• 제목/요약/키워드: thickened sludge

검색결과 32건 처리시간 0.021초

혐기성 연속회분식 공정을 이용한 분뇨처리시 소화슬러지의 침강 및 탈수특성 (Dewatering and Settling Characteristics of Digested Sludge from the Anaerobic Sequencing Batch Reactor for Treatment of Nightsoil)

  • 이준걸;장덕;허준무;손부순;장봉기;박종안
    • 한국환경과학회지
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    • 제7권6호
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    • pp.867-873
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    • 1998
  • Laboratory study was conducted to provide basic data for operating anaerobic sequencing batch reactor(ASBR) process for treatment of nightsoil. The experiments were concerned with digestion characteristics, settleabiltity and dewaterability of digested sludge in ASBR system. Completely-mixed dally-fed control reactor without solid-liquid separation step was also operated to evaluate the baseline performance since the nature of nightsoil was changed with time. In all case, gas production from the ASBR shows 1.3 to 1.44 times higher than that from control, in spite of almost similar trend in organics removal. During thickening period, remarkable decrease in surface settling velocity was observed at the ASBRs compared with the control. In case of the ASBR run, flotation of mixed digested sludge was not occurred. Also, ultimate thickened volume of ASBRs increased 1.2~1.5 times compared with control. Dewaterability of digested sludge without conditioning decreased when the completely-mixed daily-fed reactor for ASBR run was converted to the ASBR. However, improvement of dewaterability of digested sludge from the ASBRs was observed as a result of addition of FeCl$_3$ to digested sludge for conditioning.

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중온 혐기성 연속회분식 공정에 의한 도시하수슬러지의 소화가능성 평가 (Application of Anaerobic Sequencing Batch Reactor to Mesophilic Digestion of Municipal Sewage Sludge)

  • 허준무;장덕;정태학;손부순;박종안
    • 한국환경보건학회지
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    • 제24권2호
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    • pp.9-19
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    • 1998
  • Laboratory experiments were carried out to investigate the performance of anaerobic sequencing batch reactor(ASBR) for digestion of a municipal sludge. Each cycle of the ASBR comprised feeding, two-or three-day reaction, one-day thickening, and withdrawal. The reactors were operated at an HRT of 10days and 5days with an equivalent organic loading rate of 0.8-1.54 gVS/l/d, 1.81-3.56 gVS/l/d at 35$\circ$C, respectively. Solids accumulation was remarkable in the ASBR during start-up period, and directly affected by settleable solids in the feed sludge. Floatation thickening occured in the ASBRs, and Solids profiles at the end of thickening step dramatically changed at solid-liquid interface. Slight difference in solids concentrations was observed within thickened sludge bed. Efficiencies through floatation thickening were comparable to that of additional thickening of the completely mixed control reactor. Average solids concentrations in the ASBRs were 2.2-2.6 times higher than that in the control throughout the total operation period. The dehydrogenase activity had a strong correlation with the solids concentration. Organics removals based on clarified effluent of the ASBRs were consistently above 86%. Remarkable increase in equivalent gas production of 27-52% was observed at the ASBRs compared with the control though the control and ASBRs showed similiar effluent quality. Thus, digestion of a municipal sludge was possible using the ASBR in spite of high concentration of solids in the sludge.

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혐기소화 시 미량 산소가 H2S 제거에 미치는 영향 (Effect of trace oxygen on H2S removal in anaerobic digestion)

  • 조은영;박광수;안종화
    • 산업기술연구
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    • 제39권1호
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    • pp.21-25
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    • 2019
  • This work experimentally determined the effect of microaerobic condition on anaerobic digestion of thickened waste activated sludge in semi-continuous mesophilic digesters at hydraulic retention time of 20 days. The concentration of hydrogen sulfide was $7{\pm}2ppm$ at the microaerobic condition and $14{\pm}2ppm$ at the anaerobic condition. Removal efficiency of volatile solid was not significantly different between microaerobic ($40{\pm}8%$) and anaerobic ($38{\pm}8%$) conditions. There was no important difference between microaerobic ($1,352{\pm}98ml/d$) and anaerobic ($1,362{\pm}104ml/d$) conditions in the biogas production, either. Therefore, it could be concluded that the application of the microaerobic condition was an efficient method of the hydrogen sulfide removal from the biogas.

화학적인 개량이 하수슬러지의 부상농축효율에 미치는 영향 (Effect of Chemical Conditioning on Flotation and Thickening Efficiencies of Sewage Sludge)

  • 이창한;안갑환
    • 대한환경공학회지
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    • 제31권9호
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    • pp.743-748
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    • 2009
  • 화학적인 슬러지 개량은 하수슬러지의 탈수성을 개선하기 위해 주로 사용된다. 이 공정은 개량제를 이용하여 처리한 후 농축 및 탈수된다. 본 연구는 DAF 부상장치를 이용하여 하수슬러지의 개량(혐기성 보관시간, 응집제 종류, 및 주입량) 및 부상조건(슬러지 농도 및 A/S 비)에 따른 부상농축효율을 평가한 것이다. 혐기성 보관시간에 따라 하수슬러지의 비표면적과 여과비저항은 증가하였다. $Al_2(SO_4)_3$, $Fe_2(SO_4)_3$ 및 PSO-M을 주입하여 개량된 하수슬러지는 보관시간이 경과에 따라 부상농축효율이 거의 감소되지 않았다. 개량된 하수슬러지는 A/S 비가 0.01 mL/mg 이상이면, 부상농축효율이 저하되지 않고 96% 이상 유지할 수 있었다.

