科學(xué)研究:
研究領(lǐng)域:
1. 環(huán)境科學(xué)
2. 環(huán)境工程
3. 海洋科學(xué)
主要研究方向:
1、工業(yè)廢水深度處理與回用技術(shù):工業(yè)廢水的水處理技術(shù)與工藝研究,廢水的深度處理與零排放工藝研究,工業(yè)用水優(yōu)化與節(jié)能減排體系研究。
2、高級氧化技術(shù)理論及其在污染治理中的應(yīng)用:單一及復(fù)合高級氧化技術(shù)中的相關(guān)基礎(chǔ)理論、反應(yīng)器的設(shè)計基礎(chǔ)、反應(yīng)動力學(xué)等研究,致力于為該技術(shù)的廣泛應(yīng)用奠定理論基礎(chǔ)和提供技術(shù)支持。
3、典型持久性有毒污染物污染、傳輸、轉(zhuǎn)化及對生態(tài)環(huán)境影響:揭示有毒有機污染物在環(huán)境中的歸趨、分布與演化趨勢,闡明其在生物體內(nèi)的蓄積能力和降解能力,建立有毒有機污染物的生態(tài)風(fēng)險評價體系。
4、流域水環(huán)境的環(huán)境監(jiān)控、風(fēng)險防范及生態(tài)安全體系:水環(huán)境的分析與監(jiān)測自動化新方法新技術(shù);污染事故風(fēng)險源識別與風(fēng)險評估體系,生態(tài)安全評價以及預(yù)報預(yù)警體系研究。
5、海岸帶水生態(tài)安全與水質(zhì)保障:海洋環(huán)境中持久性有毒物質(zhì)及重金屬的近海環(huán)境化學(xué)行為、毒性機制與生態(tài)毒理效應(yīng);化學(xué)污染物在食物鏈中的富集和危險評估;海岸帶城市污水的健康循環(huán)和回用、海岸帶特種廢水的深度處理、船舶壓載水處理的原理與技術(shù)。
承擔(dān)科研項目情況:
主持和參加包括國家“973計劃”課題、國家“863計劃”課題、國家科技重大專項課題、省科技攻關(guān)項目、國際合作項目課題等20余項。近年來主持的課題包括:
1、山東省自然科學(xué)基金:微藻-膜生物反應(yīng)器協(xié)同處理海水養(yǎng)殖廢水研究,2017-2020。
2、國家自主創(chuàng)新示范區(qū)發(fā)展建設(shè)項目:臭氧催化氧化廢水深度處理裝備及其產(chǎn)業(yè)化研發(fā),2017-2020。
3、中遠造船科技有限公司橫向課題:基于USCG標(biāo)準(zhǔn)的船舶壓載水檢測技術(shù)的研發(fā),2015.10-2017.10。
4、國防科工委航天支撐基金:XXX耐高溫保護層燒蝕機理及結(jié)構(gòu)與性能相關(guān)性的研究,2012.06-2014.05。
5、國家“863”重大項目課題:跨界重大環(huán)境污染事件風(fēng)險防范與應(yīng)急技術(shù)系統(tǒng)-風(fēng)險源識別與預(yù)警,2008.06-2012.06。
6、中-荷聯(lián)合研究中心項目:煤化工企業(yè)優(yōu)化水回用系統(tǒng)研究,2012.01-2016.01
科研獲獎:
獲得黑龍江省科技進步二等獎、環(huán)境保護部環(huán)?萍级泉劦仁〔考壙蒲歇3項。
1、三元復(fù)合驅(qū)采油污水深度處理與回用技術(shù) 環(huán)境保護部環(huán)?萍级泉劊2009 。
2、聚驅(qū)采油污水深度處理與回用技術(shù) 黑龍江省科技進步二等獎,2009。
3、松花江硝基苯污染水源供水系統(tǒng)應(yīng)急措施及關(guān)鍵技術(shù)研究,黑龍江省科學(xué)技術(shù)三等獎,2007。
成果應(yīng)用:
1、臭氧/光催化復(fù)合高效低能耗船舶壓載水處理系統(tǒng)
核心技術(shù)在于利用光催化與臭氧的協(xié)同作用原理,即利用紫外光和光催化產(chǎn)生的羥基自由基輔助殺滅對光敏感和生命力頑強的微生物,同時利用臭氧捕獲催化劑表面電子,促使羥自由基的生成效率大幅提高。二者共同作用,在微生物滅活時實現(xiàn)互補效應(yīng),并在二者聯(lián)合應(yīng)用時產(chǎn)生協(xié)同作用,在較少的投入下得到最佳的處理效果。
所開發(fā)的高效、高速、耐沖擊負(fù)荷的生物滅活系統(tǒng),是一種既能達到國際海事組織(IMO)相關(guān)標(biāo)準(zhǔn),又不污染海洋環(huán)境的船舶壓載水處理新技術(shù)和設(shè)備。本技術(shù)的性能優(yōu)勢主要包括(1)高效滅活,在超高速處理的同時具有較小的設(shè)備體積;(2)能耗較低,噸水能耗比單一處理法大大降低;(3)沒有活性物質(zhì)殘留,也無需儲備化學(xué)藥劑。在處理性能、制作工藝、產(chǎn)品成本、施工性能上均有一定的優(yōu)勢。
授權(quán)發(fā)明專利:
1 尤宏;賈玉紅;王維業(yè);柳鋒;遲明磊. 浮動床臭氧催化氧化反應(yīng)器及其處理廢水的方法. 中國專利. ZL 2015 1 0440580.0, 2017-12-08授權(quán)
2 尤宏;劉園園;羅松;于虹霞;張冉;吳東海;亓麗麗 光催化消解儀 哈爾濱工業(yè)大學(xué) 中國專利 2010-07-23 2011-02-09
3 尤宏;張冉;吳東海;劉園園;羅松. 一種水體化學(xué)需氧量快速測定裝置,中國專利. ZL 2010 1 0234952.1. 2013.07.23授權(quán)11尤宏;吳東海;孫勝杰;杜佳暄. 一種大面積二氧化鈦薄膜催化劑的制備設(shè)備及其制備方法,中國專利. ZL 2009 1 0073475.2. 2011.09.07授權(quán)
4 尤宏;吳東海;金大瑞;何旭. 一種臭氧供給設(shè)備,中國專利. ZL200810137415.8. 2010.12.01授權(quán)
5 尤宏;金大瑞;孫德智;李玲. 采用無泡供氧技術(shù)的固定床濕式催化氧化反應(yīng)器,中國專利. ZL 2007 1 0072671.9. 2011.06.22授權(quán)
6 尤宏;劉婷;孫德智. 多光源三相循環(huán)流化床光化學(xué)反應(yīng)器及其處理廢水的方法,中國專利. ZL 2006 1 0151059.6. 2008.07.22授權(quán)
軟件著作權(quán):
1、基于Web GIS的跨界重大水污染事故風(fēng)險預(yù)報預(yù)警軟件. 尤宏,李二平. 中國軟件著作權(quán). 2011SR053040,2011.07.29
