Page 92 - 《精细化工》2020年第12期
P. 92
·2454· 精细化工 FINE CHEMICALS 第 37 卷
并开展相关的结垢机理研究,有助于深入了解结垢 Evaluation method of the environmental comprehensive benefit for
wastewater treatment and a case study[J]. China Water & Wastewater
的成因和过程,可为阻垢除垢方法提供理论依据。
(中国给水排水), 2019, 35(6): 6-15.
(2)加强组合除垢方法对 CaCO 3 生长影响的理 [14] ABDEL-GABER A M, ABD-EL-NABEY B A, KHAMIS E, et al.
论机理研究。基于声、电等技术的新型物理除垢方 Investigation of fig leaf extract as a novel environmentally friendly
antiscalent for CaCO 3 calcareous deposits[J]. Desalination, 2008,
法发展迅速,然而研究往往侧重于技术参数的优化,
230(1/2/3): 314-328.
对深层次的除垢机理缺乏全面深入的研究。对于多 [15] LI H, HSIEH M K, CHIEN S H, et al. Control of mineral scale
种方式的组合除垢方法而言,机理的研究更不应缺 deposition in cooling systems using secondary-treated municipal
失,作用机理的研究也有助于开发出更多有效的除 wastewater[J]. Water Research, 2011, 45(2): 748-760.
[16] ISSABAYEV Y A, BOIKO G I, LYUBCHENKO N P, et al.
垢方法。 Synthesis of unexplored aminophosphonic acid and evaluation as
(3)建立健全循环冷却水系统换热性能和生态 scale inhibitor for industrial water applications[J]. Journal of Water
环境指标监测体系。阻垢剂的使用会造成一定的环 Process Engineering, 2018, 22: 192-202.
[17] ABD-EL-KHALEK D E, ABD-EL-NABEY B A. Evaluation of
境污染,而绿色阻垢剂的使用寿命较短,也缺少相 sodium hexametaphosphate as scale and corrosion inhibitor in
关的生态影响研究,因此,建立综合监控体系有助 cooling water using electrochemical techniques[J]. Desalination,
于生产效益和生态效益的优化和提升。 2013, 311: 227-233.
[18] ZHANG X Q, HAN X, ZHANG X, et al. A partial feed nanofiltration
参考文献: system with stabilizing water quality for treating the sewage
discharged from open recirculating cooling water systems[J]. Separation
[1] LIU B C, CAO K, LI G L, et al. Experimental study on magnetic and Purification Technology, 2020, 234: 116045.
induction property of solenoid coil used in cooling water treatment [19] TAMURA Y, UEOKA S, KIMURA Y, et al. Influence of injection
system[J]. Journal of Water Supply Research and Technology-Aqua, distance on water droplet behavior in high pressure descaling[J]. ISIJ
2017, 66(5): 353-360. International, 2020, 60(1): 128-135.
[2] ZHENG S Z (郑书忠). Water treament technology and chemicals[M]. [20] AMJAD Z, KOUTSOUKOS P G. Evaluation of maleic acid based
Beijing: Chemical Industry Press (化学工业出版社), 2010. polymers as scale inhibitors and dispersants for industrial water
[3] FARAHANI M, BORGHEI S M, VATANPOUR V. Recovery of applications[J]. Desalination, 2014, 335(1): 55-63.
cooling tower blowdown water for reuse: The investigation of [21] TANG Y M, YANG W Z, YIN X S, et al. Investigation of CaCO 3
different types of pretreatment prior nanofiltration and reverse scale inhibition by PAA, ATMP and PAPEMP[J]. Desalination, 2008,
osmosis[J]. Journal of Water Process Engineering, 2016, 10: 188-199. 228(1/2/3): 55-60.
