Zhao Yanxia, Phuntsho Sherub, Gao Baoyu, Shon Hokyong
Shandong Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Jinan 250100, China; Key Laboratory for Special Functional Aggregated Materials of Education Ministry, School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, China.
Centre for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology, Sydney, Broadway, NSW 2007, Australia.
J Environ Sci (China). 2017 Feb;52:250-258. doi: 10.1016/j.jes.2016.04.008. Epub 2016 May 5.
Interest in the development of inorganic polymerized coagulants is growing; however, there are only limited studies on the synthesis of polytitanium coagulants, which are expected to exhibit improved coagulation efficiency with better floc properties. This study presents the synthesis of polytitanium sulfate (PTS) for potential application in water purification, followed by characterization of PTS flocs and titanium species detection. Stable PTS solutions were successfully synthesized and standard jar tests were conducted to evaluate their coagulation efficiency. Electrospray ionization time-of-flight mass spectrometry (ESI-TOF-MS) speciation analysis revealed that a variety of mononuclear and polynuclear complexes were formed in PTS solution, indicating the polymeric nature of the synthesized coagulant. Floc characteristics were studied through on-line monitoring of floc size using a laser diffraction particle size analyzer. Results showed that PTS had a comparable or in some cases even higher organic matter and particulate removal efficiency than Ti(SO). The effluent pH after PTS coagulation significantly improved toward desirable values closer to neutral pH. Properties of flocs formed by PTS were significantly improved in terms of floc size, growth rate and structure. This study showed that PTS could be an efficient and promising coagulant for water purification, with the additional benefit that its coagulated sludge can be used to recover valuable TiO nanoparticles for various commercial applications.
对无机聚合絮凝剂开发的兴趣日益浓厚;然而,关于聚钛絮凝剂合成的研究却很有限,聚钛絮凝剂有望展现出更高的凝聚效率和更好的絮体性质。本研究介绍了用于水净化潜在应用的聚硫酸钛(PTS)的合成,随后对PTS絮体进行了表征并检测了钛物种。成功合成了稳定的PTS溶液,并进行了标准烧杯试验以评估其凝聚效率。电喷雾电离飞行时间质谱(ESI-TOF-MS)形态分析表明,PTS溶液中形成了多种单核和多核络合物,表明合成的絮凝剂具有聚合性质。通过使用激光衍射粒度分析仪在线监测絮体大小来研究絮体特性。结果表明,PTS去除有机物和颗粒物的效率与Ti(SO)相当,在某些情况下甚至更高。PTS凝聚后的出水pH值显著改善,更接近理想的中性pH值。PTS形成的絮体在絮体大小、生长速率和结构方面的性质得到了显著改善。本研究表明,PTS可能是一种高效且有前景的水净化絮凝剂,其额外的好处是其凝聚污泥可用于回收用于各种商业应用的有价值的TiO纳米颗粒。