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孔令超
研究助理教授

基本概況:

孔令超,,南方科技大學(xué)研究助理教授,,碩士研究生導(dǎo)師,,深圳市海外高層次人才C類(lèi),。近年來(lái),,聚焦城市水環(huán)境污染控制技術(shù)研發(fā)與氮磷元素地球化學(xué)過(guò)程研究,,主持國(guó)家自然科學(xué)基金青年項(xiàng)目,、中國(guó)博士后科學(xué)基金,、深圳市技術(shù)攻關(guān)、深圳市優(yōu)秀科技創(chuàng)新人才,、國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題等5項(xiàng)科研項(xiàng)目,,企業(yè)橫向課題2項(xiàng)。至今已發(fā)表SCI收錄論文30余篇,, H因子21,;申請(qǐng)發(fā)明專(zhuān)利8項(xiàng)(已授權(quán)1項(xiàng)),外觀專(zhuān)利1項(xiàng),。擔(dān)任Elsevier旗下國(guó)際開(kāi)源期刊《Sustainable Horizons》青年編委,,《Chemical Engineering Journal》《Environmental Science and Ecotechnology》、《Applied Clay Science》等國(guó)際知名期刊審稿人,。

工作經(jīng)歷:

2023.2-至今 南方科技大學(xué),,研究助理教授

2022.8-2023.1 南方科技大學(xué),高級(jí)研究學(xué)者

2020.5-2022.7,,南方科技大學(xué),,博士后

教育背景:

2014.9-2020.4,哈爾濱工業(yè)大學(xué),,環(huán)境科學(xué)與工程,,博士

2018.8-2019.8,美國(guó)密歇根大學(xué),,環(huán)境健康科學(xué),國(guó)家公派聯(lián)合培養(yǎng)博士

2010.9-2014.6,哈爾濱工業(yè)大學(xué),,環(huán)境科學(xué)與工程,,學(xué)士

承擔(dān)的課題:

1. 國(guó)家自然科學(xué)基金青年項(xiàng)目,基于單細(xì)胞拉曼-重水標(biāo)記解析鈍化修復(fù)后沉積物解磷菌的原位解磷活性,,2024.1-2026.12,,主持

2. 深圳市優(yōu)秀科技創(chuàng)新人才培養(yǎng)項(xiàng)目青年項(xiàng)目,基于單細(xì)胞拉曼-氘穩(wěn)定同位素聯(lián)用技術(shù)解析海洋古菌MGII特征脂類(lèi)化合物的結(jié)構(gòu)及分子機(jī)制,,2023.3-2025.3,,主持

3. 深圳市技術(shù)攻關(guān)面上項(xiàng)目,重2022242 高性能膜生物反應(yīng)器關(guān)鍵技術(shù)研發(fā),,2022.3-2024.3,,主持

4. 中國(guó)博士后科學(xué)基金面上項(xiàng)目,納米纖維支撐石墨烯/過(guò)渡金屬?gòu)?fù)合材料的構(gòu)建及地下水中全氟化合物深度降解應(yīng)用研究,,2020.5-2022.5,,主持

5. 城市水資源與水環(huán)境國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題,微波輔助凹土層狀雙氫氧化物緩控釋磷的作用機(jī)理,,2021.1-2022.12,,主持

6. 企業(yè)橫向:一種新型湖庫(kù)水體沉積物磷修復(fù)材料研發(fā),2023.9-2024.9,,主持

7. 企業(yè)橫向:浙江遂昌黃鐵礦酸性礦山廢水形成的礦物學(xué)機(jī)制研究,,2024.1-2025.1,主持

教學(xué)指導(dǎo):

1.  廣東大學(xué)生科技創(chuàng)新戰(zhàn)略專(zhuān)項(xiàng)資金(攀登計(jì)劃),,納米纖維支撐礦石基層狀復(fù)合材料的構(gòu)建及其修復(fù)全氟化合物污染地下水的應(yīng)用

2. 大學(xué)生創(chuàng)新創(chuàng)業(yè)訓(xùn)練計(jì)劃項(xiàng)目,,納米纖維支撐礦石基層狀材料修復(fù)全氟有機(jī)物污染地下水的機(jī)理研究

3. 南方科技大學(xué)本科生畢業(yè)設(shè)計(jì), 基于單細(xì)胞拉曼技術(shù)的解磷菌代謝活性研究

學(xué)術(shù)成果:

1. Lingchao Kong, Yi Wang, Charles B. Andrews, Chunmiao Zheng*. One-step construction of hierarchical porous channels on electrospun MOF/polymer/graphene oxide composite nanofibers for effective arsenate removal from water. Chemical Engineering Journal. 614,2022, 47-57.

2. Lingchao Kong, Jun Zhang, Yi Wang, Qinlin Yan, Jiayu Xu, Xi Quan, Charles B. Andrews Zuotai Zhang, Chunmiao Zheng*. Bowknot-like Zr/La bimetallic organic frameworks for enhanced arsenate and phosphate removal: combined experimental and DFT studies. Journal of Colloid and Interface Science, 435, 2022, 134830.

