• 제목/요약/키워드: organic sludge

검색결과 845건 처리시간 0.025초

Effect of application of coffee sludge and dried food waste powder on the growth Peucedanum japonicum Thunberg

  • Jeon, Young-Ji;Hwang, Hyun-Chul;Eun, Jin-A;Jung, Samuel;Oh, Taek-Keun
    • 농업과학연구
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    • 제47권1호
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    • pp.193-204
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    • 2020
  • This experiment was conducted to study the effect of organic fertilizer on the growth of Peucedanum japonicum Thunberg and the change of soil chemical characteristics. The organic matter contents of coffee sludge and dried food waste powder were 44.26 and 51.18%, respectively. These values exceed the organic matter content of organic fertilizers recommended by the Rural Development Administration (RDA) of South Korea by more than 30%. Accordingly, they indicate the possibility of their use as organic fertilizers. The results from the analysis of soil properties after cultivation showed that the organic matter content of coffee sludge amended soils was two-fold higher than that of dried food waste powder amended soils. However, the content of available phosphorus was two times lower in the coffee sludge amendments. It is expected that the dried food waste powder was actively used to decompose organic substances, and that phosphoric acid was added by the soil microorganisms used to decompose organic substances. In terms of Peucedanum japonicum Thunberg growth, leaf discoloration was observed for all treatments except with the standard rate of dried food waste powder. The standard rate of dried food waste powder also produced relatively better results than other treatments with regard to other growth characteristics such as root length (34.08 cm), root diameter (0.78 cm), and fresh root weight (4.77 g plant-1). Therefore, the standard rate of dried food waste powder produced better results than other treatments and can be used as an organic fertilizer in the growth of Peucedanum japonicum Thunberg.

고효율 포기 시스템을 이용한 유기성 슬러지의 감량화 (Reduction of Organic Sludge using High Efficiency Aeration System(HEAS))

  • 오세배;이상혁
    • 디지털융복합연구
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    • 제10권10호
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    • pp.221-227
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    • 2012
  • 한국에서 오염물 해양투기는 하수슬러지 처리방식으로 널리 사용되어 왔다. 하지만 2009년 이후 적용되어 온 음식폐기물과 하수슬러지의 해양투기 오염 방지에 관한 런던 협약에 따라 2013부터 엄격한 법적 제재가 예상된다. 따라서, 고농축 유기 슬러지 처리 를 위한 고효율 포기 시스템을 사용한 현장 실험실 테스트가 하수 및 산업폐수처리장에서 적용이 되었다. 연구 결과는 고효율 포기 시스템이 유기성 슬러지의 감량화에 매우 유용한 것으로 나타났으며, 구체적인 결과는 다음과 같다. 첫째로 고효율 포기 시스템을 이용한 슬러지 소화시 유기물 제거율은 56.2 ~ 85.8 %이었다. 이러한 결과가 일반 하수 처리효율보다 낮지만, 고효율 포기 시스템의 처리대상 슬러지가 공장 폐수임을 고려할 때 매우 유용한 것으로 판단된다. 둘째로 슬러지 평균 제거 효율은 약 25.2 %이었다. 셋째로 고효율 포기 시스템에 의한 슬러지 처리비용에 효과적으로 기여할 수 있는 것으로 드러났다. 특히, 고효율 포기 시스템이 높은 고농도 슬러지를 함유하거나, 산업페기물이거나 고농도의 강열잔류 고형물(FS) 포함되어 있는 경우의 소규모 하수 및 폐수 처리장의 현장 처리에 더욱 효과적이다.

