中國給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(huì)(第十五屆)邀請函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))
 
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趙明 清華大學(xué) 固體廢物控制與資源化研究所,長聘副教授、博導(dǎo)

放大字體  縮小字體 發(fā)布日期:2023-08-10  來源:趙明 清華大學(xué) 固體廢物控制與資源化研究所,長聘副教授、博  瀏覽次數(shù):133
核心提示:趙明 清華大學(xué) 固體廢物控制與資源化研究所,長聘副教授、博導(dǎo)
中國給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(huì)(第十五屆)邀請函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))

中國給水排水2024年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(huì)(第十五屆)邀請函 (同期召開固廢滲濾液大會(huì)、工業(yè)污泥大會(huì)、高濃度難降解工業(yè)廢水處理大會(huì))
 













趙明

固體廢物控制與資源化研究所,長聘副教授、博導(dǎo)

郵箱:ming.zhao@tsinghua.edu.cn

電話:010-62784701(同傳真)

地點(diǎn):中意清華環(huán)境節(jié)能樓726A

教育背景

1997.09 – 2001.06      南開大學(xué)    環(huán)境科學(xué)與工程學(xué)院    環(huán)境化學(xué)學(xué)士

2003.09 – 2006.06      清華大學(xué)    環(huán)境科學(xué)與工程系      環(huán)境工程碩士

2006.07 – 2010.08      悉尼大學(xué)    化學(xué)與分子生物工程系   化學(xué)工程博士

 

工作履歷

2014.07至今                清華大學(xué)    環(huán)境學(xué)院    副教授、博導(dǎo)

2014.01 – 2014.06      帝國理工學(xué)院    化學(xué)工程系    Research Fellow

2012.11 – 2013.12      利茲大學(xué)    過程、環(huán)境與材料工程學(xué)院    Research Fellow

2011.10 – 2012.10      悉尼大學(xué)/帝國理工學(xué)院    Principle Investigator/Coordinator of Joint Project

2010.10 – 2011.10      悉尼大學(xué)    可持續(xù)技術(shù)實(shí)驗(yàn)室    Postdoctoral Research Associate

 

教學(xué)工作

1. 主講本科生春季課程《低碳技術(shù)與管理》全英文32學(xué)時(shí)(40050752)

2. 合講研究生秋季課程《廢物熱處理》全英文16學(xué)時(shí)(80050522,總48學(xué)時(shí))

3. 主講中法環(huán)境/能源項(xiàng)目碩士課程《CCUS與碳管理》全英文32學(xué)時(shí)(80050491)

 

學(xué)術(shù)兼職

  1. Associate Editor:Carbon Capture Science & Technology (Elsevier), E-Prime (Elsevier)

  2. 中國環(huán)保產(chǎn)業(yè)協(xié)會(huì)固體廢物處理利用委員會(huì)常務(wù)副秘書長

  3. 中國環(huán)境科學(xué)學(xué)會(huì)青年科學(xué)家委員會(huì)委員

  4. 清華蘇州環(huán)境創(chuàng)新研究院有機(jī)固廢熱處理團(tuán)隊(duì)首席科學(xué)家

  5. 清華大學(xué)碳中和研究院減污降碳中心副主任

 

 

研究領(lǐng)域

(一)基礎(chǔ)研究方面,研究方向包括:

  1. 固定床氣化高溫氣-固反應(yīng)體系與多場聯(lián)控機(jī)制;

  2. 還原區(qū)干濕重整反應(yīng)與無機(jī)元素自催化行為;

  3. 熱解-氣化解耦與氣相化學(xué)鏈高選擇性產(chǎn)氣;

  4. 氣化合成氣高溫催化脫硫與硫單質(zhì)回收;

  5. 氣化過程鹵素和氮素反應(yīng)轉(zhuǎn)化與過程抑制;

  6. 氣化過程無機(jī)組分爐內(nèi)成渣行為與爐外材料化利用;

  7. 變換合成氣高分壓CO2吸附與硫/氮/氯耐受機(jī)制;

  8. 離子液體/低溫共熔溶劑輔助合成多孔碳吸附材料;

  9. 異相催化CO2環(huán)氧加成制備環(huán)碳酸酯,等。

(二)裝備開發(fā)與工程應(yīng)用方面,研究方向包括:

