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荧光标记阻垢剂——用于碳酸钙和硫酸钙水合物结垢过程中阻垢机理研究、阻垢剂溯源和阻垢效果优化的新材料。

Fluorescent-Tagged Antiscalants-The New Materials for Scale Inhibition Mechanism Studies, Antiscalant Traceability and Antiscaling Efficacy Optimization during CaCO and CaSO·2HO Scale Formation.

机构信息

Department of Chemical and Pharmaceutical Technologies and Biomedical Pharmaceuticals, Mendeleev University of Chemical Technology of Russia, Miusskaya Sq. 9, 125047 Moscow, Russia.

JSC "Fine Chemicals R&D Centre", Krasnobogatyrskaya, Str. 42, b 1, 107258 Moscow, Russia.

出版信息

Int J Mol Sci. 2023 Feb 4;24(4):3087. doi: 10.3390/ijms24043087.

Abstract

Equipment scaling leads to reduced production efficiency in a wide range of industrial applications worldwide. Various antiscaling agents are currently commonly used to mitigate this problem. However, irrespective of their long and successful application in water treatment technologies, little is known about the mechanisms of scale inhibition, particularly the localization of scale inhibitors on scale deposits. The lack of such knowledge is a limiting factor in the development of applications for antiscalants. Meanwhile, fluorescent fragments integrated into scale inhibitor molecules have provided a successful solution to the problem. The focus of this study is, therefore, on the synthesis and investigation of a novel fluorescent antiscalant: (2-(6-morpholino-1,3-dioxo-1H-benzo[de]isoquinolin-2(3H)yl)ethylazanediyl)bis(methylenephosphonic acid) (ADMP-F) which is an analog of the commercial antiscalant: aminotris(methylenephosphonic acid) (ATMP). ADMP-F has been found to effectively control the precipitation of CaCO and CaSO in solution and is a promising tracer for organophosphonate scale inhibitors. ADMP-F was compared with two other fluorescent antiscalants-polyacrylate (PAA-F1) and bisphosphonate (HEDP-F)-and was found to be highly effective: PAA-F1 > ADMP-F >> HEDP-F (CaCO) and PAA-F1 > ADMP-F > HEDP-F (CaSO·2HO). The visualization of the antiscalants on the deposits provides unique information on their location and reveals differences in the "antiscalant-deposit" interactions for scale inhibitors of different natures. For these reasons, a number of important refinements to the mechanisms of scale inhibition are proposed.

摘要

设备结垢会降低全球范围内广泛的工业应用的生产效率。目前,通常使用各种阻垢剂来减轻这个问题。然而,尽管它们在水处理技术中的长期成功应用,人们对阻垢机制知之甚少,特别是阻垢剂在垢层上的定位。缺乏这些知识是阻垢剂应用开发的一个限制因素。与此同时,荧光片段整合到阻垢剂分子中为解决这个问题提供了一个成功的方案。因此,这项研究的重点是合成和研究一种新型荧光阻垢剂:(2-(6-吗啉-1,3-二氧代-1H-苯并[de]异喹啉-2(3H)基)乙基氮二亚甲基)双(亚甲基膦酸)(ADMP-F),它是商业阻垢剂:氨基三亚甲基膦酸(ATMP)的类似物。ADMP-F 已被发现可有效控制 CaCO 和 CaSO 在溶液中的沉淀,是有机膦酸盐阻垢剂的有前途的示踪剂。将 ADMP-F 与另外两种荧光阻垢剂-聚丙烯酸(PAA-F1)和膦酸(HEDP-F)进行了比较,结果发现它非常有效:PAA-F1 > ADMP-F >> HEDP-F(CaCO)和 PAA-F1 > ADMP-F > HEDP-F(CaSO·2HO)。阻垢剂在沉积物上的可视化提供了有关其位置的独特信息,并揭示了不同性质的阻垢剂“阻垢剂-沉积物”相互作用的差异。基于这些原因,提出了一些对阻垢机制的重要改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11d9/9965619/61e657af3740/ijms-24-03087-g001.jpg

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