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Cleaning up wastewater from viscose fibre manufacture by isolating local streams
Fibre Chemistry
◽
10.1007/bf00545390
◽
1989
◽
Vol 20
(5)
◽
pp. 299-301
Author(s):
I. G. Shimko
◽
L. V. Sagadeeva
◽
N. A. Makarova
◽
V. G. Sukhikh
◽
L. M. Kashaeva
Keyword(s):
Viscose Fibre
Get full-text (via PubEx)
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References
Apparatus design of a process for extracting zinc out of low-concentration solutions from the manufacture of viscose fibre
Fibre Chemistry
◽
10.1007/bf00552616
◽
1987
◽
Vol 19
(2)
◽
pp. 143-146
Author(s):
I. A. Birshtein
◽
A. M. Volchek
◽
A. I. Solodov
◽
R. A. Yaroshevich
◽
G. D. Kovalev
◽
...
Keyword(s):
Viscose Fibre
◽
Low Concentration
◽
Apparatus Design
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The sulphur content of continuous-spun viscose fibre vs. the wash temperature
Fibre Chemistry
◽
10.1007/bf00566148
◽
1972
◽
Vol 2
(6)
◽
pp. 598-600
Author(s):
P. A. Butyagin
◽
N. T. Butkova
◽
I. V. Gritskov
◽
P. Baksheev
◽
G. G. Finger
◽
...
Keyword(s):
Viscose Fibre
◽
Sulphur Content
◽
Wash Temperature
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Preparation of an anion-exchange viscose fibre by graft polymerization to cellulose during the spinning process
Fibre Chemistry
◽
10.1007/bf00552607
◽
1987
◽
Vol 19
(2)
◽
pp. 113-116
Author(s):
T. D. Vinokurova
◽
Yu. G. Kryazhev
Keyword(s):
Anion Exchange
◽
Graft Polymerization
◽
Viscose Fibre
◽
Spinning Process
Get full-text (via PubEx)
Fabrication and characterisation of viscose fibre with photoinduced heat-generating properties
Cellulose
◽
10.1007/s10570-018-2207-3
◽
2019
◽
Vol 26
(3)
◽
pp. 1631-1640
◽
Cited By ~ 2
Author(s):
Changlei Li
◽
Linfeng Li
◽
Jingchuan Li
◽
Xi Wu
◽
Lu Qi
◽
...
Keyword(s):
Viscose Fibre
Get full-text (via PubEx)
Modification of viscose fibre by graft polymerization of n-trimethylammonium ethylmethacrylate methyl sulfate
Fibre Chemistry
◽
10.1007/bf02396603
◽
1994
◽
Vol 26
(5)
◽
pp. 343-347
Author(s):
M. A. Penenzhik
◽
N. V. Kolokolkina
◽
A. D. Virnik
Keyword(s):
Graft Polymerization
◽
Viscose Fibre
◽
Methyl Sulfate
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Effect of tow shrinkage in the setting zone on properties of high-modulus viscose fibre
Fibre Chemistry
◽
10.1007/bf00545382
◽
1989
◽
Vol 21
(2)
◽
pp. 148-150
Author(s):
V. V. Skorobogatykh
◽
E. V. Karchevskaya
◽
E. Ya. Migacheva
Keyword(s):
Viscose Fibre
◽
High Modulus
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Study of the possibility of obtaining viscose fibre with biologically active properties by a continuous method
Fibre Chemistry
◽
10.1007/s10692-007-0071-2
◽
2007
◽
Vol 39
(4)
◽
pp. 322-326
◽
Cited By ~ 1
Author(s):
T. N. Yudanova
◽
E. V. Andreeva
◽
L. S. Gal’braikh
Keyword(s):
Viscose Fibre
◽
Continuous Method
◽
Biologically Active
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Pilot-plant check of a method of reactivating spent carbons in viscose-fibre manufacture
Fibre Chemistry
◽
10.1007/bf00563250
◽
1992
◽
Vol 23
(6)
◽
pp. 424-425
Author(s):
I. F. Aleksandrovich
◽
V. A. Strogonova
Keyword(s):
Pilot Plant
◽
Viscose Fibre
Get full-text (via PubEx)
Effect of the stretching conditions of viscose fibre prepared by the continuous method on their processing
Fibre Chemistry
◽
10.1007/bf00551098
◽
1983
◽
Vol 14
(3)
◽
pp. 222-225
Author(s):
V. A. Lasavichyus
◽
V. V. Karpavichene
◽
G. G. Finger
◽
A. M. Gershman
◽
I. P. Baksheev
Keyword(s):
Viscose Fibre
◽
Continuous Method
Get full-text (via PubEx)
Physicochemical bases of spinning viscose fibre of yarns into an aluminum sulfate precipitation bath
Fibre Chemistry
◽
10.1007/bf00549626
◽
1986
◽
Vol 18
(2)
◽
pp. 114-116
Author(s):
V. P. Kim
◽
M. M. Aref'eva
◽
G. S. Mazhirina
Keyword(s):
Aluminum Sulfate
◽
Viscose Fibre
◽
Precipitation Bath
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