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利用温敏型阳离子聚合物对成熟细尾矿进行絮凝和脱水。

Flocculation and Dewatering of Mature Fine Tailings Using Temperature-Responsive Cationic Polymers.

机构信息

Department of Chemical and Materials Engineering, Donadeo Innovation Centre in Engineering , Edmonton, Alberta T6G 1H9, Canada.

出版信息

Langmuir. 2017 Jun 13;33(23):5900-5909. doi: 10.1021/acs.langmuir.7b01160. Epub 2017 May 31.

Abstract

Temperature-responsive copolymer with cationic charge was prepared with N-isopropylacrylamide (NIPAm) and 2-aminoethyl methacrylamide hydrochloride (AEMA) by conventional free-radical polymerization. The flocculation performance of the copolymer, poly(AEMA-st-NIPAm), was compared to five different mixture ratios of polyNIPAm and cationic poly(acrylamide-st-diallyldimethylammonium chloride) (poly(AAm-st-DADMAC)). The effects of polymer mixture ratios, polymer dosages, and temperature on solid-liquid separation as a function of initial settling rates (ISR), supernatant turbidity, sediment solid content, and water recovery were investigated. Poly(NIPAm) can facilitate particles aggregation by bridging and hydrogen bonding under lower critical solution temperature (LCST); whereas, at temperature above LCST, the adsorption of poly(NIPAm) chains on particles can be enhanced by hydrophobic interaction. A two-step (25 °C → 50 °C → 25 °C) consolidation can further enhance the sediment solid content by polyNIPAm. While the neutral property of polyNIPAm resulted in high turbidity of supernatant, mixing with poly(AAm-st-DADMAC) increases the clarity of supernatant by neutralization of fine particles. The copolymer poly(AEMA-st-NIPAm) functions as a polyelectrolyte to enhance the polymer adsorption onto particles via electrostatic interactions, thus further improving ISR and supernatant clarity.

摘要

采用 N-异丙基丙烯酰胺(NIPAm)和 2-氨乙基甲基丙烯酰胺盐酸盐(AEMA)通过常规自由基聚合制备带正电荷的温敏共聚物。将共聚物聚(AEMA-st-NIPAm)的絮凝性能与五种不同比例的聚 NIPAm 和阳离子聚(丙烯酰胺-二烯丙基二甲基氯化铵)(poly(AAm-st-DADMAC))进行了比较。考察了聚合物混合物比例、聚合物剂量和温度对初始沉降速率(ISR)、上清液浊度、沉淀物固体含量和水回收率的固液分离的影响。聚(NIPAm)在较低临界溶液温度(LCST)下通过桥接和氢键促进颗粒聚集;而在 LCST 以上,聚(NIPAm)链对颗粒的吸附可以通过疏水相互作用增强。两步(25°C→50°C→25°C)固结可以通过聚 NIPAm 进一步提高沉淀物固体含量。虽然聚 NIPAm 的中性性质导致上清液的高浊度,但与 poly(AAm-st-DADMAC)混合通过中和细小颗粒增加了上清液的清晰度。共聚物聚(AEMA-st-NIPAm)作为聚电解质通过静电相互作用增强聚合物对颗粒的吸附,从而进一步提高 ISR 和上清液的清晰度。

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