• Title/Summary/Keyword: 메탄가스 발생

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Preparation of Asymmetric PES Hollow Fiber Gas Separation Membranes and Their $CO_2/CH_4$ Separation Properties (비대칭구조의 폴리이서설폰 기체분리용 중공사막의 제조 및 이를 이용한 $CO_2/CH_4$ 분리특성)

  • Park, Sung-Ryul;Ahn, Hyo-Seong;Kim, Jeong-Hoon
    • Membrane Journal
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    • v.21 no.4
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    • pp.367-376
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    • 2011
  • Huge amount of $CH_4$ mixtures has been emitted from landfills and organic wastes via anaerobic digestion. The recovery of high purity $CH_4$ from these gases has two merits: reduction of green house gases and production of renewable fuels. Membrane technology based on polymeric materials can be used in this application. In this study, asymmetric gas separation hollow fiber membranes were fabricated to develop the membrane-based bio-gas purification process. Polyethersulfone (PES) was chosen as a polymer materials because of high $CO_2$ permeability of 3.4 barrer and $CO_2/CH_4$ selectivity of 50[1]. Acetone was used as a non-solvent additive because of its unique swelling power for PES and highly volatile character. The prepared PES hollow fiber showed excellent separation properties: 36 GPU of $CO_2$ permeance and 46 of $CO_2/CH_4$ selectivity at optimized preparation conditions: 9wt% acetone content, 10cm air-gap and 4wt% PDMS coating processes. With the PES hollow fiber membranes developed, mixed $CO_2/CH_4$ test was done by changing various operating conditions such as pressures and feed compositions to meet the highest recovery of CH4 with 95% purity. High $CH_4$ recovery of 58 wt% was observed at 10 atm feed pressure for the 50 vol% of $CO_2$ in $CO_2/CH_4$ mixture.

수소 제조용 치밀질 세라믹 멤브레인 제조기술 개발

  • Hwang, Gwang-Taek
    • 한국신재생에너지학회:학술대회논문집
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    • 2005.11a
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    • pp.51-59
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    • 2005
  • 수소 분리막의 적용 분야는 석탄가스, 천연가스, 메탄가스 혼합기체이며, 고온/고압 및 수소농도가 낮은 혼합기체에서 고순도의 수소를 제조하는 곳이다. 특히 치밀질 세라믹 멤브레인은 고온에서 가스화한 석탄가스나 차세대의 쓰레기 처리 기술인 가스화 용융처리에서 생긴 고온가스로부터 고순도의 수소를 분리할 수 있다. 분리한 수소는 고온을 유지하기 때문에 연료전지 발전에 최적이다. 종래의 연료전지는 발전을 위해서 수소의 가열이 필요했으나 이것이 불필요하게 되어 발전 전체의 효율이 향상된다. 석유화학 산업에서 발생하는 혼합기체에서 수소를 분리하여 사용하고 남은 기체는 연료로 재사용할 수 있다. 분리막의 재질로는 고분자계가 개발되고 있으며 고분자 지지체에 백금이나 로듐과 같은 촉매를 코팅하는 방법이다. 이는 기공의 제어가 용이하고 대량생산이 가능한 장점이 있지만 고온에서 사용이 불가능하고 입자상 물질에 의해 분리막의 손상이 문제가 되고 있다. 이에 비해 치밀질 세라믹 멤브레인은 세라믹의 특성에 의해 고온 및 고압에서도 적용이 가능하며, 실온이나 저압의 조건에서도 적용이 가능한 특징을 가진다. $900^{\circ}C$의 고온에서 적용시 세라믹 멤브레인에는 특성열화가 없어 수명이 긴 장점을 가지게 된다. 수소가 포함되어 있는 기체에서 수소 만을 분리하는 방법은 흡착이나 분리막을 이용하는 방법이 일반적이며 흡착에 의한 방법은 일부 실용화가 진행되고 있다. 고효율의 수소를 분리하는 방법으로 분리막을 이용하는 방법이 있다. 현재 치밀질 수소 분리막의 연구는 외국(미국, 일본 등)에서도 초기 연구 단계이다. 국내에서도 이런 연구가 선행되어 외국과의 기술 격차를 줄이고 에너지 자원에 대한 확보가 필요하기 때문에 이 연구가 수행되었다. 치밀질 멤브레인의 소재로는 proton 및 전자전도가 가능한 소재로서 Ba-Ce-Y계를 기본조성으로 하여 내구성과 전기전도도를 향상시키기 위해 Ca, La, In, Yb를 치환하였다. 제조한 재료의 물리화학적 특성을 평가하였고, 수소여과 장치를 이용하여 여과 효율을 평가하였다.

