宋春風(fēng)
發(fā)布時(shí)間:2021-04-28
基本信息
學(xué)歷:博士
職稱:教授(博導(dǎo))
專業(yè):
系別:天津大學(xué)環(huán)境學(xué)院環(huán)境工程系
電子郵箱:chunfeng.song@tju.edu.cn
電話:
通訊地址:天津市海河教育園區(qū)雅觀路135號(hào),天津大學(xué)北洋園校區(qū)43號(hào)樓B315室,300350
主要研究方向
1) 溫室氣體(CO2)捕集及資源化再利用
2) 環(huán)境微生物技術(shù)
3) 生物質(zhì)能源
4) 過(guò)程模擬及優(yōu)化
(詳見(jiàn)課題組主頁(yè):http://catalysis.tju.edu.cn/)
教育及工作經(jīng)歷
2020.07–至今 天津大學(xué),環(huán)境與工程學(xué)院,教授
2014.12–2020.06 天津大學(xué),環(huán)境與工程學(xué)院,副研究員
2013.08–2014.11 日本東京大學(xué),生產(chǎn)技術(shù)研究所,特任研究員
2013.09–2013.10 新加坡國(guó)立大學(xué),訪問(wèn)學(xué)者
2010.08–2013.07 日本筑波大學(xué),工學(xué)博士
2008.09–2010.07 中國(guó)農(nóng)業(yè)大學(xué),工學(xué)碩士
2004.10–2008.07 河北農(nóng)業(yè)大學(xué),工學(xué)學(xué)士
榮譽(yù)稱號(hào)&獲獎(jiǎng):
2020年 天津大學(xué)教工先鋒崗
2020、2019、2018年(連續(xù)3年) 天津大學(xué)優(yōu)秀碩士畢業(yè)論文指導(dǎo)教師
2020年 天津大學(xué)優(yōu)秀本科畢業(yè)論文指導(dǎo)教師
2019年 天津大學(xué)優(yōu)秀青年教師(首批)
2019年 沈志康獎(jiǎng)教金
2019年 天津市教學(xué)基本功大賽(校內(nèi)選拔賽),一等獎(jiǎng)
2019年 全國(guó)大學(xué)生節(jié)能減排大賽,三等獎(jiǎng)(指導(dǎo)教師)
2018年 天津市“青年人才托舉工程”入選者(首批)
2018年 天津市創(chuàng)新人才推進(jìn)計(jì)劃入選者(第五批)
2018年 天津市131創(chuàng)新人才(第三層次)
2018年 天津大學(xué)青年文明崗
2018年 天津大學(xué)青年教師講課大賽,一等獎(jiǎng)/優(yōu)秀課件獎(jiǎng)
2018年 全國(guó)生命科學(xué)創(chuàng)新創(chuàng)業(yè)大賽,一等獎(jiǎng)(指導(dǎo)教師)
2018年 全國(guó)大學(xué)生農(nóng)業(yè)建筑環(huán)境與能源工程相關(guān)專業(yè)創(chuàng)新創(chuàng)業(yè)競(jìng)賽,二等獎(jiǎng)(指導(dǎo)教師)
2018年 天津大學(xué)第二屆“未來(lái)三十年”顛覆性創(chuàng)新創(chuàng)想大賽,一等獎(jiǎng)(指導(dǎo)教師)
2017年 天津大學(xué)“北洋學(xué)者-青年骨干教師”
2016年 天津市海外高層次人才
學(xué)術(shù)及機(jī)構(gòu)兼職:
天津市生物質(zhì)能源環(huán)境國(guó)際聯(lián)合研究中心,副主任
江蘇泰興經(jīng)濟(jì)開(kāi)發(fā)區(qū),(掛)副主任(2015)
天津市濱海新區(qū)環(huán)境局,(掛)副處長(zhǎng)(2016)
天津市青年科技工作者學(xué)會(huì),委員
教學(xué)經(jīng)歷
主講課程:
《大氣污染控制》——國(guó)家精品課程/一流本科課程/校級(jí)思政課程/校級(jí)虛擬仿真實(shí)驗(yàn)
《環(huán)境工程原理》——專業(yè)核心課/考研課程
《Air pollution control》(全英文)——校級(jí)精品全英文課程
《Practice and new technologies of air pollution control engineering》(全英文)
《環(huán)境保護(hù)與可持續(xù)發(fā)展》——校級(jí)通識(shí)課
《物理性污染控制》
在研項(xiàng)目
代表性科研項(xiàng)目:
[1] 國(guó)家重點(diǎn)研發(fā)計(jì)劃—國(guó)際合作項(xiàng)目:CO2高效捕集及資源化關(guān)鍵技術(shù),2019.10—2022.09,主持(首席科學(xué)家)
[2] 國(guó)家自然科學(xué)基金—面上項(xiàng)目:基于CO2“濃縮-凝華”機(jī)制的低能耗“膜分離-深冷”耦合沼氣純化機(jī)理及特性研究,2019.01—2022.12,主持
[3] 國(guó)家自然科學(xué)基金—青年項(xiàng)目:新型中空纖維膜滲透與低溫相變復(fù)合的CO2捕集機(jī)理研究,2016.01—2018.12,主持
