(1)Jianhai Zhao, Shiyu Liu, Yongzhi Chi, Na Feng Magnesium hydroxide coagulation performance and floc properties in treating kaolin suspension under high pH, Desalination and Water Treatment, (53)2015,579-585 (2)Jianhai Zhao, Runxi Su, Xiaoyu Guo, Wenpu Li, Na Feng,Role of mixing conditions on coagulation performance and flocs breakage formed by magnesium hydroxide,Journal of the Taiwan Institute of Chemical Engineers, (45)2014,1685-1690 (3)Jianhai Zhao, Wenpu Li , Xiumei Jiao ,Yanping Lai , Xiaoyu Guo,Floc growth kinetics in magnesium hydroxide coagulation process,Desalination and Water Treatment, (52)2014, 4334–4341 (4)Lei Wei, Jianhai Zhao, Chang Xu, Meile Liu, Experimental analysis of magnesium hydroxide-reactive orangefloc formation time and rate in coagulation process, Journal of the Taiwan Institute of Chemical Engineers,(45)2014,2605-2609 (5)Shiyu Liu, Jianhai Zhao,Removal of reactive dyes from wastewater by magnesium hydroxide coagulation assisted with ultrasonic,Advanced Materials Research. 2013,(790) 77-80. (6)Yanping Lai, Jianhai Zhao, The numerical simulation study of a flocculation reactor, Applied Mechanics and Materials, 2013,(260-261),1022-1025. (7)Xuening Fei,Wanqing Li, Lingyun Cao, Jianhai Zhao,Yuan Xia, Degradation of bromamine acid by a heterogeneous Fenton-like catalyst Fe/Mn supported on sepiolite, Desalination and Water Treatment,2013,51(22-24):4750-4757. (8)Jianhai Zhao , Wei Lin, Qigang Chang, et al. Effects of operational conditions on the floc formation time and rate in magnesium hydroxide coagulation process, Desalination and Water Treatment, 2012,45(1-3), 153-160. (9)Jianhai Zhao, Wei Lin, Qigang Chang, et al. Adsorptive characteristics of akaganeite and its environmental applications: A review, Environmental Technology Reviews,2012,1(1),114-126. (10)Jianhai Zhao,Yanping Lai, Surface Modification and Preparation of High Purity Nanometer Magnesium Hydroxide Using Impinging Stream, Materials Science Forum,2011, (675-677):847-851. (11)Zhao Jianhai, Lai Yanping, Experimental analysis of floc formation time and order in coagulation process, Advanced Materials Research,2010,(113-114) 1058-1062. (12) Meile Liu, Jingfang Lu, Lei Wei, Kang Wang, Jianhai Zhao,Magnesium hydroxide coagulation performance and floc properties in treating high pH reactive orange wastewater,Water Science and Technology, 71(2015)1310-1316. (13)徐畅(研究生),赵建海,赵晶星,微波协同条件下钾长石低温提钾工艺研究,无机盐工业,(7)2015,24-28. (14)焦秀梅,郭晓玉,赵建海,刘诗雨,封娜,超声波对氢氧化镁混凝性能及絮体特性影响,环境工程学报,(7)2013,4811-4815. (15)李文朴,郭晓玉,封娜,赵建海,刘诗雨,氯化镁复配硫酸铝混凝性能及絮体特性,环境工程学报,(8)2014,983-989. (16)李文朴,郭晓玉,封娜,赵建海,氯化镁复配氯化铁混凝性能及絮体特性,工业水处理,(34)2014,41-45. (17)封娜,李文朴,赵建海,郭晓玉,氢氧化镁混凝性能及絮体特性研究,环境工程学报,2013,7(5)1749-1753. (18)郭晓玉(研究生),赵建海,刘文娟,封娜,李文朴,混合条件对氢氧化镁混凝性能及絮体特性影响,环境科学与技术,2012,35(6I),89-92. (19)刘文娟(研究生),赵建海,李文朴,封娜,氢氧化镁混凝过程絮体形成研究,环境污染与防治,2011,33(10):43-47. (20)于泊蕖,吕树芳,赵建海,氢氧化镁处理含镍废水条件探索及机理研究,工业安全与环保,2011,37(1):10-11. (21)赵建海,刘夕清,刘连生,混凝过程絮体开始形成和开始沉降时间研究,环境污染与防治,2009,31(7):62-65. (22)赵建海,刘连生,赵连梅,纳米氢氧化镁表面改性研究,盐湖研究,2009,17(4):41-45. (23)李文朴,刘天顺,赵建海,给水厂排泥水处理研究,中国科技信息,2009,(13):26-28. (24)赵建海,李毓,高富,刘连生,撞击流制备高纯纳米氢氧化镁技术研究,无机盐工业,2007,39(8):22-24. (25)赵连梅、赵建海,张强,油酸钠对纳米氢氧化镁的表面改性研究,消防科学与技术,2007,26(1):80-82. (26)赵建海,刘连生,焦秀梅,水氯镁石制备阻燃级氢氧化镁技术研究,2006绿色化学科学与工程和过程系统工程国际论坛,2006.10,1377-1382. (27)赵建海,汪瑾,宋兴福,于建国,六氨氯化镁初级成核研究,化工学报,2005,56(2):281-284. (28)赵建海,王相田,宋兴福,于建国,反应结晶制备六氨氯化镁粒度分布研究,华东理工大学学报,2005,31(3):323-326. (29)Xiangtian Wang, Jianhai Zhao, Xiongfu Song,Preparation of Anhydrous Magnesium Chloride from Bischofite (MgCl2·6H2O) I. Reaction Crystallization of Magnesium Chloride Hexammoniate,Materials Science Forum 2005,488-489:57-60 . (30)赵建海,宋兴福,陆强,汪瑾,于建国,张大年,氢氧化镁在环境污染治理中的应用研究进展,环境污染治理技术与设备,2002,3(5).66-69. (31)赵毅,马双忱,李燕中,赵建海,利用粉煤灰吸收剂对烟气脱硫脱氮的实验研究,中国电机工程学报,2002,22(3):108-112. (32)赵毅,赵建海,马双忱,黄建军,高活性吸收剂去除二氧化硫的实验研究,华北电力大学学报,2001,28(1)72-75. (33)Zhao Jianhai, Yu Jianguo, Zhao Yi, The prospect of fly ash for flue gas treatment,International conference on solid waste control and resource utilization,2001.11,Changsha, China. |