2、基于GIS的跨界重大水污染事故風(fēng)險源數(shù)據(jù)庫軟件. 尤宏,孫勝杰. 中國軟件著作權(quán). 2011SR053038,2011.07.29
論文專著:
發(fā)表論文160余篇,出版專著和教材多部。
出版專著與教材:
1、《工科大學(xué)化學(xué)實驗》,尤宏主編,哈爾濱工業(yè)大學(xué)出版社,1999,2001,2003,2005年。
2、《網(wǎng)絡(luò)與化學(xué)》,尤宏主編,科學(xué)出版社,2000年。
3、《電化學(xué)技術(shù)在環(huán)境中的應(yīng)用》,尤宏主編,化學(xué)工業(yè)出版社,2002年。
4、《環(huán)境科學(xué)與工程專業(yè)英語》,尤宏,哈爾濱工業(yè)大學(xué)出版社,2005年。
發(fā)表期刊論文(近期SCI收錄部分):
2018
1 The characteristic evolution of soluble microbial product and its effects on membrane fouling during the development of sponge membrane bioreactor coupled with fiber bundle anoxic bio-filter for treating saline wastewater. Li, Zhipeng; Song, Weilong; Liu, Feng; Ding, Yi; You, Hong*; Liu, Hengjun; Qi, Peishi; Jin, Chao. Bioresource technology. 2018, 266: 51-59. (IF: 5.807; JCR Q1)
2 Advanced treatment of biologically pretreated coal chemical industry wastewater using the catalytic ozonation process combined with a gas-liquid-solid internal circulating luidized bed reactor. Li, Zhipeng; Liu, Feng; You, Hong*; Ding, Yi; Yao, Jie; Jin, Chao. Water Science and Technology. 2018, 77(7): 1931-1941. (IF: 1.197; JCR Q3)
3 Enhanced removal of Cd(II) from water using sulfur-functionalized rice husk: Characterization, adsorptive performance and mechanism exploration. Qu, Jianhua; Meng, Xianlin*; Jiang, Xingying; You Hong*; .Wang, Peng; Ye,Xiuqing. Journal of Cleaner Production. 2018, 183: 880-886. (IF: 5.715; JCR Q1)
4 Facile sol-gel coating process for anti-biofouling modification of poly (vinylidene fluoride) microfiltration membrane based on novel zwitterionic organosilica. Song, Weilong; Li, Zhipeng*; Li, Yizhu; You, Hong*; Qi, Peishi; Liu, Feng; Loy, Douglas A. Journal of Membrane Science. 2018, 550: 266-277. (IF: 6.035; JCR Q1)
5 Performance of a novel hybrid membrane bioreactor for treating saline wastewater from mariculture: Assessment of pollutants removal and membrane filtration performance. Song, Weilong; Li, Zhipeng*; Ding, Yi; Liu, Feng; You, Hong*. Chemical Engineering Journal. 2018, 331: 695-703. (IF: 6.216; JCR Q1)
6 Power production enhancement with polyaniline composite anode in benthic microbial fuel cells. Jia, Yu-hong; Qi, Zhen-lian; You, Hong*. Journal of Central South University. 2018, 25(3): 499-505. (IF: 0.601; JCR Q3)
7 Studies on the interaction of BDE-47 and BDE-209 with acetylcholinesterase (AChE) based on the neurotoxicity through fluorescence, UV-vis spectra, and molecular docking. Wang, Shutao; Wu, Chuan; Liu, Zhisheng; You, Hong*. Toxicology Letters. 2018, 287: 42-48. (IF: 3.858; JCR Q1)
2017
8 A biocathode-driven photocatalytic fuel cell using an Ag-doped TiO2/Ti mesh photoanode for electricity generation and pollutant degradation. Sui, Mingrui; Dong, Yue; Wang, Zhishen; Wang, Fei; You, Hong*. Journal of Photochemistry and Photobiology a-Chemistry. 2017, 348: 238-245(IF: 2.625; JCR Q2)
