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Estimation of Methane Emissions from Municipal Solid Waste Landfills in China Based on Point Emission Sources 被引量:7
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作者 CAI Bo-Feng LIU Jian-Guo +5 位作者 GAO Qing-Xian NIE Xiao-Qin CAO Dong LIU Lan-Cui ZHOU Ying ZHANG Zhan-Sheng 《Advances in Climate Change Research》 SCIE 2014年第2期81-91,共11页
The methane(CH4) emissions from municipal solid waste(MSW) landfills in China in 2007 were estimated based on database of the three-dimensional emission factors matrix and point sources, by an IPCC recommended FOD(fir... The methane(CH4) emissions from municipal solid waste(MSW) landfills in China in 2007 were estimated based on database of the three-dimensional emission factors matrix and point sources, by an IPCC recommended FOD(firstorder decay) model. The location, capacity and age of landfills constitute the three dimensions of the emission factors matrix, which were obtained by laboratory analysis and in situ investigation. Key parameters such as waste composition,degradable organic carbon ratio, CH4 correction factor, oxidation factor and recovery rate, were carefully analyzed in terms of these three dimensions. The point sources database consists of 2,107 MSW landfills in cities and towns of China in 2007. The results show that the CH4 emissions from MSW landfills were 1.186 Mt in 2007. Compared with the CH4 emissions of 2.20 Mt in 2005, the significant discrepancy mainly comes from statistical data of landfills, e.g., number of landfills and amount of waste disposed in landfills. CH4 emissions were lower than 700 t for most of the landfills, whereas there were 279 landfills with emissions larger than 1,000 t, and only 10 landfills with emissions larger than 10,000 t.Jiangsu province ranks the largest emitter with 98,700 t while Tibet is the smallest emitter with 2,100 t. In general,the emissions from eastern provinces, such as Jiangsu, Guangdong and Zhejiang, were larger than those from western provinces, such as Ningxia, Tibet and Qinghai. 展开更多
关键词 municipal solid waste landfill CH4 emissions POINT emission SOURCES
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Potential landfill site selection for solid waste disposal using GIS and multi-criteria decision analysis(MCDA) 被引量:9
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作者 S.Kapilan K.Elangovan 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第3期570-585,共16页
Proper solid waste disposal is an important socioeconomic concern for all developing countries.Municipalities have their own policies,individual approaches and methods to manage the solid wastes.They consider wastelan... Proper solid waste disposal is an important socioeconomic concern for all developing countries.Municipalities have their own policies,individual approaches and methods to manage the solid wastes.They consider wastelands outside the urban area as the best suitable for the solid waste disposal.Such improper site selection will create morphological changes that lead to environmental hazards in the urban and its surrounding areas.In this research,the site selection for urban solid waste disposal in the Coimbatore district used geographical information system(GIS)and multi-criteria decision analysis(MCDA).Thematic layers of lineament density,landuse/landcover,population density,groundwater depth,drainage density,slope,soil texture,geology and geomorphology were considered as primary criteria and weights for criteria,and sub-criteria were assigned by MCDA analysis.The resultant weight score was validated by consistency ratio so that the efficiency of the selected criteria was justified.The overlay analysis in GIS environment provides 17 potential zones in Coimbatore district,among which,four suitable sites were screened and refined with the help of field investigation and visual interpretation of satellite image.The result of landfill suitability map shows the effectiveness of the proposed method. 展开更多
关键词 municipal solid waste landfill site multi-criteria decision analysis remote sensing GIS Coimbatore
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Minimizing N_20 fluxes from full-scale municipal solid waste landfill with properly selected cover soil 被引量:3
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作者 ZHANG Houhu HE Pinjing +2 位作者 SHAO Liming QU Xian LEE Duujong 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2008年第2期189-194,共6页
