Effect of Characteristics of Polyvinyl Alcohol on the Physical and Chemical Properties of Carbon-Containing Cryogels
- 作者: Fufaeva M.S.1, Manzhay V.N.2
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隶属关系:
- Institute of Petroleum Chemistry, Siberian Branch of the Russian Academy of Sciences
- the Russian Academy of Sciences
- 期: 编号 2 (2024)
- 页面: 86-89
- 栏目: Articles
- URL: https://rjmseer.com/0023-1177/article/view/661635
- DOI: https://doi.org/10.31857/S0023117724020141
- EDN: https://elibrary.ru/OLKWRG
- ID: 661635
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Samples of cryogels based on aqueous solutions of polyvinyl alcohol were investigated. The molecular weights of cryogel samples varied from 25 × 103 to 60 × 103. It has been found out that the ultimate strength of dry briquettes increases from 1.2 to 3.7 MPa with an increase in the polymer molecular weight. The resulted briquettes can be used, for example, as a proper domestic or industrial fuel.
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作者简介
M. Fufaeva
Institute of Petroleum Chemistry, Siberian Branch of the Russian Academy of Sciences
编辑信件的主要联系方式.
Email: maria81@ipc.tsc.ru
俄罗斯联邦, Tomsk
V. Manzhay
the Russian Academy of Sciences
Email: mang@ipc.tsc.ru
俄罗斯联邦, Tomsk
参考
- Лозинский В.И. // Успехи химии. 1998. Т. 67. № 7. С. 641. [Russian Chemical Reviews, 1998, vol. 67, no. 7, p. 651. https://doi.org/10.1070/RC1998v067n07ABEH000399].
- Hassan C.M., Peppas N.A. // Adv. Polym. Sci. 2000. V. 53. Р. 37.
- Ушаков С.Н. Поливиниловый спирт и его производные. М.: Изд-во АН СССР, 1960. Т. 2. 868 с.
- Николаев А.Ф., Орхименко Г.И. Водорастворимые полимеры. Л.: Химия, 1979. 144 с.
- Малкин А.Я. Основы реологии. С-Пб: Профессия, 2018. С. 474.
- Manzhai V.N., Fufaeva M.S., Kashlach E.S. // Chinese J. Polym. Sci. 2023. V. 41. P. 442. https://doi.org/10.1007/s10118-022-2889-8
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Fig. 1. Dependence of dynamic viscosity of PVA solutions (C = 100 kg/m3) on shear rate at 20°C, where molecular mass of polymer samples: (1) 25,000 (degree of hydrolysis 88%); (2) 25,000; (3) 46,000; (4) 54,000; (5) 59,000
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Fig. 2. Rheological unit constructed on the basis of Maxwell's model: (a) mock-up of the unit: (1) scale, (2) micrometer head, (3) micrometer, (4) micrometer stem, (5) cryogel sample, (6) tripod; (b) laboratory unit
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Fig. 3. Dependence of instantaneous modulus of elasticity of cryogels formed from PVA samples of different molecular weight on polymer concentration, at relative deformation of samples (ε = 0.08)
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Fig. 4. Cryogel: (a) microfragment of cryogel volume, polymer frame of which is formed from low molecular weight samples of polyvinyl alcohol; (b) microfragment of cryogel volume, polymer frame of which is formed from high molecular weight samples of PVA
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