Patents Assigned to NANJING TECH UNIVERSITY
  • Patent number: 11071925
    Abstract: A multilayer thin film evaporator for steam heating includes a housing. A three-layer evaporation cylindrical core arranged in a nested manner with one layer placed inside the other is configured inside the housing. A limiting plate is configured to fix the three-layer evaporation cylindrical core. A feeding tube, a heating medium inlet tube, and a heating medium outlet tube are sequentially fixed under the limiting plate in a crosswise manner. A rotary rack spindle passing through a center of the three-layer evaporation cylindrical core, a rotary rack fixed on the rotary rack spindle and capable of rotating with the rotary rack spindle, and a motor component connected to a top end of the rotary rack spindle and capable of driving the rotary rack spindle to rotate are further provided.
    Type: Grant
    Filed: March 6, 2017
    Date of Patent: July 27, 2021
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Xiang Ling, Xin Huang, Yang Li, Minjie Gao
  • Patent number: 11047601
    Abstract: A method and a system of a high-temperature calcium looping thermochemical energy storage are provided. A thermochemical energy storage system is based on CaCO3/CaO, and an energy storage is performed by a mutual transformation between a thermal energy and a chemical energy. When solar irradiation is sufficient, CaCO3 solid particulates are indirectly heated by hot air generated from solar energy to perform an endothermic decomposition reaction, and received heat is stored in decomposition products of CaO and CO2 in a form of the chemical energy. When heat is required, a reversible thermochemical reaction occurs between the CaO and CO2 under an atmospheric pressure, and the chemical energy stored in the CaO and CO2 is transformed into the heat for release.
    Type: Grant
    Filed: March 6, 2017
    Date of Patent: June 29, 2021
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Xiang Ling, Xiaoyi Chen, Yan Wang, Xiaogang Jin
  • Patent number: 11015021
    Abstract: Disclosed in the present invention is a preparation method for a polyester, relating to the technical field of organic catalysis and polymeric materials. The preparation method in the present invention comprises: (1) using pyridine and saccharin in a ratio of 1:1 to prepare pyridine saccharin salt in tetrahydrofuran at 60° C. and separating the pyridine saccharin salt out in methanol and hexane. (2) Freeing out a small amount of pyridine from the pyridine saccharin salt in a heating state, catalyzing by the pyridine saccharin salt and pyridine a cyclic lactone or a carbonate to be ring-opened and polymerized to form the polyester; and the system has no other compound residues. (3) In the presence of an alcohol initiator, catalyzing by the pyridine saccharin salt the cyclic lactone to be ring-opened and polymerized to obtain the polyester. The catalytic system can efficiently synthesize a specific polylactone.
    Type: Grant
    Filed: April 24, 2018
    Date of Patent: May 25, 2021
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Kai Guo, Fulan Wei, Zhenjiang Li, Hui Zhu, Siming Chen, Yu Gao
  • Publication number: 20210078741
    Abstract: The present invention proposes a large industrial vacuum sealer system. The system comprises the following working steps: after materials are placed, a box base moves upwards to be jointed with a box cover in a sealing manner; the first valve 120 is switched on; a rotary vane pump starts roughly pumping the air; next, a roots pump starts working; when the pressure reaches a preset value, the first valve 120 is switched off; valves 110 and the second valve 130 are switched on; diffusion pumps start working; after the air is pumped out completely, all pumps stop working. A box body comprises the box cover and the box base, wherein the box body is fixedly mounted. The box base is driven by air cylinders to move along a rail. In the present invention, a light curtain sensor is mounted between the box cover and the box base.
    Type: Application
    Filed: September 9, 2020
    Publication date: March 18, 2021
    Applicants: Wuhu Innovation New Materials Co., Ltd., Nanjing Tech University
    Inventors: Zhou Chen, Jiaduo Li, Tengzhou Xu
  • Patent number: 10927229
    Abstract: The present invention relates to a method for preparing nanoporous polysulfone-based polymers, including: a copolymer of a polysulfone polymer and a polar polymer is immersed into a compound swelling agent, and maintained for at least 1 minute above room temperature; the compound swelling agent is a “solvent pair” composed of the mixture of solvent A and solvent B; the solvent A has high affinity with the polysulfone polymer; and the solvent B has high affinity with the polar polymer; the treated copolymer is taken out from the compound swelling agent and then dried to remove the solvent to obtain the nanoporous polysulfone-based polymers.