  1. 針對生活垃圾、厭氧沼渣、脫水泥餅、園林廢物、大件垃圾破碎物等城鎮(zhèn)生活源有機(jī)固廢,開發(fā)中高溫固定床固態(tài)出渣氣化、燃?xì)鈨艋约澳┒穗?熱-氫-化多元利用成套技術(shù)裝備;

  2. 針對高分子工業(yè)有機(jī)固廢、汽車拆解破碎殘余物、光風(fēng)電工業(yè)有機(jī)邊角料與報(bào)廢組件有機(jī)組分、生物制藥與工業(yè)發(fā)酵殘?jiān)苫系裙I(yè)高熱值廢料,開發(fā)薄料層固定床氣化及燃?xì)饣蛘羝詈瞎I(yè)窯爐成套裝備;

  3. 針對涉重金屬有機(jī)危廢、醫(yī)療廢物等有機(jī)危險(xiǎn)廢物,開發(fā)高溫富氧氣化熔融一體化技術(shù)與裝備;

  4. 針對農(nóng)作物秸稈等纖維素類高固定碳有機(jī)固廢,開發(fā)順流式自壓貧氧熱解氣-炭聯(lián)產(chǎn),及末端“氫-熱-電-炭-肥”多元利用成套技術(shù)裝備,等。

(三)政策研究與標(biāo)準(zhǔn)化工作方面,研究方向包括:

  1. 有機(jī)固廢資源化產(chǎn)品裝備相關(guān)標(biāo)準(zhǔn)體系建設(shè);

  2. 有機(jī)固廢低碳利用產(chǎn)業(yè)研究與技術(shù)方案開發(fā);

  3. 有機(jī)固廢利用項(xiàng)目自愿減排核算方法學(xué)開發(fā);

  4. 無廢城市建設(shè)規(guī)劃方案制定與技術(shù)裝備支撐,等。

 

 

研究概況

  1. 國家自然科學(xué)基金面上項(xiàng)目“汽車破碎殘余物氣化過程含硫污染物的遷移轉(zhuǎn)化機(jī)制研究”,2023-2026;

  2. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“《陳腐生活垃圾制備固體回收燃料技術(shù)規(guī)范》團(tuán)體標(biāo)準(zhǔn)制訂技術(shù)服務(wù)”,2022-2024;

  3. 清華大學(xué)-豐田聯(lián)合研究院聯(lián)合共建支撐項(xiàng)目“城市減污降碳協(xié)同增效關(guān)鍵技術(shù)及示范”子任務(wù),2022-2024;

  4. 國家高端智庫-801 年度重點(diǎn)課題“減污降碳協(xié)同增效實(shí)現(xiàn)路徑及支撐制度研究”,2022;

  5. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“團(tuán)體標(biāo)準(zhǔn)《固體回收燃料(SRF) 分類 分級》以及《MBT法處理生活垃圾制備固體回收燃料(SRF)的技術(shù)要求》技術(shù)服務(wù)”,2022-2023;

  6. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“有機(jī)固廢燃料化領(lǐng)域綜合技術(shù)服務(wù)”,2021-2023;

  7. 部委委托項(xiàng)目“環(huán)境領(lǐng)域工程科技未來20年發(fā)展戰(zhàn)略研究”,2021-2022;

  8. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“油漆渣危廢熱解氣化用于有機(jī)物去除和鋅組分定向富集的原理與工藝研究”,2021-2022;

  9. 科技部重點(diǎn)研發(fā)計(jì)劃課題“有機(jī)固廢協(xié)同處理能源化利用技術(shù)及應(yīng)用研究” 子任務(wù),2020-2023;

  10. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“有機(jī)固廢成型物料低焦油氣化及能源利用工藝與裝備設(shè)計(jì)優(yōu)化與標(biāo)準(zhǔn)化研究”,2020-2021;

  11. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“高溫熔融實(shí)驗(yàn)技術(shù)服務(wù)”,2020-2021;

  12. 科技部重點(diǎn)研發(fā)計(jì)劃課題“危廢焚燒飛灰、爐渣無害化及資源化利用技術(shù)研發(fā)” 子任務(wù),2020-2023;