산업계 유기성폐기물 바이오가스 생산 효율에 관한 연구 (Study on bio-gas production efficiency from industrial organic waste)

  • 이호령;진효언;신대윤
    • 상하수도학회지
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    • 제26권5호
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    • pp.629-636
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    • 2012
  • This study focuses on the feasibility of bio-gas production using anaerobic digestion by measuring methane generation and biodegradability through the BMP test of industrial organic wastes. Organic wastes consist of entrails of pigs and organic residues of rumen generated from slaughter houses, wastewater sludge from slaughter waste water, fish offal and residues of vegetables from public wholesale markets, and wastewater sludge from the process of wastewater treatment in paper mill. The cumulative methane production by BMP test ranges from 149.3 ml/g-VS to 406.6 ml/g-VS and this is similar to methane generation of the normal wastewater sludge and food waste. As a result of measurement of biodegradability, wastewater sludge (S1 ~ S4) is low, ranging from 27.1% to 58.9 % and organic residues of rumen (G1) is low at 49.6 %. In conclusion, it turned out that raising the hydrolysis by various pre-treatments is necessary in order to produce bio-gas by using industrial organic wastes.

오존을 이용한 도시하수슬러지의 처리 (Treatment of Municipal Sewage Sludge by Ozonization)

  • 윤용수
    • 환경위생공학
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    • 제17권3호
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    • pp.83-88
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    • 2002
  • This study was performed to determine the possibility of sludge treatment by ozone for reducing the sludge production in sewage treatment. To evaluate the characteristics of the release of organic matters and nutrient from sludge degradation by ozone, SCOD, SBOD/TCOD, T-N and T-P were analyzed. From the results, we concluded that the concentration of soluble organic matters(SCOD) was increased with reaction time. Also, The concentration of T-N and T-P were increased with time like as organic matters. Quantities of released SCOD, SBOD, T-N and T-P by ozonization were 0.038g, 0.058 g, 0.011 g, 0.012 g per g MLSS, respectively.

Uptake of Wastewater Organic Matter to Activated Sludge

  • Nam, Se-Yong;Kim, In-Bae
    • 한국환경보건학회지
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    • 제33권6호
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    • pp.493-496
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    • 2007
  • The influences of contact time and ratio of food to microorganism (F/M) on uptake of wastewater organic matter in a short contact process were investigated using three activated sludge batch reactors fed with synthetic wastewater, sewage and livestock wastewater. About 64% of influent soluble chemical oxygen demand (SCOD) in the synthetic wastewater and 61% of SCOD in the sewage and 43% of SCOD in the diluted livestock wastewater were adsorbed into the activated sludge within 30 min. The specific mass of organic matter uptaken in the synthetic wastewater was 55 mg SCOD/g mixed liquor suspended solids (MLSS). In the same manner, 20 and 14 mg SCOD/g MLSS were calculated as the values in the sewage and livestock wastewater, respectively.

화학적 전처리를 통한 혐기성 슬러지 처리효율의 향상 (Performance Enhancement of Anaerobic Treatment of Waste Sludge by Chemical Pretreatment)

  • 허준무;박종안;손부순
    • 환경위생공학
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    • 제13권1호
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    • pp.16-25
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    • 1998
  • Laboratory-scale experiment using anaerobic fluidized bed reactor was carried out to investigate the prehydrolysis step with caustic soda on the treatment efficiency of anaerobic sludge treatment, since the overall rate-limiting step for the complete anaerobic digestion of sludge was the hydrolysis step by extracellular bacterial enzymes of insoluble polymeric molecules. Reactors received a sludge which had not been pretreated, a 50-50 mixture of pretreated and untreated sludge, and the fully pretreated sludge. Hydraulic retention time of 10, 5, 2.5 days and 1 day were applied with an respective equivalent organic loading rate of 1.17, 2.23, 4.17, 11.24 gCOD/L/d. Reactor with the untreated sludge did not archieve adequate digestion even at the HRT of 5 days, and reactor, which received the 50-50 mixture, operated well at the HRT of 5 days, but began to show signs of unstable digestion at the HRT of 2.5 days. While, reactor, which was fed the hydrolyzed sludge, operated reasonably well at the 2.5 days, but was showing somewhat decrease in removal efficiencies. Results, therefore, have substantiated that the limiting reaction in the anaerobic treatment process is hydrolysis. The soluble COD did not significantly accumulate in the reactor as organic acid form, even when they were highly stressed. It was believed that this resistance to a build-up of organic acids and soluble COD behavior was mainly due to the maintenance of the methane bacteria in the fixed-film system which prevents washout as the organic loading increased. The anaerobic fluidized bed reactor was therefore effective for the digestion of waste activated sludge at short HRT.