    Type: Grant
    Filed: June 30, 2017
    Date of Patent: February 23, 2021
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Yong Wang, Weihong Xing, Nanping Xu
  • Patent number: 10799836
    Abstract: The Invention discloses a preparation method for a triptyl polymer separation membrane, wherein, it comprises the following steps: take triptycene compound containing active group, dichloride compound and diamino compound containing ether bond as monomers, and conduct polymerization in aprotic organic solvent in the presence of acid-binding agent; pour the obtained polymer solution into deionized water for precipitation after the reaction, filter out precipitates and wash with methanol and dry to get triptyl polymer; dissolve the triptyl polymer in aprotic organic solvent to produce a membrane-casting solution, apply the solution on support and dry to get a triptyl polymer separation membrane. The Invention solves the problem that the reticular polymer material is insoluble, and breaks the restriction for application of such material in separation membrane due to its insoluble and aging features.
    Type: Grant
    Filed: April 25, 2017
    Date of Patent: October 13, 2020
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Haoli Zhou, Fei Tao, Wanqin Jin
  • Patent number: 10773182
    Abstract: A multi-stage evaporation system enhanced by a gravity-reduced field consists of evaporation structures of multiple stages. There are three different operation modes, namely, a serial-connected air and parallel-connected solution mode, a serial-connected air and serial-connected solution mode, and a parallel-connected air and serial-connected solution mode. In the evaporation chambers, the solution directly contacts the air to transfer the heat and mass. The solution is sprayed on the rotating filling material, and is uniformly distributed under the action of the gravity-reduced field, which enhances the heat and mass transfer. The solution is gasified by absorbing the heat energy thereof. Meanwhile, the air can carry more water vapor after being heated by the solution and thus having an increased temperature, and take away the gasified solution, thereby achieving the purpose of evaporation.
    Type: Grant
    Filed: January 11, 2018
    Date of Patent: September 15, 2020
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Xiang Ling, Weihong Liu, Yang Li, Xin Huang, Tingfen Ke
  • Patent number: 10756219
    Abstract: It discloses a texturing method for a diamond wire cut polycrystalline silicon slice, including the following steps: firstly, immersing the diamond wire cut polycrystalline silicon slice into a mixed aqueous solution of an alkali solution and an alkali reaction control agent, removing a damaged layer on a surface of the silicon slice, and then immersing the silicon slice into a hydrofluoric acid solution containing inorganic ions and organic molecules for reaction; secondly, pretreating the polycrystalline silicon surface by a mixed solution of hydrofluoric acid and hydrogen peroxide, adding a pore-forming regulator at the same time, and finally texturing the surface of the silicon slice by a mixed acid solution of hydrofluoric acid and nitric acid.
    Type: Grant
    Filed: September 20, 2016
    Date of Patent: August 25, 2020
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Zisheng Guan, Jun Li, Zhimei Shen, Chunhua Lu, Zhongzi Xu
  • Publication number: 20200191998
    Abstract: Determining a white plume control line of smoke after wet desulphurization includes: drawing a saturated air enthalpy humidity curve or equivalent; obtaining annual temperature and humidity change data of located cities or regions along with the time at the frequency of at least one datum every day; drawing the data obtained in the saturated air enthalpy humidity curve; and drawing a tangent line on the saturation curve by using each meteorological point in a chart, the right lower side of the tangent line is a de-pluming control region, the de-pluming effect superior to that at the feature meteorological point can be realized when the smoke enters the region after regulation, a region defined by the de-pluming control line and the saturation curve at a low-temperature side forms a de-pluming day number control region, and the point number falling within the region is the white plume generating day number.
    Type: Application
    Filed: October 31, 2018
    Publication date: June 18, 2020
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Haitao XU, Changcheng ZHOU, Jianjun JIANG, Qiang LI, Jian ZOU, Kai SHEN, Da SHEN
  • Publication number: 20200129970
    Abstract: A method for preparing a two-dimensional sheet-shaped Cu-MOF material, includes mixing Cu-BTC with an alkaline solution at a certain solid-liquid ratio by stirring, reacting at a temperature of 25 to 120° C., filtering, washing with ionized water and drying under vacuum, to obtain a two-dimensional sheet-shaped Cu-MOF material, wherein the alkaline solution is at least one of urea, sodium carbonate, sodium bicarbonate, aqueous ammonia, sodium hydroxide or potassium hydroxide. The method has the characteristics of mild operation conditions, controllable transition process, high reaction yield and easy production at large scale, and exhibits excellent oxidation performance in styrene oxidation.
