• 제목/요약/키워드: Digestion gas

검색결과 216건 처리시간 0.026초

청정에너지농업시스템 개발에 따른 실증단지의 온실가스배출량 분석 (Analysis of Greenhouse Gas Emission associated with Clean Energy Agriculture System Development)

  • 김태훈;윤성이
    • 한국유기농업학회지
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    • 제23권4호
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    • pp.643-658
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    • 2015
  • This study presents detailed emission of greenhouse gases of using Clean Energy Agriculture System according to a cradle-to-gate life-cycle assessment, including emission from energy use and leak of Biogas. Calculations were done with the PASS software and the covered gases are $CH_4$, $N_2O$ and $CO_2$, Total GHG fluxes of amount to $1719.03kgCO_2/day$, $39.63kgCO_2/day$ (2.31%) are from facility house process, $0.19kgCO_2/day$ (0.01%) are from transport process, $696.72kgCO_2/day$ (40.53%) are from Anaerobic digestion process, $846.61kgCO_2/day$ (49.25%) are from Heating and cooling system, $135.88kgCO_2/day$ (7.90%) are from Fertigation production process. The results suggest that for effective reduction of GHG emissions from Facility house using clean energy. Reduction targets should address both the production process as defined by IPCC sectors and the consumption process. An LCA assessment as presented here could be a basis for such efforts.

Effects of Lactic Acid Bacteria Inoculant on Fermentation Quality and in vitro Rumen Fermentation of Total Mixed Ration

  • Choi, Yeon Jae;Lee, Sang Suk
    • 한국초지조사료학회지
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    • 제39권3호
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    • pp.132-140
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    • 2019
  • Fermented total mixed ration (TMR) is a novel feed for ruminants in South Korea. The purpose of this study was to evaluate the effects of lactic acid bacteria (LAB) on the quality of TMR and in vitro ruminal fermentation. Strains of three LAB spp. (Lactobacillus plantarum, L. brevis, L. mucosae) were used in fermentation of TMR. Inoculations with the three LAB spp. lowered pH and increased concentrations of lactic acid, acetic acid, and total organic acid compared to non-LAB inoculated control (only addition of an equivalent amount of water) (p<0.05). Bacterial composition indicated that aerobic bacteria and LAB were higher. However, E. coli were lower in the fermented TMR than those in the control treatment (p<0.05). Among the treatments, L. brevis treatment had the highest concentration of total organic acid without fungus detection. Gas production, pH, and ammonia-nitrogen during ruminal in vitro incubation did not differ throughout incubation. However, ruminal total VFA concentration was higher (p<0.05) in the LAB spp. treatments than the control treatment at 48 hours. Overall, the use of L. brevis as an inoculant for fermentation of high moisture. TMR could inhibit fungi growth and promote lactic fermentation, and enhance digestion in the rumen.

국내 하수처리시설 에너지 등급 평가를 위한 ENERWATER의 적용 가능성에 관한 연구 (A Study on the Applicability of ENERWATER for Evaluation of the Energy Consumption Label of WWTPs in Korea)

  • 박민오;이호식
    • 한국물환경학회지
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    • 제38권5호
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    • pp.231-239
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    • 2022
  • In this study, we applied ENERWATER to evaluate the energy consumption labeling of wastewater treatment plants in Korea using the Korea sewerage statistics data. The results showed that the energy label status was excellent in the SBR process for small and medium-scale wastewater treatment plants and the A2O process for large-scale wastewater treatment plants. The energy labeling of wastewater treatment plants of 50,000 tons capacity was excellent. The statuses of metropolitan cities and Jeollanam-do province were excellent. We analyzed the effects of renewable energy on wastewater treatment plants' energy consumption and found out that digestion gas for large-scale plants and photovoltaic energy for small-scale plants were effective in improving energy labeling. In addition, we compared the energy labels of four wastewater treatment plants in "Z" city and wastewater treatment plant "X" had the best energy label, and the wastewater treatment plants "V" and "Y" had to be selected as priorities for the energy diagnosis and improvement project. In a comprehensive conclusion, the applicability of ENERWATER was confirmed based on sewage statistics data and labeling can be used to set priorities for the energy diagnosis and improvement project.

