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41.
Utilization of red mud as catalyst in conversion of waste oil and waste plastics to fuel 总被引:4,自引:0,他引:4
A. Ihsan?Cakici Jale?YanikEmail author Suat?U?ar Tamer?Karayildirim Huseyin?Anil 《Journal of Material Cycles and Waste Management》2004,6(1):20-26
The aim of this study was to investigate the possibilities of using a by-product (red mud) from alumina production as a catalyst for recovery of waste. The conversion of waste mineral oil (WMO) and waste mineral oil/municipal waste plastic (WMO/MWP) blends over red mud (RM), a commercial hydrocracking catalyst (silica–alumina), and a commercial hydrotreating catalyst (Ni–Mo/alumina) to fuel has been studied. The effect of the catalyst and the temperature on the product distribution (gas, liquid, and wax) and the properties of liquid products were investigated. In the case of hydrotreatment of WMO, the liquids obtained over RM at both 400° and 425°C had larger amounts of low-boiling hydrocarbons than that of thermal or catalytic treatment with hydrotreating catalyst. Gas chromatography and nuclear magnetic resonance analysis of the liquid products showed that RM had hydrogenation and cracking activity in hydrotreatment of WMO. In coprocessing of WMO with municipal waste plastics, temperature had an important effect as well as the amount of MWP in the blend and the catalyst type. The hydrocracking at 400°C produced no liquid product. In hydrocracking at 425°C, the product distribution varied with catalyst type and MWP amount. The commercial hydrocracking catalyst had more cracking ability in the conversion of WMO/MWP to liquid and gas fuel than RM. In the case of hydrocracking over RM, the largest amount of liquid having satisfactory quality was obtained only from the blend containing 20% MWP. 相似文献
42.
/ Surveys focusing on solid-waste-related issues, conducted over a period of several years, provided data from independent samples of residents of a Midwestern, USA, community. The collection of these data yielded useful information about the relationship between residents' recycling motives and their attitudes toward solid waste management in light of several changes in the solid waste infrastructure of the community over that time. The initial survey assessed baseline beliefs and attitudes, while later surveys were conducted after the implementation of a community educational program and a curbside recycling program. The findings indicated that for recyclers and nonrecyclers, different motives predicted endorsement of solid waste programs and policies. Although a similar percentage of recyclers and nonrecyclers were in support of various proposed programs and policies, concern for the environment was found to be positively related to nonrecyclers' support of proposed programs, particularly before these programs were implemented. Prior to program implementation, motives other than environmental altruism were found to be related to recyclers' support of the programs. Additional findings support the idea that educational programs and increased accessibility to recycling opportunities affect the relationship between people's attitudes toward solid waste management and their recycling motives. 相似文献
43.
H. Cornier-Ríos P. A. Sundaram J. T. Celorie 《Journal of Polymers and the Environment》2007,15(1):51-56
Recycled plastics are considered low performance materials because their properties are expected to decrease drastically with
recycling. The objective of this study was to characterize a 15 wt.% glass filled polyethylene terephthalate (rPET-15GF) using
six recycle generations and four recycle ratios. Mechanical properties such as tensile strength, elastic modulus, and percent
elongation to failure of the PET composite were determined for various recycle generations and recycle ratios. Results show
that the mechanical properties of rPET-15GF decrease slightly per recycle generation. In contrast, thermal properties of rPET-15GF
were not at all affected by the recycling process. This data demonstrates that recycled glass filled PET can be used effectively
to fabricate components without significantly affecting their mechanical performance. 相似文献
44.
Marcos R. Monteiro Daniela G. G. Moreira Marcelo A. Chinelatto Pedro A. P. Nascente Nelson G. Alcântara 《Journal of Polymers and the Environment》2007,15(3):195-199
The cell phone market is developing at a rapid speed. Today there are more than 1.6 billion consumers in the world, and the
lifetime of a cell phone is less than 2 years. As a consequence, there is an increase in the waste associated to this product,
and many alternatives to the disposal of the cell phones are being studied, such as recycling which shows to be the most important.
It is crucial to know what materials constitute the cell phone in order to carry out recycling and determine environmental
and economical issues. This work presents an evaluation of the cell phone components, characterizing the raw materials and
some properties of the recycled materials. 相似文献
45.
Present status of the recycling of waste electrical and electronic equipment in Korea 总被引:7,自引:1,他引:7
In Korea due to rapid economical growth followed by urbanisation, breakage of large traditional families into small nuclear families, continuous changes in equipment features and capabilities causes tremendous increase in sale of new electrical and electronic equipment (EEE) and decrease in sale of used EEE. Subsequently, the ever-increasing quantity of waste electrical and electronic equipment (WEEE) has become a serious social problem and threat to the environment. Therefore, the gradual increase in the generation of WEEE intensifies the interest for recycling to conserve the resources and protect the environment. In view of the above, a review has been made related to the present status of the recycling of waste electrical and electronic equipment in Korea. This paper describes the present status of generation and recycling of waste electrical and electronic equipment, namely TVs, refrigerators, washing machines, air conditioners, personal computers and mobile phones in Korea. The commercial processes and the status of developing new technologies for the recycling of metallic values from waste printed circuit boards (PCBs) is also described briefly. Since 1998, three recycling centers are in full operation to recycle WEEE such as refrigerators, washing machines and air conditioners, having the total capacity of 880,000 units/year. All waste TVs are recently recycled on commission basis by several private recycling plants. The recycling of waste personal computers and mobile phones is insignificant in comparison with the amount of estimated obsolete those. Korea has adopted and enforced the extended producer responsibility (EPR) system. Korea is making consistent efforts to improve the recycling rate to the standards indicated in the EU directives for WEEE. Especially environmentally friendly and energy-saving technologies are being developed to recycle metal values from PCBs of WEEE. 相似文献
46.