    Type: Application
    Filed: July 20, 2018
    Publication date: April 30, 2020
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Hang LI, Xiangyue XU, Suoying ZHANG, Zhuhong YANG, Xiaohua LU
  • Publication number: 20200030711
    Abstract: A multilayer thin film evaporator for steam heating includes a housing. A three-layer evaporation cylindrical core arranged in a nested manner with one layer placed inside the other is configured inside the housing. A limiting plate is configured to fix the three-layer evaporation cylindrical core. A feeding tube, a heating medium inlet tube, and a heating medium outlet tube are sequentially fixed under the limiting plate in a crosswise manner. A rotary rack spindle passing through a center of the three-layer evaporation cylindrical core, a rotary rack fixed on the rotary rack spindle and capable of rotating with the rotary rack spindle, and a motor component connected to a top end of the rotary rack spindle and capable of driving the rotary rack spindle to rotate are further provided.
    Type: Application
    Filed: March 6, 2017
    Publication date: January 30, 2020
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Xiang LING, Xin HUANG, Yang LI, Minjie GAO
  • Publication number: 20190336881
    Abstract: A multi-stage evaporation system enhanced by a gravity-reduced field consists of evaporation structures of multiple stages. There are three different operation modes, namely, a serial-connected air and parallel-connected solution mode, a serial-connected air and serial-connected solution mode, and a parallel-connected air and serial-connected solution mode. In the evaporation chambers, the solution directly contacts the air to transfer the heat and mass. The solution is sprayed on the rotating filling material, and is uniformly distributed under the action of the gravity-reduced field, which enhances the heat and mass transfer. The solution is gasified by absorbing the heat energy thereof. Meanwhile, the air can carry more water vapor after being heated by the solution and thus having an increased temperature, and take away the gasified solution, thereby achieving the purpose of evaporation.
    Type: Application
    Filed: January 11, 2018
    Publication date: November 7, 2019
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Xiang LING, Weihong LIU, Yang LI, Xin HUANG, Tingfen KE
  • Publication number: 20190331364
    Abstract: A method and a system of a high-temperature calcium looping thermochemical energy storage are provided. A thermochemical energy storage system is based on CaCO3/CaO, and an energy storage is performed by a mutual transformation between a thermal energy and a chemical energy. When solar irradiation is sufficient, CaCO3 solid particulates are indirectly heated by hot air generated from solar energy to perform an endothermic decomposition reaction, and received heat is stored in decomposition products of CaO and CO2 in a form of the chemical energy. When heat is required, a reversible thermochemical reaction occurs between the CaO and CO2 under an atmospheric pressure, and the chemical energy stored in the CaO and CO2 is transformed into the heat for release.
    Type: Application
    Filed: March 6, 2017
    Publication date: October 31, 2019
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Xiang LING, Xiaoyi CHEN, Yan WANG, Xiaogang JIN
  • Patent number: 10427107
    Abstract: The invention relates to a high-strength hollow fiber zeolite membrane and its preparation method, characterized in that the support of the high-strength zeolite membrane has a multi-channel hollow fiber configuration. The preparation method comprises first preparing a crystal seed solution, then immersing the dry support with the multi-channel hollow fiber configuration in the crystal seed solution, and extracting and drying the support to obtain a crystal-seeded support; and finally placing the crystal-seeded support in a zeolite membrane synthetic fluid, performing hydrothermal synthesis, and taking out, washing and drying the product to obtain the high-strength hollow fiber zeolite membrane. The multi-channel hollow fiber support can provide high mechanical property, which greatly reduces the depreciation rate of the hollow fiber zeolite membrane equipment during use.
    Type: Grant
    Filed: May 9, 2014
    Date of Patent: October 1, 2019
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Xuehong Gu, Dezhong Liu, Zhenzhou Shi, Chun Zhang, Xuerui Wang
  • Patent number: 10400106
    Abstract: It discloses a lignin enhanced wood-plastic composite, belonging to the field of polymer based composites. The wood-plastic composite is composed of one or more of plant fiber, lignin, a recycled thermoplastic plastic, mineral powder and a processing aid, and is processed by a screw granulating extrusion process. Compared with the prior art, the mechanical properties, heat stability and aging resistance of a wood-plastic material are improved by adding lignin into the wood-plastic material according to the present invention.