바이오가스 이용 기술지침 마련을 위한 연구(III) - 기술지침(안) 중심으로 (A Study on Establishment of Technical Guideline of the Installation and Operation for the Biogas Utilization of Power generation and Stream - Design and Operation Guideline)

  • 문희성;배지수;박호연;전태완;이영기;이동진
    • 유기물자원화
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    • 제26권2호
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    • pp.95-103
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    • 2018
  • 바이오가스 이용 최적화를 위해 탈황 및 제습 전처리시설 가이드라인으로 $H_2S$ 농도는 철염으로 처리가능한 150 ppm으로 설정하고, 제습은 발전기 운전 적정수분 값이며 EU회원국에서 바이오가스 활용 시 적용하는 상대습도 60 %로 설정하였다. 국내 바이오가스 평균 온도인 $31^{\circ}C$에서 상대습도 60 %으로 적용한다면 노점온도 $22^{\circ}C$, 절대습도 $20.57g/m^3$으로 나타낼 수 있으며, 전처리 설비가 적절히 가동된다면 가이드라인에 만족하여 바이오가스의 이용이 최적화 될 것으로 사료된다. 바이오가스 이용 최적화를 위해 발전기 설비 가이드라인을 설정하고자 하였다. 바이오가스 적정 이용량으로는 전체 가스 발생량의 90 % 이상을 이용해야하며, 발전기 시설의 용량은 여유율을 10~30 %로 설정해야 한다. 발전기에 유입가스의 압력을 균등화하기 위해서는 가스 균등조(buffer tank)를 설치하며, 발전실 평균온도는 $45^{\circ}C$이하로 유지한다. 소화조에서 일정한 메탄농도로 가스가 생성되지 않아 효율이 저하되므로 메탄농도에 변화에 따른 공기연료비 제어시스템을 설치가 요구된다. 본 연구에서는 유기성폐자원의 바이오가스 생산 및 이용을 최적화를 위해 현장시설의 정밀모니터링과 시설별 에너지수지를 분석하고, 현장문제 해결방안에 대해서 조사하여 전처리시설 및 발전기 등의 설계 및 운전 가이드라인을 제시하고자 한다.

소수성 및 친수성 담체를 이용한 Trickling Bed Biofilter의 생물학적 수소생산 (The Fermentative Hydrogen Production in Trickling Bed Biofilter Filled with Hydrophilic-and Hydrophobic-Media)

  • 전병승;이선미;김용환;구만복;채희정;상병인
    • 한국수소및신에너지학회논문집
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    • 제17권4호
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    • pp.379-388
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    • 2006
  • Two mesophilic trickling bed bioreactors filled with two different types of media, hydrophilic- and hydrophobic-cubes, were designed and conducted for hydrogen production under the anaerobic fermentation of sucrose. Each bioreactor consisted of the column packed with polymeric cubes and inoculated with heat-treated sludge obtained from anaerobic digestion tank. A defined medium containing sucrose was fed by the different hydraulic retention time(HRT), and recycle rate. Hydrogen concentrations in gas-phase were constant, averaging 40% of biogas throughout the operation. Hydrogen production rate was increased till $10.5\;L{\cdot}h^{-1}{\cdot}L^{-1}$ of bioreactor when influent sucrose concentrations and recycle rates were varied. At the same time, the hydrogen production rate with hydrophobic media application was higher than its hydrophilic media application. No methane was detected when the reactor was under a normal operation. The major fermentation by-products in the liquid effluent of the both trickling biofilters were acetate, butyrate and lactate. In order to run in the long term operation of both reactor filled with hydrophilic and hydrophobic media, biofilm accumulation on hydrophilic media and biogas produced should be controlled through some process such as periodical backwashing or gas-purging. Four sample were collected from each reactor on the opposite hydrogen production rate, and their bacterial communities were compared by terminal restriction fragment length polymorphism (T-RFLP) analysis of PCR products generated using bacterial 16s rRNA gene primers (8f and 926r). It was expressed a marked difference in bacterial communities of both reactors. The trickling bed bioreactor with hydrophobic media demonstrates the feasibility of the process to produce hydrogen gas. A likely application of this reactor technology can be hydrogen gas recovery from pre-treatment of high carbohydrate-containing wastewaters.

