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蓖麻油基季铵盐的合成及凹凸棒石对工业废水处理的改性

Synthesis of Castor Oil-Based Quaternary Ammonium Salt and Modification of Attapulgite for Treating Industrial Wastewaters.

作者信息

Yan Xiuhua, Ding Jianfei, Shi Wenyan, Tang Lanqin, Zhang Yidong, Xu Wei

机构信息

School of Chemistry and Chemical Engineering, Yancheng Institute of Technology, Yancheng 224051, China.

出版信息

Materials (Basel). 2023 Apr 29;16(9):3468. doi: 10.3390/ma16093468.

Abstract

In order to develop multifunctional quaternary ammonium salts and explore their advantages as modifiers for wastewater treatment, castor oil-based quaternary ammonium salts were synthesised and subsequently used as modifiers for attapulgite treatment. The structures of untreated and treated attapulgite were compared by Fourier transform infrared spectra and X-ray diffraction. The mechanism of modification was speculated. Various factors such as the amount of modified attapulgite, temperature and pH were also investigated in the batch experiments on the removal rates of acetone and phenol from wastewaters. The synthesis conditions were set as follows: the reaction temperature was 80 °C, the reaction time was 8 h, the molar ratio of castor oil to N,N-dimethyl-1,3-propanediamine was 1:5, the catalyst was 6% NaOH and the product yield was about 64.72%. The grafting rate of the castor oil-based quaternary ammonium salt was about 99.6% when the amount of modifier was 0.69 g per 5 g of attapulgite, the ultrasound treatment time was 11 min and the pH was 5. The quaternary ammonium salt was only associated with the surface of attapulgite and did not change the rod-like crystal structure of the silicate. The modified attapulgite is much more fibrous and exhibits a good distribution of crystal bundles. The removal rates were found to be less favourable under strongly acidic and strongly alkaline conditions. Under suitable conditions, for 50 mL industrial wastewaters (phenol: 100-160 mg/L; acetone: 680-800 mg/L), the amount of modified attapulgite was 1 g, the temperature was 80 °C and the pH was 7, and the maximum removal rates of acetone and phenol after 80 min reached about 65.71% and 78.72%, respectively, which were higher than those of ATP.

摘要

为了开发多功能季铵盐并探索其作为废水处理改性剂的优势,合成了蓖麻油基季铵盐,并随后将其用作凹凸棒石处理的改性剂。通过傅里叶变换红外光谱和X射线衍射比较了未处理和处理后的凹凸棒石的结构。推测了改性机理。在去除废水中丙酮和苯酚的间歇实验中,还研究了改性凹凸棒石用量、温度和pH值等各种因素。合成条件设定如下:反应温度为80℃,反应时间为8小时,蓖麻油与N,N-二甲基-1,3-丙二胺的摩尔比为1:5,催化剂为6%的NaOH,产物产率约为64.72%。当改性剂用量为每5g凹凸棒石0.69g、超声处理时间为11min且pH值为5时,蓖麻油基季铵盐的接枝率约为99.6%。季铵盐仅与凹凸棒石表面结合,未改变硅酸盐的棒状晶体结构。改性凹凸棒石的纤维性更强,晶体束分布良好。发现在强酸性和强碱性条件下去除率不太理想。在合适的条件下,对于50mL工业废水(苯酚:100 - 160mg/L;丙酮:680 - 800mg/L),改性凹凸棒石用量为1g,温度为80℃,pH值为7,80min后丙酮和苯酚的最大去除率分别达到约65.71%和78.72%,均高于凹凸棒石原土。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a794/10180249/25e630f8943e/materials-16-03468-g001.jpg

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