  13. 科技部重點(diǎn)研發(fā)計(jì)劃課題“多源城市固廢協(xié)同處理利用與二次污染控制集成技術(shù)”子任務(wù),2020-2023;

  14. 2020 國家疫情應(yīng)急攻關(guān)項(xiàng)目-工程院攻關(guān)-新型冠狀病毒傳播與環(huán)境的關(guān)系及風(fēng)險(xiǎn)防控,2020-2021;

  15. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目“《固體廢棄物制備垃圾衍生燃料工藝技術(shù)要求》團(tuán)體標(biāo)準(zhǔn)立項(xiàng)調(diào)研”,2019-2020;

  16. 科技部重點(diǎn)研發(fā)計(jì)劃“有機(jī)固廢高效清潔穩(wěn)定焚燒關(guān)鍵技術(shù)與裝備”項(xiàng)目子課題“多種煙氣污染物協(xié)同凈化超低排放技術(shù)及裝備研究”課題,2019-2022;

  17. 寧波市科技創(chuàng)新2025重大專項(xiàng) “生活垃圾熱解氣化成套裝備研究及工程示范”項(xiàng)目,“重金屬、二噁英等危害特性熱阻斷技術(shù)”課題,2019-2021;

  18. 企業(yè)委托技術(shù)服務(wù)項(xiàng)目,汽車拆解有機(jī)廢物立式熱解氣化處理技術(shù)服務(wù),2018-2019;

  19. 青年人才科研啟動(dòng)項(xiàng)目,2015-2018;

  20. 清華大學(xué)自主科研計(jì)劃學(xué)科交叉專項(xiàng)“城市污泥與木質(zhì)廢物共氣化處理技術(shù)的研究”,2016-2018;

  21. 國家自然科學(xué)基金青年基金項(xiàng)目“高循環(huán)性能鈣基吸收劑用于煙氣CO2捕集與聯(lián)合水泥生產(chǎn)的基礎(chǔ)研究”,2016-2018;

  22. 清華大學(xué)自主科研計(jì)劃重點(diǎn)基礎(chǔ)研究課題“基于鈣硅基工業(yè)固廢的碳捕集材料開發(fā)及其應(yīng)用基礎(chǔ)研究”,2015-2017;

  23. 綠色經(jīng)濟(jì)與可持續(xù)發(fā)展中心項(xiàng)目,課題二“區(qū)域土壤污染及綜合控制策略研究”,2015-2018;

  24. 北京市優(yōu)秀人才資助項(xiàng)目“二氧化碳捕集聯(lián)合水泥生產(chǎn)技術(shù)”,2015-2017;

  25. 教育部留學(xué)回國基金項(xiàng)目“工業(yè)廢渣源多晶態(tài)材料用于鈣基二氧化碳吸收劑抗燒結(jié)失活的機(jī)理研究”,2015-2017

 

 

獎(jiǎng)勵(lì)與榮譽(yù)

  1. 日內(nèi)瓦國際發(fā)明展,金獎(jiǎng),2022

  2. 中國發(fā)明創(chuàng)業(yè)獎(jiǎng)成果獎(jiǎng),二等獎(jiǎng),2022

  3. 國家生態(tài)環(huán)境保護(hù)專業(yè)技術(shù)青年拔尖人才,2021

  4. 中國環(huán)境科學(xué)學(xué)會(huì)青年科學(xué)家獎(jiǎng),金獎(jiǎng),2020

  5. 國家級教學(xué)成果獎(jiǎng),二等獎(jiǎng),2018

  6. 北京市高等教育教學(xué)成果獎(jiǎng),一等獎(jiǎng),2017

  7. 入選國家第十一批青年人才,2015

  8. 入選北京市優(yōu)秀人才計(jì)劃,2014

  9. 入選“清華大學(xué)骨干人才支持計(jì)劃”,2014

  10. 入選教育部“春暉計(jì)劃”,2012

  11. 第八屆清華大學(xué) – 橫山亮次優(yōu)秀論文,2011

  12. 首屆澳大利亞十大杰出華人青年(金合歡獎(jiǎng))– 專業(yè)學(xué)術(shù)界獲獎(jiǎng)人,2011

  13. 澳大利亞能源協(xié)會(huì)優(yōu)秀博士論文,2010

 

