• 제목/요약/키워드: Solid waste generation

검색결과 107건 처리시간 0.02초

도시근교 관광지에서의 쓰레기 배출특성에 관한 조사연구 - 하절기 구곡폭포를 중심으로 - (A Study on the Characteristics of Solid Waste Generation in Suburban Tourist Facilities - The Gu-Gok Falls in Summer Season -)

  • 이찬기;이해승;류돈식;강동구
    • 산업기술연구
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    • 제17권
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    • pp.169-174
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    • 1997
  • This investigation was carried out to study on the generation property, management and seperate collection rate of solid waste in the Gu-Gok Falls. Generation rate of solid waste was 80.785kg/day and unit waste generation rates was $65.55g/day{\cdot}tourist$ one person. Physical component of solid waste were garbage 46%, papers 20%, empty bottles 10%, respectively. A plan is required to decrease generation rate of garbage waste. As result to investigate separated garbage can, papers and can were separated more than 60%. But empty bottles and scrap iron were separated less than 50%. P.E.T, steel can, aluminum can and empty bottles were 20% of total generation rate, and profit of reuse is \700,800/year.

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강원대학교 쓰레기 배출 및 수집 시스템에 관한 조사연구 (A Study on the Generation of Solid Waste and Collection System in Kangwon National University)

  • 이찬기;이해승;류돈식;남광명
    • 산업기술연구
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    • 제17권
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    • pp.161-168
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    • 1997
  • This investigation was carried out to study generation of solid waste and collection system in the College of Engineering and College of Social Science, library, dormitory and student center of Kangwon National University. It is to supply basic data for solid waste management. Each result of investigation considers effect getting generation property, unit waste generation rate and reusing.

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우리나라 다목적 Dam 운영의 문제점과 개선방안 (Problem and Optimum Operational Strategy of Multipurpose Reservoir in Korea)

  • 심순보
    • 기술사
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    • 제19권1호
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    • pp.25-32
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    • 1986
  • The number of visiters to Bukhan Mt. national park, generation quantity of solid waste and collection system were researched to consider a counterplan for the pollution control of the national park and study for developing the effective treatment of solid waste was tried through the proximate analysis of each component containing. Results obtained in this study were summerized as follows; The great part of visitors go on an excursion to the Bukhan Mt. national park during July and August and also, the solid waste was generated nearly a half of the total amount at the same period. The major collection facilities in the national park were waste basket and incineration box. But the incineration box was too large in volume and very far in distance, and its collection period was irregular, so it was cause to the congestion of solid waste and bad smell and dirty. Therefore, to complete collection of solid waste, we must set up the waste basket which able to find within 40~50m from the origination place of solid waste and induce the visitors to throw the solid waste. It was obtained as moisture content: 48.5 wt%, volatile solid: 28.4wt%, fixed solid: 23.1 wt%, lower heating value: 1,320kca1/kg from experimental analysis of solid waste. According to this analysis, the incineration operation is possible, but the generation quantity of solid waste was too small to construct incineration plant for heat recovery. It was found that it is suitable for the aerobic composting by mixing with the night soil which generate in the national park after the recovery of resources such as metals, glasses and plastics.

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Characterization of household solid waste and current status of municipal waste management in Rishikesh, Uttarakhand

  • Rawat, Suman;Daverey, Achlesh
    • Environmental Engineering Research
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    • 제23권3호
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    • pp.323-329
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    • 2018
  • The municipal solid waste (MSW) management system in one of the Class II Indian cities i.e. Rishikesh was studied and analysed to identify the key issues in solid waste management in the city. A total of 329 solid waste samples from 47 households were collected to characterize the household solid waste (HSW). The average (HSW) generation rate was 0.26 kg/c/d and it was composed of organic waste (57.3%), plastics (14%), paper (10.9%), and glass and ceramic (1.3%) and other materials (16.5%). There was an inverse relationship between household waste generation rate and family size (p < 0.05). The MSW management system practiced in Rishikesh is unsound. There is no waste segregation at source, no provisions of composting and no recycling by formal sector. The collection and transportation of waste is inadequate and inappropriate. Collected waste is dumped in open dumping site without scientific management. Following are some recommendations for developing a sustainable solid waste management system in Rishikesh city: (1) sensitize people for segregation at source; (2) promote reduction, reuse and recycling of wastes; (3) promote community based composting; (4) provision for 100% door to door collection and; (5) formalize the informal sectors such as rag pickers and recycling industries.

