活卫生及乡村污染综合治理技术研究。内容包括:面向资源化的室内卫生技术研究,生物性废弃物收集、中转储运、资源化处理处置与利用技术研究等。 2.乡村及分散污水治理管理技术研究。内容包括:乡村及分散污水治理的技术抉择、技术标准、区域规划、组织实施、运行管理和监管,以及相关政策法规等的研究。 3.乡村污染综合治理系统对环境与健康影响的研究。内容包括:系统对环境、经济与社会影响的评价,以及资源化利用过程中潜在的有毒有害物质对水、土壤、大气环境的影响和对农产品安全性影响等的研究。 4.环境材料。内容包括:新型环境材料的制备,性能与应用研究。

研究方向:

分散污水治理、地下水污染修复

招生方向:
欢迎环境工程,材料工程等专业学生报考
专家类别:
中级
职务:
社会任职:
承担科研项目情况:

(1)中国科学院服务网络计划,Y7Y2453601,源分离分类收集关键设备技术研究与应用,2017/01~2019/12,120万元,在研,主持。

(2)国家自然科学基金联合基金项目,U1607113,盐湖水合盐/孔道矿物复合定形相变材料的制备与储能机理研究,2017/01~2019/12,58万元,在研,参加。

(3)中央高校基本科研业务费项目,2652015011,硅藻土基定形复合相变储能材料的制备及性能研究,2014/12~2017/12,10万元,已结题,主持。

(4)中国地质调查项目,1212011120323,我国油页岩灰渣资源综合利用研究, 2011/01~2013/12,150 万元,已结题,参加。

获奖及荣誉:
代表论著:

[1] TT Qian, JH Li*, X Min, Y Deng, L Ning. Enhanced thermal conductivity of PEG/diatomite shape-stabilized phase change materials with Ag nanoparticles for thermal energy storage. Journal of Materials Chemistry A, 3 (2015) 8526–8536. (SCI, IF= 9.931) [2] TT Qian, JH Li*, X Min, Y Deng, WM Guan, L Ning. Diatomite: A promising natural candidate as carrier material for low, middle and high temperature phase change material. Energy Conversion and Management, 98 (2015) 34–45. (SCI, IF=6.37) [3] TT Qian*, JH Li, WF Feng, HE Nian. Single-walled carbon nanotube for shape stabilization and enhanced phase change heat transfer of polyethylene glycol phase change material. Energy Conversion and Management, 143 (2017) 96–108. (SCI, IF=6.37) [4] TT Qian*, JH Li, X Min, B Fan. Integration of pore confinement and hydrogen-bond influence on the crystallization behavior of C18 PCMs in mesoporous silica for form-stable phase change materials. ACS Sustainable Chemistry & Engineering, 6 (2018) 897–908 (SCI, IF= 6.14) [5] TT Qian, JH Li*, HW Ma, J Yang. The preparation of a green shape-stabilized composite phase change material of polyethylene glycol/SiO2 with enhanced thermal performance based on oil shale ash via temperature-assisted sol–gel method. Solar Energy Materials and Solar Cells, 132 (2015) 29–39. (SCI, IF=5.1) [6] TT Qian*; JH Li. Octadecane/C-decorated diatomite composite phase change material with enhanced thermal conductivity as aggregate for developing structuralefunctional integrated cement for thermal energy storage, Energy, 142 (2018) 234–249. (SCI, IF=5.1) [7] TT Qian, JH Li*, X Min, Y Deng, HW Ma. Polyethylene glycol/mesoporous calcium silicate shape-stabilized composite phase change material: preparation, characterization, and adjustable thermal property. Energy, 82 (2015) 333–340. (SCI, IF=4.96) [8] TT Qian, JH Li*. Radial-like mesoporous silica sphere: a promising new candidate of supporting material for storage of low-, middle-, and high-temperature heat. Energy, 112 (2016) 1074–1083. (SCI, IF= 4.96) [9] TT Qian*, JH Li; WW Feng; HE Nian, Enhanced thermal conductivity of form-stable phase change composite with single-walled carbon nanotubes for thermal energy storage. Scientific Reports, 7 (2017 ) 44710. (SCI, IF=4.1) [10] TT Qian, JH Li*, Y Deng. Pore structure modified diatomite-supported PEG shape-stabilized phase change material: preparation, characterization, and thermal energy storage behavior. Scientific Reports, 6 (2016) 32392. (SCI, IF=4.1) [11] TT Qian, JH Li*, Y Deng. Flower-like hollow porous silica sphere for high-temperature thermal storage. Applied Thermal Engineering, 106 (2016) 423–426. (SCI, IF= 3.77) [12] TT Qian, JH Li*, H Xu, Y Deng, X Wang. Nano-TiO2 decorated on radial-like mesoporous silica: preparation, characterization, and adsorption-photodegradation behavior. Journal of Materials Science & Technology, 11 (2017) 1314–1322. (SCI, IF=3.6) [13] TT Qian, JH Li*. Synthesis of Na-A zeolite from coal gangue with the in-situ crystallization technique. Advanced Powder Technology, 26 (2015) 98–104. (SCI, IF= 2.9) [14] TT Qian, JH Li*, HW Ma, J Yang. Adjustable thermal property of polyethylene glycol/diatomite shape-stabilized composite phase change material. Polymer Composites, 37 (2016) 854–860. (SCI: IF= 1.9)