DocumentCode :
682116
Title :
Preparation of polymers electrolyte membranes from Styrofoam waste for lithium battery
Author :
Arcana, I. Made ; Bundjali, Bunbun ; Rochliadi, Achmad ; Hariyawati, Ni Ketut
Author_Institution :
Inorg. & Phys. Chem. Res. Groups, Inst. Teknol. Bandung, Bandung, Indonesia
fYear :
2013
fDate :
26-28 Nov. 2013
Firstpage :
1
Lastpage :
4
Abstract :
Recently, the battery industry has represented one important and growing sector where the use of non-toxic and non-hazardous substitute materials has not rapidly developed. The environmentally friendly polymer electrolyte is required to decrease the risk of environmental pollution caused by toxic materials of battery components. Therefore, in this study was focused on the preparation of the environmentally friendly polymer electrolyte membrane with low cost for lithium-ion battery applications. The preparation of polymer electrolyte membrane was done by casting of polymer solution. The main materials used to prepare polymer electrolyte membranes are sulfonated polystyrene (SPS) obtained from isolation of Styrofoam, hydrolyzed bacterial poly(R-hydroxybutyrate) (PHB), and lithium perchlorate (LiClO4) as an ionic salt. The isolated polystyrene was reacted with acetyl sulfate to form sulfonated polystyrene (SPS). These three main materials were dissolved in an appropriate solvent and mixture until homogenous. The polymer solution was poured into a petri dish, and then their solvent was evaporated. The results showed that the increase LiClO4 content in the membranes, the conductivity of membrane increases, but their mechanical strength decreases and the surface morphology of membranes becomes less uniform and homogenous.
Keywords :
casting; lithium; membranes; secondary cells; surface morphology; LiClCO4; PHB; SPS; Styrofoam isolation; Styrofoam waste; acetyl sulfate; battery component; battery industry; environmental pollution; environmentally friendly polymer electrolyte; environmentally-friendly polymer electrolyte membrane; form-sulfonated polystyrene; hydrolyzed bacterial poly(R-hydroxybutyrate); ionic salt; isolated polystyrene; lithium battery; lithium perchlorate; lithium-ion battery application; mechanical strength; membrane conductivity; nonhazardous substitute material; nontoxic substitute material; petri dish; polymer electrolyte membrane; polymer electrolyte membrane preparation; polymer electrolyte membranes; polymer solution casting; sulfonated polystyrene; surface morphology; toxic material; Batteries; Biomembranes; Conductivity; Lithium; Mechanical factors; Plastics; Sulfonated polystyrene; lithium battery; polyhydroxybutyrate; polymer electrolyte;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Rural Information & Communication Technology and Electric-Vehicle Technology (rICT & ICeV-T), 2013 Joint International Conference on
Conference_Location :
Bandung
Print_ISBN :
978-1-4799-3363-1
Type :
conf
DOI :
10.1109/rICT-ICeVT.2013.6741551
Filename :
6741551
Link To Document :
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