发表论文
[1] Qi Yu, Zhiming Yu, Xiuxian Song, Xihua Cao, Wenbin Jiang, Yanyang Chu. The synthesis of an acrylamide copolymer and its synergistic effects on clay flocculation of red tide organisms. JOURNAL OF ENVIRONMENTAL MANAGEMENT[J]. 2023, 332: http://dx.doi.org/10.1016/j.jenvman.2023.117326.[2] Song, Weijia, Song, Xiuxian, Cheng, Ruihong, Chi, Lianbao, Zhu, Jianan, Yu, Zhiming. Uncovering the regulation effect of modified clay on toxin production in Alexandrium pacificum: From physiological insights. JOURNAL OF HAZARDOUS MATERIALS[J]. 2023, 454: http://dx.doi.org/10.1016/j.jhazmat.2023.131516.[3] 王文涛, 俞志明, 宋秀贤, 郭宏红, 任向征. 球形棕囊藻同化吸收硝酸盐的氮氧稳定同位素分馏研究. 海洋与湖沼[J]. 2023, 54(1): 67-74, http://lib.cqvip.com/Qikan/Article/Detail?id=7108824236.[4] Shanshan Liu, Zhiming Yu, Zaixing Wu, Xihua Cao, Ruihong Cheng, Xiuxian Song. Algicidal substances of Brevibacillus laterosporus and their effect on red tide organisms. FRONTIERS IN MARINE SCIENCE[J]. 2023, 10: https://doaj.org/article/b34eecc39f624f50b6b901b79b294a74.[5] Mingyong Wang, Bowen Zhang, Xihua Cao, Fang Li, Xiuxian Song, Zhiming Yu. Influence of Algal Organic Matter on Algal Removal Efficiency by Flocculation of Modified Clay. JOURNAL OF MARINE SCIENCE AND ENGINEERING[J]. 2023, 11(613): https://doaj.org/article/cb6a8a77b6be4468938f5b2dfbbff50a.[6] Zhiming Yu, Yingzhong Tang, Christopher J Gobler. Harmful algal blooms in China: History, recent expansion, current status, and future prospects. HARMFUL ALGAE. 2023, 129: http://dx.doi.org/10.1016/j.hal.2023.102499.[7] Jianan Zhu, Zhiming Yu, Liyan He, Yongquan Yuan, Wentao Wang, Xihua Cao, Nansheng Chen, Wei Wang, Xiuxian Song. Mechanisms of Phaeocystis globosa blooms in the Beibu Gulf revealed by metatranscriptome analysis. HARMFUL ALGAE[J]. 2023, 124: http://dx.doi.org/10.1016/j.hal.2023.102407.[8] Liyan He, Zhiming Yu, Xin Xu, Jianan Zhu, Yongquan Yuan, Xihua Cao, Xiuxian Song. Metabarcoding analysis identifies high diversity of harmful algal bloom species in the coastal waters of the Beibu Gulf. ECOLOGY AND EVOLUTION[J]. 2023, 13(5): https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10202623/.[9] Hui Li, Zhiming Yu, Xihua Cao, Xiuxian Song. Chitosan modification and its synergism with clay to mitigate harmful algal blooms. ENVIRONMENTAL TECHNOLOGY & INNOVATION[J]. 2023, 29: http://dx.doi.org/10.1016/j.eti.2023.103028.[10] Mingjiao Wang, Xihua Cao, Bowen Zhang, Qinglin Mu, Xiuxian Song, Zhiming Yu. Single source with series modifications: New method for preparing modified clay to control harmful algae blooms. MATERIALS & DESIGN[J]. 2023, 232: 112077-, http://dx.doi.org/10.1016/j.matdes.2023.112077.