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dc.contributor.authorHimawanto, Dwi Aries
dc.date.accessioned2012-04-16T06:15:10Z
dc.date.available2012-04-16T06:15:10Z
dc.date.issued2005-07
dc.identifier.citationAmorino,Carlo., Madeddu,Alessandra., Raggio,Gianni., Cau,Giorgio., Zotter,Thomas., 2002, Demonstration Plant of Co-combustion of Coal and on Site Pre-treted Waste in a Fluidized Bed for Electricity Production, CCT 2002 Biagini,E., Tognotti,L., Mallogni,S., Pasini,S., 2002, Co-Combustion of Coal and Tire Residue in A Pilot Plant : A Simplied Modeling approach For Scale-Up Predictions of Char Oxidation, Combust.Sci. and Tech, 174 (11&12) pp. 129-150 Boavida,D., Abelha,P., Gulyurthu,I., Cabrita,I., 2002, Co-combustion of Coal and Non Recyclable Paper and Plastic Waste in a Fluidized Bed Reactor, ICCT, Sardinia, Italy, 21st Oct Himawanto, D.A, 2003, Pengolahan Limbah Pertanian menjadiBiobriket sebagai salah satu Bahan Bakar Alternatif , Laporan Akhir Penelitian Hibah Pekerti, Lembaga Penelitian Universitas Sebelas Maret Surakarta Kiran,N., Ekinci,E., Snape,C.E., 2000, Recycling of Plastic Waste Via Pyrolisis, Resources Concervation and Recycling 29 (2000) pp. 273-283 Li Xiadong, Yan Jianhua, Chi Yang, Jiang Xuguang, 1999, Study of Fluidized Bed Combustion Technology Co-firing MSW and Coal : Its Application, Proceedings of The 15th Intl. Conf. On Fluidized Bed Combustion, May 16-19, 1999, Savanah, Georgia. Stevanovic,A., Mehta,S., Walther,D.C., Pello,Fernandes,A.C., 2002, The effect of Fiberglass concentration on The Piloted Ignition of Polypropylene/fibreglass Composite, Combustion Science. and Tech, 174 (11&12) pp. 171-186 Sudradjat,R, 2004, The Potential of Biomass Energy Resources in Indonesia for the Possible Development of Clean Technology Process (CPT’, Proceedings International Workshop on Biomass & clean Fossil fuel Power Plant Technology, Jakarta, January 13-14,. 2004.en_US
dc.identifier.issn1411-4348
dc.identifier.urihttp://hdl.handle.net/11617/794
dc.description.abstractThe aim of the research was find out the effect of carbonization temperature to the combustion characteristic of Municipal Solid Waste (MSW) briquette as an alternative solid fuel. The broquette manufacturing started when the MSW with contain 10 % weight of non organic matter crushed into litle pieces, limestone and mollases as a binder ,and pressed in pressing machine. The formed biobriquette were taken into a carbonization furnace to carbonize in three diferent temperature i.e. 80 0C, 120 0C, and 140 0C, then taken into furnace to find tthe combustion characterictics. The results of the research show that the 120 0C carbonize briquette give the best combustion performance .en_US
dc.subjectbriquetteen_US
dc.subjectMSWen_US
dc.subjectcombustion characteristicen_US
dc.subjectcarbonizationen_US
dc.titlePENGARUH TEMPERATUR KARBONASI TERHADAP KARAKTERISTIK PEMBAKARAN BRIKET SAMPAH KOTAen_US
dc.typeArticleen_US


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