PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Characteristics of natural and synthetic molecular sieves and study of their interactions with fragrance compounds

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Structural, physicochemical and adsorption properties of two natural and one synthetic molecular sieves were investigated by various techniques: X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, low-temperature nitrogen adsorption and inverse gas chromatography. The influence of these properties on the ability to adsorb two model fragrances: p-cymene and menthol was studied. The free enthalpy, entropy and Gibbs free energy of adsorption of fragrance molecules on the surface of zeolite and zeolite-like materials were estimated by using inverse gas chromatography. Also, the influence of temperature on the stability of solid-fragrance compound systems as well as the release of the adsorbed fragrance compounds was studied. The obtained results exhibit that both porosity and chemical composition of molecular sieves influence the size and strength of adsorption of fragrance compounds. The study indicated different release characteristics for p-cymene and menthol.
Rocznik
Strony
789--802
Opis fizyczny
Bibliogr. 41 poz., rys., tab.
Twórcy
  • Poznan University of Technology, Faculty of Chemical Technology, Institute of Chemical Technology and Engineering, Berdychowo 4, PL-60965 Poznan, Poland
  • Poznan University of Technology, Faculty of Chemical Technology, Institute of Chemical Technology and Engineering, Berdychowo 4, PL-60965 Poznan, Poland
autor
  • Poznan University of Technology, Faculty of Chemical Technology, Institute of Chemical Technology and Engineering, Berdychowo 4, PL-60965 Poznan, Poland
Bibliografia
  • BARKET JR. D.J., COSTA J.B., GALLON L.S., LITTING J.S., 1999, High efficiency delivery system comprising zeolites, U.S. Patent 5955419 A.
  • BELGACEM M.N., GANDINI A., 1999, IGC as a tool to characterize dispersive and acid-base properties of the surface of fibers and powders, Marcel Dekker Inc., New York.
  • BILGIC C., TUMSEK F., 2007, Determination of the acid/base properties of MgY and NH4Y molecular sieves by Inverse Gas Chromatography, J. Chromatogr. A 1162, 83-89.
  • BILGIC C., YAZICI D.T., KARAKEHYA N., CETINKAYA H., SINGH A., CHEHIMMI M.M., 2014, Surface and interface physicochemical aspects of intercalated organo-bentonite, Int. J. Adhesion & Adhesives 50, 204-210.
  • CANLI M., ABALI Y., BAYCA S.U., 2013, Removal of Methylene Blue by natural and Ca and K-exchanged zeolite treated with hydrogen peroxide, Physicochem. Probl. Miner. Process. 49, 481-496.
  • CANTERGIANI E., BENCZEDI D., 2002, Use of Inverse Gas Chromatography to characterize cotton fabrics and their interactions with fragrance molecules at controlled relative humidity, J. Chromatogr. A 969, 103-110.
  • CHANG F., ZHOU J., CHEN P., CHEN Y., JIA H., SAAD S.M.I., GAO Y., CAO X., ZHENG T.,2013, Microporous and mesoporous materials for gas storage and separation: A review, Asia-Pac. J. Chem. Eng. 8, 618-626.
  • CHEN C., PARKA D.-W., AHN W.-S., 2014, CO2 capture using zeolite 13X prepared from bentonite, Appl. Surf. Sci. 292, 63-67.
  • DENTE S.V., 2007, Fragrance compositions and delivery systems, U.S. Patent 7183249.
  • DIAZ E., ORDONEZ S., VEGA A., COCA J., 2005, Evaluation of adsorption properties of zeolites using Inverse Gas Chromatography: Comparison with immersion calorimetry, Thermochim. Acta 434, 9-14.
  • FUJIWARA M., FUJIO Y., SAKURAI H., SENOH H., KIYOBAYASHI T., 2014, Storage of molecular hydrogen into ZSM-5 zeolite in the ambient atmosphere by the sealing of the micropore outlet, Chem. Eng. Process. 79, 1-6.
  • GU F.N., CAO Y., WANG Y., ZHU J. H., 2008, Zeolite multifunctional materials as the menthol carrier and nitrosamines trapper, Elsevier B.V, Amsterdam.
  • HORCAJADA P., RAMILA A., PEREZ-PARIENTE J., VALLET-REGI M., 2004, Influence of pore size of MCM-41 matrices on drug delivery rate, Micropor. Mesopor. Mat. 68, 105-109.
  • KIM S.-S., PAULY T.R., PINNAVAIA T.J., 2000, Non-ionic surfactant assembly of ordered, very large pore molecular sieve silicas from water soluble silicates, Chem. Commun. 20, 1661-1662.
  • KONDOR A., DALLOS A., 2014, Adsorption isotherms of some alkyl aromatic hydrocarbons and surface energies on partially dealuminated Y faujasite zeolite by Inverse Gas Chromatography, J. Chromatogr. A 1362, 250-261.
  • KORKUNA O., LEBODA R., SKUBISZEWSKA-ZIEBA J., VRUBLEVS’KA T., GUN’KO V.M., RYCZKOWSKI J., 2006, Structural and physicochemical properties of natural zeolites: clinoptilolite and mordenite, Micropor. Mesopor. Mat. 87, 243-254.