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병열 1차 반응속도식을 이용한 유기성 슬러지 수열탄화 반응온도별 메탄생산퍼텐셜 평가 (Assessment of Methane Potential in Hydro-thermal Carbonization reaction of Organic Sludge Using Parallel First Order Kinetics)

  • 오승용;윤영만
    • 한국환경농학회지
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    • 제35권2호
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    • pp.128-136
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    • 2016
  • BACKGROUND: Hydrothermal carbonization reaction is the thermo-chemical energy conversion technology for producing the solid fuel of high carbon density from organic wastes. The hydrothermal carbonization reaction is accompanied by the thermal hydrolysis reaction which converse particulate organic matters to soluble forms (hydro-thermal hydrolysate). Recently, hydrothermal carbonization is adopted as a pre-treatment technology to improve anaerobic digestion efficiency. This research was carried out to assess the effects of hydro-thermal reaction temperature on the methane potential and anaerobic biodegradability in the thermal hydrolysate of organic sludge generating from the wastewater treatment plant of poultry slaughterhouse .METHODS AND RESULTS: Wastewater treatment sludge cake of poultry slaughterhouse was treated in the different hydro-thermal reaction temperature of 170, 180, 190, 200, and 220℃. Theoretical and experimental methane potential for each hydro-thermal hydrolysate were measured. Then, the organic substance fractions of hydro-thermal hydrolysate were characterized by the optimization of the parallel first order kinetics model. The increase of hydro-thermal reaction temperature from 170℃ to 220℃ caused the enhancement of hydrolysis efficiency. And the methane potential showed the maximum value of 0.381 Nm3 kg-1-VSadded in the hydro-thermal reaction temperature of 190℃. Biodegradable volatile solid(VSB) content have accounted for 66.41% in 170℃, 72.70% in 180℃, 79.78% in 190℃, 67.05% in 200℃, and 70.31% in 220℃, respectively. The persistent VS content increased with hydro-thermal reaction temperature, which occupied 0.18% for 170℃, 2.96% for 180℃, 6.32% for 190℃, 17.52% for 200℃, and 20.55% for 220℃.CONCLUSION: Biodegradable volatile solid showed the highest amount in the hydro-thermal reaction temperature of 190℃, and then, the optimum hydro-thermal reaction temperature for organic sludge was assessed as 190℃ in the aspect of the methane production. The rise of hydro-thermal reaction temperature caused increase of persistent organic matter content.

하수 슬러지 수열탄화액의 혐기적 유기물 분해 특성 연구 (Characteristics of Anaerobic Biodegradability in Hydro-thermal Hydrolysate of Sewage Sludge)

