科研成果
1、发表的部分学术论文
[1] Huang MQ, Cui YW※, Huang JL, Sun FL, Chen S. 2022. A novel Pseudomonas aeruginosa strain performs simultaneous heterotrophic nitrification-aerobic denitrification and aerobic phosphate removal. Water Research. (JCR Q1,中科院1区, IF=12.8)
[2] Huang MQ, Cui YW※. 2024. Simultaneous aerobic nitrogen and phosphate removal by Pseudomonas aeruginosa SNDPR-01: Comprehensive insights on metabolic potential and mechanisms [J]. Chemical Engineering Journal. (JCR Q1,中科院1区, IF=15.1)
[3] Huang JL, Cui YW※, Chen C. 2024. Overgrowth of filamentous fungi in halophilic activated granule sludge reactivated after refrigeration: Insights into bacterial-fungal interactions [J]. Chemical Engineering Journal. (JCR Q1,中科院1区, IF=15.1)
[4] Gao ZL, Cui YW※, Sui Y, Yang HJ. 2023. Unveiling the mechanism of static magnetic field effects on carbon flux into polyhydroxyalkanoate synthesis by Haloferax mediterranei. Chemical Engineering Journal. (JCR Q1,中科院1区, IF=15.1)
[5] Huang JL, Cui YW※, Cui Y. 2022. Occurrence of heterotrophic nitrification-aerobic denitrification induced by decreasing salinity in a halophilic AGS SBR treating hypersaline wastewater. Chemical Engineering Journal. (JCR Q1,中科院1区, IF=15.1)
[6] Lu PP, Cui YW※, Yang HJ, Cui YB, Chen ZB. 2024. Spatial separation of nitrifiers and denitrifiers promotes selection and enrichment of polyhydroxyalkanoates storing mixed cultures fed by crude glycerol and propionate wastewater. International Journal of Biological Macromolecules. (JCR Q1,中科院1区, IF=8.2)
[7] Wang L, Cui YW※. 2024. Mutualistic symbiosis of fungi and nitrogen-fixing bacteria in halophilic aerobic granular sludge treating nitrogen-deficient hypersaline organic wastewater [J]. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[8] Xu MJ, Cui YW※, Huang MQ, Sui Y. 2023. Simultaneous inorganic nitrogen and phosphate removal by aerobic-heterotrophic fungus Fusarium keratoplasticum FSP1: Performance,pathway and application. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[9] Sui Y, Cui YW※, Huang JL, Xu MJ. 2023. Feast/famine ratio regulates the succession of heterotrophic nitrification-aerobic denitrification and autotrophic ammonia oxidizing bacteria in halophilic aerobic granular sludge treating saline wastewater. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[10] Wang L, Cui YW※. 2024. Simultaneous treatment of epichlorohydrin wastewater and polyhydroxyalkanoates recovery by halophilic aerobic granular sludge highly enriched by Halomonas sp. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[11] Chen J, Cui YW※, Huang MQ, Yan HJ, Li D. 2023. Static magnetic field increases aerobic nitrogen removal from hypersaline wastewater in activated sludge with coexistence of fungi and bacteria. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[12] Huang MQ, Cui YW※, Yang HJ, Xu MJ, Cui YB, Chen ZB. 2023. A halophilic aerobic-heterotrophic strain Halomonas venusta SND-01: Nitrogen removal by ammonium assimilation and heterotrophic nitrification-aerobic denitrification. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[13] Yan HJ, Cui YW※, Han SC. 2022. Promoting enrichment of sulfur-oxidizing autotrophic denitrifiers via static magnetic fields: Performance and mechanism of magnetic biological effects. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[14] Cui Y, Cui YW※, Huang JL. 2021. A novel halophilic Exiguobacterium mexicanum strain removes nitrogen from saline wastewater via heterotrophic nitrification and aerobic denitrification. Bioresource Technology. (JCR Q1,中科院1区, IF=11.4)
[15] Huang JL, Wang HH, Alam F, Cui YW※. 2019. Granulation of halophilic sludge inoculated with estuarine sediments for saline wastewater treatment [J]. Science of The Total Environment. (JCR Q1,中科院1区, IF=9.8)
[16] Han SC, Cui YW※, Yan HJ, Cui YB, Chen ZB. 2023. Enhancing simultaneous nitrate and phosphate removal in sulfur‑iron (II) autotrophic denitrification biofilters by endogenous magnetic fields: Performance and mechanism. Journal of Water Process Engineering, 53: 103767. (JCR Q1,中科院2区, IF=7.0)
