• Title/Summary/Keyword: LFG(Landfill

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Effects of Hydrogen Sulfide and Siloxane on Landfill Gas Utility Facilities

  • Nam, Sang-Chul;Hur, Kwang-Beom;Lee, Nam-Hoon
    • Environmental Engineering Research
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    • v.16 no.3
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    • pp.159-164
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    • 2011
  • This study examined the emission characteristics of impure gas-like hydrogen sulfide and siloxane contained in landfill gas (LFG) and investigated the effect of impure gas on LFG utility facilities. As a result of an LFG component analysis from eight landfills in the same environment, hydrogen sulfide averaged 436 ppmv (22-1,211 ppmv), and the concentration of total siloxane averaged 7.95 mg/$m^3$ (1.85-21.18 mg/$m^3$). In case of siloxane concentration by component, the ratio of D4 (average 3.79 mg/$m^3$) and D5 (average 2.64 mg/$m^3$) indicated the highest level. Different kinds of scales were found on the gas air heater (GAH) and inside the boiler. The major component of scale from the GAH was $Fe_2O_3$ of 38.5%, and it was caused by hydrogen sulfide. Other scale was found on the bottom and the wall of the boiler and the scale was silicon dioxide of 92.8% and 98.9%. The silicon dioxide scale was caused by combustion of siloxane. As a result of a scanning electron microscopy analysis, the structure of the silicon dioxide scale from the boiler was an immediate filamentous type. Consequently, as silicon dioxide scale is bulky, such bad effects were worsening, as an interruption in heat conduction, increase in fuel consumption, damage to the boiler by overheating, and clogged emission pipeline could occur in LFG utility facilities.

Characteristics of Landfill Gas Generation by Separate Landfill of Construction Waste and Mixed Landfill with Household Waste (건설폐기물 분리매립 및 생활폐기물과의 혼합매립에 의한 매립가스 발생 특성)

  • Jong-Keun, Park;Seung-Kyu, Chun
    • New & Renewable Energy
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    • v.18 no.4
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    • pp.1-11
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    • 2022
  • Landfill gas (LFG) generation characteristics in a construction waste landfill zone (block E) and mixed landfill zone (block A) were analyzed. During the period from October 2018 to April 2022, a total of 936×103 and 1,001×103 tons of waste were disposed in block E and block A, respectively. Out of this, 27.1% and 55.6% were biodegradable waste in block E and block A, respectively. The landfill masses of the two blocks were converted to be comparable. Then, the biodegradable waste and organic carbon were estimated by element analysis, biodegradable carbon by biochemical methane potential experiment (DC), and sulfate ion by acid decomposition. Results showed that biodegradable waste, organic carbon, biodegradable carbon, and sulfate ions in block A were 2.1, 1.6, 5.2, and 0.4 times greater than those in block E, respectively. The amount of LFG generated by block A was 4.8 times greater than that by block E. The average concentrations of methane (CH4) were 60.8% and 60.9% in block E and block A, respectively, which were unrelated to the nature of disposed waste. The average concentrations of hydrogen sulfide (H2S) were significantly high in block E (4,489 ppm) and block A (8,478 ppm). As the DC/SO42- of block E and block A were 0.35 and 4.56, respectively, increase in DC/SO42- caused increase in not only the total amount but also the concentration of H2S generated.

Prediction of Landfill Settlement Using Gas Generation Characteristics (매립장의 발생가스특성을 이용한 매립장 침하예측)

  • 안태봉;박대효;공인철
    • Journal of the Korean Geotechnical Society
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    • v.20 no.8
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    • pp.29-39
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    • 2004
  • The prediction of landfill settlement is very important for managing land properly, especially in small national land like Korea. It is difficult to express settlement using the consolidation theory because biochemical decomposition is main reason of settlement, and organic materials in landfill are decomposed far long time. In this study, LFG (Landfill Gas) generation characteristics are studied to find long-term settlement analysing model landfills. Two lysimeters are made; one is leachate recycled, and the other is not leachate recycled. The relationship between gas generation and settlement is analysed as a function of time. A mathematical gas generation model is suggested to predict long-term settlement due to biodegradation, and correction coefficient is recommended for long term settlement through model tests. The leachate recirculation system is more effective to accelerate landfill settlement. The appropriate coefficients of gas correction for non-recycled leachate model are 1.4 and 1.7 for recycled system from tests showing 22% of acceleration.