學(xué)術(shù)成果

代表性論文(H-Index=35, 截至2022-9-20;僅列出一作及通訊的Q1文章,按引用次數(shù)排序):

  1. Vineet Singh Sikarwar, Ming Zhao*, Peter Clough, Joseph Yao, Xia Zhong, Mohammad Zaki Memon, Nilay Shah, Edward J. Anthony and Paul S. Fennell*. An overview of advances in biomass gasification. Energy & Environmental Science, 2016, 9, 2939-2977. (EES封面論文; ESI高被引, 引用603次)

  2. Vineet Singh Sikarwar, Ming Zhao*, Paul S. Fennell, Nilay Shah and Edward J. Anthony*. Progress in biofuel production from gasification. Progress in Energy & Combustion Science, 2017, 61, 189-248. (ESI高被引, 引用341次)

  3. Abdul Raheem, Vineet Singh Sikarwar, Jun He, Wafa Dastyar, Dionysios D. Dionysiou, Wei Wang, and Ming Zhao*. Opportunities and Challenges in Sustainable Treatment and Resource Reuse of Sewage Sludge: A Review. Chemical Engineering Journal, 2018, 337, 616-641. (ESI高被引,引用330次)

  4. Xiao Zhao, Hui Zhou, Vineet S. Sikarwar, Ming Zhao*, Ah-Hyung A. Park*, Paul S. Fennell, Laihong Shen and Liang-Shih Fan. Biomass-based Chemical Looping Technologies: the Good, the Bad and the Future. Energy & Environmental Science, 2017, 10(9), 1885-1910. (EES封面論文, ESI高被引, 引用280次)

  5. Abdul Raheem#, Pepijn Prinsen#, Arun K. Vuppaladadiyam#Ming Zhao* and Rafael Luque*. A review on sustainable microalgae based biofuel and bioenergy production: Recent developments. Journal of Cleaner Production, 2018, 181, 42-59. (ESI高被引, 引用224次)

  6. Ming Zhao*, Minett AI, Harris AT*. A review of techno-economic models for the retrofitting of conventional pulverized-coal power plants for post-combustion capture (PCC) of CO2Energy & Environmental Science, 2013, 6, 25-40. (引用218次)

  7. Ming Zhao*, Jeffrey Shi, Xia Zhong, Sicong Tian, John Blamey, Jianguo Jiang*, and Paul S. Fennell*. Novel Calcium Looping Absorbent Incorporated with Polymorphic Spacers for CO2 Capture and Hydrogen Production. Energy & Environmental Science, 2014, 7, 3291-3295. (引用89次)

  8. Guozhao Ji, Joseph G. Yao, Peter T. Clough, João C. Diniz da Costa, Edward J. Anthony, Paul S. Fennell, Wei Wang and Ming Zhao*. Enhanced hydrogen production from thermochemical processes. Energy & Environmental Science, 2018, 11, 2647-2672. (封面論文, 引用75次)

  9. Ming Zhao, Florin NH and Harris AT*. The influence of supported Ni catalysts on the product gas distribution and H2 yield during cellulose pyrolysis, Applied Catalysis B: Environmental, 2009, 92, 185-193 (引用71次)

  10. Ming Zhao*, Church TL and Harris AT*. SBA-15 supported Ni-Co bimetallic catalysts for enhanced hydrogen production during cellulose decomposition, Applied Catalysis B: Environmental, 2011, 101, 522-530. (引用70次)

  11. Yiran Fan, Geoff D. Fowler, Ming Zhao*. The Past, Present and Future of Carbon Black as A Rubber Reinforcing Filler – A Review. Journal of Cleaner Production. 2020, 247, 119115. (引用67次)

  12. Zhao Xiao, Ji Guozhao, Liu Wen, He Xu, Anthony Edward J. and Zhao Ming*, Mesoporous MgO promoted with NaNO3/NaNO2 for rapid and high-capacity CO2 capture at moderate temperatures, Chemical Engineering Journal, 2018, 332, 216-226. (引用64次)

