scholarly journals Characterization of Licorice Root Waste for Prospective Use as Filler in more Eco-Friendly Composite Materials

Processes ◽  
2020 ◽  
Vol 8 (6) ◽  
pp. 733
Author(s):  
Carlo Santulli ◽  
Marco Rallini ◽  
Debora Puglia ◽  
Serena Gabrielli ◽  
Luigi Torre ◽  
...  

The extraction of glycyrrhizin from licorice root and stolon with ethanol/water solutions leaves a lignocellulosic residue, which could be potentially applied in biocomposites. This process proved difficult in principle, given the considerable hardness of this material as received, which impedes its use in polymer resins in large amounts. After ball milling, up to 10% of this fibrous residue, which shows very variable aspect ratio, was introduced into an epoxy matrix, to investigate its possible future application in sustainable polymers. Of the three composites investigated, containing 1, 5 and 10 wt% of licorice waste, respectively, by performing flexural testing, it was found that the introduction of an intermediate amount of filler proved the most suitable for possible development. Thermal characterization by thermogravimetry (TGA) did not indicate large variation of degradation properties due to the introduction of the filler. Despite the preliminary characteristics of this study, an acceptable resin-filler interface has been obtained for all filler contents. Issues to be solved in future study would be the possibility to include a larger amount of filler by better compatibilization and a more uniform distribution of the filler, considering their orientation, since most of it maintains an elongated geometry after ball milling.




2019 ◽  
Vol 102 ◽  
pp. 175-179 ◽  
Author(s):  
A. Sommier ◽  
J. Malvaut ◽  
V. Delos ◽  
M. Romano ◽  
T. Bazire ◽  
...  


2019 ◽  
Author(s):  
Marwah S. Attallah ◽  
Reem Alaa Mohammed ◽  
Aseel B. AL-Zubidi


2013 ◽  
Vol 652-654 ◽  
pp. 98-101 ◽  
Author(s):  
Zhuo Cheng Liu ◽  
Hui Ping Ren ◽  
Yi Ming Li ◽  
Feng Hu ◽  
Zeng Wu Zhao ◽  
...  

In order to improve the hydrogen storage performance of La2Mg17 alloy, with high energy ball-milling in argon atmosphere prepared La2Mg17-Ni composite materials, and mixed in a little NbF5. Through automatSubscript textic control Sieverts equipment tested hydrogen absorption kinetic characteristics of sample. X-ray diffraction (XRD) analyzed the microstructure of material after hydrogenated, and estimated the phase composition of hydrogenated powder material. The results showed that hydrogen storage properties of composite materials improved significantly because of the mechanical ball-milling approach, and the hydrogenated capabilities also increased dramatically with rising of temperature. Further explained the material hydriding property is largely ameliorate because of the Ni powder and NbF5 prompted amorphous or nanocrystalline particle formation, but temperature controlling the generation of new hydride phase is as well the reason of hydrogenated performance to advance.









2016 ◽  
Vol 162 ◽  
pp. 1462-1472 ◽  
Author(s):  
Kathrin Korhammer ◽  
Mona-Maria Druske ◽  
Armand Fopah-Lele ◽  
Holger Urs Rammelberg ◽  
Nina Wegscheider ◽  
...  


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