Liu Qing Zhang Mei Han Kechang Cao Ruihua, . RESEARCH PROGRESS ON BIOSYNTHESIS OF IRON NANOPARTICLES[J]. ENVIRONMENTAL ENGINEERING , 2015, 33(3): 163-167. doi: 10.13205/j.hjgc.201503032
Citation:
Liu Qing Zhang Mei Han Kechang Cao Ruihua, . RESEARCH PROGRESS ON BIOSYNTHESIS OF IRON NANOPARTICLES[J]. ENVIRONMENTAL ENGINEERING , 2015, 33(3): 163-167. doi: 10.13205/j.hjgc.201503032
Liu Qing Zhang Mei Han Kechang Cao Ruihua, . RESEARCH PROGRESS ON BIOSYNTHESIS OF IRON NANOPARTICLES[J]. ENVIRONMENTAL ENGINEERING , 2015, 33(3): 163-167. doi: 10.13205/j.hjgc.201503032
Citation:
Liu Qing Zhang Mei Han Kechang Cao Ruihua, . RESEARCH PROGRESS ON BIOSYNTHESIS OF IRON NANOPARTICLES[J]. ENVIRONMENTAL ENGINEERING , 2015, 33(3): 163-167. doi: 10.13205/j.hjgc.201503032
RESEARCH PROGRESS ON BIOSYNTHESIS OF IRON NANOPARTICLES
Abstract
With various preparing methods emerged,there has been a fast development in nanoparticals preparing techniques.
Biological method become a popularized object to research by scholars because of many advantages of biosynthetic nanoparticles
such as a wide source of raw materials,mild reaction conditions,nonagglomerated nanoparticles,and less toxic byproducts.
The synthesis methods and mechanism of iron nanoparticals by using microorganism and plant extracts at domestic and abroad
are expounded,and application of iron nanoparticles in the field of environmental protection were reviewed. Finally,the indepth
study on synthesis method of iron nanopaticals in the future was prospected.
References
Relative Articles
[1] YE Ning, LU Hao, SHI Chen, LÜ Yizheng, QIAN Yisen, TIAN Jinping, ZHANG Suyi, HU Yongqi, LEI Xiangyun, CHEN Lüjun. UNCOVERING LIFE CYCLE ENVIRONMENTAL IMPACTS OF NEW PROCESSES ON RESOURCES AND ENERGY RECOVERY OF BAIJIU DISTILLER’S GRAINS [J]. ENVIRONMENTAL ENGINEERING , 2024, 42(1): 135-143. doi: 10.13205/j.hjgc.202401018
[2] YUAN Lei, YANG Zanxian, LONG Haixiao, CHEN Guoping, LI Qiangjun, WU Xiaowei. ANALYSIS OF SPATIOTEMPORAL EVOLUTION OF WATER RESOURCES CARRYING CAPACITY IN KUNMING BASED ON ENTROPY WEIGHT METHOD AND MARKOV MODEL [J]. ENVIRONMENTAL ENGINEERING , 2023, 41(6): 202-209. doi: 10.13205/j.hjgc.202306027
[3] CHEN Wenting, SU Jing, ZHANG Huihui, ZHENG Mingxia, XI Beidou. MULTI-ATTRIBUTE DECISION-MAKING METHOD OPTIMIZATION AND SCHEME EVALUATION OF WATER ENVIRONMENTAL CARRYING CAPACITY IN THE BAIYANGDIAN LAKE BASIN [J]. ENVIRONMENTAL ENGINEERING , 2023, 41(1): 120-131. doi: 10.13205/j.hjgc.202301015
[4] ZHI Liehui, ZHANG Zhe, BAI Junhong, LI Xiaowen. RESEARCH ON THE CARRYING CAPACITY OF TOURISM ENVIRONMENT IN THE YELLOW RIVER DELTA [J]. ENVIRONMENTAL ENGINEERING , 2023, 41(1): 132-140,163. doi: 10.13205/j.hjgc.202301016
[5] JIE Chao, WANG Si-si, LÜ Bin. ENVIRONMENTAL IMPACT ANALYSIS OF PERMEABLE CEMENT CONCRETE PAVEMENT IN BEIJING BASED ON LIFE CYCLE ASSESSMENT [J]. ENVIRONMENTAL ENGINEERING , 2022, 40(9): 118-125. doi: 10.13205/j.hjgc.202209016
[6] CHEN Wenting, XIA Qing, SU Jing, ZHENG Mingxia, XI Beidou, XIANG Wei. EVALUATION AND EARLY WARNING OF WATER ENVIRONMENTAL CARRYING CAPACITY IN BAIYANGDIAN BASIN BASED ON TIME-DIFFERENCE CORRELATION ANALYSIS AND FUZZY NEURAL NETWORK [J]. ENVIRONMENTAL ENGINEERING , 2022, 40(6): 261-271. doi: 10.13205/j.hjgc.202206033