[4] RAHMANI K, JADIDIAN R, HAGHTALAB S. Evaluation of [22] JI Y, CHEN Y, LE J X, et al. Highly effective scale inhibition
inhibitors and biocides on the corrosion, scaling and biofouling performance of amino trimethylenephosphonic acid on calcium
control of carbon steel and copper-nickel alloys in a power plant carbonate[J]. Desalination, 2017, 422: 165-173.
cooling water system[J]. Desalination, 2016, 393: 174-185. [23] WANG H C (王虎传), YANG J J (杨建军), PENG C J (彭成军), et
[5] LI X C, GAO B Y, YUE Q Y, et al. Effect of six kinds of scale al. Preparation and properties of modified polyethylene glycol
inhibitors on calcium carbonate precipitation in high salinity wastewater polysulfonate scale inhibitor[J]. Fine Chemicals (精细化工), 2019,
at high temperatures[J]. Journal of Environmental Sciences, 2015, 36(7): 1434-1438.
29: 124-130. [24] WAN G J (万高杰), PAN S L (潘顺龙), HAN X (韩旭), et al.
[6] AL-HAMZAH A A, EAST C P, DOHERTY W O S, et al. Inhibition Application of low phosphorus scale inhibitor in low-temperature
of homogenous formation of calcium carbonate by poly (acrylic thermal seawater desalination[J]. Fine Chemicals (精细化工), 2018,
acid). The effect of molar mass and end-group functionality[J]. 35(3): 469-473.
Desalination, 2014, 338: 93-105. [25] DENG W (邓文), LI M J (李美娟), CHEN P (陈萍), et al. Pilot
[7] SHEN C, CIRONE C, JACOBI A M, et al. Fouling of enhanced synthesis, compound and field application of 1-hydroxyethy-lidene-
tubes for condensers used in cooling tower systems: A literature 1,1-diphosphonic acid (HEDP)[J]. Fine Chemicals (精细化工), 2016,
review[J]. Applied Thermal Engineering, 2015, 79: 74-87. 33(6): 680-685.
[8] QU Z G, YANG J, WU L Q, et al. Methodology for removing fouling [26] KETRANE R, SAIDANI B, GIL O, et al. Efficiency of five scale
within liquid-filled pipelines based on ultrasonic guided waves inhibitors on calcium carbonate precipitation from hard water: Effect
cavitation effect[J]. Applied Acoustics, 2020, 157: 107018. of temperature and concentration[J]. Desalination, 2009, 249(3):
[9] CAPUTO A C, PELAGAGGE P M, SALINI P. Joint economic 1397-1404.
optimization of heat exchanger design and maintenance policy[J]. [27] YANG L, YANG W Z, XU B, et al. Synthesis and scale inhibition
Applied Thermal Engineering, 2011, 31(8/9): 1381-1392. performance of a novel environmental friendly and hydrophilic
[10] RAHMANI K. Reducing water consumption by increasing the cycles terpolymer inhibitor[J]. Desalination, 2017, 416: 166-174.
of concentration and considerations of corrosion and scaling in a [28] NEVEUX T, BRETAUD M, CHHIM N, et al. Pilot plant
cooling system[J]. Applied Thermal Engineering, 2017, 114: 849-856. experiments and modeling of CaCO 3 growth inhibition by the use of
[11] CHO Y I, KIM W T, CHO D J. Fouling mitigation in a heat antiscalant polymers in recirculating cooling circuits[J]. Desalination,
exchanger: High cycles of concentration for a cooling-tower 2016, 397: 43-52.
application[J]. Experimental Heat Transfer, 2006, 19(2): 113-128. [29] ZHAO Y, XU Z M, WANG B B, et al. Scale inhibition performance
[12] CHO Y I, KIM W T, CHO D J. Electro-flocculation mechanism of of sodium carboxymethyl cellulose on heat transfer surface at various
physical water treatment for the mitigation of mineral fouling in heat temperatures: Experiments and molecular dynamics simulation[J].
exchangers[J]. Experimental Heat Transfer, 2007, 20(4): 323-335. International Journal of Heat and Mass Transfer, 2019, 141: 457-463.
[13] HAO X D (郝晓地), WANG X Y (王向阳), JIANG H (江瀚), et al. [30] ZUO Z S, YANG W Z, ZHANG K G, et al. Effect of scale inhibitors