Plastics Waste to The Rescue

2021 ◽  
Vol 77 (9) ◽  
pp. 36-39
Author(s):  
PAT TOENSMEIER
Keyword(s):  
2021 ◽  
Author(s):  
Sigit Tri Wicaksono ◽  
Widyastuti ◽  
Raka Bayu Naweswara ◽  
Amaliya Rasyida

1990 ◽  
Vol 19 (5) ◽  
pp. 337-338
Author(s):  
SHIGETA FUJIMOTO
Keyword(s):  

1994 ◽  
Vol 50 (5) ◽  
pp. P176-P180
Author(s):  
KAZUHIRO NAKANE
Keyword(s):  

2001 ◽  
pp. 111-118
Author(s):  
Walter Michaeli ◽  
Helmut Greif ◽  
Gernot Kretzschmar ◽  
Frank Ehrig
Keyword(s):  

2016 ◽  
Vol 78 (9-2) ◽  
Author(s):  
Hasan Mohd Faizal ◽  
M. Shafiq M. Nazri ◽  
Md. Mizanur Rahman ◽  
S. Syahrullail ◽  
Z. A. Latiff

High global energy demand scenario has driven towards transformation from sole dependence on fossil fuels to utilization of inexhaustible renewable energy sources such as hydro, biomass, solar and wind. Renewable energy sources are abundant in Malaysia, especially palm biomass residues that are produced during the oil extraction process of fresh fruit bunch. Therefore, it is inevitable to harness these bioenergy sources, in order to prevent waste accumulation at adjacent to palm mills. Briquetting of palm biomass such as empty fruit bunch (EFB) with polyethylene (PE) plastics waste addition is expected not only could maximize the utilization of energy resources, but also could become as a potential solution for residue and municipal plastics waste disposal. In the present study, the physical and combustion properties of palm biomass briquettes that contain novel mixture of pulverized EFB and PE plastics waste were investigated experimentally. The briquettes were produced with different mixing ratio of EFB and PE plastics (weight ratios of 95:5, 90:10 and 85:15), under various heating temperatures (130-190 ) and at constant compaction pressure of 7 MPa. Based on the results, it can be said that heating temperature plays a significant role in affecting physical properties such as relaxed density and compressive strength. The values of relaxed density and compressive strength are within the range of 1100 to 1300 kg/m3 and 0.8 to 1.2 MPa, respectively. Meanwhile, mixing ratio does affect relaxed density and gross calorific value. All values of gross calorific (17900 to 21000 kJ/kg) and moisture content (7% to 9%) are found to fulfill the requirement for commercialization as stated by DIN51731 (gross calorific value>17500 kJ/kg and moisture content<10%). Even though the values of ash content (3% to 4%) exceed the limitation as stated by the standard (<0.7%), it is still considered very competitive if compared to the commonly used local briquette that contains mesocarp fibre and shell (5.8%). Finally, it can be concluded that the best quality of briquette can be achieved when highest composition of PE plastics (weight percentage of 15%) is used and the briquetting process is performed at the highest temperature (190 ).  


2020 ◽  
Vol ahead-of-print (ahead-of-print) ◽  
Author(s):  
Wogene Tesfaye ◽  
Daniel Kitaw

Purpose Plastics waste management is a critical agenda for the global community. Recycling is the most important strategy option for recovering plastics wastes. This study aims to review reverse logistics (RL) implementation practices and conceptualizing it to the plastic recycling system. Design/methodology/approach The paper is organized after evaluating the studies related to plastics waste recycling and analyzing the available frameworks to use RL as a strategic tool. Findings The paper has investigated that previous research on RL implementation focused on a few stages of RL activities and did not include the most important issues. However, for successful RL implementation, taking into account the whole stage and including the most important factors is very important. To elaborate on this finding a new conceptual framework is developed. Research limitations/implications The paper is fully based on literature review and international reports. The developed framework is required for further empirical validation in the plastics sector. Practical implications The paper has considered the important issues and the applications of those factors that can improve plastics recycling performances. Social implications This study can enhance the active involvement of main actors (plastics producers, users, municipal and recyclers) in the plastics recycling system. Originality/value This paper deliberates on how RL can be conceptualized and implemented in plastics recycling systems in considering the most important factors for plastics recycling.


Author(s):  
Chang-Sik Ha ◽  
Hae-Dong Park ◽  
Youngkyoo Kim ◽  
Soon-Ki Kwon ◽  
Won-Jei Cho

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