Garlic powder and wheat bran as fillers: Their effect on the physicochemical properties of edible biocomposites


Autoria(s): FAMA, Lucia; BITTANTE, Ana Monica B. Q.; SOBRAL, Paulo J. A.; GOYANES, Silvia; GERSCHENSON, Lia N.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

19/10/2012

19/10/2012

2010

Resumo

Biocomposites with two different fillers, garlic and wheat bran, were studied. They were based on cassava starch and contained glycerol as a plasticizer and potassium sorbate as an antimicrobial agent and were characterized by scanning electron microscopy (SEM), differential scanning calorimetry (DSC) and infrared spectroscopy (IR). The mechanical performance at room and lower temperatures was also studied. SEM micrographies of fractured surfaces of the wheat bran composite films showed some ruptured particles of fiber while fibrils of garlic on the order of nanometers were observed when garlic composite films were studied. Mechanical tests, at room temperature, showed that the addition of wheat bran led to an increment in the storage modulus (E`) and hardening and a decrease in Tan delta, while the garlic composite showed a diminishing in the E` and hardening and did not produce significant changes in Tan delta values when compared with systems without fillers (matrix). In the range between -90 degrees C and 20 degrees C. all the materials studied presented two peaks in the Tan delta curve. In the case of the wheat bran composite, both relaxation peaks shifted slightly to higher temperatures, broadened and diminished their intensity when compared with those of the matrix; however garlic composite showed a similar behavior to the matrix. DSC thermograms of aqueous systems showed a slight shift of gelatinization temperature (T(gelatinization)) to higher values when the fillers were present. Thermograms of films showed that both, garlic and wheat bran composites, had a lower melting point than the matrix. IR data indicated that interaction between starch and fillers determined an increase in the availability of hydroxyl groups to be involved in a dynamic exchange with water. (C) 2010 Elsevier B.V. All rights reserved.

University of Buenos Aires (UBA), Argentina

National Scientific and Technical Research Council -Argentina (CONICET)

National Agency of Scientific and Technological Promotion -Argentina (ANPCyT)

Latin American Science & Technology Development Programme (CYTED)

University of Sao Paulo (USP)

Identificador

Materials science and engineering. C, Biomimetic materials, sensors and systems, v.30, n.6, p.853-859, 2010

0928-4931

http://producao.usp.br/handle/BDPI/26813

10.1016/j.msec.2010.03.022

http://dx.doi.org/10.1016/j.msec.2010.03.022

Idioma(s)

eng

Publicador

ELSEVIER SCIENCE BV

Relação

Materials science and engineering. C, Biomimetic materials, sensors and systems

Direitos

restrictedAccess

Copyright ELSEVIER SCIENCE BV

Palavras-Chave #Biocomposites #Starch #Fillers #Garlic powder #Wheat bran #MECHANICAL-PROPERTIES #PHYSICAL-PROPERTIES #MICROSTRUCTURAL CHARACTERIZATION #BIODEGRADABLE FILMS #COMPOSITE FILMS #STARCH #AMYLOSE #PROTEIN #FIBER #WATER #Materials Science, Biomaterials
Tipo

article

original article

publishedVersion