  • 오승용;윤영만
    • 유기물자원화
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    • 제25권1호
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    • pp.35-45
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    • 2017
  • 본 연구는 하수슬러지의 혐기소화 효율 향상을 위하여 유기물 가용화를 위한 수열탄화 최적 온도조건을 규명하고자 170, 180, 190, 200, 210, $220^{\circ}C$의 수열탄화 반응에서 생성된 수열탄화액의 메탄퍼텐셜을 분석하였으며, 병열 1차 반응식(Parallel first order kinetics model)을 적용하여 수열탄화액의 유기물을 이분해성, 분해저항성, 난분해성 유기물로 분획하여 유기물의 구성 특성을 추정하였다. 하수슬러지의 누적 메탄생산곡선은 회분식 혐기반응기 운전 후기까지 지속적으로 증가하는 양상을 보였으며 병열 1차 반응식을 적용하여 합리적인 최종메탄퍼텐셜($B_u$)의 분석이 가능하였다. 하수슬러지 수열탄화액의 최종 메탄퍼텐셜은 수열탄화온도가 170, 180, 190, 200, 210, $220^{\circ}C$로 증가함에 따라 각각 0.39, 0.39, 0.40, 0.44, 0.45, $0.46Nm^3/kg-VS_{added}$로 증가하였으며, 수열탄화 반응온도의 상승은 하수슬러지의 유기물을 가용화 시켜 생분해성 유기물($VS_B$)의 함량을 증가시키는 것으로 나타났다. 이분해성 유기물($VS_e$) 함량은 수열탄화 반응온도 $200{\sim}210^{\circ}C$에서 가장 높게 나타나 하수슬러지의 유기물 가용화를 위한 최적 수열탄화 반응온도는 $200{\sim}210^{\circ}C$의 범위로 나타났다. 또한 수열탄화 반응으로 얻어지는 하수슬러지 수열탄화액에서 생분해성 유기물($VS_B$)과 이분해성 유기물($VS_e$)의 양은 수열탄화 반응온도 $200^{\circ}C$에서 가장 높게 나타나 $200^{\circ}C$의 수열탄화 반응온도가 하수슬러지의 가용화에 최적 온도조건으로 판단되었다.

2단 혐기성소화조의 슬러지 반송율 변화를 통한 Bio-Gas 생산 증대 (The Improvement of Bio-gas Production through the Change of Sludge-Recycle Ratio with Two-Stage Anaerobic Digestion)

  • 권구호;이태우;정용준;민경석
    • 한국환경과학회지
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    • 제23권6호
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    • pp.1061-1066
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    • 2014
  • This study has cross checked the change of internal sludge-recycle in Anaerobic-Digestion, and researched about not only the improvement of Bio-gas production from the digested sludge but also the efficient method of sludge minimization. Ultimate object of the study is to reduce the amount of sludge by the improved efficiency of contact with the organic-matter and the microbes in Anaerobic-Digestion. The sludge-recycle fluidized sludge layer and raised the activity of the sludge, the optimal sludge-recycle ratio, VS and COD removal ratio were 1,000%, 28.2% and 27.7%, respectively. Through these results of this study, it may be of use to treat waste sludge by the sludge-recycle ratio in terms of minimization and circulation of resources.

하수슬러지의 열처리에 의한 가용화효과 및 고온산발효의 분해효율에 미치는 영향 평가 (Effect of Heat Treatment of Sewage Sludge on Solubilization and Thermophilic Acid fermentation efficinecy)

  • 박용진;쓰노 히로시;히다카 타이라;김석구
    • 유기물자원화
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    • 제15권2호
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    • pp.89-97
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    • 2007
  • 본 연구에서는 하수슬러지의 가용화를 위한 처리공정으로 열처리를 수행하였다. 열처리에 의하여 입자상 유기성분의 가용화를 확인할 수 있었다. $120^{\circ}C$ 30분의 열처리에 의하여 1차 슬러지의 경우 COD기준 8.3%의 가용화효과를 나타내었다. 반면 2차슬러지의 경우 16.5%의 높은 값을 보여주었고 이는 단백질의 높은 가용화 효과에 기인하는 것으로 나타났다. 한편 모든 슬러지에 대하여 열처리에 따른 분해율 및 유기산 생성율의 향상을 확인 할 수 있었다. 단 산발효 실험을 통하여 최적 열처리조건은 대상 기질의 유기물 조성에 따라 결정되는 것으로 판단되었다. 즉 탄수화물의 함량이 높았던 1차슬러지의 경우 $80^{\circ}C$ 30분의 열처리를 통하여 최대의 분해율과 유기산 생성효과를 얻었으며 단백질의 함량이 높았던 2차 슬러지의 경우 $120^{\circ}C$ 30분이 최적의 열처리 조건인 것으로 나타났다.

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