• 제목/요약/키워드: Organic wastes

검색결과 531건 처리시간 0.029초

지렁이에 의한 돈분 퇴비화용 유기성자원 연구 (A Study on Organic Resources for Pig Manure Treatment by Vermicomposting)

  • 이주삼;최덕천
    • 한국축산시설환경학회지
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    • 제15권3호
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    • pp.289-296
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    • 2009
  • The effects of the processing mixture of pig manure and various organic wastes on the growth, cast production of earthworm, and conversion of organic matter to earthworm tissues by vermicomposting. The substances used in this experiments were sawdust, rice hull, coffee waste, brewery waste, litters, turfgrass cutting residues, rice bran, vegetable wastes and rice straw and were mixed with pig manure at a ratios of 50:50 (v/v), and pig manure 100% (control), respectively. The highest values of growth parameters, cast production and conversion efficiency of organic matter to earthworm tissues were obtained at the mixtures of pig manure with coffee waste, it may due to the favourable diet conditions to process with pig manure by vermicomposting. But, all of the earthworm died in the pig manure 100% (control) and pig manure with vegetable wastes treatments by vermicomposting was impossible in this experiment. The vermicast contained a higher values of total nitrogen, available phosphorus, exchangeable cations and cation exchange capacity than their parent materials with increased availability of nutrients and improved physicochemical properties.

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유기성 폐기물의 고온고압수 반응에 의한 카르복시산 생성 (Carboxylic Acids Produced from Hydrothermal Treatment of Organic Wastes)

  • 강길윤;오창섭;김용하
    • 에너지공학
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    • 제13권3호
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    • pp.228-233
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    • 2004
  • 본 논문은 다양한 종류의 유기성 폐기물을 이용하여 고온고압수 반응에 의해 생성되는 저분자 카르복시산의 거동에 관해 고찰하였으며 산화제 첨가에 대한 영향도 동시에 검토를 행하였다. 그 결과 acetic, formic, succinic 및 lactic acid와 같은 유기산이 주된 생성물임을 알 수 있었다. 생선내장의 경우 35$0^{\circ}C$(P=16 MPa)의 조건에서 acetic acid비 수율은 26mg/g-dry를 얻을 수 있었으며 산화제로서 $H_2O$$_2$를 첨가했을 경우 42mg/g-dry로 수율이 증가함을 알 수 있었다. 또한 글루코오스를 이용한 실험결과에서는 약 29mg/g-dry의 acetic acid를 얻을 수 있었다. 유기산 생성에 관한 온도 의존성을 검토한 결과, acetic acid는 열적 안정성이 있음을 알 수 있었으나 formic acid는 상대적으로 쉽게 분해하는 경향을 나타내었다. 또한 산화제를 첨가 할 경우, acetic acid와 같은 유기산의 생성을 촉진 시키는 결과를 얻을 수 있었다.

부패성유기폐기물의 석회 안정화에 관한 연구 (The Study On Lime-Stabilization of Decayed Oganic Wastes)

  • 김홍래
    • 한국안전학회지
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    • 제4권1호
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    • pp.75-81
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    • 1989
  • The aim of this study is, by the Lime-Stabilization of decayed Organic Wastes, in preventing the reclaimed Waste from being another pollution due to reclaiming those things. 1. A perfect reaction is possible by the addition of poor Stabilization-Lime of 5 percent in a short time of 5 minute. 2. PH of the Stabilization-handled Wastes rise over 12. 3. Malodorant of Stabilized Wastes is slight because malodorant Volatilize in the course of the Stabilization or is captured in the handled subetance. 4. The second pollution scarcely brings about because a rapid decomposition is impossible on account of the coating of Alkali Substance.

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산업 고형유기폐물의 자원화에 관한 연구 (제1보) 산업 고형유기폐물의 비료와 Humus 원으로서의 물리적 및 화학적 특성에 관하여 (A Study on the Utilization of Industrial Solid Organic Wastes (I). The Physical and Chemical Characteristics of Industrial Solid Wastes with Regard to Fertilizer Value and Humus Sources)

  • 박내정;김용인
    • 대한화학회지
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    • 제19권4호
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    • pp.258-268
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    • 1975
  • 유기폐물을 다량으로 배출하는 산업중에서 대표적인 제지·펄프공업, 식품공업을 선택하여 고형유기폐물과 폐수처리오니의 합리적인 자원화 방법으로서 이들물질의 비료적 가치 및 humus원으로서의 개발가치를 중심으로 이들 물질의 물리적 및 화학적 특성을 조사한 결과이다. 제지${\cdot}$펄프공업 유기고형폐물은 비료성분이 적고 lignin 함량이 높아 비료로서 보다는 humus화하여 토양개량제로서 개발하는 것이 합리적이다. 제혁공업 폐수처리오니는 비료로서 효과도 기대되어 산성토양 개량효과도 기대되나 다량으로 함유한 Cr 으로 인해 오염효과가 문제가 된다. 식품공업의 고형 유기폐물 또는 폐수처리오니는 비료로서 또는 미량요소 공급원으로서 가치가 인정되며 수용성 당류의 량이 높거나 C/N율이 20이하로 낮은 물질은 속성 humus화를 위한 첨가 재료로서의 가치도 인정된다.

