رسائل ماجيستير
English
2010
Experimental and Theoretical Assessment of Fuel Production from Waste Plastics
بسمة محمود التونسي , عبد العاطي العالم
كلية الهندسة-جامعة طرابلس · ليبيا
Rectly more than 150 million tonnes of plastics were produced in the world. On the one hand, the consumption and production of polymers e increasing, on the other hand as landfill and incineration become more expsive and less accepted .The increasing amount of polymer wastes from them gerates further mainly vironmtal problems. The recycling of plastic wastes is gaining increasing importance. Pyrolysis is one promising method for the treatmt of mixed and contaminated plastic wastes. In this way the plastic wastes e converted into fuels or other valuable feedstock for the petrochemical industry. In prest work catalytic cracking of waste plastics bld with HGO [Libyan gas oil supplied by the Zawia Oil Refinery Company boils in the range of 275-375Cº] was investigated using H-ZSM5and H-BETA. Reaction systems that were studied included high dsity polyethyle HDPE and polypropyle bld with HGO, reactions were cried out in one litre micro autoclave reactor under differt conditions of weight, temperature and type of catalyst, The optimum conditions were 2.5% catalyst by weight of total feed stock, one hour, atmospheric presser and three temperatures selected 400Cº, 425Cº and 450Cº. The product distribution for the system [plastics and HGO] provided some good results high yield of liquid [gasoline] up to 210Cº, gases and small amount of heavy oils. Some analysis was used to qualify and quantify the product. The results from GC.MS analysis showed that the yield of gasoline (c5-c12) over H-ZSM5 higher than H-BETA. In case of 5%PP, 15%HDPE and 80%HGO over H-ZSM5 at 450Cº, 96% total conversion achieved. The result from TGA in the same case is 15% by weight. Also the theoretical calculations to quantify the produced gases after burring of waste plastic in roty kiln reactor have be evaluated. it is found that the suitable ratio of CO:H2 to produce methanol is 7:1.