期刊文献+

Preparation and application of a phosphorous free and non- nitrogen scale inhibitor in industrial cooling water systems 被引量:3

Preparation and application of a phosphorous free and non- nitrogen scale inhibitor in industrial cooling water systems
原文传递
导出
摘要 A novel environmentally friendly type of calcium carbonate, zinc (Ⅱ) and iron (Ⅲ) scale inhibitor Acrylic acidallylpolyethoxy carboxylate copolymer (AA- APEL) was synthesized. The anti-scale property of the AA-APEL toward CaCO3, zinc (Ⅱ) and iron (Ⅲ) in the artificial cooling water was studied through static scale inhibition tests. The observation shows that both calcium carbonate, zinc (Ⅱ) and iron (Ⅲ) inhibition increase with increasing the dosage of AA-APEL. The effect on formation of CaCO3 was investigated with combination of scanning electronic microscopy (SEM), transmission electron microscopy (TEM), X-ray powder diffraction (XRD) analysis and fourier transform infrared spectrometer, respectively. The results showed that the AA-APEL copolymer not only influenced calcium carbonate crystal morphology and crystal size but also the crystallinity. The crystallization of CaCO3 in the absence of inhibitor was rhombohedral calcite crystal, whereas a mixture of calcite with vaterite crystals was found in the presence of the AA- APEL copolymer. Inhibition mechanism is proposed that the interactions between calcium or iron ions and polyethylene glycol (PEG) are the fundamental impetus to restrain the formation of the scale in cooling water systems. A novel environmentally friendly type of calcium carbonate, zinc (Ⅱ) and iron (Ⅲ) scale inhibitor Acrylic acidallylpolyethoxy carboxylate copolymer (AA- APEL) was synthesized. The anti-scale property of the AA-APEL toward CaCO3, zinc (Ⅱ) and iron (Ⅲ) in the artificial cooling water was studied through static scale inhibition tests. The observation shows that both calcium carbonate, zinc (Ⅱ) and iron (Ⅲ) inhibition increase with increasing the dosage of AA-APEL. The effect on formation of CaCO3 was investigated with combination of scanning electronic microscopy (SEM), transmission electron microscopy (TEM), X-ray powder diffraction (XRD) analysis and fourier transform infrared spectrometer, respectively. The results showed that the AA-APEL copolymer not only influenced calcium carbonate crystal morphology and crystal size but also the crystallinity. The crystallization of CaCO3 in the absence of inhibitor was rhombohedral calcite crystal, whereas a mixture of calcite with vaterite crystals was found in the presence of the AA- APEL copolymer. Inhibition mechanism is proposed that the interactions between calcium or iron ions and polyethylene glycol (PEG) are the fundamental impetus to restrain the formation of the scale in cooling water systems.
出处 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2015年第3期545-553,共9页 环境科学与工程前沿(英文)
基金 This work was supported by the Prospective Joint Research Project of Jiangsu Province (BY2012196) the National Natural Science Foundation of China (Grant No. 51077013) Special funds for Jiangsu Province Scientific and Technological Achievements Projects of China (BA2011086) Program for Training of 333 High-Level Talent, Jiangsu Province of China (BRA2010033) Scientific Innovation Research Foundation of College Graduate in Jiangsu Province (CXLX-0134) and The Scientific Research Foundation of Graduate of South-east University (YBJJI110).
关键词 phosphorous free calcium carbonate stabilize zinc (Ⅱ) disperse iron (Ⅲ) cooling water phosphorous free, calcium carbonate, stabilize zinc (Ⅱ), disperse iron (Ⅲ), cooling water
  • 相关文献

参考文献26

  • 1Xyla A G, Mikroyannidis J, Koutsoukos P G. The inhibition of calcium carbonate precipitation in aqueous media by organopho- sphorus compounds. Journal of Colloid and Interface Science, 1992, 153(2): 537-551.
  • 2Saleah A O, Basta A H. Evaluation of some organic-based biopolymers as green inhibitors for calcium sulfate scales. Environmentalist, 2008, 28(4): 421-428.
  • 3Amor M B, Zgolli D, Tlili M M, Manzola A S. Influence of water hardness, substrate nature and temperature on heterogeneous calcium carbonate nucleation. Desalination, 2004, 166(1): 79-84.
  • 4Kjellin P. X-ray diffi'action and scanning electron microscopy studies of calcium carbonate electrodeposited on a steel surface. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2003, 212(1): 19-26.
  • 5Kumar T, Vishwanatham S S, Kundu S A. Laboratory study on pteroyl-L-glutamic acid as a scale prevention inhibitor of calcium carbonate in aqueous solution of synthetic produced water. Journal of Petroleum Science and Technology, 2010, 71(15): 1-7.
  • 6Zhou X H, Sun Y H, Wang Y Z. Inhibition and dispersion of polyepoxysuccinate as a scale inhibitor. Journal of Environmental Sciences-China, 2011, 23(Suppl.): 159-161.
  • 7Liu Z Y, Sun Y H, Zhou X H, Wu T, Tian Y, Wang Y. Synthesis and scale inhibitor performance of polyaspartic acid. Journal of Environmental Sciences-China, 2011, 23(Suppl.): 153-155.
  • 8Suharso, Buhani, Bahri S, EndaryantoT. Gambier extracts as an inhibitor of calcium carbonate (CaCO3) scale formation. Desalina- tion, 2011, 265(1-3): 102- 106.
  • 9A1 Nasser W N, A1-Salhi F H, Hounslow M J, Salman A D. Inline monitoring the effect of chemical inhibitor on the calcium carbonate precipitation and agglomeration. Chemical Engineering Research & Design, 2011, 89(5): 500-511.
  • 10Zhang B R, Zhang L, Li F T, Hu W, Hannam P M. Testing the formation of Ca-phosphonate precipitates and evaluating the anionic polymers as Ca-phosphonate precipitates and CaCO3 scale inhibitor in simulated cooling water. Corrosion Science, 2010, 52(12): 3883-3890.

同被引文献18

引证文献3

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部