Municipal solid waste landfills emit nitrous oxide (N2O) gas. Assuming that the soil cover is the primary N2O source from landfills, this study tested, during a four-year project, the hypothesis that the proper use ... Municipal solid waste landfills emit nitrous oxide (N2O) gas. Assuming that the soil cover is the primary N2O source from landfills, this study tested, during a four-year project, the hypothesis that the proper use of chosen soils with fine texture minimizes N2O emissions. A full-scale sanitary landfill, a full-scale bioreactor landfill and a cell planted with Nerium indicum or Festuca arundinacea Schreb, at the Hangzhou Tianziling landfill in Hangzhou City were the test sites. The N2O emission rates from all test sites were considerably lower than those reported in the published reports. Specifically, the N2O emission rate was dependent on soil water content and nitrate concentrations in the cover soil. The effects of leachate recirculation and irrigation were minimal. Properly chosen cover soils applied to the landfills reduced N2O flux. 展开更多
关键词 municipal solid waste landfill N2O flux cover soil LEACHATE NITRIFICATION/DENITRIFICATION environmental factors
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Microbiological indication of municipal solid waste landfill non-stabilization 被引量:1
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作者 ZHOUQi-xing SYLVESTERRunyuzi +1 位作者 YUJi-yu ZHANGQian-ru 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2004年第4期662-665,共4页
Accidental collapse resulted from unstable factors is an important technological problem to be solved in sanitary landfill. Microbiological degradation of organic matters in landfilled solid waste are an important uns... Accidental collapse resulted from unstable factors is an important technological problem to be solved in sanitary landfill. Microbiological degradation of organic matters in landfilled solid waste are an important unstable factor. A landfill reactor was thus manufactured and installed to examine quantitative and population dynamics of microorganisms during degradation of landfilled solid waste. It was showed that unstable landfill can be reflected and indicated by microbiological features such as rapidly decreased growth amount of microorganisms, no detection of fungi and actinomyces, and changing the dominant population into methanogenic bacteria and Acinotobacter. 展开更多
关键词 municipal solid waste sanitary landfill unstable factor microbiological indication
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Selection of Landfill Sites for Solid Waste Treatment in Damaturu Town-Using GIS Techniques 被引量:2
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作者 Ayo Babalola Ibrahim Busu 《Journal of Environmental Protection》 2011年第1期1-10,共10页
Landfill has been recognized as the cheapest form for the final disposal of municipal solid waste and as such has been the most used method in the world. However, siting landfill is an extremely complex task mainly du... Landfill has been recognized as the cheapest form for the final disposal of municipal solid waste and as such has been the most used method in the world. However, siting landfill is an extremely complex task mainly due to the fact that the identification and selection process involves many factors and strict regulations. For proper identification and selection of appropriate sites for landfills careful and systematic procedures need to be adopted and followed. Wrong siting of landfill many result in environmental degradation and often time public opposition. In this study, attempts have been made to determine sites that are appropriate for landfill siting in Damaturu town Nigeria, by combining geographic information system (GIS) and a multi-criteria decision making method (MCDM) known as the analytic network process (ANP) for the determination of the relative importance weights of factors (criteria). The land suitability output is presented from less suitable to the most suitable areas. The final map produced show areas that are suitable for landfill siting. Based on the analysis fourteen sites were identified to fulfill the required criteria, however, only seven met the land availability criteria of twenty hectares and above. The results showed the efficacy of GIS and multi-criteria decision making method in decision making. 展开更多
关键词 municipal solid waste Management Damaturu Nigeria GEOGRAPHIC Information System (GIS) landfill Siting IKONOS
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Application of Grey Situation Decision-Making Theory in Site Selection of a Waste Sanitary Landfill 被引量:2
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作者 CAO Li-wen CHENG Yun-huan ZHANG Jing ZHOU Xiao-zhi LIAN Cui-xia 《Journal of China University of Mining and Technology》 EI 2006年第4期393-398,共6页
