閆君

副教授

所在系所:工程熱物理研究所

電子郵件:miraclebwh@sjtu.edu.cn

通訊地址:上海市閔行區(qū)東川路800號機(jī)械與動力工程學(xué)院A樓313

個人主頁:

個人簡介
教學(xué)工作
科研工作
榮譽(yù)獎勵

教育背景

2011.09-2016.09,上海交通大學(xué),動力工程及工程熱物理專業(yè) ,博士
2007.09-2010.07,山東大學(xué),工程熱物理專業(yè),碩士
2003.09-2007.07,山東大學(xué),能源與動力工程學(xué)院,學(xué)士

工作經(jīng)歷

2020.04-今, 上海交通大學(xué),機(jī)械與動力工程學(xué)院,副教授
2016.09-2020.03,上海交通大學(xué),機(jī)械與動力工程學(xué)院,博士后
2010.07-2011.07,山東電力工程咨詢院,助理工程師

研究方向

高效儲熱技術(shù);
熱化學(xué)儲熱技術(shù)原理及應(yīng)用(熱化學(xué)儲熱材料/設(shè)備研發(fā)及應(yīng)用,熱動力學(xué)研究,帶有化學(xué)反應(yīng)的傳熱傳質(zhì)過程研究等);

固態(tài)儲氫技術(shù);
基于新能源的分布式能源系統(tǒng);

【歡迎感興趣的同學(xué)聯(lián)系 長期招收相關(guān)領(lǐng)域方向博士、碩士研究生】

學(xué)術(shù)兼職

期刊《Carbon Neutrality》、《energy reviews》青年編委;《Applied Energy》《Energy Conversion and Management》等審稿人

本科生《傳熱學(xué)》
本科學(xué)《先進(jìn)儲能技術(shù)》

科研項目

1.    2023-2026  國家重點研發(fā)計劃--氫能技術(shù)-“用于固定式發(fā)電裝置的氫熱聯(lián)供系統(tǒng)集成技術(shù)試驗驗證”子課題 ,負(fù)責(zé)人
2.     2023-2026  江蘇省科技計劃項目,“兆瓦時級鈣基高溫?zé)峄瘜W(xué)儲能關(guān)鍵技術(shù)研發(fā)”,上海交大負(fù)責(zé)人 

3.     2023-2026  上海市自然科學(xué)基金,“高穩(wěn)定性熱化學(xué)儲能材料改性機(jī)理及成型化制備方法研究”,負(fù)責(zé)人;
4.     2018~2020  國家自然科學(xué)基金青年項目,“Ca(OH)2儲熱過程中的化學(xué)熱動力學(xué)與傳熱傳質(zhì)耦合機(jī)理研究”,負(fù)責(zé)人;
5.     2017~2018  中國博士后科學(xué)基金面上項目,“高體積儲熱密度復(fù)合Ca(OH)2熱化學(xué)儲熱材料開發(fā)與研究”,負(fù)責(zé)人;
6.     2021~2025, 國家自然科學(xué)基金重大項目課題,多能互補(bǔ)的能量提質(zhì)與存儲,主要參與人
7.    2019~2022  國家自然科學(xué)基金面上項目,“儲熱多孔介質(zhì)熱化學(xué)反應(yīng)和孔隙/宏觀尺度氣固兩相耦合熱質(zhì)傳遞機(jī)理”,主要參與人;
8.    2013~2017  國家重點基礎(chǔ)研究發(fā)展計劃(973計劃)(博士課題來源),“多形態(tài)工業(yè)余熱高效存儲的新原理、新技術(shù)及其應(yīng)用”,主要參與人;



另有國家電網(wǎng)、中國能建等企業(yè)橫向課題在研。


代表性論文專著

2024
(1)L. Jiang , J. Yan *, X.K. Tian , C.Y. Zhao. Performance evaluation of ZTA ceramic encapsulated calcium hydroxide pellets for thermochemical heat storage. Journal of Energy Storage, 2024,84,110888
(2)J. Yan*, Y.C. Mo, C.Y. Zhao**, et al. Preparation and parameter optimization of thermochemical heat storage materials with high cyclic stability. Solar Energy Materials and Solar Cells,2024,268,112749