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pH Effect at Thermophilic Solubilization Pretreatment of Food Waste in Two Phase Anaerobic Digestion (2상 혐기성 소화에서 음식물쓰레기의 고온 가용화 전처리 pH 영향)

  • Lee, Won-Soo;Kang, Young-Jun;Seo, Gyu-Tae
    • Journal of Korean Society of Environmental Engineers
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    • v.38 no.8
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    • pp.452-458
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    • 2016
  • The study on pH control at the themophilic solubilization (pretreatment process) was investigated in order to improve the methane gas production of two phase anaerobic digestion of food waste. From a batch experiment, it was observed that the solubilization efficiency was increased from 26.2% to 47.1% and 55.6% by the pH increament from $4.20{\pm}0.40$ (without pH control) to $7.00{\pm}0.50$, and $12.00{\pm}0.50$, respectively. However there was immaterial increase (8.5%) in solubilization efficiency when the pH was increased from $7.00{\pm}0.50$ to $12.00{\pm}0.50$. The two phase anaerobic digestion system was operated for laboratory scale experiment under the solubilization condition of pH $4.20{\pm}0.40$ (Run1) and $7.00{\pm}0.50$ (Run2). Higher soluble chemical oxygen demand (SCOD) and total volatile fatty acid (TVFA) concentration were observed in Run2 throughout the system resulted by the solubilization effect at the pH $7.00{\pm}0.50$. The TVFA concentration in acidogenic reactor was 18.4 g/L which was 1.8 times higher than the result of Run1. Consequently the methane gas production was enhanced to 0.333 L/g VS in the methanogenic reactor, which is 18% higher than the result (0.282 L/g VS) of Run1.

Feasibility test of treating slaughterhouse by-products using microbial electrolysis cells (미생물전기분해전지를 이용한 도축부산물 처리 가능성 평가)

  • Song, Geunuk;Baek, Yunjeong;Seo, Hwijin;Kim, Daewook;Shin, Seunggu;Ahn, Yongtae
    • Journal of the Korea Organic Resources Recycling Association
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    • v.29 no.2
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    • pp.31-38
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    • 2021
  • The aim of this study is to evaluate the possibility of treating slaughterhouse by-products using microbial electrolysis cells (MECs). The diluted pig liver was fed to MEC reactors with the influent COD concentrations of 772, 1,222, and 1,431 mg/L, and the applied voltage were 0.3, 0.6, and 0.9 V. The highest methane production of 5.9 mL was obtained at the influent COD concentration of 1,431 mg/L and applied voltage of 0.9 V. In all tested conditions, COD removal rate was increased as the influent COD concentration increased with average removal rate of 62.3~81.1%. The maximum methane yield of 129~229 mL/g COD was obtained, which is approximately 80% of theoretical maximum value. It might be due to the bioelectrochemical reaction greatly increased the biodegradability of pig liver. Future research is required to improve the methane yield and digestibility through optimizing the reactor design and operating conditions.

Development of Methane Gas Leak Detector Using Mid-infrared Ray Sensors with $3.2\;{\mu}m$ ($3.2\;{\mu}m$ 중적외선 센서를 이용한 메탄가스누출검지기의 개발)

