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All-into-one strategy to synthesize mesoporous hybrid silicate microspheres from naturally rich red palygorskite clay as high-efficient adsorbents

机译:从天然富含红色坡缕石粘土作为高效吸附剂合成介孔杂化硅酸盐微球的全方位策略

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摘要

A mesoporous hybrid silicate microsphere with superior adsorption performance has been successfully synthesized by employing an “all-into-one” strategy and a simple one-pot hydrothermal process using naturally abundant low-grade red palygorskite (PAL) clay as raw material in the presence of non-toxic SiO32− and Mg2+ ions. As is expected, both the PAL and associated minerals transformed into a new amorphous mesoporous hybrid silicate microsphere without using any additional pore-forming template. The mesoporous silicate microsphere shows a large pore size of 37.74 nm, high specific surface area of 489.81 m2/g (only 54.67 m2/g for raw PAL) and negative surface potential of −43.3 mV, and its maximum adsorption capabilities for Methylene bule (MB) and Crystal violet (CV) reach 407.95 mg/g and 397.22 mg/g, respectively. Meanwhile, 99.8% of MB (only 53% for raw PAL) and 99.7% of CV (only 43% for raw PAL) were sucessfully removed from 200 mg/L of initial dye solution by only using 1 g/L of the adsorbent. In addition, the spent adsorbent can be easily regenerated and repeatly reused for muptiple cycles. The study on adsorption mechanism revealed that electrostatic attraction, hydrogen bonding and chemical complexing interactions are the main factors contributed to the high dye adsorption.
机译:采用“多合一”策略和简单的一锅水热法,以天然富集的低品位红色坡缕石(PAL)为原料,成功地合成了具有优异吸附性能的介孔杂化硅酸盐微球。无毒的SiO3 2-和Mg 2 + 离子的分析不出所料,PAL和相关矿物均转化为新的无定形介孔杂化硅酸盐微球,而无需使用任何其他成孔模板。介孔硅酸盐微球具有37.74 37nm的大孔径,高比表面积489.81 m 2 / g(原始PAL仅54.67 m 2 / g)和负值。表面电势为−43.3 mV,其对亚甲基蓝(MB)和结晶紫(CV)的最大吸附能力分别达到407.95gmg / g和397.22 mg / g。同时,仅使用1μg/ L的吸附剂就成功地从200μmg/ L的初始染料溶液中去除了99.8%的MB(对于原始PAL来说只有53%)和99.7%的CV(对于PAL来说只有43%)。另外,用过的吸附剂可以容易地再生并重复多次循环使用。吸附机理的研究表明,静电吸引,氢键和化学络合相互作用是导致高染料吸附的主要因素。

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