An application of an unequal-weighted multi-objective decision making method in site selection of a waste sanitary landfill is discussed. The eight factors, which affected possible options, were: size and capacity of ... An application of an unequal-weighted multi-objective decision making method in site selection of a waste sanitary landfill is discussed. The eight factors, which affected possible options, were: size and capacity of the landfill, permeability of the stratum, the average difference in elevation between the groundwater level and the bottom of the landfill pit, quality and source of clay, the quality grade of the landfill site, the effect of landfill engineering on nearby residents, distance to the water supply and the water source as well as the cost of construction and waste transport. These are determined, given the conditions of the geological environment, the need for environmental protection and landfill site construction and transportation related to the design and operation of a sanitary landfill. The weights of the eight factors were further investigated based on the difference in their relevance. Combined with practical experience from Xuzhou city (Jiangsu province, China), the objectives, effects and weights of grey decision-making were deter- mined and the process and outcome of the landfill site selection are stated in detail. The decision-making results have been proven to be acceptable and correct. As we show, unequal-weighted multi-objective grey situation decision-mak- ing is characterized by easy calculations and good maneuverability when used in landfill site selection. The number of factors (objectives) affecting the outcome and the quantitative method of qualitative indices can be adjusted on the basis of concrete conditions in landfill site selection. Therefore, unequal-weighted multi-objective grey situation decision making is a feasible method in selecting landfill sites which offers a reference method for landfill site selection else- where. It is a useful, rational and scientific exploration in the choice of`a landfill site. 展开更多
关键词 solid waste sanitary landfill site selection grey decision-making unequal-weighted multi-objective
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Assessment of Methane Flux from Municipal Solid Waste (MSW) Landfill Areas of Delhi, India 被引量:1
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作者 Manju Rawat AL Ramanathan 《Journal of Environmental Protection》 2011年第4期399-407,共9页
Carbon dioxide, methane and nitrous oxide are the major Greenhouse Gases (GHG’s), which emit from landfill areas and contribute significantly to global warming. Moreover, that the global warming potential of methane ... Carbon dioxide, methane and nitrous oxide are the major Greenhouse Gases (GHG’s), which emit from landfill areas and contribute significantly to global warming. Moreover, that the global warming potential of methane is 21 times higher than that of carbon dioxide and it has highest generation (60%) than other gases. Therefore, there is immense concern for its abatement or utilization from landfill areas. Compared to the west, the composition of municipal solid waste (MSW) in developing countries has higher (40% - 60%) organic waste. This would have potential to emit higher GHG’s from per ton of MSW compared to developed world. Beside that landfills areas in India are not planned or en- gineered generally low lying open areas, where MSW is indiscriminate disposed. This leads to uncontrolled emission of trace gases, foul smell, bird menace, ground and surface water pollution etc. Due to scarcity of land in big cities, mu- nicipal authorities are using same landfill for nearly 10 - 20 years. Hence, the possibility of anaerobic emission of GHG’s further increases. In the present paper we had quantified the methane emission from three MSW landfill areas of Delhi i.e., Gazipur, Bhalswa and Okhla. The results showed that the range of methane emission various in winter from 12.94 to 58.41 and in Summer from 82.69 - 293 mg/m2/h in these landfill areas. The paper has also reviewed the literature on methane emission from India and the status of landfill areas in India. 展开更多
关键词 landfill municipal solid waste GHG Emission INDIA
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An Assessment of the Contribution of Municipal Solid Waste Dump Sites Fire to Atmospheric Pollution 被引量:1
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作者 Akpofure Rim-Rukeh 《Open Journal of Air Pollution》 2014年第3期53-60,共8页