[11] Weijia Song, Xiuxian Song, Huihui Shen, Yu Ding, Ruihong Cheng, Zhiming Yu. Degradation of paralytic shellfish toxins during flocculation of Alexandrium pacificum by an oxidized modified clay: A laboratory experiment. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY[J]. 2023, 253: http://dx.doi.org/10.1016/j.ecoenv.2023.114667.[12] Zang, Xiaomiao, Yu, Zhiming, Jiang, Wenbin, Song, Xiuxian, Cao, Xihua. Dosage-effectiveness of modified clay flocculating red tide organisms: Mechanical mechanism and mathematical model. SEPARATION AND PURIFICATION TECHNOLOGY[J]. 2023, 305: http://dx.doi.org/10.1016/j.seppur.2022.122422.[13] Jianan Zhu, Zhiming Yu, Liyan He, Yuxin Jiang, Xihua Cao, Xiuxian Song. The molecular mechanisms and environmental effects of modified clay control algal blooms in aquacultural water. JOURNAL OF ENVIRONMENTAL MANAGEMENT. 2023, 337: http://dx.doi.org/10.1016/j.jenvman.2023.117715.[14] 刘姗姗, 俞志明, 曹西华, 宋秀贤. 微生物治理有害藻华研究进展. 海洋科学[J]. 2023, 47(6): 96-107, http://lib.cqvip.com/Qikan/Article/Detail?id=7110298163.[15] Kaiqin Jiang, Zhiming Yu, Xihua Cao, Xiuxian Song, Xiaomiao Zang, Lianbao Chi, Wenbin Jiang. An optimization strategy for highly efficient flocculation and capture of algal cells: Controlling dosing patterns of modified clay. ENVIRONMENTAL TECHNOLOGY & INNOVATION. 2023, 32: http://dx.doi.org/10.1016/j.eti.2023.103359.[16] Fan Xin, Cheng Fangjin, Yu Zhiming, Song Xiuxian. Diatom-based dissolved inorganic nitrogen reconstruction in the Changjiang River estuary and its adjacent areas. JOURNAL OF OCEANOLOGY AND LIMNOLOGY[J]. 2023, 41(4): 1464-1480, http://sciencechina.cn/gw.jsp?action=detail.jsp&internal_id=7551331&detailType=1.[17] 孟晓君, 宋秀贤, 张悦, 宋维佳, 张培培, 申慧慧, 俞志明. 改性粘土对虾夷扇贝(Mizuhopecten yessoensis)体内麻痹性贝毒的影响. 海洋与湖沼[J]. 2022, 53(3): 616-624, [18] Wentao Wang, Zhiming Yu, Xiuxian Song, Chi, Lianbao, Zhou, Peng, Zaixing Wu, Yongquan Yuan. Hypoxia formation in the East China Sea by decomposed organic matter in the Kuroshio Subsurface Water. Marine Pollution Bulletin[J]. 2022, [19] 宋维佳, 宋秀贤, 俞志明, 李靖, 张悦. 海洋中麻痹性贝类毒素的合成转化及其影响因素研究进展. 海洋科学[J]. 2022, 46(9): 117-129, http://lib.cqvip.com/Qikan/Article/Detail?id=7108242796.[20] Ding, Yu, Song, Xiuxian, Yu, Zhiming. Transcriptome profiles of genes related to growth and virulence potential in Vibrio alginolyticus treated with modified clay. MICROBIOLOGICAL RESEARCH[J]. 2022, 262: [21] 刘正宇, 俞志明, 宋秀贤, 曹西华. 对虾池塘养殖过程中纤毛虫的动态变化及改性粘土防控初探. 海洋与湖沼[J]. 2022, 53(5): 1121-1130, [22] 吴峰, 宋秀贤, 池连宝, 王文涛, 俞志明. 近海养殖水体溶解性有机质的荧光特征及环境指示意义. 海洋与湖沼[J]. 2022, 53(3): 597-606, [23] Zhengyu Liu, Zhiming Yu, Xihua Cao, Wenbin Jiang, Yongquan Yuan, Xiuxian Song. An environmentally friendly material for red tide algae removal: Performance and mechanism. FRONTIERS IN MARINE SCIENCE[J]. 