瞿芳術(shù)
發(fā)布日期:2021-06-07
職稱:副教授
學(xué)位:工學(xué)博士
研究領(lǐng)域:膜法水處理技術(shù)與工藝
辦公地點(diǎn):工程南328
電子郵箱:qufangshu@163.com
個(gè)人簡(jiǎn)介
主持國(guó)家自然科學(xué)基金面上與青年項(xiàng)目、中國(guó)博士后特別資助、黑龍江省博士后青年英才計(jì)劃項(xiàng)目、廣東省自然科學(xué)基金、哈工大青年拔尖人才計(jì)劃項(xiàng)目等課題10項(xiàng);參與國(guó)家重點(diǎn)研發(fā)計(jì)劃、國(guó)家科技惠民計(jì)劃、水體污染控制與治理重大專項(xiàng)子課題等國(guó)家級(jí)課題3項(xiàng)。在國(guó)際知名期刊發(fā)表SCI檢索論文60篇,其中第一和通訊作者論文29篇(JCR一區(qū)25篇);H因子26,論文他引共計(jì)2000余次,單篇最高他引160次,1篇論文入選2014年中國(guó)百篇最具影響力國(guó)際學(xué)術(shù)論文,4篇論文入選ESI高頻被引論文(行業(yè)前1%)。參編行業(yè)標(biāo)準(zhǔn)《城鎮(zhèn)給水膜處理技術(shù)規(guī)程》,規(guī)范超濾技術(shù)在給水處理工程中的應(yīng)用。開展大規(guī)模超濾凈水構(gòu)筑物構(gòu)造設(shè)計(jì)研究,開發(fā)多種新型超濾膜池,獲得授權(quán)發(fā)明專利4項(xiàng),獲得黑龍江省科技發(fā)明一等獎(jiǎng)1項(xiàng)、河北省自然科學(xué)獎(jiǎng)三等獎(jiǎng)1項(xiàng)。擔(dān)任多項(xiàng)社會(huì)兼職,包括:國(guó)家自然科學(xué)基金函評(píng)專家;國(guó)際水協(xié)中國(guó)青年委員會(huì)委員;中國(guó)勘察設(shè)計(jì)協(xié)會(huì)水系統(tǒng)工程技術(shù)分會(huì)成員;中國(guó)給排水期刊青年編委會(huì)委員;Water Res, J Membr Sci, J Hazard Mat, Chem Eng J, Desalination,中國(guó)給排水等國(guó)內(nèi)外期刊審稿人。
教育背景
2003 – 2007重慶大學(xué)給水排水工程專業(yè)本科工學(xué)學(xué)士
2007 – 2009哈爾濱工業(yè)大學(xué)市政工程專業(yè)研究生工學(xué)碩士
2009 – 2012哈爾濱工業(yè)大學(xué)市政工程專業(yè)研究生工學(xué)博士
職業(yè)經(jīng)歷
1、學(xué)術(shù)工作經(jīng)歷
2013 – 2018哈爾濱工業(yè)大學(xué)市政工程系講師/副教授
2013 – 2017哈爾濱工業(yè)大學(xué)環(huán)境科學(xué)與工程流動(dòng)站博士后
2018–至今廣州大學(xué)土木工程學(xué)院市政工程系“百人計(jì)劃”副教授
2、海外工作經(jīng)歷
2014 – 2015杜克大學(xué)土木與環(huán)境工程學(xué)院訪問學(xué)者
教授課程
《水分析化學(xué)》
《水工藝設(shè)備基礎(chǔ)》
《科技論文寫作》
科研服務(wù)
1.基于關(guān)鍵界面作用解析的超濾膜藻源膜污染機(jī)理與調(diào)控研究,國(guó)家自然科學(xué)基金青年基金(51308146),2014.01-2016.12;
2.基于界面作用解析的超濾膜藻源膜污染特性及機(jī)理研究,中國(guó)博士后科學(xué)基金一等資助(NO.2013M540293),2013.07-2015.06;
3.超濾膜表面微環(huán)境中污染物形態(tài)變化及其對(duì)膜污染的影響研究,黑龍江省博士后基金一等資助(LBH-Z13083),2014.01-2015.12;
4.超濾膜處理高藻水過程中界面作用解析及其與膜污染的關(guān)聯(lián)研究,城市水資源與水環(huán)境國(guó)家重點(diǎn)實(shí)驗(yàn)室開發(fā)基金(ES201511-02),2015.01-2016.12;