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Quantitative Determination of Organic Yield by Continuous Percolation Processes of Bio-wastes at K Composting Plant

  • Seo, Jeoung-Yoon;Jager, Johannes
    • Environmental Engineering Research
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    • 제19권2호
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    • pp.123-130
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    • 2014
  • Percolation is the important process of extracting the soluble constituents of a fine mesh, porous substance by passage of a liquid through it. In this study, bio-wastes were percolated under various conditions through continuous percolation processes, and the energy potential of percolate was evaluated. The representative bio-wastes from the K composting plant in Darmstadt, Germany were used as the sample for percolation. The central objective of this study was to determine the optimal amount of process water and the optimum duration of percolation through the bio-wastes. For economic reasons, the retention time of the percolation medium should be as long as necessary and as short as possible. For the percolation of the bio-wastes, the optimal percolation time was 2 hr and maximum percolation time was 4 hr. After 2 hr, more than two-thirds of the organic substances from the input material were percolated. In the first percolation process, the highest yields of organic substance were achieved. The best percolation of the bio-wastes was achieved when the process water of 2 L for the first percolation procedure and then the process water of 1.5 L for each further percolation procedure for a total 8 L for all five procedures were used on 1,000 g fresh bio-waste. The gas formation potentials of 0.83 and $0.96Nm^3/ton$ fresh matter (FM) were obtained based on the percolate from 1 hr percolation of 1,000 g bio-waste with the process water of 2 L according to the measurement of the gas formation in 21 days (GB21). This method can potentially contribute to reducing fossil fuel consumption and thus combating climate change.

산업폐기물(産業廢棄物)의 비료화(肥料化) (Utilization of Industrial Wastes as Fertilizer)

  • 신제성;한기학
    • Applied Biological Chemistry
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    • 제27권
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    • pp.68-79
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    • 1984
  • An increased population and rapidly expanding industrial development have led to enormous amounts of various domestic and industrial wastes. The proper disposal of ever-increasing wastes is a growing global problem. Land treatment is one of the rational approaches that are environmentally safe and economically practical. It has long been practised in many sites. Recycling of industrial wastes on agricultural land can provide better possible means for maintaining environmental quality and utilizing waste-resources. Even though industrial wastes are beneficial as soil amendment and fertilizer, they have some limitation on land application because of wide variability as well as physicochemical problem in their composition. A direct application of solid and liquid wastes on land is being practised in Korea and some experimental results are presented. The direct application of fermentation waste on rice resulted in a 6 percent yield increase. Another organic residue from glutamic acid fermentation is widely used not only as a direct application as a liquid fertilizer but also for a raw material of organic compound fertilizer. These wastes are much promising as sources of plant nutrients, since they have large amounts of nutrients, especially nitrogen with few toxic metals. On the other hand, fertilizers developed from inorganic industrial wastes include calcium silicate, calcium sulfate and ammonium sulfate. The calcium silicate fertilizer simply produced from slag, by-product of iron and steel manufacturing plant is one of the most successful example of the conversion of wastes to fertilizer and slag production capacity totals to over three million MT/year. About 200,000 MT of calcium silicate fertilizer is currently applied in the paddy rice every year. Calcium sulfate, a waste from the wet phosphoric acid process is to some extent used as a filler of compound fertilizers but quite large quantites are directly applied for the reclamation of tidal flat.

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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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지렁이 사육에 있어서 음식물쓰레기의 부숙정도와 분변토 혼합비의 영향 (Investigation on optimal factors in regard to matureness degree of food waste and mixing rate of the casting in vermicomposting)