[4] 國(guó)家重點(diǎn)研發(fā)計(jì)劃(子課題):微藻固碳系統(tǒng)與廢水環(huán)境因子的交互作用機(jī)制,2016.07-2020.06,主持
[5] 國(guó)家科技重大專項(xiàng):污泥高濃度厭氧消化及熱能利用系統(tǒng)研究,2015.01-2018.12,項(xiàng)目骨干
[6] 天津市自然科學(xué)基金: 基于吸附熱循環(huán)再生的Cu-Mn-Ce 負(fù)載型分子篩吸附分離VOCs機(jī)理,2017.04-2020.03,主持
[7] 橫向項(xiàng)目:CO2捕集及資源化國(guó)際合作主題沙龍,2020.08-2020.11,主持
[8] 橫向項(xiàng)目:二氧化碳吸收液開(kāi)發(fā)合作,2019GFW-0192,2019.06-2019.12,主持
[9] 天津大學(xué)自主創(chuàng)新基金(戰(zhàn)略布局-產(chǎn)學(xué)研培育):海洋微擬球藻多聯(lián)產(chǎn)制備高值化學(xué)品關(guān)鍵技術(shù),2019.01-2019.12,主持
[10]天津大學(xué)自主創(chuàng)新基金(攻堅(jiān)預(yù)研-重點(diǎn)研發(fā)計(jì)劃):揮發(fā)性有機(jī)硫化物高效催化技術(shù)及關(guān)鍵材料研究,2018.01-2018.12,主持
[11]天津大學(xué)自主創(chuàng)新基金(戰(zhàn)略布局-產(chǎn)學(xué)研培育):基于“濃縮-相變”復(fù)合分離機(jī)制的沼氣純化技術(shù)研究,2017.01-2017.12,主持
[12]天津大學(xué)自主創(chuàng)新基金(人才團(tuán)隊(duì)-北洋骨干):CO2捕集及資源化再利用,2017.01-2018.12,主持
[13]天津大學(xué)自主創(chuàng)新基金(攻堅(jiān)預(yù)研-重點(diǎn)研發(fā)計(jì)劃):深冷相變CO2捕集耦合微生物再利用關(guān)鍵技術(shù),2018.01-2018.12,主持
主要論文
代表性論文:
近5年在Renew. Sust. Energ. Rev., Environ. Sci. Technol., Appl. Energ., Chem. Eng. J., Bioresource Technol., Int. J. Green. Gas Con., Energ., Appl. Therm. Eng等環(huán)境、能源領(lǐng)域國(guó)際期刊,以第一/通訊作者發(fā)表SCI論文40余篇(ESI高被引2篇、熱點(diǎn)論文1篇、封面論文4篇、邀稿論文1篇),授權(quán)專利8項(xiàng),受邀作大會(huì)邀請(qǐng)報(bào)告2次。研究成果分別被中央電視臺(tái)科教頻道(CCTV-10)、人民日?qǐng)?bào)、科技日?qǐng)?bào)、天津日?qǐng)?bào)、天津大學(xué)官網(wǎng)、天津大學(xué)科技網(wǎng)等媒體報(bào)道:
[1] C. Song,⁎, Q. Liu, S. Deng, H. Li, Y. Kitamura. Cryogenic-based CO2 capture technologies: State-of-the-art developments and current challenges.Renewable and Sustainable Energy Reviews101 (2019) 265–278(ESI高被引、熱點(diǎn)論文)
[2] C. Song*, Q. Liu, N. Ji, S. Deng, J. Zhao, Y. Li, Y. Kitamura. Alternative pathways for efficient CO2 capture by hybrid processes—A review.Renewable and Sustainable Energy Reviews82 (2018) 215–231.(ESI高被引)
[3] S. Li, S. Zhao, S. Yan, Y. Qiu,C. Song *, Y. Li, Y. Kitamura. Food processing wastewater purification by microalgae cultivation associated with high value-added compounds production–a review,Chinese Journal of Chemical Engineering27 (2019) 2845–2856.(封面論文、邀稿)
[4] C. Song, Y. Kitamura*, S. Li, W. Jiang. Parametric Analysis of a Novel Cryogenic CO2Capture System Based on Stirling Coolers.Environmental Science & Technology46 (22) (2012) 12735-12741.