  13. Arun K. Vuppaladadiyam#, Joseph G. Yao#, Nicholas Florin, Anthe George, Xiaoxiong Wang, Leen Labeeuw, Yuelu Jiang, Ryan W. Davis, Ali Abbas, Peter Ralph, Paul S. Fennell and Ming Zhao*. Impact of Flue Gas Compounds on Microalgae and Mechanisms for Carbon Assimilation and Utilization – A Review. ChemSusChem, 2018, 11(2), 334-355. (引用61次)

  14. Wafa Dastyar, Abdul Raheem, Jun He, and Ming Zhao*. Biofuel Production Using Thermochemical Conversion of Heavy Metal-Contaminated Biomass (HMCB) Harvested from Phytoextraction Process. Chemical Engineering Journal. 2019, 358, 759-785. (引用60次)

  15. Ming Zhao, Abdul Raheem, Zaki Mohammad Memon, Arun K.Vuppaladadiyam, Guozhao Ji*. Iso-conversional kinetics of low-lipid micro-algae gasification by air. Journal of Cleaner Production. 2019, 207, 618-629. (引用50次)

  16. Muhammad Zaki Memon, Xiao Zhao, Vineet Singh Sikarwar, Arun K. Vuppaladadiyam, Steven J. Milne, Andy P. Brown, Jinhui Li, Ming Zhao*. Alkali Metal CO2 Sorbents and the Resulting Metal Carbonates: Potential for Process Intensification of Sorption-Enhanced Steam Reforming. Environmental Science & Technology, 2017, 51(1), 12-27. (引用48次)

  17. Ming Zhao*, Yang, X, Church TL and Harris AT*. Novel CaO-SiO2 sorbent and bifunctional Ni/Co-CaO/SiO2 complex for selective H2 synthesis from cellulose, Environmental Science & Technology, 2012, 46, 2976-2983. (引用46次)

  18. Abdul Raheem, Guozhao Ji, Asif Memon, Siva Sivasangar, Wei Wang, Ming Zhao* and Yun Hin. Taufiq-Yap. Catalytic gasification of algal biomass for hydrogen-rich gas production: Parametric optimization via central composite design. Energy Conversion and Management, 2018, 158, 235-245. (引用46次)

  19. Guozhao Ji, Muhammad Zaki Memon, Haoran Zhuo, Ming Zhao*. Experimental study on CO2 capture mechanisms using Na2ZrO3 sorbents synthesized by soft chemistry method. Chemical Engineering Journal, 2017, 313, 646–654. (引用40次)

  20. Ming Zhao, Florin NH and Harris AT. Mesoporous supported cobalt catalysts for enhanced H2 production during cellulose decomposition, Applied Catalysis B: Environmental, 2010, 97, 142-150. (引用40次)

  21. Guozhao Ji, Ming Zhao*, and Geoff Wang. Computational fluid dynamic simulation of a sorption-enhanced palladium membrane reactor for enhancing hydrogen production from methane steam reforming. Energy, 2018, 147, 884-895. (引用39次)

  22. Arun K. Vuppaladadiyam, Hao Liu*Ming Zhao*, Abdul F. Soomro, Muhammad Zaki Memon, Valerie Dupont, Thermogravimetric and kinetic analysis to discern synergy during the co-pyrolysis of microalgae and swine manure digestate. Biotechnology for Biofuels. 2019, 12, 170. (引用38次)

  23. Arun K. Vuppaladadiyam, Pepijn Prinsen, Abdul Raheem, Rafael Luque, and Ming Zhao*. Sustainability Analysis of Microalgae Production Systems: A Review on Resource with Unexploited High-Value Reserves. Environmental Science & Technology. 2018, 52(24), 14031–14049. (引用37次)

  24. Ji Guozhao#, Xu Xiaoyin#, Yang Hang, Zhao Xiao, He Xu, Zhao Ming*, Enhanced hydrogen production from sawdust decomposition using hybrid-functional Ni-CaO-Ca2SiOmaterials, Environmental Science & Technology, 2017, 51(19), 11484–11492. (引用36次)

  25. Hang Yang, Guozhao Ji, Peter T. Clough, Xiaoyin Xu, Ming Zhao*. Kinetics of catalytic biomass pyrolysis using Ni-based functional materials. Fuel Processing Technology. 2019, 195, 106145. (引用29次)