  • 김영구;박상준;최훈근;배재근
    • 유기물자원화
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    • 제12권2호
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    • pp.72-81
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    • 2004
  • 전체 유기성폐기물 가운데 약 30%가량을 차지하는 음식물쓰레기는 높은 염분과 함수율로 인해 적정 처리 방안의 부재라는 상황에서 기존의 처리방법들에 비해 보다 환경친화적인 지렁이를 이용한 퇴비화 방안은 최근 들어 관심이 집중되고 있다. 그러나 지렁이 이용기술은 도입초기의 운영방법 및 기술이 현재에도 적용되고 있으며 자료부족과 경험부족으로 인해 효율성이 떨어진다고 볼 수 있다. 지렁이를 이용한 음식물쓰레기 자원화 단계에서 높은 수분, 염분, 그리고 유기물 함량은 지렁이의 생육에 큰 저해 원인이 되는 것으로 알려지고 있으며, 이러한 영향을 최소화하기 위하여 전처리 단계에서 가능한 한 수분의 양을 줄이고 유기물을 1차적으로 분해하여 이용하도록 유도하고 있다. 본 연구에서는 지렁이를 이용한 음식물쓰레기 자원화에 있어 음식물쓰레기의 염분농도와 급이되는 음식물쓰레기의 부숙정도 그리고 혼합비에 따른 지렁이의 영향정도를 관찰하기 위하여 실시되었다. 실험 결과, 지렁이 생육과 관련된 최적의 함수율은 약 55%로 한계 염분 농도는 0.5%로 조사되었다. 음식물쓰레기의 높은 염분농도와 유기물 분해에 따른 발열 및 유기산 생성등의 부하를 줄이기 위한 분변토와의 혼합은 필수적 이었으며, 유기물 감량이 목적인 부숙과정은 결과적으로 음식물쓰레기의 염분농도를 증가 시키는 것으로 조사되었다. 따라서 가급적 부숙과정은 피하고 분변토와의 적절한 혼합을 통한 유기물감량이 요구되며, 결과적으로 음식물쓰레기와 분변토와의 혼합비는 모든 조건등을 고려했을 때 부숙되지 않은 음식물쓰레기와 분변토와의 3:7 혼합비가 가장 적절하다고 사료된다.

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유기성 폐기물 장기시용 후 토양에서 무 (Raphanus sativus cv. sodamaltari)의 중금속 흡수 (Uptake of Heavy Metals by Radish (Raphanus sativus cv. sodamaltari) from the Soils after Long-Term Application of Organic Wastes)

  • 권순익;장연아;김계훈;정구복;김민경;황해;채미진;김권래
    • 한국토양비료학회지
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    • 제46권1호
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    • pp.65-72
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    • 2013
  • This study was carried out to understand the long-term effects of organic waste treatments on the fate of heavy metals in soils originated from the organic wastes and consequent uptake of heavy metals by plant, together with examination of changes in soil properties and plant growth performance. In this study, the soils treated with three different organic wastes (municipal sewage sludge, alcohol fermentation processing sludge, pig manure compost) at three different rates (12.5, 25.0, 50.0 ton $ha^{-1}yr^{-1}$) for 7 years (1994 - 2000) were used. To see the long-term effect, plant growth study and soil examination were conducted twice in 2000 and 2010, respectively. There was no additional treatments of organic wastes for 10 years after the organic waste treatment for 7 years. Compared to plant growth examination conducted in 2000 using radish (Raphanus sativus cv. sodamaltari), it appeared that height, root length and diameter, fresh weight of radish grown in 2010 decreased in the plots treated with municipal sewage sludge and alcohol fermentation processing sludge and that the extent of decrease was higher with increase of sludge application rates. On the other hand, pig compost treatment increased plant height, root length and diameter, fresh weight with increasing application rates. Cu and Pb concentrations in radish root and leaves increased in 2010 compared to those in 2000 while Ni concentrations in root and leaves decreased. Zn concentration was increased only in the soils treated with pig manure compost. Multiple regression analysis among heavy metal species fractions in soils, soil pH, and metal concentrations in radish root and leaves indicated that the metal uptake by radish was governed mainly by the soil pH and subsequent increase of available heavy metal fractions in soils with organic waste treatments.

돈분의 퇴비화에 있어 원보조재의 혼합비에 따른 최종산물의 화학적인 조성 연구 (Study of Chemical Parameters on Butchery wastes as a Bulking Agent in Composting of Swine Manure)

  • 이상환;김인호;홍종욱;권오석;김정우
    • 한국유기농업학회지
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    • 제9권3호
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    • pp.93-101
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    • 2001
  • This study was conducted to evaluate chemical parameters on butchery wastes as a bulking agent in composting of swine manure. Treatments included T1 : Swine manure + Rice hull, T2 ; Swine manure + Rice hull + Vermiculite, T3 ; Swine manure + Rice hull + Perlite, T4, Swine manure + Vermiculite, T5 : Swine manure + Vermiculite + Perlite, T6 ; Swine manure + Perlite, T7 ; Swine manure + lice hull + Vermiculite + Perlite. During the composting period, changes of temperature and pH were showed traditionally composting trend. Moisture, organic matter, total nitrogen and C/N ratio were higher rice hull than vermiculite and perlite treatments. Ammonia-N and EC were not differences among the treatments. In heave metal, Cd and Cr were showed higher in vermiculite treatments than other treatments. Rice hull treatments were decreased volatile fatty acids compared to that of other treatments. In conclusion, rite hull containing high organic content was greater composting effects than vermiculite and perlite containing low organic content.

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