[5] C. Song*, Q. Liu, N. Ji, S. Deng, J. Zhao, Y. Kitamura. Natural gas purification by heat pump assisted MEA absorption process.Applied Energy204 (2017) 353–361.
[6] C. Song, Y. Kitamura*, S. Li. Evaluation of Stirling cooler system for cryogenic CO2capture.Applied Energy98 (2012) 491-501.
[7] C. Song *, Q. Liu, N. Ji, Y. Kansha, A. Tsutsumi. Optimization of steam methane reforming coupled with pressure swing adsorption hydrogen production process by heat integration.Applied Energy154 (2015) 392–401.
[8] C. Song*, Z. Fan, R. Li, Q. Liu, Y. Kitamura. Efficient biogas upgrading by a novel membrane-cryogenic hybrid process: Experiment and simulation study.Journal of Membrane Science565 (2018) 194-202.
[9] C. Song, Y. Qiu, M. Xie, J. Liu, Q. Liu, S. Li * L. Sun, K. Wang, Y. Kansha. Novel Regeneration and Utilization Concept Using Rich Chemical Absorption Solvent As a Carbon Source for Microalgae Biomass Production.Ind. Eng. Chem. Res.58 (2019) 11720−11727.(封面論文)
[10]C. Song, Y. Qiu, S. Li *, Z. Liu, G. Chen, L. Sun, K. Wang, Y. Kitamura. A novel concept of bicarbonate-carbon utilization via an absorption-microalgae hybrid process assisted with nutrient recycling from soybean wastewater.Journal of Cleaner Production237 (2019) 117864.
[11]C. Song *, G. Chen, N. Ji, Q. Liu, Y. Kansha, A. Tsutsumi. Biodiesel production process from microalgae oil by waste heat recovery and process integration.Bioresource Technology193 (2015) 192–199.(封面論文)
[12]C. Song⁎, J. Liu, Y. Qiu, M. Xie, J. Sun, Y. Qi, S. Li, Yutaka Kitamura. Bio-regeneration of different rich CO2absorption solvent via microalgae cultivation.Bioresource Technology290 (2019) 121781.
[13]C. Song*, Y. Wei, Y. Qiu, Y. Qi, Y. Li, Y. Kitamura. Biodegradability and mechanism of florfenicol via Chlorella sp. UTEX1602 and L38: Experimental study,Bioresource Technology272 (2019) 529–534.
[14]C. Song *, M. Mujahid, R. Li, S. Ahmad, Q. Liu, B. Zhang, et al. Pebax/MWCNTs-NH2mixed matrix membranes for enhanced CO2/N2separation.Greenh Gases Sci Technol10 (2020) 408–20.(封面論文)
[15]C. Song *, Y. Qiu, M. Xie, Y. Qi, S. Li, Y. Kitamura. Novel Bio-regeneration Concept via Using Rich Solution as Nutrition Resource for Microalgae Cultivation: Effect of pH and Feeding Modes.ACS Sustainable Chem. Eng.7 (2019) 14471−14478.
