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中國給水排水2025年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(第十六屆)邀請函暨征稿啟事 (同期召開固廢大會、工業(yè)污泥大會、滲濾液大會、高濃度難降解工業(yè)廢水處理大會)
 
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報(bào)告人:吳江,南京師范大學(xué)環(huán)境學(xué)院教授、博士生導(dǎo)師,江蘇特聘教授!吨袊o水排水》青年編委;國際水協(xié)會中國青年委員會(IWA-YWP)委員,日本土木學(xué)會 (JSCE)、日本水環(huán)境學(xué)會(JSWE)會員。

核心提示: 報(bào)告人:吳江,南京師范大學(xué)環(huán)境學(xué)院教授、博士生導(dǎo)師,江蘇特聘教授!吨袊o水排水》青年編委;國際水協(xié)會中國青年委員會(IWA-YWP)委員,日本土木學(xué)會 (JSCE)、日本水環(huán)境學(xué)會(JSWE)會員。主要研究方向?yàn)槲⑸锾幚砉に嚰捌浼苫夹g(shù)、生物質(zhì)(市政污水、化工廢水及有機(jī)固體廢棄物)低碳處理及生物能源再生、微生物處理系統(tǒng)中的風(fēng)險(xiǎn)物質(zhì)(新興污染物、放射性金屬等)歸趨等。主持國家級海外引才項(xiàng)目1項(xiàng);江蘇省海外人才項(xiàng)目1項(xiàng);日本環(huán)境省環(huán)境研究綜合推進(jìn)經(jīng)費(fèi)項(xiàng)目子課題2項(xiàng);日本學(xué)術(shù)振興會(JSPS)國家科學(xué)研
中國給水排水2025年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(第十六屆)邀請函暨征稿啟事 (同期召開固廢大會、工業(yè)污泥大會、滲濾液大會、高濃度難降解工業(yè)廢水處理大會)

中國給水排水2025年城鎮(zhèn)污泥處理處置技術(shù)與應(yīng)用高級研討會(第十六屆)邀請函暨征稿啟事 (同期召開固廢大會、工業(yè)污泥大會、滲濾液大會、高濃度難降解工業(yè)廢水處理大會)

 報(bào)告人:吳江,南京師范大學(xué)環(huán)境學(xué)院教授、博士生導(dǎo)師,江蘇特聘教授!吨袊o水排水》青年編委;國際水協(xié)會中國青年委員會(IWA-YWP)委員,日本土木學(xué)會 (JSCE)、日本水環(huán)境學(xué)會(JSWE)會員。主要研究方向?yàn)槲⑸锾幚砉に嚰捌浼苫夹g(shù)、生物質(zhì)(市政污水、化工廢水及有機(jī)固體廢棄物)低碳處理及生物能源再生、微生物處理系統(tǒng)中的風(fēng)險(xiǎn)物質(zhì)(新興污染物、放射性金屬等)歸趨等。主持國家級海外引才項(xiàng)目1項(xiàng);江蘇省海外人才項(xiàng)目1項(xiàng);日本環(huán)境省環(huán)境研究綜合推進(jìn)經(jīng)費(fèi)項(xiàng)目子課題2項(xiàng);日本學(xué)術(shù)振興會(JSPS)國家科學(xué)研究基金項(xiàng)目3項(xiàng)。


