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Jia Luo
luojia@xtbg.ac.cn
Chinese, English
Yunnan
University of Chinese Academy of Sciences
Life Sciences
  • 2005-09--2011-06 PhD in Science: Sichuan University
  • 2001-09--2005-08 Bachelor in Science: Sichuan University
  • 2014-01~Present - Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences - Associate Researcher
  • 2011-07~2013-12 - Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences - Assistant Researcher
Catalytic Chemistry of Oils
Biomass Energy
Green Chemistry
  • Effects of cellulose diameter on the formation and rheological properties of edible walnut oleogels structured by cellulose nanofiber, Yuxuan Zou, Yang Tian, Bing Zhao, Jienan Li, Jia Luo, Jun Sheng, Xiufen Li, 2024
  • Effects of drying method and oil type on edible polyunsaturated oleogels co-structured by hydroxylpropyl methyl cellulose and xanthan gum, Xiufen Li, Yuxuan Zou, Bing Zhao, Jia Luo, Jienan Li, Jun Sheng, Yang Tian, 2024
  • Structure, rheology and stability of walnut oleogels structured by cellulose nanofiber of different lengths, Xiufen Li, Bing Zhao, Yuxuan Zou, Guanshui Guo, Jienan Li, Jun Sheng, Yang Tian, Jia Luo, 2024
  • PdAg/CDs复合催化剂的制备及其葡萄糖氢解性能研究, 陈德权, 王安, 包桂蓉, 高鹏, 罗嘉, 吉学武, 邓文瑶, 刘力, 2023
  • Development and characterization of walnut oleogels structured by cellulose nanofiber, Xiufen Li, Guanshui Guo, Yuxuan Zou, Jia Luo, Jun Sheng, Yang Tian, Jienan Li, 2023
  • 可食用油凝胶的流变-结晶特性研究进展, 李秀芬, 赵冰, 罗嘉, 张帆, 彭一倩, 2023
  • Combination of ethanol andFe 3 O 4 @C-SO 3 Hpretreatment of Eucalyptus for glucose release via enzymatic saccharification, Luo, Jia, Qian, Le, Zhu, YuQin, Zhang, Fan, Jiang, LiQun, 2021
  • Combination of ethanol andFe(3)O(4)@C-SO(3)Hpretreatment ofEucalyptusfor glucose release via enzymatic saccharification, Luo, Jia, Qian, Le, Zhu, YuQin, Zhang, Fan, Jiang, LiQun, 2021
  • 2种木质素的醇热反应条件研究, 孙向前, 罗嘉, 包桂蓉, 张晗, 张无敌, 关清卿, 2020
  • 碳纳米点的合成与表征及影响因素分析, 刘果, 包桂蓉, 王华, 罗嘉, 黄钰, 惠硕, 孟一鸣, 2020
  • 超临界甲醇中Ce/Cu/Zn/Al催化木质素制备酚类化合物的研究, 黄钰, 包桂蓉, 罗嘉, 杨智翔, 刘果, 惠硕, 陈靖, 李佳蔚, 2020
  • Na2SiO3-Catalyzed Glycerolysis of Sacha Inchi (Plukenetia volubilis L.) Oil into Di- and Monoacylglycerols, Luo, Jia, Wang, Zeping, Deng, Shangzhi, Zhang, Fan, Bao, Guirong, Mao, Junni, Yang, Wenjing, 2020
  • Ce modified Cu/Zn/Al catalysts for direct liquefaction of microcrystalline cellulose in supercritical methanol, Liu, Guo, Bao, Guirong, Wang, Hua, Luo, Jia, Hui, Shuo, Huang, Yu, Ma, Yiwen, 2019
  • One-step production of biodiesel from Jatropha oils with high acid value at low temperature by magnetic acid-base amphoteric nanoparticles, Wang, YiTong, Fang, Zhen, Yang, XingXia, Yang, YaTing, Luo, Jia, Xu, Kun, Bao, GuiRong, 2018
  • Iron(III)-modified tungstophosphoric acid supported on silica-pillared montmorillonite as catalysts for fructose conversion to methyl levulinate (vol 93, pg 557, 2017), Lai, Fengjiao, Luo, Jia, Jiang, Dan, Su, Tongchao, Zhang, Fan, 2018
  • Catalytic transesterification to biodiesel at room temperature over several solid bases, Yang, XingXia, Wang, YiTong, Yang, YaTing, Feng, ErZhong, Luo, Jia, Zhang, Fan, Yang, WenJing, Bao, GuiRong, 2018
  • Alcohothermal carbonization of biomass to prepare novel solid catalysts for oleic acid esterification, Yang, YaTing, Yang, XingXia, Wang, YiTong, Luo, Jia, Zhang, Fan, Yang, WenJing, Chen, JiangHua, 2018
  • Iron(III)-modified tungstophosphoric acid supported on silica-pillared montmorillonite as catalysts for fructose conversion to methyl levulinate, Lai, Fengjiao, Luo, Jia, Jiang, Dan, Su, Tongchao, Zhang, Fan, 2018
  • The Formation of Char, Gaseous and Liquid Products during Lignin Carbonization in Super- and Subcritical Solvents, Luo, Jia, Yang, Yating, Yang, Xingxia, Han, Bo, Bao, Guirong, Li, Jing, 2017
  • Coproduction of Furfural and Easily Hydrolyzable Residue from Sugar Cane Bagasse in the MTHF/Aqueous Biphasic System: Influence of Acid Species, NaCl Addition, and MTHF, Li, Xingkang, Fang, Zhen, Luo, Jia, Su, Tongchao, 2016
  • Biodiesel production catalyzed by highly acidic carbonaceous catalysts synthesized via carbonizing lignin in sub- and super-critical ethanol, Huang, Mei, Luo, Jia, Fang, Zhen, Li, Hu, 2016
  • Corrigendum to 'Biodiesel production catalyzed by highly acidic carbonaceous catalysts synthesized via carbonizing lignin in sub- and super-critical ethanol' Appl. Catal. B: Environ. 190 (2016) 103–114, Mei Huang, Jia Luo, Zhen Fang, Hu Li, 2016
  • 镍基和均相酸催化废弃木质素的溶剂热降解, 黄梅, 罗嘉, 方真, 2015
  • Hydrolysis of Selected Tropical Plant Wastes Catalyzed by a Magnetic Carbonaceous Acid with Microwave, Su, TongChao, Fang, Zhen, Zhang, Fan, Luo, Jia, Li, XingKang, 2015
  • Ultrasound-enhanced conversion of biomass to biofuels, Luo, Jia, Fang, Zhen, Smith, Richard L, Jr., 2014
  • Biodiesel production from soybean and Jatropha oils by magnetic CaFe2O4-Ca2Fe2O5-based catalyst, Xue, BaoJin, Luo, Jia, Zhang, Fan, Fang, Zhen, 2014
  • Combination of dilute acid and ionic liquid pretreatments of sugarcane bagasse for glucose by enzymatic hydrolysis, Jiang, LiQun, Fang, Zhen, Li, XingKang, Luo, Jia, Fan, SuetPin, 2013
  • Production of 2,3-butanediol from cellulose and Jatropha hulls after ionic liquid pretreatment and dilute-acid hydrolysis, Jiang, Liqun, Fang, Zhen, Li, XingKang, Luo, Jia, 2013
Catalysis Oils Biomass Energy Green Chemistry Lignocellulose Biodiesel Heterogeneous Catalysis Renewable Energy Sustainability

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