[16]C. Song *, M. Xie, Y. Qiu, Q. Liu, L. Sun, K. Wang, Y. Kansha. Integration of CO2absorption with biological transformation via using rich ammonia solution as a nutrient source for microalgae cultivation.Energy179 (2019) 618-627.
[17]C. Song⁎, Q. Liu, Y. Qi, G. Chen, Y. Song, Y. Kansha, Y. Kitamura. Absorption-microalgae hybrid CO2capture and biotransformation strategy—A review.International Journal of Greenhouse Gas Control88 (2019) 109–117.
[18]C. Song*, Q. Liu, N. Ji, S. Deng, J. Zhao, Y. Li, Y. Kitamura. Parametric study of a novel cryogenic-membrane hybrid system for efficient CO2separation.International Journal of Greenhouse Gas Control72 (2018) 74–81.
[19]C. Song *,Q. Liu, N. Ji, S. Deng, J. Zhao, Y. Li, Y. Kitamura. Reducing the energy consumption of membrane-cryogenic hybrid CO2 capture by process optimization.Energy124 (2017) 29–39.
[20]C. Song*,Q. Liu, N. Ji, S. Deng, J. Zhao, Y. Li, Y. Kitamura. Advanced cryogenic CO2 capture process based on Stirling coolers by heat integration.Applied Thermal Engineering114 (2017) 887–895.
[21]C. Song⁎, J. Liu, M. Xie, Y. Qiu, G. Chen, Y. Qi, Y. Kitamura. Intensification of a novel absorption-microalgae hybrid CO2utilization process via fed-batch mode optimization.International Journal of Greenhouse Gas Control82 (2019) 1–7.
[22]C. Song *, Q. Liu, N. Ji, S. Deng, J. Zhao, Y. Kitamura.Intensification of microalgae drying and oil extraction process by vapor recompression and heat integration.Bioresource Technology207 (2016) 67–75.
[23]C. Song *,Q. Liu, N. Ji, Y. Song, Y. Kitamura. Conceptual Design and Process Feasibility Analysis of a Novel Ammonia Synthesis Process by Efficient Heat Integration.ACS Sustainable Chemistry & Engineering5 (2017) 7420−7432.
[24]C. Song, Y. Kitamura*, S. Li, K. Ogasawara. Design of a cryogenic CO2capture system based on Stirling coolers.International Journal of Greenhouse Gas Control7 (2012) 107-114.
[25]C. Song, Y. Kitamura*, S. Li, W. Jiang. Analysis of CO2frost formation properties in cryogenic capture process.International Journal of Greenhouse Gas Control13 (2013) 26-33.
[26]C. Song*, Y. Kitamura, S. Li. Energy analysis of the cryogenic CO2capture process based on Stirling coolers.Energy65 (2014) 580-589.
[27]C. Song, Y. Kitamura *, S. Li, J. Lu. Deposition CO2Capture Process Using a Free Piston Stirling Cooler.Industrial & Engineering Chemistry Research52 (42) (2013) 14936–14943.
[28]C. Song*, J. Lu, Y. Kitamura. Study on the COP of free piston Stirling cooler (FPSC) in the anti-sublimation CO2capture process.Renewable Energy74 (2015) 948–954.
[29]X. Hu,C. Song *, H. Mu, Z. Liu, Kitamura Y. Optimization of simultaneous soybean processing wastewater treatment and flue gas CO2fixation via chlorella sp. L166 cultivation.Journal of Environmental Chemical Engineering8 (2020) 103960.
[30]C. Song *, X. Han, Y. Qiu, Z. Liu, S. Li, Y. Kitamura. Microalgae carbon fixation integrated with organic matters recycling from soybean wastewater: Effect of pH on the performance of hybrid system.Chemosphere248 (2020) 126094.
[31]C. Song *, Z. Liu, C. Wang, S. Li, Y. Kitamura. Different interaction performance between microplastics and microalgae: The bio-elimination potential of Chlorella sp. L38 andPhaeodactylum tricornutum MASCC-0025.Science of the Total Environment723 (2020) 138146.
[32]C. Song *, X. Hu, Z. Liu, S. Li, Y. Kitamura. Combination of brewery wastewater purification and CO2fixation with potential value-added ingredients production via different microalgae strains cultivation.Journal of Cleaner Production268 (2020) 122332.