報(bào)告題目:厭氧膜生物反應(yīng)器耦合主流短程硝化-厭氧氨氧化工藝中對亞硝酸鹽氧化菌的選擇性抑制與厭氧氨氧化菌的原位富集


報(bào)告內(nèi)容簡介:在日本宮城縣仙鹽污水凈化中心開展了中試規(guī)模厭氧膜生物反應(yīng)器(AnMBR)與單級部分硝化厭氧氨氧化(PN/A)低碳處理耦合工藝研究。通過原位游離氨(FA)與游離亞硝酸(FNA)交替沖擊,結(jié)合低溶解氧(<0.5mg/L)運(yùn)行策略,實(shí)現(xiàn)了對PN/A系統(tǒng)中亞硝酸氧化菌群落(NOB)的選擇性抑制(靶向抑制),系統(tǒng)內(nèi)氨氧化菌(AOB)與厭氧氨氧化菌(AnAOB)逐步形成穩(wěn)定協(xié)同。該耦合生物處理工藝建立了高效除碳脫氮路徑,在25℃下運(yùn)行表現(xiàn)出穩(wěn)定的碳氮去除能力與良好的污泥沉降性能。結(jié)果表明,在主流條件下連續(xù)運(yùn)行中系統(tǒng)出水總氮(TN)濃度可維持在10 mg/L以下,實(shí)現(xiàn)了新型系統(tǒng)穩(wěn)定啟動與高效運(yùn)行,為未來市政污水廠實(shí)現(xiàn)節(jié)能降耗與雙碳目標(biāo)提供了工藝概念與實(shí)踐基礎(chǔ)。

吳江

19894月生

工學(xué)博士,教授

入選國家海外引才專項(xiàng)計(jì)劃,江蘇特聘教授。主要從事有機(jī)污染物微生物處理技術(shù)工程性應(yīng)用等研究。作為第一完成人結(jié)題多項(xiàng)日本國家級、特大排污企業(yè)有機(jī)污染物處理工程(試點(diǎn))項(xiàng)目!吨袊o水排水》青年編委,國際水協(xié)會(IWA) 、日本土木學(xué)會 (JSCE)、日本水環(huán)境學(xué)會(JSWE)會員。在Water Research、《用水と廃水》等環(huán)境工程專業(yè)期刊發(fā)表英、日、中文學(xué)術(shù)論文40余篇。為Chemical Engineering Journal、Bioresource Technology等十余部學(xué)術(shù)期刊審稿人。


 

 

聯(lián)系方式

電子郵箱:wuj@nnu.edu.cn

辦公室:南京師范大學(xué)仙林校區(qū)環(huán)境學(xué)院行遠(yuǎn)樓409室

通信地址:南京市棲霞區(qū)文苑路1號,210023

 

教育背景

2016.04-2019.03,日本東北大學(xué) (Tohoku University),土木與環(huán)境工程,工學(xué)博士學(xué)位

2014.04-2016.03,日本東北大學(xué) (Tohoku University),土木與環(huán)境工程,工學(xué)碩士學(xué)位

2009.09-2013.06,蘭州理工大學(xué),給水排水工程,工學(xué)學(xué)士學(xué)位

 

研究經(jīng)歷

2024.11-今,南京師范大學(xué),環(huán)境學(xué)院,教授

2020.04-2024.10,日本國立環(huán)境研究所,資源循環(huán)領(lǐng)域,助理研究員(Research Associate)

2019.04-2020.03,日本東北大學(xué) (Tohoku University),博士后研究

 

主要研究方向

1. (厭氧)微生物處理工藝及其集成化技術(shù)

2. 生物質(zhì)(市政污水、化工廢水及有機(jī)固體廢棄物等)低碳處理及生物能源再生

3. 微生物處理系統(tǒng)中的風(fēng)險(xiǎn)物質(zhì)(新興污染物、放射性金屬等)歸趨

* 除上述研究方向外,特別歡迎具有全生命周期評價(jià)(LCA)、碳足跡核算等研究經(jīng)歷或?qū)Χ鄬W(xué)科交叉融合研究模式抱有興趣的同學(xué)報(bào)考本課題組碩、博士研究生。

 

近幾年承擔(dān)的國內(nèi)外科研項(xiàng)目

7. 國家海外引才專項(xiàng)計(jì)劃,2024-2027,主持

6. 江蘇特聘教授項(xiàng)目,2024-2027,主持

5. 日本學(xué)術(shù)振興會(JSPS)國家科學(xué)研究基金青年項(xiàng)目(科學(xué)研究費(fèi)助成事業(yè)若手研究,24K17385), In-situバイオ炭吸著による熱分解凝縮液の高速嫌気性処理プロセスの創(chuàng)出(原位生物炭吸附工藝耦合熱解焦油的高速厭氧處理工藝),2024-2027,主持

