Li Shulei, Liao Yinfei, Li Guosheng, Li Zhen, Cao Yijun
School of Chemical Engineering and Technology, China University of Mining & Technology, Xuzhou, Jiangsu 221116, China; National Engineering Research Center of Coal Preparation and Purification, Xuzhou, Jiangsu 221116, China E-mail:
National Engineering Research Center of Coal Preparation and Purification, Xuzhou, Jiangsu 221116, China E-mail:
Water Sci Technol. 2017 Jul;76(3-4):694-704. doi: 10.2166/wst.2017.260.
Thermal-sensitive polymers have been tested on settling, compacting or dewatering of clays or oil sand tailings. However, not much attention has been paid to explore the effect of temperature on flocculating performance using thermal-sensitive polymers. In this study, poly(NIPAM-co-DMAPMA) was synthesized and employed to investigate the flocculating and re-flocculating performance of hydrophilic and hydrophobic particles at two specific temperatures; meanwhile settling and dewatering behaviors were also investigated. The results demonstrated that good flocculating performances were achieved at both room temperature (∼23 °C) and lower critical solution temperature (45 °C). Furthermore, larger flocs were formed at 45 °C as the copolymer was added. Floc strength and re-flocculating ability of the flocs were also intensified prominently at 45 °C. Additionally, settling and dewatering rates of suspensions were improved, and the moisture of filtered cakes was reduced when suspensions were at 45 °C. The phenomena could be justified by the phase transition of the copolymer from hydrophilicity to hydrophobicity as the temperature increased. There were much stronger adhesion forces between particles and higher adsorption amount of the copolymer onto solid surfaces at 45 °C. Therefore, the copolymer may be promising in solid-liquid separation to improve the floc size, floc strength, and settling and dewatering rate to achieve much lower moisture filtered cake.
热敏聚合物已被用于测试其对粘土或油砂尾矿的沉降、压实或脱水效果。然而,利用热敏聚合物探索温度对絮凝性能的影响方面,尚未得到足够的关注。在本研究中,合成了聚(NIPAM-co-DMAPMA)并用于研究在两个特定温度下亲水性和疏水性颗粒的絮凝和再絮凝性能;同时还研究了沉降和脱水行为。结果表明,在室温(约23°C)和低临界溶液温度(45°C)下均实现了良好的絮凝性能。此外,添加共聚物时,在45°C下形成的絮体更大。在45°C时,絮体的强度和再絮凝能力也显著增强。此外,当悬浮液温度为45°C时,悬浮液的沉降和脱水速率提高,滤饼的含水量降低。随着温度升高,共聚物从亲水性转变为疏水性的相变可以解释这些现象。在45°C时,颗粒之间的粘附力更强,共聚物在固体表面的吸附量更高。因此,该共聚物在固液分离中有望提高絮体尺寸、絮体强度以及沉降和脱水速率,从而获得含水量更低的滤饼。