  • Park, Gyou-Tae;Lyu, Keun-Jun;Han, Sang-In;Oh, Jeong-Seok;Kim, Ji-Yoon;Ahn, Sang-Guk;Yoon, Myung-Seop;Kwon, Jeong-Rock
    • Journal of the Korean Institute of Gas
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    • v.12 no.2
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    • pp.48-52
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    • 2008
  • According to extremely industrial growth, gas facilities, equipments and chemical plants are gradually increased due to incremental demands of annual amount of gases. The safety management of gases, however, is still far from their requirements. Methane, the principal ingredient of natural gas, is inflammable and explosive and is much used in factories and houses. Therefore, these gas safety management is essential. So, we, with a program of the gas safety management, hope to develop the detection system of methane gas leak using mid-infrared ray LED and PD with $3.2\;{\mu}m$. The cryogenic cooling device is indispensible at laser but needless at LED driven on the room temperature if manufacturing optical sensor with $3.2\;{\mu}m$. It, consequently, is not only possible to implement for subminiature and portable type but also able to speedily detect methane of extremely small quantities because the $CH_4$ absorption intensity at $3.2\;{\mu}m$ is stronger than that at $1.67\;{\mu}m$. Our objective of research is to prevent gas leak accidents from occurring previously and to minimize the extent of damage from them.

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Anti-inflammatory Effect of Natural Plant Extracts on in vitro Rumen Fermentation and Methane Emission (천연 식물 추출물의 항염 효과가 in vitro 반추위 발효성상과 메탄 생성에 미치는 영향)

  • Lee, Shin Ja;Lee, Su Kyoung;Lim, Jung Hwa;Son, Chang Jun;Lee, Sung Sill
    • Journal of agriculture & life science
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    • v.51 no.4
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    • pp.97-109
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    • 2017
  • This study was conducted to investigate the effects of anti-inflammatory plant extracts on the in vitro rumen fermentation characteristics and methane emission. Anti-inflammatory plant extracts from Morus bombycis Koidz, Mallotus japonicus L., Morus alba L., Paulownia coreana Uyeki, Isodon japonicus Hara and Ginkgo biloba L. were used in the study. The ruminal fluid(5 mL), McDougall buffer(10 mL), timothy as a substrate(0.3 g) and each anti-inflammatory plant extract(5% of substrate) were dispensed anaerobically into 50mL serum bottle. The mixtures were incubated for 3, 9, 12, 24, 48 and 72h at $39^{\circ}C$ without shaking. Supplementation of the anti-inflammatory plant extracts did not effects characteristics(pH, digestibility of dry matter, glucose concentration, ammonia concentration, protein concentration, VFA) on rumen fermentation. Total gas was showed a different pattern depending on treatments. Carbon dioxide was significantly(p<0.05) higher in Morus alba and Isodon japonicus than in control at 48h. Methane was significantly(p<0.05) lower in treatment than in control at initial fermentation. However the more incubation time was increased, the more methane emission was higher in treatment than in control. The concentrations of polyphenol and flavonoid were higher in Ginkgo biloba. In conclusion, supplementation of the anti-inflammatory plant extracts did not effect on rumen fermentation and methane emission was decreased in initial fermentation.

LIDAR 기술과 응용

  • 차형기
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.02a
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    • pp.4-5
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    • 2000
  • 오늘날 현대사회의 산업화 과정에서 발생되는 여러 문제 중에서도 가장 시급하고 절실하게 해결하여야 할 문제중의 하나는 극심한 오염 문제이다. 그 중에서도 대기오염은 자동차의 급격한 증가와 겨울철 난방연료의 사용으로 머지않아 우리나라 환경정책의 가장 큰 숙제로 떠오를 전망이다. 즉, 수질오염은 개인차원에서 어느 정도 자구책을 마련할 여지가 있지만 대기오염은 개인의 의지로 개선이 불가하고 불특정다수에게 광범위하게 영향을 미치기 때문에 그 폐해가 더욱 심각하다. 각종 오염원으로부터 배출되는 불소화합물, 질소산화물, 황화물, 오존, 메탄가스, 이산화탄소 등 다양한 종류의 대기오염 물질들은 광화학 스모그, 지구온난화, 자연림감소, 오존홀, 산성비 등의 원인을 제공하며, 인체 및 자연 생태계에 예측하기 어려운 부작용들을 야기시키고 있다. (중략)

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The Seasonal Characteristics of VOC Emission in Landfill Site (매립장 배출공의 휘발성유기화합물의 계절(겨울과 여름철)간 배출특성에 대한 연구)