[7] JIAO Xu-dong, WU Jia, WANG Tao, WU Na, FENG Qiang, FU Ze-qiang, DU Huan-zheng. RESEARCH ON SOLID WASTE CLASSIFICATION AND RESOURCE UTILIZATION BASED ON LIFE CYCLE MANAGEMENT [J]. ENVIRONMENTAL ENGINEERING , 2021, 39(10): 201-206,170. doi: 10.13205/j.hjgc.202110029
[8] JIA Shao-hua, LIU Shuang, LIU Da-jun. DISCUSION ON ENVIRONMENTAL IMPACT ASSESSMENT, POLLUTANT DISCHARGE PERMIT AND LAW ENFORCEMENT MANAGEMENT OF THE TAILINGS PONDS IN CHINA [J]. ENVIRONMENTAL ENGINEERING , 2021, 39(10): 197-200,212. doi: 10.13205/j.hjgc.202110028
[9] WANG Jie, XU Yang, ZHANG Xi-hua, DENG Yi, LI Shu-yuan, WANG Jing-wei. RESEARCH ON ENVIRONMENTAL MANAGEMENT POLICIES FOR ELECTRONIC WASTE BASED ON EXTENDED PRODUCER RESPONSIBILITY IN CHINA [J]. ENVIRONMENTAL ENGINEERING , 2021, 39(12): 141-147. doi: 10.13205/j.hjgc.202112021
[10] CHEN Da-yang, ZHANG Na, CHEN Ke. EVALUATION ON PERFORMANCE OF WATER ENVIRONMENT PROJECTS IN GUANGZHOU-FOSHAN CROSS-BORDER AREA BASED ON CONTROL UNITS DIVISION [J]. ENVIRONMENTAL ENGINEERING , 2020, 38(3): 105-109. doi: 10.13205/j.hjgc.202003018
[11] ZHANG Qing, MO Hua, XU Hai-hong, WU Jia-yu, SHUAI Wei. PRESENT SITUATION OF CO-COMBUSTION OF WASTE AND COAL IN POWER PLANTS AND SUGGESTIONS ON ENVIRONMENTAL MANAGEMENT [J]. ENVIRONMENTAL ENGINEERING , 2020, 38(6): 202-207. doi: 10.13205/j.hjgc.202006033
[17] Jia Peng, Wang Qinggai, Zhang Di, Jiang Chong, Zhu Lei, Li Shibei. RESEARCH ON KEY TECHNOLOGY IN DEVELOPMENT OF EFDC MODEL BASED ON
WATER ENVIRONMENTAL MANAGEMENT INFORMATION SYSTEM [J]. ENVIRONMENTAL ENGINEERING , 2015, 33(7): 131-134.
[18] Li Xinyao, Zhang Zhongwang, Wen Lanling. STUDY ON WATER RESOURCES CARRYING CAPACITY IN XIANGYANG CITY BASED ON
MIDDLE ROUTE OF CHINA’S SOUTH-TO-NORTH WATER DIVERSION PROJECT [J]. ENVIRONMENTAL ENGINEERING , 2015, 33(6): 121-124. doi: 10.13205/j.hjgc.201506027
Cited by Periodical cited type(1) 1. 牟雪洁, 饶胜, 张箫, 朱振肖, 黄金. 生态承载力与产业一致性评价综述. 环境生态学. 2019(04): 15-22 .
Other cited types(1)
Proportional views
Created with Highcharts 5.0.7 Amount of access Chart context menu Abstract Views, HTML Views, PDF Downloads Statistics Abstract Views HTML Views PDF Downloads 2024-05 2024-06 2024-07 2024-08 2024-09 2024-10 2024-11 2024-12 2025-01 2025-02 2025-03 2025-04 0 2.5 5 7.5 10 12.5 15
Created with Highcharts 5.0.7 Chart context menu Access Class Distribution FULLTEXT : 15.6 % FULLTEXT : 15.6 % META : 84.4 % META : 84.4 % FULLTEXT META
Created with Highcharts 5.0.7 Chart context menu Access Area Distribution 其他 : 22.4 % 其他 : 22.4 % 上海 : 2.0 % 上海 : 2.0 % 北京 : 7.1 % 北京 : 7.1 % 台州 : 3.1 % 台州 : 3.1 % 嘉兴 : 1.0 % 嘉兴 : 1.0 % 天津 : 1.0 % 天津 : 1.0 % 成都 : 1.0 % 成都 : 1.0 % 昆明 : 1.0 % 昆明 : 1.0 % 朝阳 : 1.0 % 朝阳 : 1.0 % 杭州 : 3.1 % 杭州 : 3.1 % 芒廷维尤 : 28.6 % 芒廷维尤 : 28.6 % 芝加哥 : 2.0 % 芝加哥 : 2.0 % 苏州 : 1.0 % 苏州 : 1.0 % 衢州 : 1.0 % 衢州 : 1.0 % 西宁 : 19.4 % 西宁 : 19.4 % 贵阳 : 1.0 % 贵阳 : 1.0 % 郑州 : 1.0 % 郑州 : 1.0 % 重庆 : 1.0 % 重庆 : 1.0 % 铜仁 : 2.0 % 铜仁 : 2.0 % 其他 上海 北京 台州 嘉兴 天津 成都 昆明 朝阳 杭州 芒廷维尤 芝加哥 苏州 衢州 西宁 贵阳 郑州 重庆 铜仁