2022, 9: https://doaj.org/article/d2b006ae2bc34dd6b70e463396b15684.[24] Peipei Zhang, xiuxian song, Yue Zhang, Jianan Zhu, Huihui Shen, zhiming yu. Assessing the Effect of Modified Clay on the Toxicity of Karenia mikimotoi Using Marine Medaka ( Oryzias melastigma ) as a Model Organism. TOXICS[J]. 2022, 10(3): 1-19, [25] 钟雨霞, 俞志明, 刘姗姗, 曹西华, 宋秀贤. 芽孢杆菌(Bacillus)及其复合粘土对典型赤潮生物的去除作用研究. 海洋与湖沼[J]. 2022, 53(5): 1089-1097, [26] Ruihong Cheng, Xiuxian Song, Weijia Song, Zhiming Yu. A New Perspective: Revealing the Algicidal Properties of Bacillus subtilis to Alexandrium pacificum from Bacterial Communities and Toxins. MARINE DRUGS[J]. 2022, 20(624): https://doaj.org/article/4fb648d0db214043bebc276ac501981c.[27] Lianbao Chi, Yu Ding, Liyan He, Zaixing Wu, Yongquan Yuan, Xihua Cao, Xiuxian Song, Zhiming Yu. Application of modified clay in intensive mariculture pond: Impacts on nutrients and phytoplankton. FRONTIERS IN MARINE SCIENCE[J]. 2022, 9: https://doaj.org/article/6fcada3f61e14c8f8908cab3eacdbe85.[28] Wang, Zhongshi, Yu, Zhiming, He, Liyan, Zhu, Jianan, Liu, Lidong, Song, Xiuxian. Establishment and preliminary study of electrophysiological techniques in a typical red tide species. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2022, 840: [29] Ren, Xiangzheng, Yu, Zhiming, Song, Xiuxian, Zhu, Jianan, Wang, Wentao, Cao, Xihua. Effects of modified clay on the formation of Phaeocystis globosa colony revealed by physiological and transcriptomic analyses. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2022, 838: http://dx.doi.org/10.1016/j.scitotenv.2022.155985.[30] Liyan He, Zhiming Yu, Jianan Zhu, Xihua Cao, Xiuxian Song. Nanostructure and Nanomechanics of Prorocentrum donghaiense and Their Changes Under Nitrogen Limitation by Atomic Force Microscopy. Frontiers in Marine Science[J]. 2022, 9: 1-12, [31] Shen, Huihui, Song, Xiuxian, Zhang, Yue, Zhang, Peipei, Li, Jing, Song, Weijia, Yu, Zhiming. Profiling of Brevetoxin Metabolites Produced by Karenia brevis 165 Based on Liquid Chromatography-Mass Spectrometry. TOXINS[J]. 2021, 13(5): http://dx.doi.org/10.3390/toxins13050354.[32] Xueyi Dong, Xihua Cao, Wenbin Jiang, Xiuxian Song, Zhiming Yu, Shitao Yu. Profiles of and variations in aluminum species in PAC-MC used for the removal of blooming microalgae. JOURNAL OF ENVIRONMENTAL SCIENCES[J]. 2021, 106(8): 76-82, http://dx.doi.org/10.1016/j.jes.2021.01.008.[33] Song, Huiyin, Chen, Yang, Gibson, Kate, Liu, Shuya, Yu, Zhiming, Chen, Nansheng. High genetic diversity of the harmful algal bloom species Phaeocystis globosa revealed using the molecular marker COX1. HARMFUL ALGAE[J]. 2021, 107: http://dx.doi.org/10.1016/j.hal.2021.102065.