  • 오상인;김기현;최여진;전의찬;사재환
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.325-326
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    • 2003
  • 매립지 내부에서 진행되는 혐기성 분해로 인한 폐기물의 부패현상은 일반적으로 악취와 관련한 직접적인 대기오염문제에서부터 메탄과 이산화탄소와 같은 온실기체의 발생 등과 같이 기후환경변화와 관련된 문제에 이르기까지 매우 심각한 오염원으로 인식되고 있다. 특히 매립지 내부의 가스상 오염물질들의 누적을 억제하기 위하여 설치하는 배출공에서는 이산화탄소나 메탄과 같은 온실기체 이외에도 약 80여 종에 이르는 다양한 휘발성유기화합물질 (Volatile Organic Compound, 이하 VOC) 성분들이 검출되기도 하였다 (Young and Parker, 1983). (중략)

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Methane Mitigation Technology Using Methanotrophs: A Review (Methanotrophs을 이용한 메탄 저감 기술 최신 동향)

  • Cho, Kyung-Suk;Jung, Hyekyeng
    • Microbiology and Biotechnology Letters
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    • v.45 no.3
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    • pp.185-199
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    • 2017
  • Methane, which is emitted from natural and anthropogenic sources, is a representative greenhouse gas for global warming. Methanotrophs are widespread in the environment and play an important role in the biological oxidation of methane via methane monooxygenases (MMOs), key enzymes for methane oxidation with broad substrate specificity. Methanotrophs have attracted attention as multifunctional bacteria with promising applications in biological methane mitigation technology and environmental bioremediation. In this review, we have summarized current knowledge regarding the biodiversity of methanotrophs, catalytic properties of MMOs, and high-cell density cultivation technology. In addition, we have reviewed the recent advances in biological methane mitigation technologies using methanotrophs in field-scale systems as well as in lab-scale bioreactors. We have also surveyed information on the dynamics of the methanotrophic community in biological systems and discussed the various challenges pertaining to methanotroph-related biotechnological innovation, such as identification of suitable methanotrophic strains with better and/or novel metabolic activity, development of high-cell density mass cultivation technology, and the microbial consortium (methanotrophs and non-methanotrophs consortium) design and control technology.

Estimation of Characteristics and Methane Production Rate of Food Waste (음식물류 폐기물 특성 및 메탄 발생가능량 평가)

  • Lee, Min-Kyu;Kim, Kyung;Shin, Hyun-Gon;Bae, Ki-Hwan;Kim, Choong-Gon;Park, Joon-Seok
    • Clean Technology
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    • v.25 no.3
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    • pp.223-230
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    • 2019
  • This research was performed to evaluate the characteristics of food waste from 5 areas in Gangwon Province, Korea and to predict the $CH_4$ gas production rate. Food wastes were sampled in July and September, 2017. The amount of methane gas generation was evaluated through the biochemical methane potential (BMP) test and a calculation method using chemical composition. Average bulk density and pH of the food wastes were in the range of $0.758{\sim}0.850g\;cm^{-3}$ and 4.29 ~ 4.75, respectively. By physical composition, vegetables were the highest with 56.43 ~ 72.81% with fruits recording 5.31 ~ 8.95%, cereals 1.60 ~ 18.73%, fish and meat 4.47 ~ 12.11%, and filtrate 1.76 ~ 3.64%. The average water content was 69.30 ~ 75.87%, and VS and ash content were 22.50 ~ 27.98% and 1.63 ~ 2.48%, respectively. In addition, $BOD_5$, $COD_{Cr}$, and $COD_{Mn}$ were in the ranges of $17,690.3{\sim}33,154.9mg\;L^{-1}$, $106,212.3{\sim}128,695.5mg\;L^{-1}$, and $51,266.1{\sim}63,426.3mg\;L^{-1}$, respectively. The NaCl content ranged from 0.81 to 1.17%. The results of elemental analysis showed that the contents of C, H, O, N, and S were 44.87 ~ 48.1%, 7.12 ~ 7.57%, 40.13 ~ 43.78%, 3.22 ~ 4.14%, and 0.00 ~ 0.02%, respectively. In a comparison of the methane production yield per VS mass of food waste, there was no significant difference between the cumulative amount (${0.303{\sim}0.354m_{CH4}}^3\;{kg_{VS}}^{-1}$) by the BMP test and the theoretical amount (${0.294{\sim}0.352m_{CH4}}^3\;{kg_{VS}}^{-1}$) calculated by chemical composition.