An equilibrium model for chloride removal from recycled cooling water using the ultra-high lime with aluminum process

被引:21
作者
Abdel-Wahab, A [1 ]
Batchelor, B [1 ]
Schwantes, J [1 ]
机构
[1] Texas A&M Univ, Dept Civil Engn, College Stn, TX 77844 USA
关键词
chloride; cooling water; corrosion; lime; aluminum; calcium; chloroaluminate; water recycle; AFm; equilibrium model; PHREEQC;
D O I
10.2175/106143005X73956
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Removal of chloride from recycled cooling water is needed to reduce corrosion and prolong equipment life. Laboratory experiments have demonstrated that the ultra-high lime with aluminum (UHLA) process has the ability to achieve high chloride removal efficiency from recycled cooling water. In an effort to further understand the behavior of chloride in the UHLA process, a fundamental model of the chemical processes was developed. The purpose of this paper is to describe this equilibrium model and present values for solubility products of precipitated solids that have not been investigated previously. The model was based on PHREEQC and a new program called INVRS K was integrated with PHREEQC to calculate values of unknown or poorly defined equilibrium or kinetic constants using a Gauss-Newton nonlinear regression routine. Model predictions indicated that the results could be best described by assuming the formation of a solid solution of calcium chloroaluminate (Ca4Al2CI2OH12), tricalcium hydroxyaluminate (Ca3Al2OH12), and tetracalcium hydroxyaluminate (Ca4Al2OH14).
引用
收藏
页码:3059 / 3065
页数:7
相关论文
共 28 条
[1]  
ABDELWAHAB A, 2003, P 76 ANN WAT ENV FED
[2]  
ABDELWAHAB A, 2001, P 74 ANN WAT ENV FED, P13
[3]  
*AM PUBL HLTH ASS, 1995, STAND METH EX WAT WA
[4]  
BATCHELOR B, 1984, J WATER POLLUT CON F, V56, P1110
[5]  
BATCHELOR B, 1991, RES J WATER POLLUT C, V63, P982
[6]  
BATCHELOR B, 1985, P WAT REUS SIMPS 3, P798
[7]  
BENNET PB, 1984, MAT PERFORMANCE NOV
[8]  
BIMINYAURI UA, 1998, CEMENT CONCRETE RES, V28, P1713
[9]  
BIMINYAURI UA, 1993, THESIS U ABERDEEN SC
[10]  
Chu CW, 1999, PHOTON SPECTRA, V33, P13