Scientific Research
Recently, the mid-term self-inspection meeting for the National Key R&D Program project "Key Technologies and Pilot Verification for Efficient Synthesis of Olefins and Aromatics from Syngas" (2024YFB4105400) was organized and organized by Ordos Laboratory, the unit undertaking Project Two. Key research backbones from each undertaking and participating unit attended online to
On the afternoon of August 21, Professor Ding Weiping from the School of Chemistry and Chemical Engineering at Nanjing University was invited to the Ordos Laboratory to deliver a special academic report titled "Meso-Spectral Catalysis Research: Progress and Applications." Postdoctoral researchers and researchers actively signed up to participate, and the session was chaired by Professor Yang Yanhui, Deputy Director of Research at the Ordos Laboratory.
Recently, Professor Yang Yanhui and project scientist Dr. Jin Yuguang from Ordos Laboratory, together with the teams of Professors Zhou Chunmei and Yang Dan from Nanjing Tech University, have made progress in the field of green chemical catalysis, innovatively developing a new technology for manganese-based electrocatalytic oxidation of adipic acid under neutral electrolytes.
Recently, Professor Yang Yanhui's team from Ordos Laboratory, together with Nanjing University of Technology and Moscow State University in Russia, published a collaborative research result titled "Enhanced performance of Ru catalysts on high-entropy" in Nano Research, with Ordos Laboratory as the first unit rare earth oxide supports for dry reforming of methane”。
Recently, Professor Yang Yanhui's team from Ordos Laboratory, together with Nanjing University of Technology and Moscow State University in Russia, published a collaborative research result titled "Enhanced performance of Ru catalysts on high-entropy" in Nano Research, with Ordos Laboratory as the first unit rare earth oxide supports for dry reforming of methane”。
Recently, Ordos Laboratory organized an academic seminar. This seminar was organized under the leadership of Li Yongdan's team, with two young scholars specially invited to give special academic presentations, focusing on "Hollow Fiber Diffusive Electrodes Promoting Efficient CO2 Electrocatalysis" and "Design and Application from Multiphase Catalysis to Electronic Noses."
Recently, the Ordos Laboratory industrial thermal energy storage team achieved a major breakthrough in the field of high-temperature fluidized industrial thermal energy storage technology, adding 18 new invention patents, totaling 21Core invention patents have been centrally authorized by the National Intellectual Property Administration
Recently, the Ordos Laboratory industrial thermal energy storage team published three consecutive research papers focusing on fundamental issues related to high-temperature fluidized industrial thermal energy storage, covering the distribution of gas residence time in high-pressure fluidized beds and multi-disperse fluidized bed particles- Wall heat transfer models
Zeolite molecular sieve limited metal catalysts are a new generation of heterogeneous catalysts that demonstrate superior performance beyond traditional supported catalysts in key reactions such as hydrogenation, dehydrogenation, and hydroformylation. However, the mechanism by which metal-molecular sieve spatial structure affects catalytic selectivity remains unclear.
Recently, Professor Qian Weizhong and Associate Researcher Cui Chaojie led the Leading Coal Chemical team in completing the latest results in pentane aromaticization, which were published online online in the English edition of the Journal of Physical Chemistry (https://doi.org/10.1016/j.actphy.2026.100351). Mixed CO5
Recently, the Autonomous Region Science and Technology Department officially announced the list of approved projects funded by the Autonomous Region Natural Science Foundation for 2026. 10 projects from 58 units in our citySuccessfully approved, with the Ordos Laboratory performing excellently and accumulating approvals 15 projects, accounting for 25.9% of the city's total, fully demonstrating strong technological innovation strength and core competitiveness. The laboratory has been approved for multiple projects In key areas
Recently, Professor Qian Weizhong and Associate Researcher Cui Chaojie led the leading coal chemical team at ACS Applied Published new adsorbent results for separating carbon dioxide from ethylene (https://doi.org/10.1021/acsami.6c06118) in the journal Materials & Interfaces)
Recently, Ordos Labs partnered with Thermo Fisher ScientificThe company successfully held the eventThe First High-Level Forum on Electron Microscopy Catalysis and Advanced Characterization. This forum focused on the cutting-edge intersection of electron microscopy technology and catalytic science, focusing on solving challenges in catalyst microstructure characterization and performance regulation
In the field of catalysis and separation of porous materials, molecular transport efficiency directly affects the material's reaction performance and application potential, with surface diffusion being the key factor limiting overall mass transfer efficiency. Especially after crystal size shrinks to the nanoscale,
Recently, the Ordos Laboratory electron microscopy platform led the application for the autonomous region's key R&D and achievement transformation project Controllable construction of single-channel exposed MFI molecular sieves and CO₂The "Hydrogenated High-Selectivity Preparation of Para-Xylene" project was successfully approved.
In order to improve the management level of instruments and equipment and data reliability, 1 On the 27th of February, Ordos Laboratory specially invited METTLER TOLEDO technical team to carry out instrument training and technical services More than 20 relevant researchers participated.
Recently, the results of the Ministry of Education's Outstanding Scientific Research Achievement Award (Natural Science and Engineering Technology) were officially announced. The team of Wei Fei-Chen Xiao of Tsinghua University was completed"Study of single-molecule conformation and subject-guest interaction in nano-confined catalysisThe project won the first prize of natural science.