• 제목/요약/키워드: Digestion temperature

검색결과 266건 처리시간 0.021초

혐기성 소화액의 농지환원에 따른 질소 거동 (Assessment of Nitrogen Fate in the Soil by Different Application Methods of Digestate)

  • 은콤보 로리 리셋 시미;홍성구
    • 한국농공학회논문집
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    • 제63권3호
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    • pp.35-45
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    • 2021
  • Digestate or slurry produced from anaerobic digestion is mostly applied to crop lands for its disposal and recovering nutrients. However, minimizing nitrogen losses following field application of the digestate is important for maximizing the plant's nitrogen uptake and reducing environmental concerns. This study was conducted to assess the effects of three different biogas digestate application techniques (sawdust mixed with digestate (SSD), the hole application method (HA), and digestate injected in the soil (SD)) on nitrate leaching potential in the soil. A pot laboratory experiment was conducted at room temperature of 25 ± 2 ℃ for 107 days. The experimental results showed that sawdust application method turned out to be appropriate for quick immobilization of surplus N in the form of microbial biomass N, reflecting its lower total nitrogen and NH4-N contents and low pH. The NH4-N and total nitrogen fate in the soil fertilized with manure showed no statistically significant (p > 0.05) differences between the different methods applied during the incubation time under room temperature. In contrast, NO3-N concentration indicates significant reduction in sawdust treatment (p < 0.05) compared to the control and other application methods. However, the soil sawdust mixed with digestate was more effective than the other methods, because of the cumulative labile carbon contents of the amendment, which implies soil net N immobilization.

중온2단혐기성소화조에 미생물제재 주입시 소화효율에 미치는 영향 (Effect on Digestion Efficiency by Adding Microbial Agent in Mesophilic Two-stage Anaerobic Digester)

  • 정병길;김석순;강동효;성낙창;최성호;이희범
    • 유기물자원화
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    • 제11권3호
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    • pp.75-86
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    • 2003
  • 최근에는 차집관거의 확충, 생활하수의 유입량 증가 및 인근 신규 APT의 분뇨 직유입으로 인해 유입 총고형 물량이 증가됨에 따라 기존 소화조의 용량이 부족할 것으로 예상되고 있다. 본 연구는 기존 소화조 용량부족에 따른 효율감소에 대응하기 위해 미생물제재로써 Bio-dh를 이용하여 소화조내 소화효율 증가(유기물 분해속도 증가)에 따른 최종슬러지 발생량을 감소시키고 가스발생량을 증가시키는데 그 목적이 있다. 실제 하수슬러지를 처리하고 있는 소화조 장치와 동일한 2단혐기성소화조 형태로 설치하였으며, 용량이 $1.3m^3$인 혼합조에 하수슬러지와 미생물제재인 Bio-dh를 주입하였다. 소화방식은 중온성 2단혐기성소화조로서 $35{\pm}1^{\circ}C$를 유지하였고, 1단소화조는 반응조내 미생물과 기질의 원활한 혼합을 위하여 교반기를 부착하였으며, 교반기는 120rpm으로 운전하여 반응조내 완전혼합이 이루어지도록 운전하였다. 2단소화조에서는 소화슬러지와 상등수가 분리되도록 교반을 수행하지 않았다. 소화가스량 측정을 위하여 각 소화조 상부에 가스메타를 설치하였으며, 가스분석을 위하여 상부에 가스포집구를 설치하였다. 교반기 축사이로 발생할 수 있는 발생가스의 누출과 공기의 유입을 막기 위해 water sealing 장치를 교반기 축에 부착시켰다. 실험결과 다음과 같은 결론을 얻을 수 있었다. 1. 미생물제재를 투입하지 않은 경우 소화효율은 평균 48.6%(46.0~50.9%)로 나타난 반면, 미생물제재인 Bio-dh를 투입한 경우 소화효율은 평균 54.2%(52.8~57.3%)로 나타나 미생물제재를 투입한 경우가 미생물제재를 투입하지 않은 경우보다 소화효율이 약 1.12배 정도 높은 것으로 나타났다. 2. 2차소화조 월류수의 수질은 미생물제재 미투입시 $COD_{Mn}$은 평균 1,639mg/L, SS는 평균 4,888mg/L로 나타난 반면, 미생물제재(Bio-dh) 투입시 $COD_{Mn}$은 평균 859mg/L, SS는 평균 2,405mg/L로 나타나 미생물제재 투입시 $COD_{Mn}$은 약 47.6%, SS는 약 50.8% 정도 더 낮게 나타났다.