2023年
(1)Jun Yan, Lei Jiang and Changying Zhao *. Numerical Simulation of the Ca(OH)2/CaO Thermochemical Heat Storage Process in an Internal Heating Fixed-Bed Reactor. Sustainability, 2023, 15, 7141.
(2)Zhao CY*, Yan J, X.K. Tian, X.J. Xu, Y. ZHAO. Progress in thermal energy storage technologies for achieving carbon neutrality. Carbon Neutrality, 2023, 2: 10
(3)Guo S.J., Tian X.K., Xu Y.X., Yan J., Ju S.H., Zhao C.Y o*. Ca/Co-based composites with improved cyclic stability and optical absorption for advanced thermochemical energy storage systems. Chemical Engineering Journal, 2023, 468: 143691.
(4)Xu Y.X, Lin S.C., Yan J., Zhao C.Y. Enhanced mechanism of molten alkali nitrates on triple-phase interface during the carbonation of MgO. Solar Energy Materials and Solar Cell, 2023, 257:112370
(5)Z. Liu, Zhou YK*, J. Yan, M. Tostado-Véliz. Frontier ocean thermal/power and solar PV systems for transformation towards net-zero communities. Energy, 2023, 284: 28362.
(6)X.K. Tian, S.J. Guo, S.C. Lin, J. Yan, S.H. Ju, C.Y. Zhao*. Exploring synergistic sintering factors and nanopore regeneration of calcium-based thermochemical energy storage materials. Solar Energy Materials and Solar Cells,2023,263 :112593

2022年
(1) J. Yan, B.W. Yang, C.Y. Zhao*.  Investigation of hydration/dehydration processes in a fluidized bed reactor using MgO/Mg(OH)2 thermochemical energy storage system. Solar Energy,2022, 231:630-645
(2) X.K. Tian, S.C. Lin, J. Yan, C.Y. Zhao*. Sintering mechanism of calcium oxide/calcium carbonate during thermochemical heat storage process. Chemical Engineering Journal, 2022, 428: 131229.
(3) Y.X. Xu, J. Yan, C.Y. Zhao*. Investigation on application temperature zone and exergy loss regulation based on MgCO3/MgO thermochemical heat storage and release process. Energy, 2022, 239: 122155.
(4)X.K. Tian, T.X. Xu, J. Yan, S.C. Lin, C.Y. Zhao*. Designing calcium-looping composites based on lattice energy and phase combination/separation for thermochemical energy storage. Solar Energy Materials & Solar Cells,2022,248:111972.
(5)X.K. Tian, S.C. Lin, J. Yan, C.Y. Zhao *. Improved durability in thermochemical energy storage using Ti/Al/Mg Co-doped Calcium-based composites with hierarchical Meso/Micro pore structures. Chemical Engineering Journal, 2022, 450:138142.
(6)莫雅超,閆君*,趙長穎. CaO/Ca(OH)2核殼結(jié)構(gòu)顆粒的制備及其儲熱性能. 儲能科學(xué)與技術(shù),2022, 11(12):3828-3834(中文核心)

2020-2021年
(1)Yan J, Lu L, Ma T, Zhou YK, Zhao CY. Thermal management of the waste energy of a stand-alone hybrid PV-wind-battery power system in Hong Kong. Energy Conversion and Management, 2020,203:112261
(2)Yan J, Pan ZH, Zhao CY, Experimental study of MgO/Mg(OH)2 thermochemical heat storage with direct heat transfer mode. Applied Energy, 2020,275: 115356
(3) Xu, T. X.; Tian, X. K.; Khosa, A. A.; Yan, J.; Ye, Q.; Zhao, C. Y.; Reaction performance of CaCO3/CaO thermochemical energy storage with TiO2 dopant and experimental study in a fixed-bed reactor, Energy, 2021, 236: 0-121451.
(4)Xia BQ, Zhao CY*, Yan J, A.A. Khosa, Development of granular thermochemical heat storage composite   based on calcium oxide. Renewable Energy, 2020, 147:969-978
(5) Abbas Khosa, Yan J, Zhao CY*. Investigating the effects of ZnO dopant on the thermodynamic and kinetic properties of CaCO3/CaO TCES system. Energy, 2021, 215: 119132
(6)T. Wang, Zhao CY*, Yan J, Investigation on the Ca(OH)2/CaO thermochemical energy storage system with potassium nitrate addition. Solar Energy Materials and Solar Cells, 2020, 215:110646
(7) Zhou YK, S. Zheng, Z. Liu, T. Wen, Z. Ding, J. Yan, G. Zhang. Passive and active phase change materials integrated building energy systems with advanced machine-learning based climate-adaptive designs, intelligent operations, uncertainty-based analysis and optimisations: A state-of-the-art review. Renewable and Sustainable Energy Reviews, 2020, 130:109889.
(8) 徐鈿昕,田希坤,閆君,葉強(qiáng),趙長穎*. TiO2改性的CaCO3熱化學(xué)儲熱的反應(yīng)性能研究. 儲能科學(xué)與技術(shù),2021-08-17. 北大核心, CSCD. DOI:10.19799/j.cnki.2095-4239.2021.028.1
(9) 楊博文; 閆君; 趙長穎; 氫氧化鎂熱化學(xué)儲熱系統(tǒng)流化床反應(yīng)器性能分析, 儲能科學(xué)與技術(shù), 2021, 10(5):1735-1744. 北大中文核心期刊.
(10) 趙長穎; 閆君; 趙耀; 如何實現(xiàn)媲美化石能源的大規(guī)模儲能技術(shù)?, 上海交通大學(xué)學(xué)報, 2021, 55(S1):91-92. EI, 北大中文核心期刊.