Research on the Methane Recovery from Landfill Gas by Applying Nitrogen Gas Separator Membrane (질소 분리용 막을 이용한 매립가스내 메탄 회수 연구)

  • Chun, Seung-Kyu
    • Journal of Korean Society of Environmental Engineers
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    • v.35 no.8
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    • pp.586-591
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    • 2013
  • This experiment was performed to enhance $CH_4$ purity of landfill gas by applying gas separator membrane for purified nitrogen gas production. 1:6 area ratios of $1^{st}$ to $2^{nd}$ membrane module was suitable for $CH_4$ recovery. After separation membrane system was installed, 249 tries were performed. Average permeability for $CH_4$ was 28.4% and for $CO_2$ was 94.3%. This can explain nitrogen gas separator membrane can be applied to collect $CH_4$ from LFG. However, nitrogen permeability only reached up to 16.5%. Therefore, the final purified landfill gas concentration was rounded up to 69.7% for $CH_4$, 4.3% for $CO_2$ and 26.0% for $N_2$. For the high degree of $CH_4$ purity, $N_2$ should be kept at least under 2.0% by controlling air inflow to landfill.

Development of gas-to-solid system for energy recovery from a landfill gas using hydrate method (중소규모 매립장의 매립가스 에너지화를 위한 GTS Pilot plant 개발)

  • Moon, Donghyun;Shin, Hyungjoon;Han, Kyuwon;Lee, Jaejeong;Lee, Gangwoo
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.185.1-185.1
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    • 2011
  • 본 연구는 중 소규모 매립지가스(LFG)의 활용을 위한 가스고체화(Gas-To-Solid) 기술개발을 목적으로 하고 있다. LFG는 환경적인 문제로 인하여 소각 등의 방법으로 처리하고 있으나, 약 5,000kcal/$m^3$의 높은 발열량과 일반적으로 매립 후 20~30년 후까지 지속적인 발생특성으로 안정적인 공급이 가능한 신재생에너지원으로 활용될 수 있다. LFG 자원화 할 경우 발전 및 중질가스 등으로 활용하는 것이나, 중소규모 매립장의 경우 경제성 등의 문제로 자원화하지 못하고 태워지거나 방치되고 있다. 본 연구에서는 LFG의 저장과 수송 기술 중 GTS 기술을 통하여 저장과 수송에 제약이 크고 많은 비용이 소비되는 기체 상태의 에너지원을 하이드레이트화 시킴으로서 중 소규모 매립지에서 상대적으로 적은 비용으로 가스저장과 지상수송이 가능하게 할 수 있다. 본 연구의 결과로 LFG 에너지화 실증화 플랜트를 설계/제작 하였으며, 메탄+이산화탄소+물 하이드레이트 형성 실험을 통해 4.56 Mpa, 277.2 K 조건에서 3시간을 한 사이클로하는 공정운전을 가지는 것을 확인하였다.

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Effect of Food Waste Direct Landfilling Prohibition on Characteristics of Landfill Gas and Leachate (음식물류폐기물 직매립금지가 매립지 가스 및 침출수 특성에 미치는 영향)

  • Ko, Jae-Young;Phae, Chae-Gun;Park, Joon-Seok
    • Applied Chemistry for Engineering
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    • v.18 no.6
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    • pp.612-617
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    • 2007
  • This research was performed to evaluate the effect of 'Food Wastes (FW) Direct Landfilling Prohibition' on characteristics of landfill gas (LFG) and leachate and the appropriateness of current legislation. Approximately 45% (Exp.45) and 15% (Exp.15) of FW were filled in two lysimeters. During 570 days, 1400 L of LFG was generated from Exp.45%, which was much more than 906 L of Exp.15. There was no significant difference of LFG composition between Exp.15 and Exp.45. 2~30 ppmv of odorous hydrogen sulfide was detected in Exp.45, while 2~7 ppmv was in Exp.15. There was also no significant difference in the leachate generation between the two. On day 570, $BOD_5$ of Exp.45 and Exp.15 were 37000 mg/Land 25630 mg/L and $COD_{Cr}$ of Exp.45 and Exp.15 were 45480 mg/L, 30294 mg/L. TOC of Exp.45 was 2~3 times higher than Exp.15. Higher portion of FW in landfilling increased LFG generation. However, it generated more odor and made the quality of leachate. Therefore, 'FW direct Landfilling Prohibition' was evaluated as an appropriate legislation.

