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海水淡化阻垢剂的微生物生长潜力。

The microbial growth potential of antiscalants used in seawater desalination.

机构信息

Biological and Environmental Science and Engineering Division (BESE), Water Desalination and Reuse Center (WDRC), King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia.

Advanced Nanofabrication Imaging and Characterization, King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia.

出版信息

Water Res. 2023 Apr 15;233:119802. doi: 10.1016/j.watres.2023.119802. Epub 2023 Feb 25.

Abstract

20 years since the first report on the biofouling potential of chemicals used for scale control, still, antiscalants with high bacterial growth potential are used in practice. Evaluating the bacterial growth potential of commercially available antiscalants is therefore essential for a rational selection of these chemicals. Previous antiscalant growth potential tests were conducted in drinking water or seawater inoculated with model bacterial species which do not represent natural bacterial communities. To reflect better on the conditions of desalination systems, we investigated the bacterial growth potential of eight different antiscalants in natural seawater and an autochthonous bacterial population as inoculum. The antiscalants differed strongly in their bacterial growth potential varying from ≤ 1 to 6 μg easily biodegradable C equivalents/mg antiscalant. The six phosphonate-based antiscalants investigated showed a broad range of growth potential, which depended on their chemical composition, whilst the biopolymer and the synthetic carboxylated polymers-based antiscalants showed limited or no significant bacterial growth. Moreover, nuclear magnetic resonance (NMR) scans enabled antiscalant fingerprinting, identifying components and contaminants, providing a rapid and sensitive characterization, and opening opportunities for rational selection of antiscalants for biofouling control.

摘要

20 年前,人们首次报告了用于控制结垢的化学品的生物污垢潜力,然而,在实际应用中仍使用具有高细菌生长潜力的阻垢剂。因此,评估市售阻垢剂的细菌生长潜力对于这些化学品的合理选择至关重要。以前的阻垢剂生长潜力测试是在接种了模式细菌的饮用水或海水中进行的,而这些模式细菌并不能代表自然细菌群落。为了更好地反映海水淡化系统的条件,我们研究了 8 种不同的阻垢剂在天然海水中和土著细菌种群作为接种物的细菌生长潜力。阻垢剂的细菌生长潜力差异很大,从 ≤ 1 到 6 μg 易生物降解的 C 当量/毫克阻垢剂不等。研究的 6 种膦酸盐基阻垢剂表现出广泛的生长潜力,这取决于它们的化学组成,而生物聚合物和合成羧化聚合物基阻垢剂的生长潜力有限或没有明显的细菌生长。此外,核磁共振 (NMR) 扫描能够对阻垢剂进行指纹识别,鉴定成分和污染物,提供快速而灵敏的特性描述,为阻垢剂的合理选择提供了机会,以控制生物污垢。

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