2019年之前
1.  Yan J, Zhao CY. First-principle study of CaO/Ca(OH)2 thermochemical energy storage system by Li or Mg cation doping. Chemical Engineering Science, 2014, 117: 293 - 300                                      
2.  Yan J, Zhao CY, Thermodynamic and kinetic study of the dehydration process of CaO/Ca(OH)2 thermochemical heat storage system with Li doping. Chemical Engineering Science, 2015, 138: 86-92                                
3.  Yan J, Zhao CY, Experimental study of CaO/Ca(OH)2 in a fixed-bed reactor for thermochemical heat storage. Applied Energy, 2016, 175: 277-284                              
4.  Yan J, Zhao CY, Pan ZH, The effect of CO2 on Ca(OH)2 and Mg(OH)2 thermochemical heat storage systems. Energy, 2017 ,124:114-123  
5.  Yan J, Zhao CY, Boqian Xia, Tao Wang. The effect of dehydration temperatures on the performance of the CaO/Ca(OH)2 thermochemical heat storage system. Energy, 2019, 186:115837
6.  Pan ZH, Yan J, Zhao CY*, Numerical analyses and optimization of tubular thermochemical heat storage reactors using axisymmetric thermal lattice Boltzmann model. Chemical Engineering Science, 2019, 195:737-747
7.  Xia BQ, Pan ZH, Yan J, Zhao CY*, Mesoscopic exploration on mass transfer in porous thermochemical heat storage materials. International Journal of Heat and Mass Transfer, 2019, 135:52-61
8.  Abbas Khosa, Xu TX, Xia BQ, Yan J, Zhao CY*. Technological challenges and industrial applications of CaCO3/CaO based thermal energy storage system-A Review. Solar Energy, 2019,193:618-636
9.  閆君, 潘智豪, 趙長穎,王倩, CaO/Ca(OH)2儲熱系統(tǒng)試驗及CO2失效研究. 工程熱物理學(xué)報,2017, 38(12): 2679-2685
10.  鄧暢,潘智豪,閆君, 趙長穎*, 氧化鈣-氫氧化鈣熱化學(xué)儲熱系統(tǒng)放熱數(shù)值分析. 儲能科學(xué)與技術(shù),2018, 7(2): 248-254
11.  參編書籍:中國化工學(xué)會儲能工程專業(yè)委員會. 儲能技術(shù)及應(yīng)用 [M]. 北京: 化學(xué)工業(yè)出版社, 2018.(第九章 中高溫儲熱技術(shù))

軟件版權(quán)登記及專利

1.     趙長穎,潘智豪,閆君,傳熱增強(qiáng)型化學(xué)蓄熱裝置及應(yīng)用該蓄熱裝置的蓄熱系統(tǒng),2017年8月15日,中國,ZL 2016 1 0094100.4
2. 趙長穎,夏伯謙,閆君;專利名稱:具有優(yōu)化滲透性的熱化學(xué)儲熱成型顆粒及其制備方法, 2020年6月9日;中國,ZL 2018 1 0979150.X(發(fā)明專利已授權(quán))
3. 趙長穎,徐云軒,閆君;專利名稱:一種高儲放熱密度的化學(xué)儲放熱材料及其制備方法,申請日期2020年8月17日;中國,申請?zhí)枺篫L 2020 1 0825894.3(發(fā)明專利已授權(quán))
4.     趙長穎; 閆君, 連續(xù)式可控氣固熱化學(xué)儲熱裝置及其放熱方法,2021-4-20,中國, ZL 2021 10001228.2
5.     趙長穎,夏伯謙,徐云軒,閆君,實現(xiàn)能量品位提升的耐高壓可控?zé)峄瘜W(xué)儲放熱系統(tǒng) 2020/4/3 202010257308.X  (發(fā)明專利已授權(quán))
6.     趙長穎; 田希坤; 閆君 ; 一種高儲能密度、高循環(huán)穩(wěn)定性的高溫?zé)峄瘜W(xué)儲熱材料及其制備方法, 2021-12-9, 中國, ZL202111497898.4 (發(fā)明專利已授權(quán))

  1. 2021   第一屆全國博士后創(chuàng)新創(chuàng)業(yè)大賽 銀獎;

  2. 2020   上海市“海外高層次人才計劃”;

  3. 2018   全國博士后管委會、香港學(xué)者協(xié)會: 香江學(xué)者;

  4. 2015   上海市大學(xué)生論文交流大賽三等獎;

  5. 2014   上海交通大學(xué)校級獎學(xué)金:“研究生優(yōu)秀獎學(xué)金”;


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