    Type: Grant
    Filed: November 1, 2017
    Date of Patent: September 3, 2019
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Hanjie Ying, Lingxia Zhong, Chenjie Zhu, Chenglun Tang, Xiao Zhang, Yong Chen, Jinglan Wu, Tao Gan, Jungiang Shan, Dong Liu
  • Patent number: 10378831
    Abstract: A counter-flow fin plate heat exchanger for gas-to-gas heat exchange includes several outer channel fins, an outer channel bending plate, an inner channel fin and an inner channel bending plate. The outer channel bending plate is a flat plate with two sides bending upward vertically. The inner channel bending plate is a cuboid box without a cap on the top, and the top of the inner channel bending plate is hermetically fixed with the bottom of the outer channel bending plate. The several outer channel fins are arranged in parallel inside the outer channel bending plate. The inner channel fins are arranged inside the inner channel bending plate. Ends of a side surface corresponding to two long sides of the inner channel bending plate are respectively provided with an opening, and the two openings are respectively disposed at different ends of the two side surfaces.
    Type: Grant
    Filed: March 6, 2017
    Date of Patent: August 13, 2019
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Xiang Ling, Yu Yang, Hao Peng, Rui Li
  • Publication number: 20190211175
    Abstract: The present invention relates to a method for preparing nanoporous polysulfone-based polymers, including: a copolymer of a polysulfone polymer and a polar polymer is immersed into a compound swelling agent, and maintained for at least 1 minute above room temperature; the compound swelling agent is a “solvent pair” composed of the mixture of solvent A and solvent B; the solvent A has high affinity with the polysulfone polymer; and the solvent B has high affinity with the polar polymer; the treated copolymer is taken out from the compound swelling agent and then dried to remove the solvent to obtain the nanoporous polysulfone-based polymers.
    Type: Application
    Filed: June 30, 2017
    Publication date: July 11, 2019
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Yong WANG, Weihong XING, Nanping XU
  • Patent number: 10287214
    Abstract: A preparation method of a SiC porous ceramic material and porous ceramic material manufactured by using the method, comprising: mixing a SiC aggregate, a sintering aid (zirconium oxide), a pore-forming agent (activated carbon) and a polymer binder with a reinforcing agent (SiC whiskers) according to a certain proportion, and obtaining a porous ceramic material via forming, drying and high-temperature sintering. The porous ceramic material has a high strength, a high porosity, a good thermal shock resistance and a low sintering temperature, and can server as a filter material of high-temperature flue gas and a carrier material in vehicle exhaust purification.
    Type: Grant
    Filed: September 9, 2014
    Date of Patent: May 14, 2019
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Weihong Xing, Zhaoxiang Zhong, Feng Han, Feng Zhang, Nanping Xu
  • Patent number: 10259771
    Abstract: A preparation method of vegetable oil polyol, which is obtains by carrying out allylic oxidation treatment of vegetable oil, increasing the content of hydroxyl group in the product and then one step reaction between epoxidation and ring-opening. At the same time, the present invention also discloses novel vegetable oil polyol made by the preparation method and the application of the vegetable oil polyol in preparation of polyurethane foam material. Compared with the prior art, the method has the advantages of simple operation, low energy consumption and low side reaction occurrence rate.
    Type: Grant
    Filed: January 28, 2016
    Date of Patent: April 16, 2019
    Assignee: NANJING TECH UNIVERSITY
    Inventors: Kai Guo, Zheng Fang, Dong Ji, Junjie Tao, Xin Li, Li Wan, Ning Zhu, Kai Zhang, Pingkai Ouyang
  • Publication number: 20190101339
    Abstract: A counter-flow fin plate heat exchanger for gas-to-gas heat exchange includes several outer channel fins, an outer channel bending plate, an inner channel fin and an inner channel bending plate. The outer channel bending plate is a flat plate with two sides bending upward vertically. The inner channel bending plate is a cuboid box without a cap on the top, and the top of the inner channel bending plate is hermetically fixed with the bottom of the outer channel bending plate. The several outer channel fins are arranged in parallel inside the outer channel bending plate. The inner channel fins are arranged inside the inner channel bending plate. Ends of a side surface corresponding to two long sides of the inner channel bending plate are respectively provided with an opening, and the two openings are respectively disposed at different ends of the two side surfaces.
    Type: Application
    Filed: March 6, 2017
    Publication date: April 4, 2019
    Applicant: NANJING TECH UNIVERSITY
    Inventors: Xiang LING, Yu YANG, Hao PENG, Rui LI