承担的科研项目
研究团队承担项目60余项,其中国家及省级项目30余项,企业事业单位项目30余项。
[1] 国家自然科学基金面上项目:嗜盐好氧颗粒污泥中丝状真菌爆发性生长导致的颗粒失稳机制及其调控策略;
[2] 国家自然科学基金面上项目:外源磁场强化嗜盐古菌Haloferax mediterranei代谢有机废水生产PHA及其生物磁效应机制;
[3] 国家自然科学基金面上项目:Haloferax mediterranei代谢有机废水合成PHA和EPS的竞争机制及其强化PHA的定向调控;
[4] 国家自然科学基金面上项目:嗜盐混合菌群处理高盐有机废水过程中PHA积累机制及其种群生态研究;
[5] 国家自然科学基金面上项目:高盐废水短程脱氮的工艺控制策略及其微生物生态机理研究;
[6] 国家重点研发计划:城镇污水厌氧氨氧化深度脱氮技术及菌群优化调控;
[7] 国家科技重大专项:重点区域分散型点源处理及小流域综合整治长效机制研究与产业化示范;
[8] 国家高技术研究发展计划(863计划):节能降耗城市污水处理装备与过程控制系统集成及示范;
[9] 北京市自然科学基金面上项目:嗜盐混合菌代谢高盐有机废水合成PHA组分的影响机制及其定向调控;
[10] 北京市自然科学基金面上项目:分散回用体系TDS积累下脱氮种群演替规律与种群优化;
[11] 北京市教育委员会面上项目:高盐废水嗜盐污泥短程脱氮及其种群优化研究;
[12] 北京市教委人才强教项目:嗜盐古菌PHA强化生产技术研究;
[13] 生态环境部清洁生产审核创新试点项目:顺义区汽车制造行业清洁生产审核创新试点项目;
[14] 北京市生态环境局污染源防治技术重点项目:重点行业挥发性有机物污染防治水平及减排路径筛选;
[15] 首创环境重点研发项目:复合梯级生物膜强化脱氮耦合污泥减量工艺开发项目;
[16] 首发集团科技研发项目:可移动式应急污水处理设备研究开发项目;
[17] 交通部科学研究院研发项目: 伊犁河大桥桥面径流污染物归趋与绿色公路环境保护项目;
[18] 昌平区突发环境事件风险管理项目:突发环境事件应急预案规划;
[19] 中国航空工业规划建设科技攻关项目:航空工业电镀、荧光与乳化液高难处理废水处理关键技术与集成;
[20] 中国同仁堂科技攻关项目:川乌类中药材炮制废水生物解毒处理技术、工艺与成套化研究;
[21] 生态环境部清洁生产审核创新试点项目:京津冀区域清洁生产协同审核创新试点项目;
[22] 京津冀区域绿色发展重点研发项目:“北京城市副中心(通州区)—河北省廊坊市”一体化高质量发展示范区医药制造行业清洁生产区域协同绿色发展创新项目;
[23] 北京市生态环境局污重点项目:通州区重点园区典型行业VOCs精细化管控技术;
[24] 北京市生态环境局污重点项目:北京市典型医药行业企业碳排放规律与减排潜力研究;
[25] 京津冀区域清洁生产协同审核重点项目:京津冀医药制造行业整体清洁审核技术方法与应用研究。
学术论文
发表学术论文100余篇。
[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,ESI高被引)
[2] Yang RC, Cui YW,Li ZY,Li MT. 2025. Molecular identification of heterotrophic nitrification and aerobic denitrification bacteria: From methods development to application demonstration. Water Research. (JCR Q1,中科院1区, IF=12.8)
[3] Liang HK, Cui YW, Yan HJ , Li ZY. 2025. Recovery of disintegrated halophilic aerobic granular sludge through ferric ion addition: Dual roles in filamentous fungal inhibition and microbial adhesion enhancement.Water Research. (JCR Q1,中科院1区, IF=12.8)
[4] Mi YN, Cui YW,Zhou DX,Yan HJ,Jiang LX,Li MT. 2025. Alkalinity role in recovery of disintegrated halophilic aerobic granular sludge treating high salt-alkali wastewater: Insights into community ecology of fungi and bacteria [J].Chemical Engineering Journal. (JCR Q1,中科院1区, IF=13.2)
[5] Zhou DX, Cui YW,Mi YN,Jiang LX, Li MT. 2025. by magnetic powders: Combination effects of particle interface toxicity and magnetic microbe [J].Chemical Engineering Journal. (JCR Q1,中科院1区, IF=13.2)
[6] Huang JL, Cui YW. Chen C. 2025. 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=13.2)
[7] 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=13.2)
[8] 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=13.2)
[9] Huang JL, Cui YW,Yan JL, 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=13.2)
[10] Li ZY, Cui YW,Yan HJ, Liang HK, Yang RC. 2025. A salt-tolerant tetracycline degrading fungal strain of Candida palmioleophila: Characterization and degradation pathway. Journal of Hazardous Materials (JCR Q1,中科院1区, IF=11.3)
[11] Li ZY, Cui YW,Liang HK, Yan HJ, Yang RC. 2025. Tetracycline degradation by a mixed culture of halotolerant fungi-bacteria under static magnetic field: Mechanism and antibiotic resistance genes transfer. Journal of Hazardous Materials (JCR Q1,中科院1区, IF=11.3)
[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[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6,ESI高被引)
[13] Liu XZ, Cui YW,Huang MQ, Sui Y. 2026. Simultaneous removal of phenol and ammonium from coking wastewater by fungi-bacteria mixed culture under static magnetic field [J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[14] Lu ZY, Cui YW,Mi YN, Gu XY, Yang RC, Su MX, Li JY. 2026. Salinity decrease leads to recovery of filamentous bacterial bulking in moderately halophilic aerobic granules: Unraveling the role of fungi [J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[15] Zhou DX, Cui YW,Mi YN, Li ZY ,Yang RC, Sui Y. 2025.Magnetic biochar-cored halophilic aerobic granules: Novel strategy for rapid formation and structural stability enhancement[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[16] Yan HJ, Cui YW, Chen J, Liang HK, Li ZY. 2025.Unraveling microbial community ecology and its effects on function and structure of halophilic aerobic granular sludge under varying salinities[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[17] Wang L, Cui YW. 2024. Simultaneous treatment of epichlorohydrin wastewater and polyhydroxyalkanoates recovery by halophilic aerobic granular sludge highly enriched by Halomonas sp [J].. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[18] 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=9.6)
