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生物可用型纳米磁珠的制备和改性研究 被引量:2
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作者 胡琼璨 宁静恒 +3 位作者 刘振国 张伟锋 刘龙 王建辉 《食品与机械》 CSCD 北大核心 2016年第3期53-59,118,共8页
纳米磁珠在生物医学领域应用日益广泛,但仍存在尺寸不均、分散性差、改性过程中强磁性难以保持和功能化程度偏低等缺点。为克服上述缺点,首先制备尺寸均匀的Fe_3O_4超细强磁核,再先后利用正硅酸乙酯、3-氨丙基三乙氧基硅烷对其进行功能... 纳米磁珠在生物医学领域应用日益广泛,但仍存在尺寸不均、分散性差、改性过程中强磁性难以保持和功能化程度偏低等缺点。为克服上述缺点,首先制备尺寸均匀的Fe_3O_4超细强磁核,再先后利用正硅酸乙酯、3-氨丙基三乙氧基硅烷对其进行功能改性,分别得到硅羟基化磁珠Fe_3O_4@SiO_2和氨基化磁珠Fe_3O_4@SiO_2—NH_2,最后研究Fe_3O_4制备及改性过程中其磁性、分散稳定性、功能化程度的影响因素。结果表明,在室温及氮气保护下,氨水量50mL,浓度1mol/L时,Fe_3O_4磁性最强,达到56eum/g,乙醇中稳定分散8d;正硅酸乙酯量0.5mL时,所得硅羟基化磁珠磁性为30eum/g,在乙醇中可稳定分散12d;甲苯中70℃下,所得氨基化磁珠磁性仍有25eum/g,乙醇中可稳定分散14d,且其氨基接枝率达2.306mmol/g,高于文献报道值;因而,该研究所得的改性纳米磁珠具有更好的分散性及更强的磁性,且其表面携带丰富的羟基或氨基活性基团,更易与各种有机活性分子作用,具有广阔的生物医药应用前景。 展开更多
关键词 FE3O4 纳米磁珠 功能化
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Efficient adsorption removal and adsorption mechanism of basic fuchsin by recyclable Fe_(3)O_(4)@CD magnetic microspheres 被引量:3
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作者 NING Jing-heng CHEN Dong-er +6 位作者 LIU Yong-le HUANG Shou-en WANG Fa-xiang WEI Rui HU Qiong-can WEI Jia-qian SUN Chang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第12期3666-3680,共15页
Excessive discharge of dye wastewater has brought serious harm to human health and the environment.In this paper,a magnetic absorbent,ferroferric oxide@β-cyclodextrin(Fe_(3)O_(4)@CD),was prepared for the efficient ad... Excessive discharge of dye wastewater has brought serious harm to human health and the environment.In this paper,a magnetic absorbent,ferroferric oxide@β-cyclodextrin(Fe_(3)O_(4)@CD),was prepared for the efficient adsorption removal of basic fuchsin(BF)from dye wastewater,based on the special amphiphilicity ofβ-CD and the strong magnetism of Fe_(3)O_(4).A series of influence factors including the initial dye concentration,adsorbent dosage,temperature and pH were investigated,as well as the adsorption mechanism.The results show that Fe_(3)O_(4)@CD has the best adsorption and removal effect on BF dye at room temperature and neutral pH,when the initial concentration of dye is 25 mg/L and the adsorbent dosage is 100 mg.The adsorption behavior conforms to the pseudo-second-order kinetics and the Langmuir adsorption isotherm,and the adsorption process is spontaneously endothermic.Fe_(3)O_(4)@CD adsorbed with BF dye can be rapidly separated under an external magnetic field and then easily regenerated by HCl treatment.After 5 times of recycling,the removal rate of the prepared magnetic composite on BF dye is kept above 75%.This work will provide an economic and eco-friendly technology for the treatment of the actual dye wastewater. 展开更多
关键词 Fe_(3)O_(4)@CD magnetic microspheres adsorption removal basic fuchsin
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