9 Utilization of rice husks functionalized with xanthates as cost-effective biosorbents for optimal Cd(II) removal from aqueous solution via response surface methodology. Qu, Jianhua; Meng, Xianlin; You, Hong*; Ye, Xiuqing; Du, Zhaolin. Bioresource technology. 2017, 241: 1036-1042(IF: 5.615; JCR Q1)
10 Microwave-enhanced catalytic wet peroxide oxidation of quinoline: the influence of pH and H2O2 dosage and identification of reactive oxygen species. Zhang, Bo; You, Hong*; Wang, Fei. RSC Advances. 2017, 7(24): 14769-14775(IF: 3.108; JCR Q2)
11 Membrane fouling mitigation in a moving bed membrane bioreactor combined with anoxic biofilter for treatment of saline wastewater from mariculture. Song, Weilong; You, Hong*; Li, Zhipeng; Qi, Peishi; Wang, Fang; Li, Yizhu. Bioresource technology. 2017, 243: 1051-1058(IF: 5.615; JCR Q1)
12 Influence of nickel incorporation on the structure and catalytic behavior of Cu-catalyst for heterogeneous catalytic wet peroxide oxidation of quinoline under microwave irradiation. Zhang, Bo*; You, Hong; Wang, Fei; Yang, Zhongzhe. Catalysis Communications. 2017, 88: 56-59(IF: 3.33; JCR Q2)
13 In-situ utilization of generated electricity in a photocatalytic fuel cell to enhance pollutant degradation.Sui, Mingrui; Dong, Yue*; Bai, Weikun; Ambuchi, JJ; You, Hong*. Journal of Photochemistry and Photobiology a-hemistry. 2017, 343: 51-57(IF: 2.625; JCR Q2
2016
14 Heterogeneous Photo-Fenton Degradation of Quinoline With A Novel Internal Circulating Fluidized-Bed Reactor. Zhang, Ran; You, Hong*; Liu, Ting; Wu, Donghai; Wang, Weiming. Environmental Engineering and Management Journal. 2016, 15(9): 2119-2126. (IF: 1.096)
15 Hedgehog Buckyball: A High-Symmetry Complete Polyhedral Oligomeric Silsesquioxane (POSS). Hu, Yu; Wang, You; You, Hong; Wang, Di. Polymers. 2016, 8(8) (IF=2.944)
16 Characteristic variation and original analysis of emergent water source pollution accidents in China between 1985 and 2013.Qu, Jianhua; Meng, Xianlin; Ye, Xiuqing; You, Hong. Environmental Science and Pollution Research. 2016, 23(19).(IF=2.760)
17 A highly active bimetallic oxide catalyst supported on gamma-Al2O3/TiO2 for catalytic wet peroxide oxidation of quinoline solutions under microwave irradiation. Zhang, B.; You, H.; Yang, Z. Z. Rsc Advances. 2016, 6(70): 66027-66036. (IF=3.289)
18 A novel two-stage evaluation system based on a Group-G1 approach to identify appropriate emergency treatment technology schemes in sudden water source pollution accidents. Qu, Jianhua; Meng, Xianlin; Hu, Qi; You, Hong。 Environmental Science and Pollution Research. 2016, 23(3). (IF=2.760)
19 A triangular fuzzy TOPSIS- based approach for the application of water technologies in different emergency water supply scenarios.Qu, Jianhua; Meng, Xianlin; You, Hong. Environmental Science and Pollution Research. 2016, 23(17). (IF=2.760)