[34] Hena Ji, Zhiming Yu, Liyan He, Jianan Zhu, Xihua Cao, Xiuxian Song. Programmed cell death induced by modified clay in controlling Prorocentrum donghaiense bloom. Journal of Environmental Sciences[J]. 2021, 109: 123-134, [35] Xiangzheng Ren, Zhiming Yu, Lixia Qiu, Xihua Cao, Xiuxian Song. Effects of Modified Clay on Phaeocystis globosa Growth and Colony Formation. INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH[J]. 2021, 18: [36] 宋维佳, 宋秀贤, 李靖, 张悦, 申慧慧, 张培培, 俞志明. 改性粘土絮凝后残留的太平洋亚历山大藻(Alexandrium pacificum)毒素变化研究. 海洋与湖沼[J]. 2021, 52(4): 917-924, [37] 丁玉, 宋秀贤, 曹西华, 俞志明. 不同类型改性粘土去除米氏凯伦藻(Karenia mikimotoi)后絮体中细菌变化特点研究. 海洋科学[J]. 2021, 45(7): 46-56, [38] Jiang, Wenbin, Yu, Zhiming, Cao, Xihua, Jiang, Kaiqin, Yuan, Yongquan, Anderson, Donald M, Song, Xiuxian. Effects of soluble organics on the settling rate of modified clay and development of improved clay formulations for harmful algal bloom control. ENVIRONMENTAL POLLUTION[J]. 2021, 289: http://dx.doi.org/10.1016/j.envpol.2021.117964.[39] Zhang, Peipei, Song, Xiuxian, Zhang, Yue, Shen, Huihui, Dong, Xueyi, Li, Jing, Yu, Zhiming. Effect of Modified Clay on the Growth Dynamics and Physio-Biochemical Response of Newly Hatched Larvae of the Marine Medaka (Oryzias melastigma). JOURNAL OF MARINE SCIENCE AND ENGINEERING[J]. 2021, 9(8): [40] Ding, Yu, Song, Xiuxian, Cao, Xihua, He, Liyan, Liu, Shanshan, Yu, Zhiming. Healthier Communities of Phytoplankton and Bacteria Achieved via the Application of Modified Clay in Shrimp Aquaculture Ponds. INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH[J]. 2021, 18(21): http://dx.doi.org/10.3390/ijerph182111569.[41] 刘姗姗, 俞志明, 宋秀贤, 曹西华, 袁涌铨. 微生物复合改性粘土去除东海原甲藻(Prorocentrum donghaiense)初探. 海洋与湖沼[J]. 2021, 52(5): 1170-1179, http://lib.cqvip.com/Qikan/Article/Detail?id=7106115889.[42] Zhu, Jianan, Yu, Zhiming, He, Liyan, Cao, Xihua, Ji, Hena, Song, Xiuxian. Mechanism by Which MC Controls Harmful Algal Blooms Revealed by Cell Morphology of Aureococcus anophagefferens. INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH[J]. 2021, 18(21): http://dx.doi.org/10.3390/ijerph182111191.[43] 吴婷, 曹西华, 俞志明, 宋秀贤, 姜文彬, 袁涌铨, 吴在兴, 贺立燕, 范子初. DPQAC-PAC-MC复合改性粘土在不同介质中的絮凝行为研究. 海洋与湖沼[J]. 2021, 52(1): 106-113, http://lib.cqvip.com/Qikan/Article/Detail?id=7103974486.[44] 姜凯钦, 俞志明, 曹西华, 姜文彬, 宋秀贤. 铁铝复合改性粘土去除藻华生物的效率与机制初探. 海洋与湖沼[J]. 2021, 657-664, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFDAUTO&filename=HYFZ202103011&v=MTM2ODNOZExHNEhORE1ySTlFWllSOGVYMUx1eFlTN0RoMVQzcVRyV00xRnJDVVI3dWZZZVJ2RkNqbVc3ekpMVFQ=.[45] Chi, Lianbao, Song, Xiuxian, Ding, Yu, Yuan, Yongquan, Wang, Wentao, Cao, Xihua, Wu, Zaixing, Yu, Zhiming. Heterogeneity of the sediment oxygen demand and its contribution to the hypoxia off the Changjiang estuary and its adjacent waters. MARINE POLLUTION BULLETIN[J]. 