Municipal solid waste open dump site operation is an important element of waste management in Nigeria, both today and in the future. Dump site fires are common occurrences in the study area. The contribution of?munici... Municipal solid waste open dump site operation is an important element of waste management in Nigeria, both today and in the future. Dump site fires are common occurrences in the study area. The contribution of?municipal solid waste dump site fires to atmospheric pollution in the Niger Delta, Nigeria has been assessed experimentally. Five (5) municipal solid waste dump sites where fire incidence is a frequent and regular occurrence were chosen for the study. At each of the identified municipal solid waste dump site, eight (8) air quality monitoring parameters, suspended particulate matter (SPM10), nitrogen dioxide (NO2), carbon dioxide (CO2), carbon monoxide (CO), sulphur dioxide (SO2), methane (CH4), ammonia (NH3) and Hydrogen sulphide (H2S) were determined using a series of hand held air quality monitoring equipment. Results indicate the levels of SPM ranged between 773 and 801 μg/m3 and the levels of CO ranged between 133.7 and 141.6 ppm. The levels of CO2 ranged between 401 ppm and 404.5 ppm while that of NO2 ranged between 21.0 ppm and 27.3 ppm. The levels of SO2 ranged between 27.7 ppm and 37.1 ppm while that of NH3 ranged from 14.7 to 19.5 ppm. The levels of methane in the study area ranged between 2310 ppm and 2771 ppm and within the?vicinity of dump site fires H2S concentration ranges from 3.4 to 7.7 ppm. Levels of SPM, CO, CO2, and CH4 within the vicinity of the dump site fires were above regulatory limits. Dump site fires in the study area could threaten the health of anyone especially the dump site workers that are regularly exposed to the thick smoke and can be implicated in climate change debate. There is a need to develop better practices with regard to municipal solid waste open dump site operation and emission control. 展开更多
关键词 DUMP site FIRE landfillS Air Quality solid waste METHANE Climate Change
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Municipal solid waste degradation and landfill gas resources characteristics in self-recirculating sequencing batch bioreactor landfill
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作者 周效志 桑树勋 曹丽文 《Journal of Central South University》 SCIE EI CAS 2012年第12期3551-3557,共7页
Based on the degradation characteristics of municipal solid waste(MSW)in China,the traditional anaerobic sequencing batch bioreactor landfill(ASBRL)was optimized,and an improved anaerobic sequencing batch bioreactor l... Based on the degradation characteristics of municipal solid waste(MSW)in China,the traditional anaerobic sequencing batch bioreactor landfill(ASBRL)was optimized,and an improved anaerobic sequencing batch bioreactor landfill(IASBRL)was put forward on the basis of leachate self-recirculation.By monitoring MSW composition,leachate characteristics variation and landfill gas(LFG)generation,the effect of IASBRL was comparatively studied by simulation landfill.Based on the adjusting,scouring and carrying effects of leachate self-recirculation,IASBRL can rapidly decrease Eh value to about-500mV and form a suitable biochemical environment for methanogens,which provides a precondition for stable cooperation between non-methanogens and methanogens.IASBRL can avoid the accumulation of organic acids,make VFA(volatile fatty acid)concentration and CODCr decrease along with the small range fluctuations,and form a stable decomposition-consumption synergy during MSW degradation,therefore,the hydrolysis rate of easy hydrolyze material reaches 71.2% in IASBRL.From the viewpoint of LFG resources in IASBRL,the cumulative LFG production increases to 2327.0L,CH4 mass fraction stabilizes at about 50%,and these provide a favorable precondition for LFG development. 展开更多
关键词 municipal solid waste STABILIZATION landfill gas LEACHATE recirculation
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Porous Structure of Municipal Solid Waste Incineration Bottom Ash in Initial Stage of Landfill
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作者 Shogo Sakita Jun Nishimoto Kazuyuki Nishimura 《Journal of Geoscience and Environment Protection》 2017年第9期9-20,共12页
For quantitative estimation of the intra-layer porous structure in the initial stage of landfill formation with municipal solid waste incineration (MSWI) bottom ash, the water absorption of individual MSWI bottom ash ... For quantitative estimation of the intra-layer porous structure in the initial stage of landfill formation with municipal solid waste incineration (MSWI) bottom ash, the water absorption of individual MSWI bottom ash particles was measured under still-water, degassed, and agitated conditions. The ratio of the water absorption rate found for the still-water procedure to the effective absorption capacity which was the one under degassing was 35.2%. In the water flow experiment of a column filled with MSWI bottom ash, the true density of the bottom ash was higher after water flow than before, which indicated that dissolution of the soluble components of the bottom ash particle surfaces resulted in a loss of apparent particle volume that more than offset the accompanying weight loss. The volume-based water absorption rate found for the bottom ash particles following 50 mL/h water flow through the column, as a ratio to the effective absorption capacity was about 51.8% of the effective absorption capacity. In a landfill layer comprised of MSWI bottom ash, it was suggested that some regions of the ash particle interiors underwent almost no contact with water. 展开更多