20 Advanced treatment of coking wastewater by heterogeneous photo-Fenton technology with Cu/Fe oxide catalysts. Zhang, Ran; You, Hong; Wu, Donghai. Desalination and Water Treatment. 2016, 57(26): 12010-12018. (IF=1.173)
21 Developmental toxicity and DNA damage to zebrafish induced by perfluorooctane sulfonate in the presence of ZnO nanoparticles.Du, Jia; Wang, Shutao; You, Hong; Jiang, Ruip. Environmental Toxicology. 2016, 31(3): 360-371. (IF=2.973)
22 Effects of ZnO nanoparticles on perfluorooctane sulfonate induced thyroid-disrupting on zebrafish larvae. Du, J.; Wang, S. T.; You, H.; Liu, ZQ. Journal of Environmental Sciences. 2016, 47: 153-164. (IF=2.865)
23 Multi-stage ranking of emergency technology alternatives for water source pollution accidents using a fuzzy group decision making tool。Qu, Jianhua; Meng, Xianlin; You, Hong. Journal of Hazardous Materials. 2016, 310: 153-164. (IF=6.065)
24 Photoelectrocatalytic reduction of perchlorate in aqueous solutions over Ag doped TiO2 nanotube arrays. Jia, Y. H.; Ye, L.; Kang, X.; You, H; Wang, ST. Journal of Photochemistry and Photobiology a-Chemistry. 2016, 328: 225-232. (IF=2.477)
2015
25 Assessment of the surface water quality ranking in Mudan River using multivariate statistical techniques.Liu, Baoling; Li, Gang; You, Hong; Sui, Mingrui. Water Science and Technology: Water Supply. 2015, 15(3): 606-616(IF: 0.394)
26 Enhanced photocatalytic activity for the degradation of rhodamine B by integrating salinity gradient power into a photocatalytic fuel cell. Sui, Mingrui; Dong, Yue; You, Hong. RSC Advances. 2015, 5(114):94184-94190 (IF: 3.840)
27 Mechanisms of competitive adsorption organic pollutants on hexylene-bridged polysilsesquioxane. Lin, De-Rong; Hu, Li-Jiang; Xing, Bao-Shan; You, Hong; Loy, Douglas A. Materials. 2015, 8(9): 5806-5817(IF: 2.065)
28 The impact of zinc oxide nanoparticles on nitrification and the bacterial community in activated sludge in an SBR. Wang, S.T.; Li, S.P.; Wang, W.Q.; You, H. RSC Advances. 2015, 5(82): 67335-67342(IF:3.840,EI收錄)
2014
29 TiO2 modified with Ag nanoparticles synthesized via ultrasonic atomization-UV reduction and the use of kinetic models to determine the acetic acid photocatalytic degradation. Yingcao Xu, Hong You*. Applied Surface Science. 2014, 321: 481-487(IF:2.538)
30 Oxidation products and degradation pathways of 4-chlorophenol by catalytic ozonation with MnOx/g-Al2O3/TiO2 as catalyst in aqueous solution. Qi, Lili; Yao, Jie; You, Hong*; et al. Journal of Environmental Science and Health Part A. 2014, 49(3): 327-337 (IF: 1.252)
31 Spatial distribution and temporal trends of polycyclic aromatic hydrocarbons (PAHs) in water and sediment from Songhua River, China. Xuesong Zhao, Jing Ding, Hong You*. Environ Geochem Health. 2014, 36(1): 131-143(IF:2.076)