5.浸沒式超濾凈水技術(shù)強(qiáng)化除污染與能耗控制效能與機(jī)理,城市水資源與水環(huán)境國(guó)家重點(diǎn)實(shí)驗(yàn)室開發(fā)基金(QA201816),2018.01-2019.12;
6.超濾膜處理高藻源水過程中藻細(xì)胞破裂評(píng)價(jià)及控制研究,中國(guó)博士后第8批特別資助,2015T80360,2015.07-2016.12;
7.超濾膜處理地表水過程中微生物細(xì)胞破裂評(píng)價(jià)及控制研究,黑龍江省博士后特別資助(博士后青年英才計(jì)劃),LBH-TZ201612,2017.01-2019.12
8.濾餅層協(xié)同強(qiáng)化超濾膜除污染效能及機(jī)理,哈爾濱工業(yè)大學(xué)拔尖人才選聘計(jì)劃,2017.01-2019.12
9.基于濾餅層調(diào)控的浸沒式超濾凈水技術(shù)強(qiáng)化除污染與膜污染控制效能及機(jī)理黑龍江省博士后科研啟動(dòng)(一等),2018.01-2019.12
10.基于濾餅層截留的高藻水超濾嗅味物質(zhì)強(qiáng)化去除與不可逆膜污染控制效能及機(jī)理,國(guó)家自然科學(xué)基金面上項(xiàng)目(51878211),2019.01-2022.12.
11.高藻水超濾過程中藻類代謝產(chǎn)物的微界面遷移規(guī)律及濾餅層強(qiáng)化截污機(jī)理,廣東省自然科學(xué)基金(2019A1515012232),2019.10-2022.09
研究成果
1、獲獎(jiǎng)及榮譽(yù)
2013年,黑龍江省科技發(fā)明一等獎(jiǎng);
2014年,指導(dǎo)本科生科技創(chuàng)新實(shí)踐,獲得哈爾濱工業(yè)大學(xué)創(chuàng)新創(chuàng)業(yè)訓(xùn)練項(xiàng)目一等獎(jiǎng)和全國(guó)高等學(xué)校給排水科學(xué)與工程專業(yè)指導(dǎo)委員會(huì)本科生科技創(chuàng)新優(yōu)秀獎(jiǎng);
2016年,黑龍江省博士后青年英才計(jì)劃;
2016年,哈爾濱工業(yè)大學(xué)青年拔尖人才計(jì)劃;
2017年,指導(dǎo)本科生科技創(chuàng)新實(shí)踐,獲得哈爾濱工業(yè)大學(xué)創(chuàng)新創(chuàng)業(yè)訓(xùn)練項(xiàng)目二等獎(jiǎng);
2018年,河北省自然科學(xué)獎(jiǎng)三等獎(jiǎng);
2018年,廣州大學(xué)“百人計(jì)劃”青年杰出人才;
2019年,水業(yè)杰出青年(給水排水雜志社主辦);
2019年,廣州市高層次人才青年后備人才。
2、近5年論著目錄
(1)瞿芳術(shù),王小波,任南琪,赫俊國(guó),余華榮,梁恒,陳偉雄,李圭白,生物活性炭濾池/超濾組合工藝處理華南山區(qū)水庫水,中國(guó)給水排水,2017, 33(7): 152-157.
(2)王小波,瞿芳術(shù)*,王昊,余華榮,梁恒,李圭白.超濾膜處理高藻水過程中天然顆粒物對(duì)膜污染的影響.膜科學(xué)與技術(shù), 2017, 37(6): 41-47.
(3)柳斌,瞿芳術(shù)*,施周,唐小斌,紀(jì)洪杰,梁恒,李圭白.低壓重力驅(qū)動(dòng)式超濾工藝處理引黃水庫水中試研究.給水排水, 2018, 44(6): 39-44.
(4) F.S. Qu, X. Du, B. Liu, J.G. He, N.Q. Ren, G.B. Li,H. Liang*. Control of ultrafiltration membrane fouling caused by algal cells with permanganate preoxidation: Significance of in-situ formed manganese dioxide.Chem. Eng. J.2015, 279: 56-65.