A comprehensive optimization model for integrated solid waste management system: A case study

  • Paul, Koushik;Chattopadhyay, Subhasish;Dutta, Amit;Krishna, Akhouri P.;Ray, Subhabrata
    • Environmental Engineering Research
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    • 제24권2호
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    • pp.220-237
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    • 2019
  • Solid waste management (SWM) is one of the poorly rendered services in developing countries - limited resources, increasing population, rapid urbanization and application of outdated systems leads to inefficiency. Lack of proper planning and inadequate data regarding solid waste generation and collection compound the SWM problem. Decision makers need to formulate solutions that consider multiple goals and strategies. Given the large number of available options for SWM and the inter-relationships among these options, identifying SWM strategies that satisfy economic or environmental objectives is a complex task. The paper develops a mathematical model for a municipal Integrated SWM system, taking into account waste generation rates, composition, transportation modes, processing techniques, revenues from waste processing, simulating waste management as closely as possible. The constraints include those linking waste flows and mass balance, processing plants capacity, landfill capacity, transport vehicle capacity and number of trips. The linear programming model integrating different functional elements was solved by LINGO optimization software and various possible waste management options were considered during analysis. The model thus serves as decision support tool to evaluate various waste management alternatives and obtain the least-cost combination of technologies for handling, treatment and disposal of solid waste.

북한산 국립공원의 고형 폐기물에 관한 연구 (A Study on the solid waste of Buk Han Mt National Park)

  • 도갑수;장일영;김광진
    • 기술사
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    • 제19권1호
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    • pp.12-24
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    • 1986
  • The number of visiters to Bukhan Mt. national park, generation quantity of solid waste and collection system were researched to consider a counterplan for the pollution control of the national park and study for developing the effective treatment of solid waste was tried through the proximate analysis of each component containing. Results obtained in this study were summerized as follows; The great part of visitors go on an excursion to the Bukhan Mt. national park during July and August and also, the solid waste was generated nearly a half of the total amount at the same period. The major collection facilities in the national park were waste basket and incineration box. But the incineration box was too large in volume and very far in distance, and its collection period was irregular, so it was cause to the congestion of solid waste and bad smell and dirty. Therefore, to complete collection of solid waste, we must set up the waste basket which able to find within 40~50m from the origination place of solid waste and induce the visitors to throw the solid waste. It was obtained as moisture content: 48.5 wt%, volatile solid: 28.4wt%, fixed solid: 23.1 wt%, lower heating value: 1,320kca1/kg from experimental analysis of solid waste. According to this analysis, the incineration operation is possible, but the generation quantity of solid waste was too small to construct incineration plant for heat recovery. It was found that it is suitable for the aerobic composting by mixing with the night soil which generate in the national park after the recovery of resources such as metals, glasses and plastics.

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Overview of Coffee Waste and Utilization for Biomass Energy Production in Vietnam

  • Thriveni, Thenepalli;Kim, Minsuk;Whan, Ahn Ji
    • 에너지공학
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    • 제26권1호
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    • pp.76-83
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    • 2017
  • In this paper, the carbon resources recycling of the overview of coffee waste generation in Vietnam. Since few years, there has been a significant research studies was done in the areas of coffee waste generation areas and also waste water generation from coffee production. The coffee residue (solid) and waste water (liquid) both are caused the underground water contamination and also soil contamination. These residues contain high organic matter and acid content leads to the severe threat to environment. In second stage of coffee production process, the major solid residue was generated. Various solid residues such as spent coffee grounds, defective coffee beans and coffee husks) pose several environmental concerns and specific problems associated with each type of residue. Due to the unlimited usage of coffee, the waste generation is high. At the same time, some researchers have been investigated the spent coffee wastes are the valuable sources for various valuable compounds. Biodiesel or biomass productions from coffee waste residues are the best available utilization method for preventing the landfill problems of coffee waste residues.

Methane emission from municipal solid waste dumpsites: A case study of Chennai city in India

  • Srinivasan, Pavithrapriya;Andimuthu, Ramachandran;S.N., Ahamed Ibrahim;Ramachandran, Prasannavenkatesh;Rajkumar, Easwari;Kandasamy, Palanivelu
    • Advances in environmental research
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    • 제9권2호
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    • pp.97-107
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    • 2020
  • The indiscriminate growth in global population poses a threat to the world in handling and disposal of Municipal solid waste. Rapid urban growth increases the production, consumption and generation of Municipal solid waste which leads to a drastic change in the environment. The methane produced from the Municipal Solid waste accounts for up to 11% global anthropogenic emissions, which is a major cause for global warming. This study reports the methane emission estimation using IPCC default, TNO, LandGEM, EPER and close flux chamber from open dump yards at Perungudi and Kodungaiyur in Chennai, India. The result reveals that the methane emission using close flux chamber was in the range of 8.8 Gg/yr-11.3 Gg/yr and 6.1Gg/yr to 9.1 Gg/yr at Kodungaiyur and Perungudi dump yard respectively. The per capita waste generation was estimated based on waste generation and population. The waste generation potential was projected using linear regression model for the period 2017-2050. The trend of CH4 emission in the actual field measurement were increased every year, similarly the emission trend also increased in IPCC default method (mass balance approach), EPER Germany (zero order decay model) where as TNO and Land GEM (first order decay model) were decreased. The present study reveals that Kodungaiyur dump yard is more vulnerable to methane emission compared to Perungudi dump yard and has more potential in waste to energy conversion mechanisms than compare to Perungudi dump yard.