  • KOWALAK S., JANKOWSKA A., 2003, Application of zeolites as matrices for pigments, Micropor. Mesopor. Mat. 61, 213-222.
  • MADENE A., JACQUOT M., SCHER J., DESOBRY S., 2006, Flavour encapsulation and controlled release – A review, Int. J. Food Sci. Technol. 41, 1-21.
  • MARIN E.M., VELAZQUEZ J.M., DIHORA J.O., GONZALEZ R.G., SAINI G., 2004, Delivery system having encapsulated porous carrier loaded with additives, particularly detergent additives such as perfumes, U.S. Patent 6790814 B1.
  • MOHAMMADI-JAM S., WATERS K. E., 2014, Inverse Gas Chromatography applications: A review, Adv. Colloid Interface 212, 21-44.
  • MURRAY H.H., 2000, Traditional and new applications for kaolin, smectite, and palygorskite: a general overview, Appl. Clay Sci. 17, 207-221.
  • NEDOVIC V., KALUSEVIC A., MANOJLOVIC V., LEVIC S., BUGARSKI B., 2011, An overview of encapsulation technologies for food applications, Proc. Food Sci. 1, 1806-1815.
  • PAN R.Y.L., YOU J.F., CARAVAJAL G.S., GRAVES S.A., MUELLER W.R., 1997, Perfume delivery system comprising zeolites, U.S. Patent 5691303 A.
  • PORTABALES M.G., GREEN M., VELAZQUEZ J., DE CASTRO M.E., WEVERS J., 2005, Perfumed detergent tablets, U.S. Patent 20050202992 A1.
  • QIN L., ZHANG S., ZHANG Y., CAO T., ZHAO J., GUO Z., 2014, Adsorption characterization of hydrofluorocarbons on clay materials, Instrum. Sci. Technol. 42, 357-367.
  • REUTENAUER S., THIELMANN F, 2003, The characterization of cotton fabrics and the interaction with perfume molecules by Inverse Gas Chromatography (IGC), J. Mater. Sci. 38, 2205-2208.
  • RIVERA A., FARIAS T., RUIZ-SALVADOR A.R., DE MENORVAL L.C., 2003, Preliminary characterization of drug support systems based on natural clinoptilolite, Micropor. Mesopor. Mat. 61, 249-259.
  • ROTH W.J.,NACHTIGALL P., MORRIS R.E., CEJKA J., 2014, Two-dimensional zeolites: current status and perspectives, Chem. Rev. 114, 4807-4837.
  • SCHULTZ J., LAVIELLE L., MARTIN C., 1987, The role of the interface in carbon fibre-epoxy composites, J. Adhesion 23, 45-60.
  • SING K.S.W., EVERETT D.H., HAUL R.A.W., MOSCOU L., PIEROTTI R.A., ROUQUEROL J., SIEMIENIEWSKA T., 1985, Reporting physisorption data for gas/solid systems with special reference to the determination of surface area and porosity, Pure Appl. Chem. 57, 603-619.
  • SIRIWARDANE R.V., SHEN M.-S., FISHER E.P., 2003, Adsorption of CO2, N2, and O2 on natural zeolites, Energ. Fuel. 17, 571-576.
  • SPRYNSKYY M., GOLEMBIEWSKI R., TRYKOWSKI G., BUSZEWSKI B., 2010, Heterogeneity and hierarchy of cclinoptilolite porosity, J. Phys. Chem. Solids. 71, 1269-1277.
  • STRZEMIECKA B., KASPERKOWIAK M., LOZYNSKI M., PAUKSZTA D., VOELKEL A., 2012, Examination of zeolites as fragrance carriers, Micropor. Mesopor. Mat. 161, 106-114.
  • SZOSTAK R., 1998, Molecular sieves: principles of synthesis and identification, Blackie Academic & Professional, London.
  • TEKIN R., BAC N., WARZYWODA J., SACCO JR. A., 2015, Encapsulation of a fragrance molecule in zeolite X, Micropor. Mesopor. Mat.215, 51-57.
  • THANG H.V., GRAJCIAR L., NACHTIGALL P., BLUDSKY O., AREAN C.O., FRYDOVA E., BULANEK R., 2014, Adsorption of CO2 in FAU zeolites: Effect of zeolite composition, Catal. Today 227, 50-56.
  • VAN SOEST J.J.G., 2007, Encapsulation of fragrances and flavours: A way to control odour and Aroma in Consumer Products, Springer-Verlag, Berlin.
  • WEITKAMP J., 2000, Zeolites and catalysis, Solid State Ionics 131, 175-188.
  • WELCH R.G., DIHORA J.O., ALWART T.S., 2003, Scented candles, U.S. Patent 20030064336 A1.
  • WELCH R.G., DIHORA J.O., ALWART T.S., 2007, Scented candles, U.S. Patent 7291187 B2.
  • YLA-MAIHANIENI P.P., HENG J.Y.Y., THIELMANN F., WILLIAMS D.R., 2008, Inverse Gas Chromatographic method for measuring the dispersive surface energy distribution for particulates, Langmuir, 24, 9551-9557.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-118877ea-56e1-4fc3-b3ac-1d0ee257f78e
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.