关键词 municipal solid waste INCINERATION (MSWI) BOTTOM ASH Water Absorption Porous Structure landfill
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Municipal Solid Waste Disposal Site Selection in Jacobabad Using RS/GIS Techniques
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作者 Saba Zehra Sheeba Afsar Yasmeen Anis 《Journal of Geoscience and Environment Protection》 2019年第10期13-22,共10页
Solid waste management is a worldwide concern, particularly in the developing countries. The solid waste disposal and landfill site management is a serious issue. City planners and municipal corporations have to confr... Solid waste management is a worldwide concern, particularly in the developing countries. The solid waste disposal and landfill site management is a serious issue. City planners and municipal corporations have to confront with the problem of Municipal Solid Waste Management all over the world, especially in the developing countries. Population growth is responsible for an increase in residential, commercial and infrastructure development, which poses adverse effects on the environment. One of the most serious and challenging environmental challenge being faced by the municipal corporations of developing countries is urban solid waste management. Dumping of municipal waste in unsuitable areas poses serious challenges to the local habitants of the neighborhood. Municipal solid waste, if not properly managed, is one of the major environmental issues that could further lead to different diseases’ transmission, aesthetic and odor nuisance, and atmospheric and water pollution, etc. This paper aims to deal with the selection of suitable site for disposing off municipal solid waste management being produced at the Jacobabad City using Geographic Information Systems and Remote Sensing techniques. In the Jacobabad City, the existing open dumping systems are not environmentally sound posing serious environmental threats. Loads of generated waste (about 64 tons/day as per 2012 estimates) has been dumped into the inappropriate sites. Keeping in view the complicated process of landfill site, this study considers all the environmental, social and technical factors (distances from residences, proximity to road networks, schools, health facilities and reservoirs) to determine the best site for Municipal Solid Waste disposal in Jacobabad City. Different analysis like buffer analysis, Euclidean distance and overlay analysis were also performed in this study to come up with the most suitable landfill site. 展开更多
关键词 solid waste Management GEOGRAPHIC Information System REMOTE Sensing landfill site
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Modeling Environmental Susceptibility of Municipal Solid Waste Disposal Sites: A Case Study in São Paulo State, Brazil
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作者 Victor Fernandez Nascimento Anahi Chimini Sobral +2 位作者 Pedro R. Andrade Jean Pierre Henry Balbaud Ometto Nazli Yesiller 《Journal of Geographic Information System》 2017年第1期8-33,共26页
The large excess of solid waste generated in cities is a result of population growth and economic development. Properly managing this municipal solid waste (MSW) is a challenge, mainly in underdeveloped and developing... The large excess of solid waste generated in cities is a result of population growth and economic development. Properly managing this municipal solid waste (MSW) is a challenge, mainly in underdeveloped and developing countries where financial concerns are an added problem. From the environmental point of view, a major issue is properly disposing MSW taking into consideration a wide range of factors, and working with different spatial data. In this study, we used geographic information system (GIS) to perform multi-criteria decision analysis (MCDA) conducted by analytical hierarchy process (AHP). The development of the environmental impact susceptibility model (EISM) for municipal solid waste disposal sites (MSWDS) applied to the state of Sao Paulo, Brazil considered factors such as geology, pedology, geomorphology, water resources, and climate represented by fifteen associated sub-factors. The results indicated that more than 82% of Sao Paulo’s territory is situated in areas with very low, low, and medium environmental impact susceptibility categories. However, in the remaining 18% of the state land area, 85 landfills are located in areas with high and very high environmental impact susceptibility categories. These results are alarming because these 85 landfills receive approximately 17,886 tons of MSW on a daily basis, which corresponds to 46% of all municipal solid waste disposed in Sao Paulo state. Therefore, decision makers, urban planners and policymakers could use the findings of the EISM towards mitigating the environmental impacts caused by MSWDS. 展开更多