4. 日本環(huán)境省研究推進(jìn)費(fèi)項(xiàng)目子課題,1-2102,脫炭素化を目指した汚染バイオマスの先進(jìn)的エネルギー変換技術(shù)システムの開発と実裝シナリオの設(shè)計(jì)及び評価(面向脫碳化的放射性污染生物質(zhì)能源轉(zhuǎn)化系統(tǒng)開發(fā)及其實(shí)施方案設(shè)計(jì)與評估),2022-2024,主持

3. 日本學(xué)術(shù)振興會(JSPS)國家科學(xué)研究基金青年項(xiàng)目(科學(xué)研究費(fèi)助成事業(yè)若手研究,21K14282), 指定廃棄物の放射性Cs適性制御に資する溶出促進(jìn)と嫌気性リーチングシステムの開発(放射性污染廢棄物中銫在厭氧處理體系中的溶出控制優(yōu)化),2021-2023,主持

2. 日本環(huán)境省研究推進(jìn)費(fèi)項(xiàng)目子課題,1-2102,嫌気性膜分離法とアナモックスの融合デザインによる下水処理システムの実証研究(厭氧中空纖維膜反應(yīng)器耦合一體式主流厭氧氨氧化工藝中試平臺培育),2019-2020,主持

1. 日本學(xué)術(shù)振興會(JSPS)國家科學(xué)研究基金博士項(xiàng)目(17J00995),新規(guī)資源循環(huán)型産業(yè)廃水の嫌気性後処理及びその脫硫技術(shù)(資源循環(huán)型工業(yè)廢水厭氧脫硫后處理技術(shù)), 2017-2019,主持

 

近期發(fā)表論文

30. Wu J, Hu Y, Ma H, Takahashi Y, Kobayashi T, Xu KQ, Kuramochi H: Biomass conversion and radiocaesium (Rad-Cs) leaching behaviors of radioactive grass in anaerobic wet fermentation systems: Effects of pretreatments. Water Research, Mar 15 2024; 252:121228.

29. Kong Z, Xue Y, Hao T, Zhang Y, Wu J, Chen H, Song L, Rong C, Li D, Pan Y, Li Y, Li YY. Carbon-neutral treatment of N, N-dimethylformamide-containing wastewater by up-flow anaerobic sludge blanket: CO2 reduction and bio-energy cleaner production. Journal of Cleaner Production. 2022, Dec; 20:134880.

28. Wu J, Kobayashi T, Li Y, Hu Y, Kuramochi H, LI YY. Competitive advantage changes between methanogenesis and sulfidogenesis in long-term UASB treatment of sulfate-rich ethanol-acetate wastewater. Journal of Water and Waste, 2022, 64 (8), 51-60.

27. Rong C, Luo Z, Wang T, Qin Y, Wu J, Guo Y, Hu Y, Kong Z, Hanaoka T, Sakemi S, Ito M, Kobayashi S, Kobayashi M, Li YY. Biomass retention and microbial segregation to offset the impacts of seasonal temperatures for a pilot-scale integrated fixed-film activated sludge partial nitritation-anammox (IFAS-PN/A) treating anaerobically pretreated municipal wastewater. Water Research. 2022, Oct 2; 225:119194.

26. Kong Z, Xue Y, Hao T, Zhang Y, Wu J, Chen H, Song L, Rong C, Li D, Pan Y, Li Y, Li YY. Carbon-neutral treatment of N, N-dimethylformamide-containing industrial wastewater by anaerobic membrane bioreactor (AnMBR): Bio-energy recovery and CO2 emission reduction. Bioresource Technology. May 28 2022; 358:127396.

25. Rong C, Wang T, Luo Z, Guo Y, Kong Z, Wu J, Qin Y, Hanaoka T, Sakemi S, Ito M, Kobayashi S, Kobayashi M, Li YY: Seasonal temperatures impact on the mass flows in the innovative integrated process of anaerobic membrane bioreactor and one-stage partial nitritation-anammox for the treatment of municipal wastewater. Bioresource Technology. April 2022; 349: 126864.