[17] Wang L, Cui YW※, Li J, Yao JL. 2022. Spontaneous granulation of moderately halophilic sludge inoculated with saltern sediments from single granule into multi-granule aggregation. Environmental Research. (JCR Q1,中科院2区, IF=8.3)
[18] Chen S, Cui YW※, Huang MQ. 2022. Coupling magnetic field and salinity upshock to improve polyhydroxyalkanoate productivity by Haloferax mediterranei feeding on molasses wastewater. Applied and Environmental Microbiology. (JCR Q2,中科院2区, IF=4.4)
[19] Cui YW※, Huang JL, Alam F. 2021. Fast granulation of halophilic activated sludge treating low-strength organic saline wastewater via addition of divalent cations. Chemosphere. (JCR Q1,中科院2区, IF=8.8)
[20] Pacholak A, Gao ZL, Gong XY, Kaczorek, E, Cui YW※. 2021. The metabolic pathways of polyhydroxyalkanoates and exopolysaccharides synthesized by Haloferax mediterranei in response to elevated salinity. Journal of Proteomics. (JCR Q2,中科院2区, IF=3.3)
[21] Cui YW※, Zhang H, Ji S, Wang Z. 2017. Kinetic Analysis of the Temperature Effect on Polyhydroxyalkanoate Production by Haloferax mediterranei in Synthetic Molasses Wastewater [J]. Journal of Polymers and the Environment. (JCR Q2,中科院2区, IF=5.3)
[22] Cui YW※, Zhang HY, Ding JR, Peng YZ. 2016. The effects of salinity on nitrification using halophilic nitrifiers in a Sequencing Batch Reactor treating hypersaline wastewater [J]. Scientific Reports. (JCR Q2,中科院2区, IF=4.6)
[23] Cui YW※, Zhang H Y, Lu P F, Peng Y Z. 2016. Effects of carbon sources on the enrichment of halophilic polyhydroxyalkanoate-storing mixed microbial culture in an aerobic dynamic feeding process [J]. Scientific Reports. (JCR Q2,中科院2区, IF=4.6)
[24] Sun FL, Cui YW※, Jian L, Yao JL. 2022. Sludge retention time effects on recovery of soluble organic matters via polyhydroxyalkanoate storage in contact stabilization process under feast/famine regime. Journal of Chemical Technology and Biotechnology. (JCR Q2,中科院4区, IF=3.4)
[25] Yan JL, Cui YW※, Huang JL. 2021. Continuous flow reactors for cultivating aerobic granular sludge: configuration innovation, principle and research prospect [J] . Journal of Chemical Technology and Biotechnology. (JCR Q2,中科院4区, IF=3.4)
[26] Zhao J, Cui YW※, Zhang HY, Gao ZL. 2021. Carbon source applied in enrichment stage of mixed microbial cultures limits the substrate adaptability for PHA fermentation using the renewable carbon [J]. Applied Biochemistry and Biotechnology. (JCR Q3,中科院3区, IF=3.0)
[27] Li YL, Alam F, Cui YW※. 2021. Red mud reuse for phosphate adsorption via zirconium modification: performance, kinetics, and mechanism [J]. Desalination and Water Treatment. (JCR Q4,中科院4区, IF=1.1)
[28] Cui YW※, Shi Y, Gong X. 2017. Effects of C/N in the substrate on the simultaneous production of polyhydroxyalkanoates and extracellular polymeric substances byHaloferax mediterraneivia kinetic model analysis [J]. RSC Advance. (JCR Q2,中科院3区, IF=3.9)
[29] Cui YW※, Gong X, Shi Y, Wang Z D. 2017. Salinity effect on production of PHA and EPS byHaloferax mediterranei[J]. RSC Advance. (JCR Q2,中科院3区, IF=3.9)
[30] Cui YW※, Su H, Chen Y, Chen Y, Peng Y. 2015. Mechanism of Activated Sludge Floc Disintegration Induced by Excess Addition of NaCl [J]. Clean-Soil Air Water. (JCR Q4,中科院4区, IF=1.7)
授权发明专利
授权发明专利20余项。
[1]崔有为,崔媛.一株异养硝化-好氧反硝化嗜盐菌及其在环境保护中的应用.发明专利(202110120552.6).
[2]崔有为,闫金磊.一种促进好氧颗粒污泥快速形成的连续流反应器装置及运行方法(一种促进好氧颗粒污泥快速形成的连续流运行方法).发明专利(202110093244.9).
[3]崔有为,闫慧娟.一种快速富集反硝化硫氧化菌群的方法.发明专利(202110071863.8).
[4]崔有为,黄基霖.一种促进嗜盐活性污泥菌群分泌胞外聚合物的方法.发明专利(202010444571.X).
[5]崔有为,徐康康,闫慧娟. A/O耦合硫自养反硝化强化低碳氮比污水脱氮除磷装置和方法.发明专利(202010605275.3).
[6]崔有为,高则亮.一种提高Haloferax mediterranei发酵聚羟基脂肪酸酯产量的方法.发明专利(202010696966.9).
[7]崔有为,王好韩,黄基霖.一种啤酒废水有机质主流回收生产PHA的反应装置与方法.发明专利(202010748305.6).
[8]崔有为,黄基霖.一种培养处理高盐废水嗜盐颗粒污泥的方法.发明专利(201910130004.4).
[9]崔有为,方钰文,冉登宇,相辰樟,张嘉辉.桥面径流污染处理一体化装置及处理方法.发明专利(201710291368.1).
[10]崔有为,冀思远.嗜盐混合菌连续处理糖蜜酒精废水生产PHA的方法.发明专利(201410324491.5).
[11]崔有为,张宏宇.一种以测量COD间接确定渗透探伤废水中荧光物质浓度的方法.发明专利(201410234549.7).
[12]崔有为,丁洁然.一种高盐废水短程脱氮生物处理的装置及方法.发明专利(201110026645.3).
[13]崔有为,丁洁然.一种高盐废水短程脱氮生物处理的装置.实用新型专利(201120026645.4).
[14]崔有为,陈叶菲,苏贺.一种提高淡水活性污泥硝化菌群耐盐能力的装置.实用新型专利(201120435063.1).
[15]崔有为,陈永宝.一种提高淡水活性污泥硝化菌群耐盐能力的方法.发明专利(201110346190.9).
3、标准编制
[1]《再生水热泵系统工程技术规范》(DB11/T 1254—2022)
[2]《清洁生产评价指标体系高等学校》(DB11/T 1264—2023)