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플러그 흐름 소화기 속에서 Grain Dust의 혐기성 소화에 의한 메탄가스 생산 (Methane Production by Anaerobic Digestion of Grain Dust in a Plug Flow Digester)

  • Tae-Kyung Yoon;Sung-Bum Han;Moon-Ki Park;Seung-Koo Song
    • 한국환경과학회지
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    • 제2권4호
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    • pp.311-316
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    • 1993
  • 3리터의 실험실 크기의 플러그 흐름의 혐기성 소화기를 사용하여 grain dust로부터 메탄가스를 생산하였다. 이 실험에서 사용한 소화기는 온도(35, 45, 55$^{\circ}C$), 체류 시간(6, 12일), 초기농도(7.8, 9.0% Total Solids)의 함수로 10가지 조건에서 실험이 행하여 졌는데, 실험 결과 55$^{\circ}C$, 6일 HRT, 7.8%TS 에서 가장 높은 메탄가스를 생산하였으며, 실험결과를 토대로 메탄가스생산 관계식을 제시하였다. 또한, 위의 실험의 조건에서는 thermophilic 의 경우가 mesophilic 경우보다 메탄가스 생성이 좋은 것으로 나타났다.

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농축산바이오매스 고온 혐기성 생분해도 평가 (Thermophilic Anaerobic Biodegradability of Agro-industrial Biomass)

  • 허남효;강호;이승헌
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.101-101
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    • 2010
  • Anaerobic digestion(AD) is the most promising method for treating and recycling of different organic wastes, such as organic fraction of municipal solid waste, household wastes, animal manure, agro-industrial wastes, industrial organic wastes and sewage sludge. During AD, i.e. organic materials are decomposed by anaerobic forming bacteria and fina1ly converted to excellent fertilizer and biogas which is a mixture of carbon dioxide and methane. AD has been one of the leading technologies that can make a large contribution to produce renewable energy and to reduce $CO_2$ and other green-house gas(GHG) emission, it is becoming a key method for both waste treatment and recovery of a renewable fuel and other valuable co-products. Currently some 80% of the world's overall energy supply of about 400 EJ per year in derived from fossil fuels. Nevertheless roughly 10~15% of this demand is covered by biomass resources, making biomass by far the most important renewable energy source used to date. The representative biofuels produced from the biomass are bioethanol, biodiesel and biogas, and currently biogas plays a smaller than other biofuels but steadily growing role. Traditionally anaerobic digestion applied for different biowaste e.g. sewage sludge, manure, other organic wastes treatment and stabilization, biogas has become a well established energy resource. However, the biowaste are fairly limited in respect to the production and utilization as renewable source, but the plant biomass, the so called "energy crops" are used for more biogas production in EU countries and the investigation on the biomethane potential of different crops and plant materials have been carried out. In Korea, with steadily increasing oil prices and improved environmental regulations, since 2005 anaerobic digestion was again stimulated, especially on the biogasification of different biowastes and agro-industrial biomass including "energy crops". This study have been carried out to investigate anaerobic biodegradability by the biochemical methane potential(BMP) test of animal manures, different forage crops i.e. "energy crops", plant and industrial organic wastes in the condition of thermophilic temperature, The biodegradability of animal manure were 63.2% and 58.2% with $315m^3CH_4/tonVS$ of cattle slurry and $370m^3CH_4/tonVS$ of pig slurry in ultimate methane yields. Those of winter forage crops were the range 75% to 87% with ultimate methane yield of $378m^3CH_4/tonVS$ to $450m^3CH_4/tonVS$ and those of summer forage crops were the range 81% to 85% with ultimate methane yield of $392m^3CH_4/tonVS$ to $415m^3CH_4/tonVS$. The forge crops as "energy crops" could be used as good renewable energy source to increase methane production and to improve biodegradability in co-digestion with animal manure or only energy crop digestion.

