首页|C-CNF表面改性电气石及其分散稳定性

C-CNF表面改性电气石及其分散稳定性

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这是一篇矿物加工工程领域的论文.电气石具有自发极化效应、热释电性、远红外辐射和负离子释放等效应被广泛应用.为了增加其在水性涂料中的分散稳定性,改善其在水性涂料中的使用性能,本实验采用羧基化纳米纤维素(C-CNF)对电气石进行表面接枝改性,并对实验条件进行了优化.实验结果表明,当C-CNF的添加量为2 g、反应温度为50℃、反应时间为2 h、固液比为1∶5时,改性电气石的性能达到较佳值,其浊度达到1361 ntu,接触角达到了 53°.通过对改性电气石的结构进行表征,发现C-CNF成功接枝到了电气石表面,改性电气石在水性介质中的分散性得到较大的提升.
C-CNF Surface Modified Tourmaline and its Dispersion Stability
This is an article in the field of mineral processing engineering.Tourmaline has been widely used for its spontaneous polarity,pyroelectric effect,far-infrared radiation and negative-ion release effect.In order to increase its stability in water-based coatings and improve its performance in water-based coatings,in this work,the surface modification of tourmaline with carboxylated nanolocellulose(C-CNF)was studied and optimized.The test results show that the performance of modified tourmaline was optimal while the addition of C-CNF was 2 g,solid-to-liquid ratio 1:5,and reacted 2h at 50 ℃,its turbidity reached 1361 ntu,contact angle to 53°.It was found that C-CNF was successfully grafted to the tourmaline surface by means of characterization of the modified tourmaline,and the dispersion of the modified tourmaline in the aqueous medium was better improved.

Mineral processing engineeringTourmalineSurface modificationCarboxylated nanofluloseDispersing stability

庞宝宝、胡应模、张震、崔奎、武莎莎、郭素芳

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中国地质大学(北京)材料科学与工程学院,非金属矿物和固废资源材料化利用北京市重点实验室,岩石矿物材料国家专业实验室,北京 100083

矿物加工工程 电气石 表面改性 羧基化纳米纤维素 分散稳定性

2024

矿产综合利用
中国地质科学院矿产综合利用研究所

矿产综合利用

CSTPCD
影响因子:0.643
ISSN:1000-6532
年,卷(期):2024.45(2)
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