24. Ma H, Hu Y, Wu J, Kobayashi T, Xu KQ, Kuramochi H: Enhanced anaerobic digestion of tar solution from rice husk thermal gasification with hybrid upflow anaerobic sludge-biochar bed reactor. Bioresource Technology. Mar 2022; 347:126688.

23. Sanjaya EH, Chen Y, Guo Y, Wu J, Chen H, Din MFM, Li YY. The performance of simultaneous partial nitritation, anammox, denitrification, and COD oxidation (SNADCO) method in the treatment of digested effluent of fish processing wastewater. Bioresource Technology. Feb 2 2022; 346: 126622.

22. Kong Z, Li L, Wu J, Rong C, Wang T, Chen R, Sano D, Li YY. Unveiling the characterization and development of prokaryotic community during the start-up and long-term operation of a pilot-scale anaerobic membrane bioreactor for the treatment of real municipal wastewater. Science of the Total Environment. Mar 20 2022; 813: 126622.

21. Song J, Wu H, Yuan H, Wu J, Qi W, Lu J, Li W, Li YY. Reclamation of pharmaceutical wastewater by UAF, contact oxidation, and auto brush-cleaning aiding nano ZrO2 coated ceramic membrane MBR - An industrial-scale practice and functional microbial diversity. Journal of Water Process Engineering. April 2022, 46; 152643

20. Rong C, Luo Z, Wang T, Guo Y, Kong Z, Wu J, Ji J, Qin Y, Hanaoka T, Sakemi S, Ito M. Chemical oxygen demand and nitrogen transformation in a large pilot-scale plant with a combined submerged anaerobic membrane bioreactor and one-stage partial nitritation-anammox for treating mainstream wastewater at 25° C. Bioresource Technology. Dec 1 2021; 341:125840.

19. Wu J, Kong Z, Luo Z, Qin Y, Rong C, Wang T, Hanaoka T, Sakemi S, Ito M, Kobayashi S, Kobayashi M, Xu, KQ, Kobayashi T, Kubota K, Li YY. A successful start-up of an anaerobic membrane bioreactor (AnMBR) coupled mainstream partial nitritation-anammox (PN/A) system: A pilot-scale study on in-situ NOB elimination, AnAOB growth kinetics, and mainstream treatment performance. Water Research. Oct 21 2021; 207:117783.

18. Kong Z, Li L, Wu J, Wang T, Rong C, Luo Z, Pan Y, Li D, Li Y, Huang Y, Li YY. Evaluation of bio-energy recovery from the anaerobic treatment of municipal wastewater by a pilot-scale submerged anaerobic membrane bioreactor (AnMBR) at ambient temperature. Bioresource Technology. Nov 1 2021; 339:125551.

17. Hu Y, Shi C, Ma H, Wu J, Kobayashi T, Xu KQ. Biofilm formation enhancement in anaerobic treatment of high salinity wastewater: Effect of biochar/Fe addition. Journal of Environmental Chemical Engineering. Aug 1 2021;9 (4):105603.

16. Wu J, Jiang B, Kong Z, Yang C, Li L, Feng B, Luo Z, Xu KQ, Kobayashi T, Li YY. Improved stability of up-flow anaerobic sludge blanket reactor treating starch wastewater by pre-acidification: Impact on microbial community and metabolic dynamics. Bioresource Technology. Apr 1 2021; 326:124781.

15. Kong, Z, Wu, J, Rong, C, Wang, T, Li, L, Luo, Z, Ji J, Hanaoka T, Sakemi S, Ito M, Kobayashi S, Kobayashi M, Qin Y, Li YY. Sludge yield and degradation of suspended solids by a large pilot-scale anaerobic membrane bioreactor for the treatment of real municipal wastewater at 25° C. Science of the Total Environment. Mar10 2021; 759:143526.

14. Kong Z, Wu J, Rong C, Wang T, Li L, Luo Z, Ji J, Hanaoka T, Sakemi S, Ito M, Kobayashi S. Large pilot-scale submerged anaerobic membrane bioreactor for the treatment of municipal wastewater and biogas production at 25° C. Bioresource Technology. Jan 1 2021; 319:124123.