  26. Wafa Dastyar, Ming Zhao*, Wenyi Yuan, Hui Li, Zhao Jia Ting, Hosein Ghaedi, Hairong Yuan,  Xiujin Li, Wei Wang. Effective Pretreatment of Heavy Metal-Contaminated Biomass Using a Low-Cost Ionic Liquid (Triethylammonium Hydrogen Sulfate): Optimization by Response Surface Methodology-Box Behnken Design. ACS Sustainable Chemistry & Engineering. 2019, 7(13), 11571-11581. (引用29次)

  27. Ming Zhao, Hanlu Fan, Feng Yan, Yinqiang Song, Xu He, Muhammad Zaki Memon, Suresh K. Bhatiac and Guozhao Ji*, Kinetic analysis for cyclic CO2 capture using lithium orthosilicate sorbents derived from different silicon precursors, Dalton Transactions, 2018, 47, 9038-9050. (引用28次)

  28. Faith Bamiduro, Guozhao Ji, Andy P. Brown, Valerie A. Dupont, Ming Zhao* and Steven J. Milne*. Spray-dried sodium zirconate: a rapid absorption powder for CO2 capture with enhanced cyclic stability. ChemSusChem, 2017, 10, 2059-2067. (引用25次)

  29. Guozhao Ji, Hang Yang, Muhammad Z Memon, Yuan Gao, Boyu Qu, Weng Fu, Gianni G Olguin, Ming Zhao*, Aimin Li*. Recent advances on kinetics of carbon dioxide capture using solid sorbents at elevated temperatures. Applied Energy. 2020, 267, 114874. (引用22次)

  30. Azra Nawar, Hosein Ghaedi*, Majid Ali*Ming Zhao*, Naseem Iqbal, Rashid Khan. Recycling waste-derived marble powder for CO2 capture. Process Safety and Environmental Protection, 2019, 214-225. (引用22次)

  31. Arun K. Vuppaladadiyam, Muhammad Zaki Memon, Guozhao Ji, Abdul Raheem, Ting Zhao Jia, Valerie Dupont, and Ming Zhao*. Thermal Characteristics and Kinetic Analysis of Woody Biomass Pyrolysis in the Presence of Bifunctional Alkali Metal Ceramics. ACS Sustainable Chemistry & Engineering. 2019, 7(1), 238–248. (引用19次)

  32. Arun K. Vuppaladadiyam, Elsa Antunes, Paula Blanco Sanchez, Hubao Duan*Ming Zhao*. Influence of microalgae on synergism during co-pyrolysis with organic waste biomass: A thermogravimetric and kinetic analysis. Renewable Energy. 2021, 167, 42-55. (引用17次)

  33. Ming Zhao, Muhammad Zaki Memon, Arun K Vuppaladadiyam, Guozhao Ji, Yinqiang Song, Abdul Raheem, Li Jinhui*, Hui Zhou*. Alkali metal bifunctional catalyst-sorbents enabled biomass pyrolysis for enhanced hydrogen production. Renewable Energy. 2020, 148, 168-175. (引用16次)

  34. Hosein Ghaedi, Ming Zhao*, Peter T. Clough, Edward. Anthony, Paul S. Fennell. High CO2 absorption in new amine based-transition-temperature mixtures (deep eutectic analogues) and reporting thermal stability, viscosity and surface tension: Response surface methodology (RSM). Journal of Molecular Liquids, 2020, 316, 113863. (引用8次)

  35. Ming Zhao, Xiaomin Cui, Guozhao Ji, Hui Zhou, Arun K. Vuppaladadiyam, and Xiao Zhao*. Alkaline Thermal Treatment of Cellulosic Biomass for H2 Production Using Ca-based Bi-functional Materials. ACS Sustainable Chemistry & Engineering. 2019, 7(1), 1202–1209. (引用8次)

  36. Wafa Dastyar, Abdul Raheem, Ming Zhao*, Wenyi Yuan*, Hui Li, Zhao Jia Ting. Effects of Ionic Liquid-Assisted Pretreatment of Heavy Metal-Contaminated Biomass on the Yield and Composition of Syngas Production Using Noncatalytic and Catalytic Pyrolysis and Gasification Processes. ACS Sustainable Chemistry & Engineering, 2019, 7(22), 18303-18312. (引用5次)