Metabolisable Energy, In situ Rumen Degradation and In vitro Fermentation Characteristics of Linted Cottonseed Hulls, Delinted Cottonseed Hulls and Cottonseed Linter Residue

  • Bo, Y.K.;Yang, H.J.;Wang, W.X.;Liu, H.;Wang, G.Q.;Yu, X.
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권2호
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    • pp.240-247
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    • 2012
  • Dietary supplementation with conventional linted cottonseed hulls (LCSH) is a common practice in livestock production all over the world. However, supplementation with mechanically delinted cottonseed hulls (DCSH) and cottonseed linter residue (CLR) is uncommon. Cottonseed by-products, including LCSH, DCSH and CLR, were assessed by chemical analysis, an in situ nylon bag technique, an in vitro cumulative gas production technique and in vitro enzyme procedure. The crude protein (CP) content of CLR (302 g/kg dry matter (DM)) was approximately 3 times that of LCSH and 5 times that of DCSH. The crude fat content was approximately 3 times higher in CLR (269 g/kg DM) than in LCSH and 4 times higher than in DCSH. Neutral detergent fibre (311 g/kg DM) and acid detergent fibre (243 g/kg DM) contents of CLR were less than half those of DCSH or LCSH. Metabolisable energy, estimated by in vitro gas production and chemical analyses, ranked as follows: CLR (12.69 kJ/kg DM)>LCSH (7.32 kJ/kg DM)>DCSH (5.82 kJ/kg DM). The in situ degradation trial showed that the highest values of effective degradability of DM and CP were obtained for CLR (p<0.05). The in vitro disappearance of ruminal DM ranked as follows: CLR>LCSH>DCSH (p<0.05). The lowest digestibility was observed for DCSH with a two-step in vitro digestion procedure (p<0.05). The potential gas production in the batch cultures did not differ for any of the three cottonseed by-product feeds. The highest concentration of total volatile fatty acids was observed in CLR after a 72 h incubation (p<0.05). The molar portions of methane were similar between all three treatments, with an average gas production of 22% (molar). The CLR contained a higher level of CP than did LCSH and DCSH, and CLR fermentation produced more propionate. The DCSH and LCSH had more NDF and ADF, which fermented into greater amounts of acetate.

혐기성소화 슬러지 비율에 따른 미생물전기분해전지의 식종 특성 (Startup of Microbial Electrolysis Cells with different mixing ratio of Anaerobic Digested Sludge and Buffer solution)

  • 송근욱;백윤정;서휘진;장해남;정재우;이명은;안용태
    • 유기물자원화
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    • 제27권4호
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    • pp.51-59
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    • 2019
  • 실험실 규모 회분식 미생물전기분해전지 반응기 (유효부피 20 mL)를 이용하여 수소가스 생산 및 식종기간 특성을 조사하였다. 총 6 cycle 동안 0.9 V를 인가하여 식종슬러지 혼합 비율 (혐기성소화 슬러지:50 mM PBS)에 따른 수소생산 및 식종기간을 분석한 결과 혼합비 1:1 반응기에서 9.8-20.9 mL 수소를 생산하였으며, 수소함량은 66.8-79.6%로 가장 높게 나타났다. 식종기간에 있어서는 혼합비 1:1 반응기 기준으로 약 12일 정도부터는 수소생산 및 전류밀도가 증가하는 것으로 나타났다. 또한 혼합비 1:2, 1:3, 1:4 반응기의 경우 cycle (2-6 cycle)에 따라 수소가스 생산량이 3.7-7.1 mL, 농도 5.8-65.8%로 변화하였으며, 혼합비 1:5, 1:6, 1:7 반응기의 수소가스 생산량은 0.5-0.7 mL, 농도 1.8-7.1%로 나타나 최대 혼합비 1:4까지 식종하는 것이 적합할 것으로 판단된다.

왕겨 활성 바이오차 혼합 비율에 따른 우분 호기소화 시 온실가스 발생 특성 (Characteristics of Greenhouse Gas Emissions with Different Combination Rates of Activated Rice Hull Biochar during Aerobic Digestion of Cow Manure)

