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鄭夢啟檢視原始碼討論檢視歷史

事實揭露 揭密真相
前往: 導覽搜尋
鄭夢啟

鄭夢啟,男,合肥工業大學土木與水利工程學院講師。

人物履歷

教育背景

2012/09–2016/07,鄭州大學,給水排水工程,學士

2016/09–2021/07,哈爾濱工業大學,市政工程,博士

工作經歷

2021/07–至 今,合肥工業大學,土木與水利工程學院,講師

科研項目

[1] 「十三五」國家重點研發計劃項目,煤轉化廢水近零排放及資源化關鍵技術研究與應用示範,2016YFB0600500-02,2016/01-2020/12,參與;

[2] 「十三五」國家重點研發計劃項目,低階煤分級分質清潔高效轉化利用技術開發及示範,2016YFB0600500-02,2017/01-2022/12,參與;

獲獎情況

[1] 博士研究生國家獎學金,中華人民共和國教育部,2019.

[2]錢易環境獎(水環境創新類),錢易環境獎評審委員會,2020.

[3] 哈爾濱工業大學優秀畢業生,哈爾濱工業大學,2021.

學術成果

[1] Mengqi Zheng, Yuxing Han, Chunyan Xu*, Hongjun Han, Zhengwen Zhang. Discrimination of typical cyclic compounds and selection of toxicity evaluation bioassays for coal gasification wastewater (CGW) based on toxicity mechanism of actions (MOAs). Science of the Total Environment. 2018, 644:324-334.

[2] Mengqi Zheng, Yuxing Han, Chunyan Xu*, Zhengwen Zhang, Hongjun Han. Selective adsorption and bioavailability relevance of the cyclic organics in anaerobic pretreated coal pyrolysis wastewater by lignite activated coke. Science of the Total Environment. 2019, 653:64-73.

[3] Mengqi Zheng, Yuxing Han, Hongjun Han, Chunyan Xu,Zhengwen Zhang, Wencheng Ma. Synergistic degradation on phenolic compounds of coal pyrolysis wastewater (CPW) by lignite activated coke-active sludge (LAC-AS) process: Insights into succession of microbial community under selective pressure. Bioresource Technology. 2019, 281:126-134.

[4] Mengqi Zheng, Chunyan Xu, Dan Zhong*,Yuxing Han*, Zhengwen Zhang, Hao Zhu, Hongjun Han. Synergistic degradation on aromatic cyclic organics of coal pyrolysis wastewater by lignite activated coke-active sludge process. Chemical Engineering Journal. 2019, 364:410-419.

[5] Mengqi Zheng, Hao Zhu, Yuxing Han, Chunyan Xu*, Zhengwen Zhang, Hongjun Han. Comparative investigation on carbon-based moving bed biofilm reactor (MBBR) for synchronous removal of phenols and ammonia in treating coal pyrolysis wastewater at pilot-scale. Bioresource Technology. 2019, 288:121590.

[6] Mengqi Zheng, Jingxin Shi, Chunyan Xu, Wencheng Ma*, Zhengwen Zhang, Hao Zhu, Hongjun Han. Ecological and functional research into microbiomes for targeted phenolic removal in anoxic carbon-based fluidized bed reactor (CBFBR) treating coal pyrolysis wastewater (CPW). Bioresource Technology. 2020, 308: 123308.

[7] Mengqi Zheng, Jingxin Shi, Chunyan Xu*, Yuxing Han*, Zhengwen Zhang, Hongjun Han. Insights into electroactive biofilms for enhanced phenolic degradation of coal pyrolysis wastewater (CPW) by magnetic activated coke (MAC): Metagenomic analysis in attached biofilm and suspended sludge. Journal of Hazardous Materials. 2020, 395: 122688.

[8] Mengqi Zheng, Yongri Bai, Hongjun Han, Zhengwen Zhang, Chunyan Xu, Wencheng Ma*, Weiwei Ma*. Robust removal of phenolic compounds from coal pyrolysis wastewater using anoxic carbon-based fluidized bed reactor. Journal of Cleaner Production. 2021, 280: 124451.

[9] Mengqi Zheng, Hongjun Han, Chunyan Xu, Zhengwen Zhang, Wencheng Ma *. A novel study for joint toxicity of typical aromatic compounds in coal pyrolysis wastewater by Tetrahymena thermophile. Ecotoxicology and Environmental Safety. 2021, 210: 111880.

[10] Mengqi Zheng, Hongjun Han, Jingxin Shi, Zhengwen Zhang, Wencheng Ma*, Chunyan Xu*. Metagenomic analysis of aromatic ring-cleavage mechanism in nano-Fe3O4@activated coke enhanced bio-system for coal pyrolysis wastewater treatment. Journal of Hazardous Materials. 2021, 414: 125387.

[11] Mengqi Zheng, Zhe Sun, Hongjun Han, Zhengwen Zhang, Wencheng Ma*,Chunyan Xu. Enhanced coagulation coupled with heavy metal capturing for heavy metals removal from coal gasification brine and a novel mathematical model. Journal of Water Process Engineering. 2021, 40: 101954.

[12] 韓洪軍鄭夢啟,徐春艷,張正文. 煤熱解廢水典型工藝流程中芳香化合物的降解特性[J]. 環境工程學報. 2019, 4: 935-942.

[13] 國家發明專利,一種降解煤熱解廢水環狀化合物的微氧生物處理系統及其方法.專利號:ZL 201910947801.1. 排名2/4.[1]

參考資料