Evaluation on Resource Recovery Potential by Landfill Gas Production (매립가스 발생량에 따른 자원화 가능성 평가)

  • Lee, Hae-Seung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.10
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    • pp.4679-4688
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    • 2011
  • This study was performed to the municipal waste generation amounts and characteristics for B city in Gangwon province, predicted the methane gas generation rate emitted from landfill, and analyzed the possibility of energy recovery to RDF(Refuse Derived Fuel) using combustible waste. The study results showed that the average bulk density of municipal waste for B city was 144.0 kg/$m^3$, and the average ratios of combustible waste were 36.0 % of paper, 21.6 % of vinyl, and 19.7 % of food waste. respectively. In the experiment for heating value, high and low heating value(moisture) was measured to 3,471 $kca{\ell}$/kg and 2,941 $kca{\ell}$/kg, respectively. After the prohibition of burying of food waste in landfill, the heating value of municipal waste was dramatically increased due to increase of the ratio of paper, vinyl, and plastic waste. The prediction results of methane gas generation rate emitted from landfill showed that the gas generation rate is increasing to 2,505.7 CH4 ton/year in 2021. After then, the rate is decreasing gradually. When the RDF facility is installed, the rate is decreasing after peaking at 1,956.9 CH4 ton/year in 2013. The generation rate of LFG emitted from waste landfill of B city was analyzed to 9.92 $m^3$/min, similar to 10.11 $m^3$/min for other city.

Solvent Selection for the Detection of Siloxanes in Landfill gas (매립가스내 규소화합물류 검출을 위한 용매선택에 관한 연구)

  • Kim, Nack-Joo;Choi, Ju-Mi;Ji, Eun-Jung
    • Journal of Korean Society of Environmental Engineers
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    • v.29 no.8
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    • pp.915-921
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    • 2007
  • As a preliminary measurement of siloxanes in landfill gas(LFG), this study was conducted to determine the best suitable solvent applicable to the extraction of siloxanes in the domestic landfill using liquid-absorption method. Three solvents of n-hexane, acetone, and methanol were tested and the results obtained from GC analysis for each solvent were compared to their properties. Results showed that the resolution in the GC spectrum was the best from methanol due to the lack of overlapping of the peaks between silane and solvent. The detected siloxanes concentration were varied at maximum 2.6 times depending on the types of solvent as well as extraction velocity and impinger steps. In total, the highest concentration of siloxanes was obtained from methanol, which showed ideal pattern in the absorption of each impinger step and the least relative standard deviation. Accordingly, it is concluded that methanol is the most suitable solvent for the extraction of siloxanes in the domestic landfill. However, it is considered that solvent suitability can vary depending on the waste components and landfill record in landfills.

Effects of Gas Generation due to Biodegradation on Long-term Landfill Settlement (매립장의 생분해로 인한 가스발생이 장기 침하에 미치는 영향)

  • Ahn, Tae-Bong;Chin, Han-Gyu;Han, Woon-Woo
    • Journal of the Korean GEO-environmental Society
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    • v.6 no.1
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    • pp.5-13
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    • 2005
  • The conventional settlement prediction method is not appropriate to model landfill settlement because it is very complex phenomenon. Biodegradation needs to be considered for long-term settlement since landfills are comprised of various organic materials and soils. As organic materials are decomposed, they directly influences on settlement producing LFG(Landfill Gas). Therefore, mathematical settlement prediction model is proposed based on the generated gas volume. As one of stabilization methods, leachate recycling system is adopted to model tests. Two model tests; one is leachate recycled, the other is non-recycled, are componented with proposed model and analysed regarding gas generation and settlement. The proposed mathematical model requires correction coefficients of 1.4 and 1.7 for non-recycled model and recycled, respectively. The recycled model showed 22% increase of long-term settlement more than the non-recycled model.

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