3. Lingchao Kong, Qinlin Yan, Yi Wang, Qinyu Wang, Charles B. Andrews, Chunmiao Zheng*. Self-supported trimetallic NiZnLa nanosheets on hierarchical porous graphene oxide-polymer composite fibers for enhanced phosphate removal from water. Journal of Colloid and Interface Science. 628, 2022, 807-818.

4. Lingchao Kong, Yu Tian*, Yi Wang, Ning Li, Yang Liu, Zheng Pang, Xiaohong Huang, Ming Li, Jun Zhang, Wei Zuo. Periclase-induced generation of flowerlike clay-based layered double hydroxides: A highly efficient phosphate scavenger and solid-phase fertilizer. Chemical Engineering Journal, 359 (2019) 902–913.

5. Lingchao Kong, Yu Tian*, Zheng Pang, Xiaohong Huang, Ming Li, Ning Li, Jun Zhang, Wei Zuo, Junjing Li. Needle-like Mg-La bimetal oxide nanocomposites derived from periclase and lanthanum for cost-effective phosphate and fluoride removal: characterization, performance and mechanism.. Chemical Engineering Journal, 382 (2020) 122963.

6. Lingchao Kong, Yu Tian*, Zheng Pang, Xiaohong Huang, Ming Li, Ruochen Yang, Ning Li, Jun Zhang, Wei Zuo. Synchronous phosphate and fluoride removal from water by 3D rice-like lanthanum-doped LDH-La nanocomposites. Chemical Engineering Journal, 371 (2019) 893–902.

7. Lingchao Kong, Yu Tian*, Ning Li, Yang Liu, Jian Zhang, Jun Zhang, Wei Zuo. Highly-effective phosphate removal from aqueous solutions by calcined nano-porous palygorskite matrix with embedded lanthanum hydroxide. Applied Clay Science, 162 (2018) 507–517.

8. Lingchao Kong, Qinyu Wang, Yi Wang, Qinlin Yan, Wenhui Qiu, Chunmiao Zheng*. Sustainable Cu2(OH)2CO3/g-C3N4/cellulose acetate derived porous composite membrane for congo red and tetracycline removal with photocatalytic self-cleaning property under natural solar irradiation [J]. Sustainable Horizons, 2023: 5, 10047.

9. Wang C, Kong L, Wang Y, et al. New insight into the synergy of nitrogen-related sites on biochar surface for sulfamethoxazole adsorption from water[J]. Chinese Chemical Letters, 2023, 34(9): 108159.

10. Li N, Ye J, Dai H, P Shao, L Liang, L Kong, et al. A critical review on correlating active sites, oxidative species and degradation routes with persulfate-based antibiotics oxidation[J]. Water Research, 2023: 119926.

11. Wang C, Ye J, Liang L, X Cui, L Kong, et al. Application of MXene-based materials in Fenton-like systems for organic wastewater treatment: A review[J]. Science of The Total Environment, 2023, 862: 160539.

12. Wang Q, Zuo W, Tian Y, L Kong, et al. Functionally-designed floatable amino-modified ZnLa layered double hydroxides/cellulose acetate beads for tetracycline removal: Performance and mechanism[J]. Carbohydrate Polymers, 2023, 311: 120752.

13. Wang Q, Zuo W, Tian Y, L Kong, et al. An ultralight and flexible nanofibrillated cellulose/chitosan aerogel for efficient chromium removal: Adsorption-reduction process and mechanism[J]. Chemosphere, 2023, 329: 138622.

14. Cui D, Kong L, Wang Y, et al. In situ identification of environmental microorganisms with Raman spectroscopy[J]. Environmental Science and Ecotechnology, 2022: 100187.

15. Wang C, Ye J, Liang L, X Cui, L Kong, et al. Application of MXene-based materials in Fenton-like systems for organic wastewater treatment: A review[J]. Science of The Total Environment, 2022: 160539.

16. Wang Q, Zuo W, Tian Y, Kong L, et al. Flexible Brushite/Nanofibrillated Cellulose Aerogels for Efficient and Selective Removal of Copper (II)[J]. Chemical Engineering Journal, 2022: 138262.

17. Wang Q, Li L, Tian Y, Kong L, et al. Shapeable amino-functionalized sodium alginate aerogel for high-performance adsorption of Cr (VI) and Cd (II): Experimental and Theoretical Investigations[J]. Chemical Engineering Journal, 2022: 137430.

18. Wang Q, Li L, Kong L, et al. Compressible amino-modified carboxymethyl chitosan aerogel for efficient Cu (II) adsorption from wastewater[J]. Separation and Purification Technology, 2022, 293: 121146.

19. Wang Q, Tian Y, Kong L, et al. A novel 3D superelastic polyethyleneimine functionalized chitosan aerogels for selective removal of Cr (VI) from aqueous solution: performance and mechanisms[J]. Chemical Engineering Journal, 2021, 425: 131722.