  • 노연희;정우진;정석주;정인호;나홍식;김민수;신중두
    • 한국환경농학회지
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    • 제39권3호
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    • pp.222-227
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    • 2020
  • BACKGROUND: Among the biomass conversion techniques of livestock manure, composting process is a method of decomposing organic matter through microorganisms, and converting it into fertilizer in soil. The aerobic composting process is capable of treating cow manure in large quantities, and produces greenhouse gas as CO2 and N2O, although it has economical benefit. By using the activated rice hull biochar, which is a porous material, it was intended to mitigate the greenhouse gas emissions, and to produce the compost of which quality was high. Objective of this experiment was to estimate CO2 and N2O emissions through composting process of cow manure with different cooperated biochar contents. METHODS AND RESULTS: The treatments of activated rice hull biochar were set at 0%, 5%, 10% and 15%, respectively, during composting cow manure. The CO2 emission in the control was 534.7 L kg-1, but was 385.5 L kg-1 at 15% activated rice hull biochar. Reduction efficiency of CO2 emission was estimated to be 28%. N2O emission was 0.28 L kg-1 in the control, but was 0.03 L min-1 at 15% of activated rice hull biochar, estimating about 89% reduction efficiency. CONCLUSION: Greenhouse gas emissions during the composting process of cow manure can be reduced by mixing with 15% of activated rice hull biochar for eco-friendly compost production.

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

  • 박성률;안효성;김정훈
    • 멤브레인
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    • 제21권4호
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    • pp.367-376
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    • 2011
  • 매립지나 유기성폐기물의 혐기성소화에서 발생되는 바이오 메탄가스 혼합물에서 이산화탄소를 제거하고 고농도의 메탄을 연료로 정제하는 기술은 온실가스의 저감과 신재생에너지 개발의 두 가지 장점을 함께 가지고 있다. 고분자 소재를 이용한 분리막기술은 메탄의 분리에 경제적으로 적용될 수 있는 기술이다. 본 연구에서는 이산화탄소/메탄의 선택도가 50, 이산화탄소의 투과도가 3.4 barrer로 알려진 폴리이서설폰[1]을 고분자 소재로 사용하고, 비용매 첨가제로 폴리이서설폰을 잘 팽윤시키는 아세톤의 함량을 달리하여 비대칭 중공사막을 제조하였다. 아세톤의 함량 9 wt%, 방사높이 10 cm, 4 wt% PDMS 코팅을 거친 폴리이서설폰 중공사막은 이산화탄소 투과도 36 GPU 및 이산화탄소/메탄 선택도 46의 우수한 성능을 나타내었다. 최적조건의 비대칭 폴리이서설폰 중공사막을 이용하여 제조된 모듈의 이산화탄소/메탄 순수가스 및 혼합가스 투과특성을 압력, 유입조성의 변화에 따라 관찰하여 분리막 공정을 구성한 결과 10 atm의 압력조건에서 95%의 메탄을 58%의 회수율로 얻을 수 있는 것으로 나타났다.

Effects of maize straw treated with various levels of CaO and moisture on composition, structure, and digestion by in vitro gas production

  • Shi, Mingjun;Ma, Zhanxia;Tian, Yujia;Zhang, Xuewei;Shan, Huiyong
    • Animal Bioscience
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    • 제34권12호
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    • pp.1940-1950
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    • 2021
  • Objective: The objective of this study was to explore the effects of maize straw treated with calcium oxide (CaO) and various moisture, on the composition and molecular structure of the fiber, and gas production by fermentation in an in vitro rumen environment. Methods: The experiment used 4×3 Factorial treatment. Maize straws were treated with 4 concentrations of CaO (0%, 3%, 5%, and 7% of dry straw weight) and 3 moisture contents (40%, 50%, and 60%). Scanning electron microscopy, Fourier transform infrared spectroscopy and X-ray fluorescence spectroscopy were employed to measure the surface texture, secondary molecular structure of carbohydrate, and calcium (Ca) content of the maize straw, respectively. The correlation of secondary molecular structures and fiber components of maize straw were analyzed by CORR procedure of SAS 9.2. In vitro rumen fermentation was performed for 6, 12, 24, 48, and 72 h to measure gas production. Results: Overall, the moisture factor had no obvious effect on the experimental results. Neutral detergent fiber (NDF), acid detergent fiber, acid detergent lignin, hemicellulose and cellulose contents decreased (p<0.05) with increasing concentrations of CaO treatment. Surface and secondary molecular structure of maize straw were affected by various CaO and moisture treatments. NDF had positive correlation (p<0.01) with Cell-H (H, height), Cell-A (A, area), CHO-2-H. Hemicellulose had positive correlation (p<0.01) with Lignin-H, Lignin-A, Cell-H, Cell-A. Ca content of maize straw increased as the concentration of CaO was increased (p<0.01). Gas production was highest in the group treated with 7% CaO. Conclusion: CaO can adhere to the surface of the maize straw, and then improve the digestibility of the maize straw in ruminants by modifying the structure of lignocellulose and facilitating the maize straw for microbial degradation.