关键词 Modeling GEOGRAPHIC Information System (GIS) Environmental Impact municipal solid waste landfillS MULTI-CRITERIA Decision Analysis (MCDA) ANALYTIC Hierarchy Process (AHP)
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Effect of Leachate Recirculation on Settlement and Leachate Generation of Municipal Solid Waste from Landfill Lysimeter
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作者 Kasam Sarto +1 位作者 Siti Syamsiah Agus Prasetya 《Journal of Environmental Science and Engineering(B)》 2013年第1期20-24,共5页
The objectives of this study are to determine the settlement and leachate generation from landfill lysimeters of municipal solid waste. Two identical lysimeters with a diameter and height of 0.70 m and 2.40 m were pre... The objectives of this study are to determine the settlement and leachate generation from landfill lysimeters of municipal solid waste. Two identical lysimeters with a diameter and height of 0.70 m and 2.40 m were prepared, respectively. The lysimeters were operated with and without leachate recirculation treatment. The settlement and leachate generation were quantified daily. The analysis of settlement was conducted by using hyperbolic function and curve fitting. Based on the experiments result, it is observed that garbage pile settlement in lysimeter treated with leachate recirculation (L-2) is higher than without recirculation treatment (L-1) as showed by the hyperbolic function and curve fitting result. The ultimate settlement (S_wlt) for L-1 and L-2 that used hyperbolic function were 0.487 m and 0.53 m, respectively. Meanwhile (S_wlt) that using curve fitting resulted 0.74 m, and 0.68 m for L-1 and L-2, respectively. The lysimeter which treated with leachate recirculation treatment showed a higher leachate height than without the treatment. 展开更多
关键词 municipal solid waste SETTLEMENT landfill lysimeter leachate generation.
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Different mercury species in the atmosphere over the municipal solid waste landfills
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作者 Zhonggen LI Xinbin FENG +5 位作者 Ping LI Shunlin TANG Shaofeng WANG Xuewu FU Wei ZHENG Lihai SHANG 《Chinese Journal Of Geochemistry》 EI CAS 2006年第B08期238-238,共1页
关键词 水银 固体废物 空气质量 环境污染 地形条件
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Engineering properties for high kitchen waste content municipal solid waste 被引量:6
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作者 Wu Gao Yunmin Chen +1 位作者 Liangtong Zhan Xuecheng Bian 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第6期646-658,共13页
Engineering properties of municipal solid waste (MSW) depend largely on the waste's initial compositionand degree of degradation. MSWs in developing countries usually have a high kitchen waste content(called HKWC ... Engineering properties of municipal solid waste (MSW) depend largely on the waste's initial compositionand degree of degradation. MSWs in developing countries usually have a high kitchen waste content(called HKWC MSW). After comparing and analyzing the laboratory and field test results of physicalcomposition, hydraulic properties, gas generation and gas permeability, and mechanical properties forHKWC MSW and low kitchen waste content MSW (called LKWC MSW), the following findings wereobtained: (1) HKWC MSW has a higher initial water content (IWC) than LKWC MSW, but the field capacitiesof decomposed HKWC and LKWC MSWs are similar; (2) the hydraulic conductivity and gaspermeability for HKWC MSW are both an order of magnitude smaller than those for LKWC MSW; (3)compared with LKWC MSW, HKWC MSW has a higher landfill gas (LFG) generation rate but a shorterduration and a lower potential capacity; (4) the primary compression feature for decomposed HKWCMSW is similar to that of decomposed LKWC MSW, but the compression induced by degradation ofHKWC MSW is greater than that of LKWC MSW; and (5) the shear strength of HKWC MSW changessignificantly with time and strain. Based on the differences of engineering properties between these twokinds of MSWs, the geo-environmental issues in HKWC MSW landfills were analyzed, including highleachate production, high leachate mounds, low LFG collection efficiency, large settlement and slopestability problem, and corresponding advice for the management and design of HKWC MSW landfills wasrecommended. 展开更多
关键词 High kitchen waste content (HKWC) municipal solid waste (MSW) landfill Engineering properties LEACHATE MSW management