[33]C. Song *, R. Li, Z. Fan, Q. Liu, B. Zhang, Y. Kitamura. CO2/N2separation performance of Pebax/MIL-101 and Pebax /NH2-MIL-101 mixed matrix membranes and intensification via sub-ambient operation.Separation and Purification Technology238 (2020) 116500.
主辦國(guó)際會(huì)議及報(bào)告:
[1] 碳捕集及資源化國(guó)際科技交流與合作主題沙龍(大會(huì)主席),天津,2020.10
[2] 1st International Workshop of CO2Capture and Utilization(大會(huì)主席),天津,2019.12
[3] 中日水處理與回用前沿技術(shù)論壇(大會(huì)主席),2018.06
[4] 第一屆有色金屬冶煉煙氣多污染物高效凈化與資源化利用技術(shù)研討會(huì),昆明,2020.12(邀請(qǐng)報(bào)告)
[5] 第二十四屆大氣污染防治技術(shù)研討會(huì),北京,2020.10(邀請(qǐng)報(bào)告)
[6] 4th International Symposium on Environmental Science and Technology,Hangzhou,China,2019.10(邀請(qǐng)報(bào)告)
[7] 中低溫?zé)崮芨咝Ю媒逃恐攸c(diǎn)實(shí)驗(yàn)室2018-2019 年度學(xué)術(shù)委員會(huì)年會(huì),天津,2019.12(邀請(qǐng)報(bào)告)
[8] CO2捕集封存與制高價(jià)值化學(xué)品論壇,南京,2018.11(邀請(qǐng)報(bào)告)
[9] ”A novel desublimation CO2capture process based on Free Piston Stirling Cooler (FPSC) system”, International Conference on Greenhouse Gas Technologies (GHGT-11), Kyoto, Japan. 2012.11
[10]”Application of Free Piston Stirling Cooler (SC) on CO2Capture Process”, International Conference on Applied Energy (ICAE-2012), Suzhou, China. 2012.7
[11]”Design of a low-cost CO2capture process based on heat integration technology” The 6th International Conference on Applied Energy–ICAE2014, Taipei, Taiwan, 2014.5
[12]”Improving net efficiency of power plants with CO2capture units using self-heat recuperation technology” The 21th International Congress of Chemical and Process Engineering CHISA 2014, Prague, Czech Republic, 2014.8
[13]”Energy saving CO2capture process by effective reaction and evaporation heat recuperation―A parametric study” The 4th Asian Conference on Innovative Energy & Environmental Chemical Engineering, Yeosu, Korea, 2014.11
主要授權(quán)國(guó)家專利:
[1] 宋春風(fēng)、孫亞偉、劉慶嶺、紀(jì)娜。低溫CO2分離裝置,授權(quán)號(hào):ZL201610875761.0
[2] 宋春風(fēng)、孫亞偉、劉慶嶺、紀(jì)娜。一種膜滲透與低溫相變復(fù)合的二氧化碳捕集裝置,授權(quán)號(hào):ZL201720290916.4
[3] 宋春風(fēng)、謝美連、孫亞偉、劉慶嶺、紀(jì)娜。蒸汽再壓縮與熱量交換集成的微藻干燥系統(tǒng),授權(quán)號(hào):ZL201720611766.2
[4] 宋春風(fēng)、孫亞偉、劉慶嶺、紀(jì)娜。一種新型的低溫膜分離裝置及測(cè)試方法,授權(quán)號(hào):ZL201610851276X
[5] 宋春風(fēng)、謝美連、孫亞偉、劉慶嶺、紀(jì)娜;谡羝賶嚎s與熱量交換集成的微藻聯(lián)合處理裝置,授權(quán)號(hào):ZL201720615643.6
[6] 宋春風(fēng)、謝美連、孫亞偉、劉慶嶺、紀(jì)娜。基于蒸汽再壓縮與熱量交換集成的微藻油脂萃取系統(tǒng),授權(quán)號(hào):ZL201720611763.9
歡迎各位有志青年訪問(wèn)、加盟 “大氣環(huán)境與生物能源課題組”!
(課題組主頁(yè):http://catalysis.tju.edu.cn/)