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Determination of Optimal Conditions of Pressure Toasting on Legume Seeds for Dairy Deed Industry : I. Effects of Pressure Toasting on Nutritive Values of Lupinus albus in Lactating Dairy Cows

  • Yu, P.;Goelema, J.O.;Tamminga, S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권8호
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    • pp.1205-1214
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    • 1999
  • Whole lupinus albus seeds were pressure toasted at temperatures of 100, 118 and $136^{\circ}C$ for 3, 7, 15 and 30 min to study rumen degradation and post-rumen digestion and to determine optimal heating conditions for the Dutch dairy feed industry. In sacco nylon bag and mobile bag techniques were employed for rumen and intestine incubations to determine ruminal degradation characteristics and intestinal digestion of crude protein (CP) in 4 lactation rumen cannulated and 4 lactating intestinal cannulated Dutch dairy cows fed 47% hay and 53% concentrate according to Dutch dairy requirements. Measured rumen degradation characteristics were soluble fraction (S), undegradable fraction (U), potentially degradable fraction (D), lag time (T0) and rate of degradation (Kd) of insoluble but degradable fraction. Percentage bypass feed protein (BCP), ruminal microbial protein synthesized based on available nitrogen (N_MP) and that based on available energy (E_MP), true protein supplied to the small intestine (TPSI), truly absorbed BCP (ABCP), absorbed microbial protein (AVP) in the small intestine, endogenous protein losses in the digestion (ENDP), true digested protein in the small intestine (TAP or DVE in Dutch) and degraded protein balance (PDB or OEB in Dutch) were totally evaluated using the new Dutch DVE/OEB System. Pressure toasting decreased (p<0.001) rumen degradability of CP. It reduced S (p<0.05) and Kd (p=0.06), increased D (p<0.05) and U (p<0.01) but did not alter T0 (p>0.05), thus resulting in dramatically increased BCP (p<0.001) with increasing time and temperature from 73.7 (raw) up to 182.5 g/kg DM ($136^{\circ}C/15min$). Although rumen microbial protein synthesized based on available energy (E_MP) was reduced, true protein (microbial and bypass feed protein) supplied to the small intestine (TPSI) was increased (p<0.001) from 153.1 (raw) to 247.6 g/kg DM ($136^{\circ}C/15min$). Due to digestibility of BCP in the intestine not changing (p>0.05) average 87.8%, the absorbed BCP increased (p<0.001) from 62.3 (raw) to 153.7 g/kg DM ($136^{\circ}C/15min$). Therefore DVE value of true digested protein in the small intestine was significantly increased (p<0.001) from 118.9 (raw) to 197.0 g/kg DM ($136^{\circ}C/15min$) and OEB value of degraded protein balance was significantly reduced (p<0.001) from 147.2 (raw) to 63.1 g/kg DM ($136^{\circ}C/15min$). It was concluded that pressure toasting was effective in shifting degradation of CP of lupinus albus from the rumen to small intestine without changing intestinal digestion. Further studies are required on the degradation and digestion of individual amino acids and on the damaging effects of processing on amino acids, especially the first limiting amino acids.

대두를 이용한 이유식 제조에 관한 연구(제 1보) -효소를 이용한 대두단백질 분해 적정 조건결정 및 조제에 관하여- (Studies on the Preparation of Weanling Food from Soybean (Part 1) -Conditions for the digestion of soybean protein by Eezyme from Aspergillus-)