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A Selection Study for Sanitary Landfill Site at Basra City, South of Iraq 被引量:1
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作者 Wathiq A. A1-Ramdhan Mahmood S. Thamir +5 位作者 Assaad F. Hamza Abdulwahab A. Sultan Ali G. Katea'a Najem A1-Dean A. Al-hajaj Ayad K. Jirri Ekhlass B. Zubery 《Journal of Life Sciences》 2016年第4期198-202,共5页
The selection study for a sanitary landfill site at Basra city (south of lraq) indicated to choose Al-Barjesia region at chwabedian area which belong to AI-Zubair directorate, using global positioning system (GPS)... The selection study for a sanitary landfill site at Basra city (south of lraq) indicated to choose Al-Barjesia region at chwabedian area which belong to AI-Zubair directorate, using global positioning system (GPS). The measured latitude and longitude axes of this area are 30° 25.4' north and 47° 29' west. It is located at a distance of about 25 km straight line from the city center. The calculated elevation range of the chwabedian site was obtained to be 5-10 m above sea level, while the depth ofplutonic water in the landfill site is range from 15-25 m. The measured permeability for this site was about 0.75-0.84 mma/min. The evaluation of soil components percentage in the suggested site was listed in table 1, as examined by the international constructional laboratory, at Basra/Iraq. A primarily modern design for chwabedian sanitary landfill was projected and sketched in figure 3. 展开更多
关键词 landfill site solid waste management leachate.
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Impact of Municipal Solid Waste Disposal on Compaction Characteristics and Strength of Red Soil
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作者 Shivaraju R. B. V. Ravishankar H. S. Nanda 《Journal of Civil Engineering and Architecture》 2016年第10期1168-1172,共5页
The disposal of MSW (municipal solid waste), in most of Indian cities, is to dump on nearby low laying lands. This investigation aims to characterize MSW and assess compaction characteristics and strength properties... The disposal of MSW (municipal solid waste), in most of Indian cities, is to dump on nearby low laying lands. This investigation aims to characterize MSW and assess compaction characteristics and strength properties of contaminated soils at dumping sites in two cities Chickballapur and Kolar of Karnataka, India. Representative solid wastes from selected wards of the city were collected and analyzed. Substantial release of leachate form the dump yards occurred during past few years and the soil at the dump site experience extensive contamination. The test results of contaminated and uncontaminated soil show increase in optimum moisture content and decrease in maximum dry density. The unconfined compressive strength decreased considerably for soil samples obtained at 0.0 m, 0.5 m and 1.0 m depths below waste dump. At depths greater than 1.5 m, compaction characteristics and unconfined compressive strength closely match with the uncontaminated soil. Little variation in pH value, which makes soil slightly alkaline, was observed. From the study, it is inferred that, this investigation is very significant, as the foundation normally at these depths may be affected by this contamination. 展开更多
关键词 MSW municipal solid waste dumping site CONTAMINATION LEACHATE geotechnical properties
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Suitable Site Selection and Location Allocation of Solid Waste Col­lection Bin by Using Geographic Information Systems:A Case of Nekemte Town
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作者 Shiferaw Garoma Wayessa Jiregna Nugusa Duresa +1 位作者 Ayana Abera Beyene Motuma Shiferaw Regasa 《Journal of Building Material Science》 2021年第1期15-25,共11页
The problem of environmental pollution and health hazards due to inappropriate solid waste disposal is critical in developing countries like Ethiopia,Nekemte town is one of the town in Ethiopia facing from environment... The problem of environmental pollution and health hazards due to inappropriate solid waste disposal is critical in developing countries like Ethiopia,Nekemte town is one of the town in Ethiopia facing from environmental pollution due to lack of appropriate dumping site which leads pollution of surface and ground water and environment in and around dumping area.The key objective of this study was the selection of appropriate sites for disposal,solid waste using Geographic Information System tools.Selection the most suitable landfill site was determined through the integration of geographic information system tools,multi-criteria decision investigation and remote sensing techniques.To select a suitable landfill site several parameters were considered for example slope,constructed area,road,water bodies,land uses,geology and soil.After analysis of the suitability of a solid waste-dumping site used GIS tools,weighted analyzed methods selected 36 areas for medium solid waste Bins.Suitability map was prepared by overlay analyzed with GIS based Weighted Linear Combination analysis to select the suitable sites and assigned as the value as unsuitable,less suitable,moderately suitable,suitable and highly suitable were determined.Using this method selected,highly suitable areas for land fill and inclination area. 展开更多