The effects of employing activated Al2O3 during the catalytic pyrolysis of waste printed circuit boards (WPCBs) are investigated, focusing on the recycling of light oil. Variations in the pyrolysis process are studied through analysis of the phase distribution, water content and boiling point fractions of the resulting products. Product composition and carbon number distribution are analyzed using gas chromatography techniques. The use of activated Al2O3 increases the light oil fraction and also reduces the quantity of brominated products formed. It was determined that the best yield of light oil and most efficient debromination resulted from catalytic pyrolysis at 600 °C. Applying catalyst-to-feed ratios in the range of 1.0–1.5 also maximizes the yield of light oil. The major oil fraction resulting from catalytic pyrolysis has a boiling point range of 0–250 °C and carbon number range of C6–C9, showing for use as a potential fuel after suitable treatment such as hydrogenation. At a higher catalyst-to-feed ratio of 2.0, activated Al2O3 generates a high proportion of light oil fractions containing a significant quantity of chemicals such as phenol (52.67% at 600 °C), although an overall lower yield of oil is obtained. The oil produced in this manner may also be used as a raw material feedstock for the production of various other useful chemicals. 相似文献
47.
Lavee D 《Environmental management》2007,40(6):926-943
It has traditionally been argued that recycling municipal solid waste (MSW) is usually not economically viable and that only
when externalities, long-term dynamic considerations, and/or the entire product life cycle are taken into account, recycling
becomes worthwhile from a social point of view. This article explores the results of a wide study conducted in Israel in the
years 2000–2004. Our results reveal that recycling is optimal more often than usually claimed, even when externality considerations
are ignored.
The study is unique in the tools it uses to explore the efficiency of recycling: a computer-based simulation applied to an
extensive database. We developed a simulation for assessing the costs of handling and treating MSW under different waste-management
systems and used this simulation to explore possible cost reductions obtained by designating some of the waste (otherwise
sent to landfill) to recycling. We ran the simulation on data from 79 municipalities in Israel that produce over 60% of MSW
in Israel. For each municipality, we were able to arrive at an optimal method of waste management and compare the costs associated
with 100% landfilling to the costs born by the municipality when some of the waste is recycled. Our results indicate that
for 51% of the municipalities, it would be efficient to adopt recycling, even without accounting for externality costs. We
found that by adopting recycling, municipalities would be able to reduce direct costs by an average of 11%.
Through interviews conducted with representatives of municipalities, we were also able to identify obstacles to the utilization
of recycling, answering in part the question of why actual recycling levels in Israel are lower than our model predicts they
should be. 相似文献
48.
Hong Kong is a compact and ‘land-hungry’ city where recycling has become an important measure for treating waste and reducing the demand on the limited landfills. The objectives of this paper are to extend the model of recycling attitude and behaviour to explain the relationship between perceived policy effectiveness and recycling behaviour. Previous studies on recycling attitude and behaviour had widely adopted the theory of planned behaviour (TPB) and the norm activation model (NAM), and drawn policy implications from them. Nevertheless, little research has been conducted to investigate the role of perceived effectiveness of policy measures in predicting recycling behaviour. To address this, a model that integrates the TPB and NAM was proposed in this study, and a street survey was conducted to investigate the case. The results illustrate that recycling intention is influenced by subjective norms, perceived behavioural control, moral norms, and awareness of consequences, as well as a newly proposed construct, namely perceived policy effectiveness. The study proved self-reported recycling behaviour (direct behaviour) and support for policy measures (indirect behaviour) are influenced by recycling intention. All in all the Government should provide more recycling bins, guidelines on recycling activities, and should accent what it has been doing to facilitate and encourage recycling. 相似文献
49.
To reduce the consumption of freshwater in the laundry industry, a new trend of closing the water cycle has resulted in the reuse/recycling of water. In this study, the performance of a full-scale submerged aerobic membrane bioreactor (9 m3) used to treat/reuse industrial laundry wastewater was examined over a period of 288 days. The turbidity and total solids (TS) were reduced by 99%, and the chemical oxygen demand (COD) effluent removal efficiencies were between 70% and 99%. The levels of COD removed by the membrane were significantly greater than the levels of biodegraded COD. This enabled the bioreactor to sustain COD levels that were below 100 mg/L, even during periods of low wastewater biodegradation due to bioreactor sludge. An economic evaluation of the membrane bioreactor (MBR) system showed a savings of 1.13 € per 1 m3 of water. The payback period for this system is approximately 6 years. The energy and maintenance costs represent only 5% of the total cost of the MBR system. 相似文献
50.