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W artykule przedstawiono wyniki badań emisji składników preparatów grzybobójczych do gleb. Doświadczenia przeprowadzono na zróżnicowanych pod względem właściwości chemicznych i fizycznych profilach glebowych pochodzących z Północneji Środkowej Polski (gleby brunatnoziemne, czarnoziemne, napływowe mady, gleby bielicowe, torfowe – grunty rolne i leśne). Badano doświadczalne preparaty miedziowo-amoniowe, miedziowo-borowo-amoniowe typu ACQ oraz miedziowo-chromowo-borowe (CCB). Określono zawartość w glebach jonów metali: miedzii chromu oraz kationów bliźniaczych i monoamoniowych cieczy jonowych, poekspozycji nasyconego drewna w teście ziemno-klockowym.
From research on the use of chiral ionic liquids with a natural origin substituenl for wood proteclion. Antifungal activities of chiral ionic liquids - menthoxymethylimidazolium derivates against brown-rot decay fungus (Coniophora puteana), white-rot decay fungus (Trametes versicolor) and blue-stain fungus (Sclerophoma pithyophila) were determined using screening agar-plate and agar-block methods. Results from antifungal tests revealed that 1-hexyl-3-[(1R,2S,5R)-(-)menthoxymethyl]imidazolium chloride exhibited the strongest antifungal activity against wood decay fungi (basidiomycetes) compared with the commercial didecyldimethylammonium chloride. Whereas compound with twelve carbons alkyl substituent has a weak antifungal activity. The infrared spectral analysis (FTIR ATR) confirmed that chiral imidazolium ionic liquids were built into the structure of the treated wood.
The impregnation of wood with wood preservatives may have an influence on its physical and mechanical properties. The knowledge about the character of that influence is of great importance for characterisation of functional properties of wood and, as a consequence, determination of its use classes. The ionic liquids (ILs) of imidazolium tetrafluoroborates series, which for instance very well penetrate into Scots pine wood, are active against wood-destroying fungi and generally have a positive, although insignificant, influence on physical and mechanical properties of wood, especially on its resistance to colour change during exposure to light. However, various ILs may differ widely in that respect. Under POIG.01.03.01-30-074/08 project investigations were undertaken to clarify the influence of didecyldimethylammonium nitrite ([DDA][NO2]) and IL with didecyldimethylammonium cation and anion of herbicide character ([DDA][herbicide]) on selected physical and mechanical properties of Scots pine wood (Pinus sylvestris L.). The miniature sapwood samples were subjected to sorption with the ILs by vacuum method. The properties of the treated wood were compared with those of control wood, i.e. untreated wood, using twin specimens. The average retention of ILs in wood was on the level of 3.6kg/m3, 7.4kg/m3, and 18.2kg/m3. The tested ILs had only a very small influence, from -0.5% to +1.6%, on the compression strength of wood along the grain when oven-dry wood was tested. However, at equilibrium moisture content the compression strength along the grain, bending strength, and modulus of elasticity at bending of wood treated with ILs were distinctly lower, i.e. by 10%, 20% and 15% respectively. The equilibrium moisture content of wood treated with ILs was greater by 2-3% than that of control wood, which may be the reason for deterioration of wood mechanical properties. However, this speculation requires further investigations.
The results of the tests of the effectiveness of the action of new, not yet described in the literature group of biocidal ionic liquids were synthesised and presented. Those ionic liquids are derivatives of the leading structure, i.e. didecyldimethylammonium nitrate, and demonstrate strong action against mould fungi. Natural quaternary ammonium salts, mainly extracts from coconut and soybean, and from vegetable fats, were the basis for syntheses. Mycological tests were carried out on the wood of pine Pinus sylvestris L. (sapwood) in accordance with the method assumed binding for the assessment of biocide efficacy.
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