关键词 site selection GIS landfill Parameter solid waste SUITABILITY
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Variation of Coenzyme F_(420) Activity and Methane Yield in Landfill Simulation of Organic Waste 被引量:9
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作者 CHENG Yun-huan SANG Shu-xun +2 位作者 HUANG Hua-zhou LIU Xiao-juan OUYANG Jin-bao 《Journal of China University of Mining and Technology》 EI 2007年第3期403-408,共6页
A simulated landfill anaerobic bioreactor was used to characterize the anaerobic biodegradation and biogas generation of organic waste which was mainly composed of residuals of vegetables and foods. We investigated th... A simulated landfill anaerobic bioreactor was used to characterize the anaerobic biodegradation and biogas generation of organic waste which was mainly composed of residuals of vegetables and foods. We investigated the dynamics of the coenzyme F420 activity and determined correlations between biogas yields, methane yields, methane concentration and coenzyme F420 activity. The experiment was carded out under different conditions from control without any treatment, addition of Fe^3+, microorganism inoculation to a combination of Fe3+ addition and inoculation at a temperature of 36±2℃. The experiment was lasted 120 d and coenzyme F420 activity was analyzed using ultraviolet spectrophotornetry. Experimental results indicated that activity of the coenzyme F420 treated by Fe and microorganism inoculation increased substantially. The waste treated by inoculation had the greatest increase. When the waste was treated by Fe^3+, inoculation and the combination of Fe^3+ and inoculation, biogas yields increased by 46.9%, 132.6% and 153.1%, respectively; while the methane yields increased 4, 97 and 98 times. Methane concentration varied between 0 and 6% in the control reactor, from 0 to 14% for waste treated by the addition of Fe^3+, from 0 to 59% for waste treated by inoculation and from 0 to 63% for waste treated by Fe^3+ addition and inoculation. Correlations between coenzyme F420 activity and biogas production, methane production and methane concentration proved to be positively significant (p〈0.05), except for the control. Consequently, coenzyme F420 activity could be used as an index for monitoring the activity of methanogens during anaerobic biodegradation of the organic fraction of municipal solid waste. 展开更多
关键词 municipal solid waste (MSW) simulating landfill coenzyme F420 activity characteristic of methane generation
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A GIS-Based Suitability Analysis for Siting a Solid Waste Incineration Power Plant in an Urban Area Case Study: Alexandria Governorate, Egypt 被引量:1
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作者 Mahmoud A. Hassaan 《Journal of Geographic Information System》 2015年第6期643-657,共15页
Solid waste represents a key issue that threatens environmental quality in Egyptian urban areas. One of the most viable options to treat such an issue is to incinerate the collected solid waste for electricity generat... Solid waste represents a key issue that threatens environmental quality in Egyptian urban areas. One of the most viable options to treat such an issue is to incinerate the collected solid waste for electricity generation, which can reduce the cost of solid waste disposal as well as pollution and generate surplus energy. Selecting appropriate site for a solid waste incineration power plant is a crucial step due to its economic and environmental implications. This would require assessing various constraining and favorable factors that determine feasibility and sustainability of the power plant site. This paper is intended to develop a GIS-based model for siting a municipal solid waste incineration power plant in Alexandria governorate, Egypt. For this purpose, five criteria are considered and a composite index was suggested to integrate these criteria in a numerical term reflecting suitability of various parts of the governorate for siting solid waste incineration power plant. 展开更多
关键词 Suitability Analysis site Selection GIS municipal solid waste ALEXANDRIA EGYPT
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