(5) F.S. Qu, Z.S. Yan, X.J. Ren, Senlin Shao, J.G. He, N.Q. Ren, G.B. Li, H. Liang*. Effects of manganese dioxide on the ultrafiltration membrane fouling by algal extracellular organic matter.Sep. Purif. Technol.2015, 153: 29-36.
(6) X. Du, F.S. Qu*, H. Liang*, K. Li, H.R. Yu, L.M. Bai, G.B. Li. Removal of antimony (III) in from polluted surface water by using a hybrid coagulation-flocculation-ultrafiltration (CF-UF) process.Chem. Eng. J.2014,254:293-301
(7)L.M. Bai, H. Liang, J. Crittenden, F.S. Qu*, A. Ding, J. Ma, X. Du, S.D. Guo, G.B. Li. Surface modification of UF membranes with functionalized MWCNTs to control membrane fouling by NOM fractions.J. Membr. Sci.2015, 492: 400–411
(8)B. Liu, H. Liang, F.S. Qu*,H.Q. Chang, S.L Shao, N.Q Ren, G.B Li.Comparison of Microcystis cell integrity evaluation methods based on dissolved organic matter release, potassium release and flow cytometry.Chem. Eng. J. 2015, 281: 174-182, 2015. 12
(9) H.Q. Chang, H. Liang, F.S. Qu*, J. Ma, N.Q. Ren,G.B. Li. Towards a better hydraulic cleaning strategy for ultrafiltration membrane fouling by humic acid: Effect of backwash water composition.J. Environ. Sci.2016, 443: 177-186.
(10) Z.S. Yan, B. Liu, F.S. Qu*, A. Ding, H. Liang, Y. Zhao,G.B.Li. Control of ultrafiltration membrane fouling caused by algal extracellular organic matter (EOM) using enhanced Al coagulation with permanganate.Sep. Purif. Technol.2017, 172: 51-58.
(11) B. Liu, F.S. Qu*, H. Liang, B. Van der Bruggen,X.X. Cheng, H.R. Yu*, G.R. Xu, G.B. Li.Microcystis aeruginosa-laden surface water treatment using ultrafiltration:Membrane fouling, cell integrity and algogenic organic matter removal.Water Research, 2017, 112: 83-92.
(12) B. Liu,F(xiàn).S. Qu*, H. Liang, Z.D. Gan, H.R. Yu*, N.Q. Ren, B. Van der Bruggen, G.B. Li, Algae-laden water treatment using ultrafiltration: Individual and combined fouling effects of cells, debris, extracellular and intracellular organic matter.J. Membr. Sci.2017, 528: 178-186.
(13) B. Liu, F.S. Qu*, S.D. Guo, H. Liang, H.R. Yu, G.B. Li, H. Liang, B. Van der Bruggen*, A pilot study of the sludge recycle sludge recycling enhanced coagulation-ultrafiltration process for drinking water: sludge recycling ratio and coagulation stirring strategy. Water, 2017, 9(3), 183
(14) B. Liu, F.S. Qu*, W. Chen, H. Liang, T.Y. Wang, X.X. Cheng, H.R. Yu, G.B. Li, B. Van der Bruggen*. Microcystis aeruginosa-laden water treatment using enhanced coagulation by persulfate/Fe(II), ozone and permanganate: comparison of the simultaneous and successive oxidant dosing strategy.Water Research, 2017, 125: 72-80,
(15) Z.S. Yan, H.Y. Yang, F.S. Qu*, H.R. Yu, H. Liang, G.B. Li, J. Ma. Reverse osmosis brine treatment using direct contact membrane distillation: Effects of feed temperature and velocity.Desalination, 2017,423: 149-156. 201712
(16) F.S. Qu, Z.S. Yan, H. Wang, X.B. Wang, H. Liang, H.R. Yu*, J.G. He, G.B. Li. A pilot study of hybrid biological activated carbon (BAC) filter-ultrafiltration process for water supply in rural areas: Release of soluble microbial products from BAC and membrane fouling,Environmental Science: Water Research & Technology, 2017, 4, 315-324. 201712
(17) B. Liu, F.S. Qu*, H.R. Yu, J.Y. Tian, W. Chen, H. Liang, G.B. Li, B. Van der Bruggen*, Membrane fouling and rejection of organics during algae-laden water treatment using ultrafiltration: a comparison betweenin-situoxidation with Fe(II)/persulfate and ozone.Environ. Sci. Technol.2018, 52: 765-774. 201712
(18) J.Y. Tian, C.W. Wu, H.R. Yu, G.B. Li, F.Y. Cui, F.S. Qu*, Applying ultraviolet/persulfate (UV/PDS) pre-oxidation for controlling ultrafiltration membrane fouling caused by natural organic matter (NOM) in surface water.Water Res.2018, 132: 190-199. 201804
(19) Z.S. Yan, H.Y. Yang, F.S. Qu*, H.R. Yu, H. Liang, G.B. Li, B. Van der Bruggen. Reverse osmosis brine treatment using direct contact membrane distillation (DCMD): Effect of membrane characteristics on desalination performances and wetting potential.Environmental Science: Water Research & Technology, 2018, 4, 428-437.