2021, 172: http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000700609200009.[46] Song, Xiuxian, Zhang, Yue, Yu, Zhiming. An eco-environmental assessment of harmful algal bloom mitigation using modified clay. HARMFUL ALGAE[J]. 2021, 107: http://dx.doi.org/10.1016/j.hal.2021.102067.[47] Chi, Lianbao, Song, Xiuxian, Yuan, Yongquan, Wang, Wentao, Cao, Xihua, Wu, Zaixing, Yu, Zhiming. Main factors dominating the development, formation and dissipation of hypoxia off the Changjiang Estuary (CE) and its adjacent waters, China. ENVIRONMENTAL POLLUTION[J]. 2020, 265: http://dx.doi.org/10.1016/j.envpol.2020.115066.[48] 王文涛, 俞志明, 宋秀贤, 吴在兴, 袁涌铨. 长江口邻近海域氮同位素的周日变化特征及其对营养盐过程的指示. 海洋与湖沼[J]. 2020, 51(4): 909-918, http://lib.cqvip.com/Qikan/Article/Detail?id=7102346663.[49] Yu Zhiming. Study on the Mechanism of a New Type of Modified Clay Controlling Phaeocystis globosa Growth. Journal of Oceanology and Limnology. 2020, [50] Song, Huiyin, Liu, Feng, Li, Zelin, Xu, Qing, Chen, Yang, Yu, Zhiming, Chen, Nansheng. Development of a high-resolution molecular marker for tracking Phaeocystis globosa genetic diversity through comparative analysis of chloroplast genomes. HARMFUL ALGAE[J]. 2020, 99: http://dx.doi.org/10.1016/j.hal.2020.101911.[51] Zhang, Yue, Song, Xiuxian, Shen, Huihui, Cao, Xihua, Yuan, Yongquan, Wu, Zaixing, Yu, Zhiming. The Effects of Modified Clay on Abalone (Haliotis discus hannai) Based on Laboratory and Field Experiments. ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY[J]. 2020, 39(10): 2065-2075, https://www.webofscience.com/wos/woscc/full-record/WOS:000572516400019.[52] Xu, Xin, Yu, Zhiming, He, Liyan, Cao, Xihua, Chen, Nansheng, Song, Xiuxian. Metabolic analyses by metatranscriptomics highlight plasticity in phosphorus acquisition during monospecific and multispecies algal blooms. HYDROBIOLOGIA[J]. 2020, 847(4): 1071-1085, https://www.webofscience.com/wos/woscc/full-record/WOS:000512772400007.[53] Qiu, Lixia, Yu, Zhiming, Cao, Xihua, Ji, Hena, Song, Xiuxian. The mechanism of a new type of modified clay controllingPhaeocystis globosagrowth. JOURNAL OF OCEANOLOGY AND LIMNOLOGY[J]. 2020, 38(4): 1270-1282, http://lib.cqvip.com/Qikan/Article/Detail?id=7102292178.[54] Li Jing, Song Xiuxian, Fan Xin, Yu Zhiming. Flocculation of Ulva microscopic propagules using modified clay: a mesocosm experiment. JOURNAL OF OCEANOLOGY AND LIMNOLOGY[J]. 2020, 38(4): 1283-1291, http://lib.cqvip.com/Qikan/Article/Detail?id=7102292179.[55] 邱丽霞, 俞志明, 宋秀贤, 贺立燕, 曹西华, 于志刚. 改性粘土对球形棕囊藻的消除研究. 海洋与湖沼[J]. 