PERANCANGAN DESAIN ALAT PIROLISIS UNTUK MENGKONVERSI LIMBAH PLASTIK TIPE POLYETHYLENE (PE) DAN POLYPROYLENE (PP) BERBAHAN BAKAR BIOMASSA DI TPSA MANGGAR

Main Author: Maulana, Mochammad Wisnu
Format: Thesis NonPeerReviewed Book
Bahasa: eng
Terbitan: , 2018
Subjects:
Online Access: http://eprints.umm.ac.id/42148/1/Pendahuluan.pdf
http://eprints.umm.ac.id/42148/2/BAB%20I.pdf
http://eprints.umm.ac.id/42148/3/BAB%20II.pdf
http://eprints.umm.ac.id/42148/4/BAB%20III.pdf
http://eprints.umm.ac.id/42148/5/BAB%20IV.pdf
http://eprints.umm.ac.id/42148/6/BAB%20V.pdf
http://eprints.umm.ac.id/42148/7/Lampiran.pdf
http://eprints.umm.ac.id/42148/
Daftar Isi:
  • Plastic is a polymer compound that has a long chain of carbon and has a nonbiodegradable (un biodegradable) nature. Therefore plastic waste is the dominance of the problems in Indonesia occupying the second rank at the world level as a country producing plastic waste that is discharged into the sea. This plastic waste processing machine into fuel oil can be a solution in handling the problem of plastic waste. In the design of the pyrolysis device, it is designed in such a way that it is more efficient, simple and utilizes natural energy as a heat source for converting plastic waste. In the design of pyrolysis tools, the design and explanation of products, concepts, design shapes, and detailed design of this design refers to the method of designing Pahl and Beitz in the design of pyrolysis tools. In the design of pyrolysis tool design, the result is the time to convert 100 kg of plastic for 4.1 hours, the furnace raw material needed to convert 100 kg of plastic requires 40 kg of ironwood. The average temperature of the condenser designed is 40.42 °C, the oil produced from this tool when working is 60 liters of 100 kg of PP and PE plastic waste.