  37. Shujuan Zou#, Weiguo Dong#, Binhai Cheng*, Yeshui Zhang, Paul T. Williams*Ming Zhao, Hybrid-functional material for sorption-enhanced hydrogen-rich syngas production from biomass: Effect of material preparation process. Biomass and Bioenergy, 2021, 144, 105886. (引用4次)

  38. Fan Wang, Binhai Cheng, Zhao Jia Ting, Weiguo Dong, Hui Zhou, Edward Anthony, Ming Zhao*. Two-stage gasification of sewage sludge for enhanced hydrogen production: alkaline pyrolysis coupled with catalytic reforming using waste-supported Ni catalysts. ACS Sustainable Chemistry & Engineering. 2020, 8, 13377-13386. (引用4次)

  39. Wei Wang, Binhai Cheng, Ming Zhao*, Edward Anthony, Rafael Luque, Dionysios D. Dionysiou. Boosting H2 yield from photoreforming of lignocellulose by thermo-alkaline hydrolysis with selective generation of a key intermediate product: Tartaric acid. Energy Conversion and Management, 2022, 257, 115444.

 

授權(quán)發(fā)明專利:

  1. 趙明, 王凡. 一種利用污泥熱化學(xué)反應(yīng)制氫的方法. ZL 201711353051.2.國家發(fā)明專利.(2019-11-27授權(quán))清華大學(xué)成果轉(zhuǎn)化

  2. 趙明, 崔曉敏, 王凡. 一種用于生物質(zhì)低溫氣化制取高純度氫的催化劑及其制備方法. ZL 201810054507.3. 國家發(fā)明專利.(2019-8-2授權(quán))清華大學(xué)成果轉(zhuǎn)化

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  4. 趙明,董衛(wèi)果,楊竹. 有機(jī)固廢加壓氣化及余熱回收利用系統(tǒng)和方法. ZL 202011616462.8 國家發(fā)明專利(2021-8-13授權(quán))已產(chǎn)業(yè)化應(yīng)用

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  7. 趙明, 董衛(wèi)果, 楊竹. 有機(jī)固廢外延環(huán)形空腔導(dǎo)氣固定床氣化爐及氣化方法. ZL 202011617512.4 國家發(fā)明專利(2022-1-4授權(quán))已產(chǎn)業(yè)化應(yīng)用

  8. 趙明, 楊竹, 董衛(wèi)果. 有機(jī)固廢低焦油氣化熱電聯(lián)供的系統(tǒng)及方法. ZL 202011616352.1 國家發(fā)明專利(2022-3-15 授權(quán))已產(chǎn)業(yè)化應(yīng)用

  9. Zhao M, Wang F,Memon M. Method for synthesizing sodium zirconate and application thereof. AU2019202626. 國際專利.(2019-9-25授權(quán))

  10. 趙明, 王凡,梅蒙·穆罕默德·扎基·哈桑. 鋯酸鈉在污泥熱解制氫過程中的應(yīng)用. ZL 201811560659.7. 國家發(fā)明專利.(2019-12-27授權(quán))

  11. 趙明, 何煦, 王凡. 一種利用鋯酸鈣穩(wěn)定的鈣基CO2吸收劑及其制備方法. ZL 201810054506.9. 國家發(fā)明專利.(2019-9-27授權(quán))

  12. 趙明, 宋銀強(qiáng). 一種用于CO2捕集的高性能鈣基吸收劑、制備方法及應(yīng)用. ZL 201810029415.X 國家發(fā)明專利.(2020-10-20授權(quán))

  13. 趙明, 范怡然,張藍(lán)諦. 一種利用硫酸氫三乙胺離子液體去除土壤或植物中重金屬的方法. ZL 201911134568.1. 國家發(fā)明專利.(2021-6-15授權(quán))

  14. 趙明, 崔曉敏, 呂熠. 赤泥改性及用于有機(jī)固廢熱解氣化過程除焦脫硫的方法. 202110022008.8 國家發(fā)明專利.(2022-4-22授權(quán))

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