13. Wang C, Wu H, Wu J, Zhu B, Fan W, Lu T, Gao Y, Qi W, Niu Q. Promoted biodegradation of para-ester wastewater by electrostimulated ZVI assisting novel UBF/ceramic membrane MBR and microbial community. Journal of the Taiwan Institute of Chemical Engineers. Aug 1 2020; 113:285-92.

12. Wu J, Jiang B, Feng B, Li L, Moideen SN, Chen H, Mribet C, Li YY. Pre-acidification greatly improved granules physicochemical properties and operational stability of Upflow Anaerobic Sludge Blanket (UASB) reactor treating low-strength starch wastewater. Bioresource Technology. Apr 1 2020; 302:122810.

11. Kong Z, Li L, Wang T, Rong C, Xue Y, Zhang T, Wu J, Li YY. New insights into the cultivation of N, N-dimethylformamide-degrading methanogenic consortium: A long-term investigation on the variation of prokaryotic community inoculated with activated sludge. Environmental Research. Mar 1 2020;182:109060.

10. Li W, Niu Q, Wu J, Luan X, Qi W, Zhang Y, Li YY, Gao Y, Yang M. Enhanced anaerobic performance and SMD process in treatment of sulfate and organic S-rich TMBA manufacturing wastewater by micro-electric field–zero valent iron-UASB. Journal of Hazardous Materials. Nov 5 2019; 379:120695.

9. Wu J, Liu Q, Feng B, Kong Z, Jiang B, Li YY. Temperature effects on the methanogenesis enhancement and sulfidogenesis suppression in the UASB treatment of sulfate-rich methanol wastewater. International Biodeterioration & Biodegradation. Aug 1 2019; 142:182-190.

8. Chen H, Wu J, Liu B, Li YY, Yasui H. Competitive dynamics of anaerobes during long-term biological sulfate reduction process in a UASB reactor. Bioresource Technology. May 1 2019; 280:173-82.

7. Kong Z, Li L, Wu J, Zhang T, Li YY. Insights into the methanogenic degradation of N, N-dimethylformamide: The functional microorganisms and their ecological relationships. Bioresource Technology. Jan 1 2019; 271:37-47.

6. Wu J, Niu Q, Li L, Hu Y, Mribet C, Hojo T, Li YY. A gradual change between methanogenesis and sulfidogenesis during a long-term UASB treatment of sulfate-rich chemical wastewater. Science of the Total Environment. Sep 15 2018; 636:168-76.

5. Chen R, Nie Y, Kato H, Wu J, Utashiro T, Lu J, Yue S, Jiang H, Zhang L, Li YY. Methanogenic degradation of toilet-paper cellulose upon sewage treatment in an anaerobic membrane bioreactor at room temperature. Bioresource Technology. Mar 1 2017; 228:69-76.

4. Wang Q, Zhang B, Wang M, Wu J, Li Y, Gao Y, Li W, Jin Y. Synthetic lepidocrocite for phosphorous removal from reclaimed water: optimization using convex optimization method and successive adsorption in fixed bed column. Environmental Technology. Nov 1 2016; 37(21):2750-9.

3. Wu J, Hu Y, Hojo T, Li YY. Effect of Variation of Organic Matter Concentration on UASB Treatment of Sulfate Containing Ethanol/Acetic Acid-Based Chemical Industrial Wastewater. Journal of Water and Waste, 2016, 58 (3), 209-218.

2. Hu Y, Jing Z, Sudo Y, Niu Q, Du J, Wu J, Li YY. Effect of influent COD/SO42− ratios on UASB treatment of a synthetic sulfate-containing wastewater. Chemosphere. 2015; 130, 24-33.

1. Hu Y, Sudo Y, Wu J, Li YY. Performance of a Combined Anaerobic (UASB)-Aerobic (Activated Sludge) System in Synthetic Sulfate-Containing Wastewater Treatment. Journal of Water and Waste, 2015, 57 (8), 605-611.

 

 

 
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