20. Wang Y, Xu J, Cui D, Kong L, et al. Classification and Identification of Archaea Using Single-Cell Raman Ejection and Artificial Intelligence: Implications for Investigating Uncultivated Microorganisms[J]. Analytical Chemistry, 2021, 93, 51, 17012–17019.

21. Wang, P., Tian, Y., Wang, H., Zhang, J., Kong, L., Zuo, W., ... & Yin, L.. Strong adsorption of tetracycline on octahedral Cu2O nanocrystals exposed with {111} facets: Adsorption behavior and mechanism insight. Applied Surface Science, 2021, 542, 148545.

22. Zhai Y, Chen L, Liu G, Song L, Arenas-Lagoe D, Kong L, et al. Compositional and functional responses of bacterial community to titanium dioxide nanoparticles varied with soil heterogeneity and exposure duration[J]. Science of the Total Environment, 2021, 773: 144895.

23. Li, N., Li, R., Zhao, J., Liang, L., Yu, Y., Kong, L. & Yan, B. (2020). Multi-interface Mn3O4@ ZnO/TiO2 with controllable charge transfer routes for highly selective denitrification under ultrasonic-assisted visible light photocatalysis. Chemical Engineering Journal, 394, 124997.

24. Wang, Y., Xu, J., Kong, L., Li, B., Li, H., Huang, W. E., & Zheng, C. (2020). Raman‐activated sorting of antibiotic‐resistant bacteria in human gut microbiota. Environmental microbiology, 22(7), 2613-2624.

25. Wang, Y., Xu, J., Kong, L., Liu, T., Yi, L., Wang, H., ... & Zheng, C. (2020). Raman–deuterium isotope probing to study metabolic activities of single bacterial cells in human intestinal microbiota. Microbial biotechnology, 13(2), 572-583.

26. Lei, Y. J., Tian, Y., Zhang, J., Sun, L., Kong, X. W., Zuo, W., & Kong, L. C. (2018). Microalgae cultivation and nutrients removal from sewage sludge after ozonizing in algal-bacteria system. Ecotoxicology and environmental safety, 165, 107-114.

27. Li, N., Tian, Y., Zhao, J., Kong, L., Zhang, J., Zuo, W., ... & Lin, Q. (2018). Anti-irreversible fouling of precisely-designed PVDF-ZnO membrane: Effects of ion strength and co-existing cations. Applied Surface Science, 459, 397-405.

28. Li, N., Tian, Y., Zhao, J., Zhang, J., Zuo, W., Kong, L., & Cui, H. (2018). Z-scheme 2D/3D g-C3N4@ ZnO with enhanced photocatalytic activity for cephalexin oxidation under solar light. Chemical Engineering Journal, 352, 412-422.

29. Li, N., Tian, Y., Zhao, J., Zhan, W., Du, J., Kong, L., ... & Zuo, W. (2018). Ultrafast selective capture of phosphorus from sewage by 3D Fe3O4@ ZnO via weak magnetic field enhanced adsorption. Chemical Engineering Journal, 341, 289-297.

30. Li, N., Tian, Y., Zhao, J., Zhang, J., Kong, L., Zhang, J., & Zuo, W. (2018). Static adsorption of protein-polysaccharide hybrids on hydrophilic modified membranes based on atomic layer deposition: Anti-fouling performance and mechanism insight. Journal of Membrane Science, 548, 470-480. (IF: 8.742)

31. Zhang J, Tian Y, Zhang J, Li, N., Kong, L., et al. Distribution and risk assessment of heavy metals in sewage sludge after ozonation[J]. Environmental Science and Pollution Research, 2017, 24(6): 5118-5125.

32. Zhang, J., Zhang, J., Tian, Y., Li, N., Kong, L., Sun, L. & Zuo, W. (2016). Changes of physicochemical properties of sewage sludge during ozonation treatment: Correlation to sludge dewaterability. Chemical Engineering Journal, 301, 238-248.

專(zhuān)利:

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2. 一種凹凸棒石-方鎂石基類(lèi)水滑石的制備方法及其除磷應(yīng)用,,202110262378.9(發(fā)明)

3. 一種利用蛋白石頁(yè)巖制備4A沸石分子篩的方法及其除氨氮應(yīng)用,202110276321.4(發(fā)明,,已授權(quán))

4. 一種生物膜懸浮填料的制備方法,、生物膜懸浮填料及其應(yīng)用,2023105103840(發(fā)明)

5. 一種基于單細(xì)胞拉曼-同位素標(biāo)記的湖泊沉積物中解磷菌的活性檢測(cè)方法,,2023116042713(發(fā)明)

6. 一種類(lèi) LDH 結(jié)構(gòu)的鎖磷劑及其制備方法和應(yīng)用,,2024102273327(發(fā)明)

7. 一種流動(dòng)電極液、其制備方法和在酸性礦山廢水處理中的應(yīng)用, 202410313232.6 (發(fā)明)

8. 膜生物反應(yīng)器內(nèi)置微生物燃料電池反應(yīng)器,,2023305904905(外觀)