[19] Xu MJ, Cui YW, Huang MQ, Sui Y. 2024. Simultaneous inorganic nitrogen and phosphate removal by aerobic-heterotrophic fungus Fusarium keratoplasticum FSP1: Performance, pathway and application[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[20] Xu MJ, Cui YW. 2024. Simultaneous aerobic nitrogen and phosphorus removal by novel halotolerant fungus Mucor circinelloides SNDM1: Function and metabolism pathway[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[21] 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[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[22] 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[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[23] Yan HJ, Cui YW.2022. Promoting enrichment of sulfur-oxidizing autotrophic denitrifiers via static magnetic fields: Performance and mechanism of magnetic biological effects[J].Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[24] Cui Y, Cui YW, Huang JL. 2021. A novel halophilic Exiguobacterium mexicanum strain removes nitrogen from saline wastewater via heterotrophic nitrification and aerobic denitrification[J]. Bioresource Technology. (JCR Q1,中科院1区, IF=9.6)
[25] 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=8.5)
[26] Yan HJ, Cui YW, Chen S, Wang X. 2024.Effects of magnetic field exposure patterns on polyhydroxyalkanoates synthesis by Haloferax mediterranei at extreme hypersaline context: Carbon distribution and salt tolerance. International Journal of Biological Macromolecules. (JCR Q1,中科院1区, IF=8.5)
[27] Sui Y, Cui YW,Yang RC,Mi YN,Gu XY, Li JY, Su MX. 2026.Alkalinity change induces succession of heterotrophic and autotrophic nitrifying bacterial communities: Comprehensive insights on the mechanism. Journal of Environmental Management. (JCR Q1,中科院2区, IF=8.4)
[28] Gu XY, Cui YW,Sui Y, Li JY, Su MX, Lu ZY, Yang RC. 2026.Enhancement role of corncob slow-release carbon source on heterotrophic nitrification and aerobic denitrification process in low C/N wastewater treatment. Journal of Environmental Management. (JCR Q1,中科院2区, IF=8.4)
[29] 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)
[30] Yan HJ, Cui YW, Sui Y, Yan JT, Gu XY, Yang RC, Su MX, Lu ZY 2026. A heterotrophic nitrification and aerobic denitrification strain capable of antibiotic degradation: From function to mechanism. Environmental Pollution. (JCR Q1,中科院2区, IF=8.1)
授权发明专利
授权发明专利30余项。
[1] 崔有为,卢盼盼. 一种促进PHA积累菌群在可再生废水中富集的方法.发明专利(202211224968.3).
[2] 崔有为,陈君. 一种利用外源磁场恢复真菌型膨胀嗜盐颗粒污泥的方法.发明专利(202211223203.8).
[3] 崔有为,黄镁淇. 一株具有高盐废水同化脱氮功能的中度嗜盐菌及其应用.发明专利(202210719750.9).
[4] 崔有为,黄镁淇. 一株同步异养硝化好氧反硝化除磷菌及其应用.发明专利(202111390164.6).
[5] 崔有为,陈思. 一种促进嗜盐古菌Haloferax mediterranei合成甜菜碱的方法.发明专利(202110926345.X).
[6] 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).
[7] 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.发明专利(202110093244.9).
[8] 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).
[9] 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).
[10] 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).
[11] 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).
[12] 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).
[13] 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).
[14] 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).
[15] 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).
[16] 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).
[17] 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).
[18] 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).
[19] 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).
[20] 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).