  • 김재욱;조무제
    • Applied Biological Chemistry
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    • 제13권1호
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    • pp.29-34
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    • 1970
  • 우수한 영양가를 가진 대두를 이용하여 이유식을 제조하기 위하여 가압증자한 대두에 Protease및 Cellulase 역가가 비교적 높은 Asp. niger 및 Asp. sojae균의 피국 추출조효소액을 작용시켜 대두 단백질을 아미노산 내지 Peptide 태로 분해시키는 최적조건을 결정하고 여기서 얻은 분해물을 탈색 농축시키는 효과에 관하여 실험하여 다음과 같은 결과를 얻었다. 1. 대두의 가압증자는 15Ib에서 10분간 처리함이 가장 높은 단백응해율 및 단백분해율을 나타냈다. 2. Asp. sojae enzyme은 pH 6.0, Asp. niger enzyme은 pH 4.4에서 가장 높은 단백용해율과 단백분해율을 나타냈다. Asp. sojae enzyme을 처리한 다음 Asp. niger emzyme을 작용 분해시킨 것이 각 효소 단독으로처리했을때 보다 높은 단백응해율(62.3%) 및 단백분해율을 (56.4%) 나타냈다. 3. 기질에 대한 효소액 첨가량은 원료 대두에 10배의 물을 가한 마쇄기질액에 피국에 대하여 10배의 물로 추출한 효소액 1/2에 해당하는 양 (Asp. sojae enzyme와 Asp. niger emzyme 총량)을 가하는것이 가장 실용적이었다. 4. 분해시간이 길 수록 단백응해율 및 단백분해율이 높아지나 부패 등을 고려할 때 실용분해 시간은 8시간 정도가 적당하다. 5. 탈색 효과는 활성탄으로 처리한 후 음이온교환수지 (Dowex 2-x-8)을 처리한 것이 가장 좋고 단독처리로는 음이온교환수지, 활성탄, 양이온교환 수지(Amberite)의 순으로 효과가 적었다. 6. 이상의 최적 조건으로 대두단백질을 분해하고 $60^{\circ}C$ 이하에서 감압농축하여 얻은 제품은 수분 12.51%, 단백질 66.31%, 지방 4.25%, 탄수화물 12.75%,인 건조분말을 얻었다. 이 연구는 1969년도 문교부 학술연구 조성비로 이루워진 것이며 본 연구에 헌신적인 보조를 아끼지 않았던 박 관화 군에게 감사하는 바이다.

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유기성 폐기물의 혐기성 소화효율 향상을 위한 열가용화 하수슬러지의 통합소화 (Integrated Digestion of Thermal Solubilized Sewage Sludge to Improve Anaerobic Digestion Efficiency of Organic Waste)

  • 오경수;황정기;송영주;김민지;박준규;박대원
    • 한국물환경학회지
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    • 제38권2호
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    • pp.95-102
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    • 2022
  • Studies for improving the efficiency of the traditional anaerobic digestion process are being actively conducted. To improve anaerobic digestion efficiency, this study tried to derive the optimal pretreatment conditions and mixing conditions by integrating the heat solubilization pretreatment of sewage sludge, livestock manure, and food waste. The soluble chemical oxygen demand (SCOD) increase rate of sewage sludge before and after heat solubilization pretreatment showed an increased rate of 224.7% compared to the control group at 170℃ and 25 min and showed the most stable increase rate. As a result of the biomethane potential test of sewage sludge before and after heat solubilization pretreatment, the total chemical oxygen demand (TCOD) and SCOD removal rates increased as the heat solubilization temperature increased, but did not increase further at temperatures above 170℃. In the case of methane generation, there was no significant change in the cumulative methane generation from 0.134 to 0.203 Sm3-CH4/kg-COD at 170℃ for 15 min. As a result of the integrated digestion of organic waste, the experimental condition in which 25% of the sewage sludge, 50% of the food waste, and 25% of the livestock manure were mixed showed the highest methane production of 0.3015 m3-CH4/kg-COD, confirming that it was the optimal mixing ratio condition. In addition, under experimental conditions mixed with all three substrates, M4 conditions mixed with 25% sewage sludge, 50% food waste, and 25% livestock manure showed the highest methane generation at 0.2692 Sm3-CH4/kg-COD.

Effect of Temperature-increase Rate and Terminal Temperature on the Solubilization of Sewage Sludge using Microwave Irradiation

  • Park, Woon-Ji;Ahn, Johng-Hwa;Lee, Chan-Ki
    • Environmental Engineering Research
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    • 제14권1호
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    • pp.48-52
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    • 2009
  • Solubilization of sewage sludge creates favorable conditions for anaerobic microorganisms to produce biogas. In this paper, we quantify the effect of heating pretreatment on the degree of solubilization of sewage sludge. The pretreatment process was carried out using a lab-scale industrial microwave unit (2450 MHz frequency). Response surface analysis was applied to determine the combination of temperature-increase rate (ramp rate) (2.9 to 17.1 ${^{\circ}C}$/min) and terminal temperature (52 to 108${^{\circ}C}$). Both ramp rate and temperature significantly affected the solubilization degree of sludge. Within the design boundaries, the conditions predicted to maximize the solubilization degree of 15.8% were determined to be 2.9 ${^{\circ}C}$/min and 104${^{\circ}C}$.

