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Synthesis, characterization and performance evaluation of an environmentally benign scale inhibitor IA/AMPS co-polymer

机译:环境良性抑制剂IA / AMPS共聚物的合成,表征和性能评价

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摘要

With increasing awareness and efforts on environmental protection, developing non-phosphorus and biodegradable scale inhibitors is becoming a hot research topic. In this work, an environment-friendly scale inhibitor was synthesized by free radical polymerization with itaconic acid (IA) and 2-acrylamido-2-methylpropane sulfonic acid (AMPS). FTIR spectroscopy was employed for co-polymer identification. The morphology and phase structure of the scales were analyzed via SEM and XRD. The effects of the reaction time/temperature, the ratio of monomers, and the dosage and ratio of initiators used on the dispersion properties and the scale inhibition performance of the co-polymer were systematically investigated to obtain optimized synthesis conditions. The results show that an IA/AMPS co-polymer with the best dispersion index (51.10 mg g(-1)) can be prepared based on the following reaction conditions: 1 : 2 (molar ratio of IA and AMPS), 7% (dosage of initiators: total mass of monomers), and 4 : 1 (molar ratio of initiators ammonium persulfate: sodium bisulfite), at 95 degrees C (reaction temperature) and 5 hours (reaction time). The results of static scale inhibition tests demonstrate that the inhibition efficiency of IA/AMPS (14 mg L-1/18 mg L-1) towards CaCO3/CaSO4 is about 81.2%/80.6%, respectively. TGA analysis reveals that obvious thermal degradation of IA/AMPS does not occur up to 345 degrees C and above, which means that the co-polymer has excellent temperature resistance. In addition, the interactions between the IA/AMPS co-polymer and the CaCO3/CaSO4 scale crystal were calculated by molecular dynamics (MD) simulation. The results show that the binding strength of IA/AMPS with the (110) surface of the calcite crystal is firmer than that with the (104) surface, while the binding energies of IA/AMPS with the two surfaces of the anhydrite crystal, (001) and (010) planes, are nearly equal. In a word, the IA/AMPS co-polymer is a very promising scale inhibitor not only for CaCO3 but also for CaSO4.
机译:随着对环境保护的意识和努力,发展非磷和可生物降解的规模抑制剂正在成为一个热门研究课题。在这项工作中,通过用衣康酸(IA)和2-丙基酰胺-2-甲基丙烷磺酸(AMPS)的自由基聚合来合成环境友好型抑制剂。使用FTIR光谱法用于共聚物鉴定。通过SEM和XRD分析尺度的形态和相位结构。反应时间/温度,单体的比例和用于分散性质中使用的引发剂的剂量和剂量和比例的效果,并系统地研究了共聚物的规模抑制性能,得到了优化的合成条件。结果表明,基于以下反应条件,可以制备具有最佳分散指数(51.10mg(-1))的IA / AMPS共聚物:1:2(IA和AMPS的摩尔比),7%(引发剂的剂量:单体的总质量),4:1(引发剂的摩尔比出过硫酸铵:亚硫酸氢钠),在95℃(反应温度)和5小时(反应时间)。静态抑制试验的结果表明,IA / AMPS(14mg L-1 / 18mg L-1)的抑制效率分别为CaCO 3 / CasO4的抑制效率分别为约81.2%/ 80.6%。 TGA分析表明,IA / AMP的明显热降解不会发生高达345摄氏度,这意味着共聚物具有优异的耐温性。另外,通过分子动力学(MD)模拟计算IA / AMPS共聚物和CaCO 3 / CasO4刻度晶体之间的相互作用。结果表明,使用(110)的方解石晶体的表面和amps的结合强度与(104)表面更坚固,而IA / Amps的结合能量与AnhyDre晶体的两个表面( 001)和(010)平面几乎相等。总之,IA / AMPS共聚物是一个非常有前景的抑制剂,不仅是CACO3,还用于CASO4。

著录项

  • 来源
    《New Journal of Chemistry》 |2019年第24期|共11页
  • 作者

    Cui Chuanchuan; Zhang Shuguang;

  • 作者单位

    Shandong Univ Technol Sch Chem &

    Chem Engn Zibo 255049 Peoples R China;

    Shandong Univ Technol Sch Chem &

    Chem Engn Zibo 255049 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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