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首页> 外文期刊>Bioinorganic chemistry and applications >Chemistry of Organophosphonate Scale Growthlnhibitors: 3. Physicochemical Aspects of 2-Phosphonobutane-1,2,4-Tricarboxylate (PBTC) And ItsEffect on CaCO3Crystal Growth
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Chemistry of Organophosphonate Scale Growthlnhibitors: 3. Physicochemical Aspects of 2-Phosphonobutane-1,2,4-Tricarboxylate (PBTC) And ItsEffect on CaCO3Crystal Growth

机译:有机膦酸盐阻垢剂的化学性质:3. 2-膦丁烷-1,2,4-三羧酸酯(PBTC)的理化特性及其对CaCO3晶体生长的影响

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Industrial water systems often suffer from undesirable inorganic deposits, such as calcium carbonate,calcium phosphates, calcium sulfate, magnesium silicate, and others. Synthetic water additives, such asphosphonates and phosphonocarboxylates, are the most important and widely utilized scale inhibitors in a plethora of industrial applications including cooling water, geothermal drilling, desalination, etc. The designof efficient and cost-effective inhibitors, as well as the study of their structure and function at the molecularlevel are important areas of research. This study reports various physicochemical aspects of the chemistry ofPBTC (PBTC = 2-phosphonobutane-1,2,4-tricarboxylic acid), one of the most widely used scale inhibitors inthe cooling water treatment industry. These aspects include its CaCO3crystal growth inhibition andmodification properties under severe conditions of high CaCO3supersaturation, stability towards oxidizingmicrobiocides and tolerance towards precipitation with Ca2+. Results show that 15 ppm of PBTC can inhibitthe formation of by ~35 %, 30 ppm by ~40 %, and 60 ppm by ~44 %. PBTC is virtually stable to the effectsof a variety of oxidizing microbiocides, including chlorine, bromine and others. PBTC shows excellenttolerance towards precipitation as its Ca salt. Precipitation in a 1000 ppm Ca2+(as CaCO3) occurs after 185ppm PBTC are present.
机译:工业水系统经常遭受不良的无机沉积物的影响,例如碳酸钙,磷酸钙,硫酸钙,硅酸镁等。合成水添加剂,例如膦酸盐和膦酰基羧酸盐,是冷却水,地热钻探,海水淡化等众多工业应用中最重要且应用最广泛的阻垢剂。它们在分子水平上的结构和功能是重要的研究领域。这项研究报告了PBTC化学的各种物理化学方面(PBTC = 2-膦酰基丁烷-1,2,4-三羧酸),PBTC是冷却水处理行业中使用最广泛的阻垢剂之一。这些方面包括其在高CaCO3过饱和度的严苛条件下的CaCO3晶体生长抑制和改性特性,对氧化性杀菌剂的稳定性以及对Ca2 +沉淀的耐受性。结果表明,15 ppm的PBTC可以抑制约35%的形成,30 ppm的约40%的抑制和60 ppm的约44%的抑制。 PBTC对各种氧化性杀菌剂(包括氯,溴等)的作用实际上是稳定的。 PBTC表现出对钙盐沉淀的极好的耐受性。在存在185ppm的PBTC后,会在1000 ppm Ca2 +中(以CaCO3形式)沉淀。

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