혐기성 소화를 통한 유가공 폐기물의 에너지원으로의 재활용과 오염 감소 방안에 관한 연구 (A Study of Milk Waste Recycling as an Energy Source and Reduction of Pollution by Anaerobic Digestion)

  • 임사무엘;임현지;정국진
    • Journal of Dairy Science and Biotechnology
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    • 제27권1호
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    • pp.13-18
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    • 2009
  • 본 연구의 목적은 유가공 폐기물에 대한 혐기성 소화를 통해 바이오메탄의 생성을 확인하고, 생성된 메탄의 에너지원으로의 사용 가능성과 오염도 감소의 정도를 확인하는 것이며, 연구 결과 다음과 같은 결론을 얻었다. 1. 수리학적 체류시간(HRT)을 15일로 유지시키고 $35^{\circ}C$의 중온 조건에서 유가공 폐기물을 혐기성 소화시킨 결과 평균 4.11 ${\ell}$/day의 메탄이 전체 가스의 70% 성분비를 유지하며 일정하게 발생하였다. 이는 다른 폐기물을 이용한 연구 결과와 비교하였을 때보다 상대적으로 높은 값으로, 유가공 폐기물에 대한 혐기성 소화처리를 통해 높은 효율의 에너지원으로 확보할 수 있음을 보여준다. TCOD는 초기 투입된 원수에서의 약 31,000 mg/${\ell}$에서 13,500 mg/${\ell}$ 이하까지 줄어 최대 60%의 TCOD 제거 효율을 보여주었다. 2. HRT를 15일로 유지한 상태에서 온도를 $55^{\circ}C$의 고온으로 변화시킨 경우, 메탄 발생량이 약 5% 가량 증가하였다. 온도의 변화만으로는 메탄 발생량에 큰 영향을 주지 못하였으나, HRT를 15일에서 12일로 감소시킨 경우에는 고온의 경우가 중온의 경우보다 약 44% 가량 많은 메탄 발생량을 보였다. 3. 이상의 결과를 통하여 알아낸 메탄 발생량과 오염 감소율을 토대로 바이오메탄을 에너지원으로 이용했을 경우의 경제성을 분석한 결과, HRT 12일의 고온 조건에서 유가공 폐기물을 혐기성 소화시키는 것이 기업에 많은 경제적인 이익을 가져다 주는 것으로 나타났다.

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EFFECT OF SOYBEAN EXTRUSION ON NITROGEN METABOLISM, NUTRIENT FLOW AND MICROBIAL PROTEIN SYNTHESIS IN THE RUMEN OF LAMBS

  • Ko, J.Y.;Ha, J.K.;Lee, N.H.;Yoon, C.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권3호
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    • pp.571-582
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    • 1992
  • Soybeans were dry extruded at three different temperatures (125, 135 and $145^{\circ}C$) for 30 s. Four lambs fitted with cannulae in the rumen and abomasums were used in a balanced $4{\times}4$ Latin square design. Lambs were fed at 2 h intervals for 12 times a day with automatic feeder to maintain steady state conditions in digestive tract. A dual-phase marker system was used to estivate ruminal flow rate of both liquid and solid digesta. Objectives of this study were to determine the effect of extrusion temperature of raw soybean on the ruminal liquid and solid dilution rate, nitrogen digestion and flow at the abomasum and availability of amino acid in lambs. There were no significant effects of extrusion on liquid and solid dilution rate, and liquid volume. Ruminal liquid flow rate was not influenced by extrusion and ranged from 389 to 435 ml/hr. Extrusion had no influence on ruminal OM digestion and flow rate to the abomasums. Dietary N flow to the abomasums increased (p < 0.05) as extruding temperature increased. Extruding temperature had a significant effect (p < 0.05) on flow of N escaping ruminal degradation and ranged from 34.91 to 57.38%. Microbial N synthesized/kg OMTDR ranged from 27 to 37 g and highest with $145^{\circ}C$ ESB diet. Extrusion decreased the amount of degradable amino acid in the rumen and increased the supply of amino acid to the lower gut, especially with 135 and $145^{\circ}C$ ESB diets.