32 Comparison of new periodic, mesoporous, hexylene-bridged poly- silsesquioxanes with Pm3n symmetry versus sol–gel polymerized, hexylene- bridged gels. Derong Lin, Lijiang Hu, Hong You*, Stephanie H. Tolbert, Douglas A. Loy. Journal of Non-Crystalline Solids. 2014, 406: 139–143(IF:1.766)
33 Developmental toxicity and DNA damage to zebrafish induced by perfluorooctane sulfonate in the presence of ZnO nanoparticles.Du, Jia; Wang, Shutao; You, Hong*; Jiang, Rui; Zhuang, Changlu; Zhang, Xiaohui. Environmental Toxicology, 2014, (SCI收錄/IF:2.708,EI收錄)
34 Evaluation of dynamic groundwater quality simulation based on Cloud-GIS: a case study in Harbin urban area, China. Baoling Liu, Gang Li, Hong You*, Mingrui Sui and Shutao Wang. Water Science & Technology: Water Supply. 2014, 14(6): 1095-1014(IF: 0.505)
35 Binding of the veterinary drug tetracycline to bovine hemoglobin and toxicological implications. Chi, Zhenxing; Liu, Rutao; You, Hong; et al. Journal of environmental science and health. Part. B, Pesticides, food contaminants, and agricultural wastes. 2014, 49(12): 978-984(IF:1.234)
36 Probing the In Vitro Cytotoxicity of the Veterinary Drug Oxytetracycline. Chi, Z. X.; Liu, R. T.; You, H.; Ma, SS; Cui, H; Zhang, Q. PLoS One. 2014, 9(7): 8(IF:3.534)
37 Modification of a Phenolic Resin with Epoxy- and Methacrylate- Functionalized Silica Sols to Improve the Ablation Resistance of Their Glass Fiber-Reinforced Composites. Yu Hu, Wenlong Geng, Hong You, You Wang, and Douglas A. Loy. Polymers. 2014, 6: 105-113(IF:1.687,EI收錄)
會議論文:
1 NH4+-N Removal From Waste Seawater By Struvite Precipitation Using Response Surface Methodology For Process Optimization. Song weilong, Hong You, Li zhipeng. IWA World Water Congress and Exhibition. 2016-10-10
2 全氟辛烷基磺酸鉀(PFOS)和納米氧化鋅(Nano-ZnO)復(fù)合暴露對斑馬魚肝臟、鰓、腦氧化損傷的影響 劉征; 杜佳; 王樹濤; 尤宏 2016 International Conference on Nanotechnology and Materials Science (NANOMS2016) 國際會議 2016-07-28
3 Transparency and absorbance of the SiO2/TiO2 modified (γ-glycidoxypropyl)-silsesquioxane films and its validation by computing method. Y. Hu, D. Wang, H. You. 244th American Chemical Society National Meeting, August 19-23, 2012
4 Degradation of 4-chlorophenol simulated bio-chemical effluent from coal gasification industry by catalytic ozonation. Qi Lili; You Hong; Zhang Ran; Zhao Xuesong. 5th International Conference on Bioinformatics and Biomedical Engineering, iCBBE. 2011
5 Design of a POSS-modified zeolite structure and the study of the enhancement of ammonia-nitrogen removal from drinking Water. Hu, L.; Wang, D.; Lin, D.; Zhang, Q.; You, H.; Shetty, K. Technical Proceedings of the 2010 NSTI Nanotechnology Conference and Expo, NSTI-Nanotech 2010
6 單、雙擋板多光源三相內(nèi)循環(huán)流化床光催化反應(yīng)器的流場模擬及其比較 尤宏; 陳其偉; 劉婷; 齊洪波 中國環(huán)境科學(xué)學(xué)會2009年學(xué)術(shù)年會中國會議 2009-06