Fouling Problem and Prevention of Plate Heat Exchanger

被引:1
作者
Xu, Yao [1 ]
机构
[1] JiLin Technol Coll Elect Informat, Jilin 132000, Jilin, Peoples R China
来源
MATERIALS SCIENCE, ENERGY TECHNOLOGY AND POWER ENGINEERING III (MEP 2019) | 2019年 / 2154卷
关键词
Plate heat exchanger; Fouling; Surface modification; Fouling inhibition; POWER-PLANT; MITIGATION; CORROSION; STEEL;
D O I
10.1063/1.5125395
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Fouling refers to the oozy substance accumulated on the surface. Fouling problems of plate heat exchangers are common and widely distributed in the field of energy and chemical industry. The accumulation of fouling deposition leads to many operational and safety problems of plate heat exchanger, such as increased flow resistance, decreased heat transfer performance, induced local corrosion under fouling layer and shortened heat exchanger operation life. Therefore, it is necessary to strengthen the daily operation monitoring and fouling cleaning for plate heat exchanger. This paper reviews the current research development of plate heat exchanger fouling problem at home and abroad, as well as the common techniques and methods for fouling inhibition and mitigation from the perspective of fouling inhibition. Besides, the current existing problems of fouling inhibition technology are also summarized. This review can provide a reference for the research on the development of plate heat exchanger fouling inhibition technology.
引用
收藏
页数:4
相关论文
共 30 条
[1]   The potential of nano-structured silicon oxide type coatings deposited by PACVD for control of aquatic biofouling [J].
Akesso, Laurent ;
Pettitt, Michala E. ;
Callow, James A. ;
Callow, Maureen E. ;
Stallard, Joanne ;
Teer, Dennis ;
Liu, Chen ;
Wang, Su ;
Zhao, Qi ;
D'Souza, Fraddry ;
Willemsen, Peter R. ;
Donnelly, Glen T. ;
Donik, Crtomir ;
Kocijan, Aleksandra ;
Jenko, Monika ;
Jones, Lathe A. ;
Guinaldo, Patricia Calvillo .
BIOFOULING, 2009, 25 (01) :55-67
[2]  
Anita P, 2019, INT COMMUNICATIONS H, V105, P19
[3]  
Azis PKA, 2001, DESALINATION, V135, P69
[4]   Analysis of 'classical' deposition rate law for crystallisation fouling [J].
Bansal, Bipan ;
Chen, Xiao Dong ;
Mueller-Steinhagen, Hans .
CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2008, 47 (08) :1201-1210
[5]   Average nanorough skin surface of the pilot whale (Globicephala melas, Delphinidae):: considerations on the self-cleaning abilities based on nanoroughness [J].
Baum, C ;
Meyer, W ;
Stelzer, R ;
Fleischer, LG ;
Siebers, D .
MARINE BIOLOGY, 2002, 140 (03) :653-657
[6]  
Bloushi M.A, 2017, J WATER PROCESS ENG, V20, P1
[7]  
Christopher J.G, 2004, DESALINATION, V161, P263
[8]   Antifouling strategies and corrosion control in cooling circuits [J].
Cristiani, P. ;
Perboni, G. .
BIOELECTROCHEMISTRY, 2014, 97 :120-126
[9]   Clean-in-place monitoring of different food fouling materials using ultrasonic measurements [J].
Escrig, J. Escrig ;
Woolley, E. ;
Rangappa, S. ;
Simeone, A. ;
Watson, N. J. .
FOOD CONTROL, 2019, 104 :358-366
[10]   On-line cleaning technique for mitigation of biofouling in heat exchangers: A case study of a hydroelectric power plant in Brazil [J].
Frota, M. N. ;
Ticona, E. M. ;
Neves, A. V. ;
Marques, R. P. ;
Braga, S. L. ;
Valente, G. .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2014, 53 :197-206