TY - JOUR
T1 - Inorganic ion accumulation model in wastewater recycling systems
T2 - Printing and dyeing case
AU - Dou, Hanmou
AU - Jing, Xiali
AU - Ren, Wuang
AU - Wang, Rui
AU - Ju, Kai
AU - Li, Yajiao
AU - Jin, Xin
AU - Jin, Pengkang
N1 - Publisher Copyright:
© 2024
PY - 2024/4
Y1 - 2024/4
N2 - To solve the problem of inorganic ion accumulation in the recycling process of printing and dyeing wastewater, a mathematical model based on cycle-index and removal efficiency was proposed. The model's capacity to describe the ion accumulation was essentially confirmed through simulation and pilot tests. Results indicated that this model can better predict total dissolved solids (TDS), although the prediction results for specific ions require further refinement. With fewer than 60 cycles, TDS in the pilot system could be reliably predicted. Sensitivity analysis revealed that, when TDS, SO42−, Fe, and Mn in the effluent were considered control targets, the number of cycles, water flow, total inorganic salts added, and the recycling efficiency of printing and dyeing wastewater significantly influenced the prediction equation.
AB - To solve the problem of inorganic ion accumulation in the recycling process of printing and dyeing wastewater, a mathematical model based on cycle-index and removal efficiency was proposed. The model's capacity to describe the ion accumulation was essentially confirmed through simulation and pilot tests. Results indicated that this model can better predict total dissolved solids (TDS), although the prediction results for specific ions require further refinement. With fewer than 60 cycles, TDS in the pilot system could be reliably predicted. Sensitivity analysis revealed that, when TDS, SO42−, Fe, and Mn in the effluent were considered control targets, the number of cycles, water flow, total inorganic salts added, and the recycling efficiency of printing and dyeing wastewater significantly influenced the prediction equation.
KW - Ion accumulation
KW - Mathematical model
KW - Printing and dyeing wastewater
KW - Recycling
KW - Sensitivity analysis
UR - https://www.scopus.com/pages/publications/85189089451
U2 - 10.1016/j.jwpe.2024.105183
DO - 10.1016/j.jwpe.2024.105183
M3 - 文章
AN - SCOPUS:85189089451
SN - 2214-7144
VL - 60
JO - Journal of Water Process Engineering
JF - Journal of Water Process Engineering
M1 - 105183
ER -