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1.
  • Grahn, Sandra, et al. (author)
  • Civil Society and Post-Independence Democracy Levels
  • 2020
  • In: SSRN Electronic Journal. - Göteborg : Göteborgs universitet. - 1556-5068.
  • Other publication (other academic/artistic)abstract
    • The role of civil society for the consolidation of democracy is contested. Some argue that Civil Society Organizations (CSOs) are important “schools of democracy” and may foster democratic consolidation. Others emphasize that anti-democratic CSOs may undermine democracy. This debate is particularly relevant in the context of newly independent states. At this critical juncture, both democratic and authoritarian regime trajectories seem possible. Societal preconditions – such as the state of civil society – are highly relevant for the way forward. To what extent does the strength and the nature of civil society organizations (CSOs) prior to independence have an impact on the consolidation of democracy? We argue that the existence of democratic CSOs prior to democratic transition strengthen post-independence democracy whereas non-democratic CSOs have a detrimental effect. For the first time, this argument is empirically tested, using data from the Varieties of Democracy Institute (V-Dem) on 92 cases of independence since 1905. The results of this study show that the presence of democratic CSOs prior to independence is important for the consolidation of democracy, the presence of non-democratic CSOs before independence is negatively correlated to democracy levels of the new state following independence.
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2.
  • Myronycheva, Olena, 1975-, et al. (author)
  • Distribution of low-molecular lipophilic extractives beneath the surface of air- and kiln-dried Scots pine sapwood boards
  • 2018
  • In: PLOS ONE. - : PLOS. - 1932-6203. ; 13:10
  • Journal article (peer-reviewed)abstract
    • During industrial wood drying, extractives migrate towards the wood surfaces and make the material more susceptible to photo/biodegradation. The present work provides information about the distribution, quantity and nature of lipophilic substances beneath the surface in air- and kiln-dried Scots pine (Pinus sylvestris L.) sapwood boards. Samples were taken from knot-free sapwood surfaces and the composition of lipophilic extractives, phenols and low-molecular fatty/resin acids layers at different nominal depths below the surface was studied gravimetrically, by UV-spectrometry and by gas chromatography-mass spectrometry (GC-MS). The concentration of total extractives was significantly higher in kiln-dried than in air-dried samples and was higher close to the surface than in the layers beneath. The scatter in the values for the lipophilic extractives was high in both drying types, being highest for linoleic acid and slightly lower for palmitic, oleic and stearic acids. The amount of fatty acids was low in kiln-dried boards, probably due to a stronger degradation due to the high temperature employed. The most abundant resin acid was dehydroabietic acid followed by pimaric, isopimaric, and abietic acids in both drying types. It is concluded that during kiln-drying a migration front is created at a depth of 0.25 mm with a thickness of about 0.5 mm.
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