2019, 100-105, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFDLAST2019&filename=HYFZ201901010&v=MDc5NTMzcVRyV00xRnJDVVI3cWVaK1J2Rml6bVU3ekxMVFROZExHNEg5ak1ybzlFWklSOGVYMUx1eFlTN0RoMVQ=.[56] FAN Xin, CHENG Fangjin, YU Zhiming, SONG Xiuxian. The environmental implication of diatom fossils in the surface sediment of the Changjiang River estuary(CRE) and its adjacent area. 海洋湖沼学报(英文)[J]. 2019, 37(2): 552-567, http://lib.cqvip.com/Qikan/Article/Detail?id=7001541477.[57] 张培培, 宋秀贤, 李靖, 俞志明. 改性粘土絮凝法对大西洋鲑(Salmo salar)存活及生理生化的影响初探. 海洋与湖沼[J]. 2019, 50(3): 684-691, http://lib.cqvip.com/Qikan/Article/Detail?id=7002022121.[58] Li, Jing, Song, Xiuxian, Zhang, Yue, Xu, Xin, Yu, Zhiming. Effect of modified clay on the transition of paralytic shellfish toxins within the bay scallop Argopecten irradians and sediments in laboratory trials. AQUACULTURE[J]. 2019, 505: 112-117, http://ir.qdio.ac.cn/handle/337002/154956.[59] Zhang Yue, Song Xiuxian, Yu Zhiming, Zhang Peipei, Cao Xihua, Yuan Yongquan. Impact assessment of modified clay on embryo-larval stages of turbot Scophthalmus maximus L.. JOURNAL OF OCEANOLOGY AND LIMNOLOGY[J]. 2019, 37(3): 1051-1061, http://lib.cqvip.com/Qikan/Article/Detail?id=7001986367.[60] Lv, Xuning, Wu, Zaixing, Song, Xiuxian, Yuan, Yongquan, Cao, Xihua, Yu, Zhiming. Nutritional strategy for the preferential uptake of NO3--N by Phaeocystis globosa. HYDROBIOLOGIA[J]. 2019, 846(1): 109-122, https://www.webofscience.com/wos/woscc/full-record/WOS:000504323100009.[61] Wu Zaixing, Yu Zhiming, Song Xiuxian, Cao Xihua, Yuan Yongquan. Application and comparison of two symptom-based eutrophication-assessment methods in Jiaozhou Bay, China. JOURNAL OF OCEANOLOGY AND LIMNOLOGY[J]. 2019, 37(5): 1582-1594, https://www.webofscience.com/wos/woscc/full-record/WOS:000484533400010.[62] 袁涌铨, 吕旭宁, 吴在兴, 贺成, 宋秀贤, 曹西华, 俞志明. 北部湾典型海域关键环境因子的时空分布与影响因素. 海洋与湖沼[J]. 2019, 50(3): 579-589, http://lib.cqvip.com/Qikan/Article/Detail?id=7002022111.[63] Yu Zhiming. Nutritional strategy for the preferential uptake of NO3--N by Phaeocystis globose. Hydrobiologia. 2019, [64] 俞志明, 陈楠生. 国内外赤潮的发展趋势与研究热点. 海洋与湖沼[J]. 2019, 50(3): 474-486, http://lib.cqvip.com/Qikan/Article/Detail?id=7002022102.[65] Wu, Zaixing, Yu, Zhiming, Song, Xiuxian, Wang, Wentao, Zhou, Peng, Cao, Xihua, Yuan, Yongquan. Key nitrogen biogeochemical processes in the South Yellow Sea revealed by dual stable isotopes of nitrate. ESTUARINE COASTAL AND SHELF SCIENCE[J]. 2019, 225: http://dx.doi.org/10.1016/j.ecss.2019.05.004.[66] Zaixing Wu, Zhiming Yu, Xiuxian Song, Xihua Cao, Yongquan Yuan. Application and comparison of two symptom-based eutrophication-assessment methods in Jiaozhou Bay, China. 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