(20) H.R. Yu, F.S. Qu*, X.L. Zhang, P. Wang, G.B. Li, H. Liang*, Effect of quorum quenching on biofouling and ammonia removal in membrane bioreactor under stressful conditions.Chemosphere, 2018, 199: 114-121.
(21) G.D. Fan*, M.C. Bao, X.M. Zheng, L. Hong, J.J Zhan, Z. Chen, F.S. Qu*. Growth inhibition of harmful cyanobacteria by nanocrystalline Cu-MOF-74: Efficiency and its mechanisms. Journal of Hazardous Materials, 2019, 367: 529–538
(22) H.R. Yu, F.S. Qu*, X.L. Zhang, S.L. Shao, H.W. Rong, H. Liang, L.M. Bai*, J. Ma. Homo- and hetero-correlation spectroscopy (COS) analysis on the fluorescence excitation emission matrix (EEM): a study on ozonation of effluent organic matter (EfOM). Chemosphere, 2019, 228: 35-43
(23) F.S. Qu, H. Wang, H.R. Yu*, J.G. He**, Z.H. Pan, J.Y. Tian, H.W. Rong, G.B. Li, J. Ma. Tertiary treatment of secondary effluent using ultrafiltration for wastewater reuse: relating membrane fouling to rejection of effluent organic matter and hydrophobic pharmaceuticals. Environmental Science: Water Research & Technology, 2019, 5, 672-683.
(24) Z.S. Yan, K. Liu, H.R. Yu, H. Liang, B.H. Xie, G.B. Li, F.S. Qu*, B. van der Bruggen. Treatment of anaerobic digestion effluent using membrane distillation: Effects of feed acidification on pollutant removal, nutrient concentration and membrane fouling. Desalination, 2019, 449: 6-15
(25) Z.S. Yan,H.Y. Yang, F.S. Qu*, H. Zhang, H.W. Rong, H.R. Yu, H. Liang, G.B. Li, B. Van der Bruggen. Application of membrane distillation to anaerobic digestion effluent treatment: Identifying culprits of membrane fouling and scaling. Science of the Total Environment, 2019, 688: 880-889.
3、近期發(fā)表的期刊文章
(1) F.S. Qu, Z.S. Yan*,H.R. Yu, G.D. Fan, H.L. Pang, H.W. Rong, J.G. He. Effect of residual commercial antiscalants on gypsum scaling and membrane wetting during direct contact membrane distillation. Desalination. 2020, 486: 114493-114499.
(2) F.S. Qu, X.L. Li, J.G. He, Z.H. Pan, Y. Zhao, H.W. Rong, G.B. Li, H.R. Yu*. A new backwash strategy for reducing cost of an immersed ultrafiltration system by restricting cake layer breakage. Water Supply, 2020, doi: 10.2166/ws.2020.060.
(3) G.D. Fan*, J.J. Zhou, X.M. Zheng, J. Luo, H. Liang, F.S. Qu*. Fast photocatalytic inactivation of Microcystis aeruginosa by metalorganic frameworks under visible light. Chemosphere, 2020, 239: 124721-124731
廣州大學(xué)