순천시의 생활폐기물 발생량 예측 및 재활용시설의 용량산정에 관한 연구 (A study on the physico-chemical characteristics of municipal solid wastes generated in the sunchon city)

  • 허관;문옥란;왕승호
    • 유기물자원화
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    • 제9권4호
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    • pp.125-134
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    • 2001
  • 순천시 생활계폐기물의 배출특성을 제시하고 장래 폐기물대책을 수립하는 기본적인 자료로 정보를 제공하고자 폐기물별 자원화시설의 용량을 산정하고 재활용시설의 운영관리 및 제반폐기물정책 수립에 활용하도록 하기 위해서 조사분석하여 다음과 같은 결과를 얻었다. 일반주택의 배출량원단위는 0.50kg/인${\cdot}$일로 배출량은 41.9톤/일, 공동주택의 배출량원단위는 0.45kg/인${\cdot}$일로 배출량은 55.5톤/일, 읍 면지역의 배출량원단위는 0.22kg/인${\cdot}$일로 배출량은 13.5톤/일로 나타나 주택지역의 생활계폐기물 배출량은 110.9톤/일이다. 재래시장의 배출량원단위는 1.85kg/상가 일로 배출량은 5,400kg/일이며, 소규모점포의 배출량원단위는 2.03kg/상가 일로 배출량은 25,101kg/일로 나타나 상가지역의 생활계폐기물 배출량은 30,501kg/일이다. 공장지역에서 배출되는 사업장생활계폐기물은 1일 평균 8.3톤, 학교와 병원 및 업무지역에서 배출되는 생활계폐기물의 1일 평균배출량은 각각 7.2kg과 3.0kg 및 6.6kg이다. 생활폐기물 중에서 음식물쓰레기는 평균 63.4톤/일 배출되었으며, 소각대상 가연성폐기물은 126.9톤/일 배출되었다. 음식물쓰레기처리시설의 내구년도를 약 5년(2006년도)으로 계획하면 처리대상량은 1일 42.4톤이 예상되며, 저부하 운전이나 고장보수로 인한 가동중지 등의 문제를 고려하여 처리능력을 25톤/일${\times}$2계열로 설치하는 것이 효율적일 것으로 판단된다. 소각처리시설의 내구년도를 약 10년(2011년도)으로 계획하면 처리대상량은 1일 150톤/일이 예상되며, 저부하 운전이나 고장보수로 인한 소각작업 중지 등의 문제를 고려하여 처리능력을 80톤/일${\times}$2계열로 설치하는 것이 효율적일 것으로 판단된다.

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바이오매스 자원 잠재량 산정 (Estimation of Biomass Resources Potential)

  • 이준표;박순철
    • 한국태양에너지학회 논문집
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    • 제36권1호
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    • pp.19-26
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    • 2016
  • Biomass has been used for energy sources from the prehistoric age. Biomass are converted into solid, liquid or gaseous fuels and are used for heating, electricity generation or for transportation recently. Solid biofuels such as bio-chips or bio-pellet are used for heating or electricity generation. Liquid biofuels such as biodiesel and bioethanol from sugars or lignocellulosics are well known renewable transportation fuels. biogas produced from organic waste are also used for heating, generation and vehicles. Biomass resources for the production of above mentioned biofuels are classified under following 4 categories, such as forest biomass, agricultural residue biomass, livestock manure and municipal organic wastes. The energy potential of those biomass resources existing in Korea are estimated. The energy potential for dry biomass (forest, agricultural, municipal waste) were estimated from their heating value contained, whereas energy potential of wet biomass (livestock manure, food waste, waste sludge) is calculated from the biological methane potential of them on annual basis. Biomass resources potential of those 4 categories in Korea are estimated to be as follows. Forest biomass 355.602 million TOE, agricultural biomass 4.019 million TOE, livestock manure biomass 1.455 million TOE, and municipal organic waste 1.074 million TOE are available for biofuels production annually.