Determining the True Color Measurements of Historic Dress with a Mobile Spectrophotometer and an Adapted Zone Grid System

2021 ◽  
Vol 15 (1) ◽  
pp. 119-134
Author(s):  
Amanda Thompson ◽  
Marcy L. Koontz
TAPPI Journal ◽  
2009 ◽  
Vol 8 (3) ◽  
pp. 14-20 ◽  
Author(s):  
YUAN-SHING PERNG ◽  
EUGENE I-CHEN WANG ◽  
SHIH-TSUNG YU ◽  
AN-YI CHANG

Trends toward closure of white water recirculation loops in papermaking often lead to a need for system modifications. We conducted a pilot-scale study using pulsed electrocoagulation technology to treat the effluent of an old corrugated containerboard (OCC)-based paper mill in order to evaluate its treatment performance. The operating variables were a current density of 0–240 A/m2, a hydraulic retention time (HRT) of 8–16 min, and a coagulant (anionic polyacrylamide) dosage of 0–22 mg/L. Water quality indicators investigated were electrical con-ductivity, suspended solids (SS), chemical oxygen demand (COD), and true color. The results were encouraging. Under the operating conditions without coagulant addition, the highest removals for conductivity, SS, COD, and true color were 39.8%, 85.7%, 70.5%, and 97.1%, respectively (with an HRT of 16 min). The use of a coagulant enhanced the removal of both conductivity and COD. With an optimal dosage of 20 mg/L and a shortened HRT of 10 min, the highest removal achieved for the four water quality indicators were 37.7%, 88.7%, 74.2%, and 91.7%, respectively. The water qualities thus attained should be adequate to allow reuse of a substantial portion of the treated effluent as process water makeup in papermaking.


Author(s):  
Masakatsu NAKANO ◽  
Kengo NAKAMURA ◽  
Yuichi NAKAGAWA ◽  
Yoshinori TAKAO ◽  
Hiroyuki KOIZUMI

Author(s):  
Arvind Sharma ◽  
Mohan Kolhe ◽  
Stein Oluf Kristiansen ◽  
Stig Simonsen ◽  
Henrik Landsverk ◽  
...  
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