감마선전처리에 따른 하수슬러지의 성상 변화 및 혐기성분해 특성 평가 (Effect of Gamma Irradiation on Physico-Chemical Characteristics and Ultimate Anaerobic Biodegradability of Sewage Sludge)

  • 강호;나은경;이면주
    • 한국물환경학회지
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    • 제20권4호
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    • pp.327-332
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    • 2004
  • This study was carried out to examine the effect of gamma irradiation on the physico-chemical characteristics and ultimate anaerobic biodegradability of sewage sludge. The results found that the solubilization rates of SCOD in wasted activated sludge(WAS) and thickened sludge(T-S) with gamma irradiation of 3kGy were 8 times and 7 times greater than these of the raw WAS and T-S without the irradiation, respectively; each soluble concentration protein were 4 times and 3 times greater than these of the raw WAS and T-S; each soluble carbohydrate concentration was 8 times and 6 times greater than these of the raw WAS and T-S. The ultimate anaerobic biodegradabilities of WAS and T-S with gamma irradiation were 51 % and 50%, which corresponds to each 8% and 10% greater than these of the raw sludges. Approximately 83% and 81% of the each biodegradable substrates in the irradiated WAS and the T-S were degraded within 11 days with the first order decay rate coefficients, $k_1$ that ranged $0.143{\sim}0.164day^{-1}$ for WAS and $0.134{\sim}0.152day^{-1}$ for T-S. Based on the results, it can be concluded that when irradiated with gamma the solubilization of sewage sludge greatly increases resulting in substrates suitable for the subsequent biological treatment processes.

하수처리시설의 Retrofitting을 위한 파일럿 규모 공기부상공정 연구 (A Pilot Study on Air Flotation Processes for Retrofitting of Conventional Wastewater Treatment Facilities)

  • 박찬혁;홍석원;이상협;최용수
    • 상하수도학회지
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    • 제22권3호
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    • pp.329-336
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    • 2008
  • The pilot study was conducted to evaluate the applicability of air flotation(AF) processes combined with biological nutrient removal(BNR) for the retrofitting of conventional wastewater treatment facilities. The BNR system was operated in pre-denitrification and intermittent aeration; developed ceramic membrane diffusers were installed to separate the solid-liquid of activated sludge at the bottom of a flotation tank. Before performing a pilot scale study, the size distribution of microbubbles generated by silica or alumina-based ceramic membrane diffusers was tested to identify the ability of solid-liquid separation. According to the experimental results, the separation and thickening efficiency of the alumina-based ceramic membrane diffuser was higher than the silica-based ceramic membrane diffuser. In a $100m^3/d$ pilot plant, thickened and return sludge concentration was measured to be higher than 15,000mg SS/L, therefore, the MLSS in the bioreactor was maintained at over 3,000mg SS/L. The effluent quality of the AF-BNR process was 4.2mg/L, 3.7mg/L, 10.6mg/L and 1.6mg/L for $BOD_5$, SS, T-N and T-P, respectively. Lastly, it was revealed that the unit treatment cost by flotation process is lower than about $1won/m^3$ compared to a gravity sedimentation process.

유기성 폐기물의 자원화 체제구축에 관한 연구 (Construction of Resource Recovery System for Organic Wastes)

  • 양재경;최경민
    • 기술혁신학회지
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    • 제2권2호
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    • pp.290-308
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    • 1999
  • In this study a system for the treatment or recyling of organic wastes from both urban and rural area was recommended. It was developed based on the resource recovery system regarding human being by four tectnologies; forage, methane production, high-grade composting and complete decomposition. High quality compost can be produced by combining several kind of wastes produced from urban and agricultural areas. High quality compost must possess not only general characteristics of ordinary compost, but also a superior ability to improve the soil properties and must contain more nutrients for plant. Cedar chips were recommended as the main bulking agent to adjust moisture contents and air permeability. Charcoal and zeolite can be used not only as the second bulking agent but also as fertilizer for improve the soil amendment. Complete decomposition of organic wastes is defined by organic matter being completely converted to $CO_2$ and water. All the input water was evaporated by the heat produced through the oxidation of organic matter, In the present study, the complete treatments were successfully achieved for Shochu wastewater, swine wastes, thickened excess sewage sludge, wastes produced by Chinese restaurant and anaerobic digested sludge. First of all, recycling center of organic wastes should be established for the protect the environments and effective recovery of organic resources. This may means the way to derive the recovery of human value.

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하수슬러지-(SO2-O2-H2O-bal. CO2) 혼합 가스 분위기에서 Fe-Cr 강의 고온부식거동 연구 (Study of High Temperature Corrosion Behavior of Fe-Cr Steel in Sewage Sludge-(SO2-O2-H2O-bal. CO2) mixed Gas Environment)

  • 김민정;박주창;유인선
    • 한국표면공학회지
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    • 제53권2호
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    • pp.72-79
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    • 2020
  • Two Fe-Cr steels of T22 steel and STS430 steel were corroded at 650 and 750℃ for 100hr in sewage sludge-(0.3% SO2-6% O2-10% H2O-balance CO2) mixed gas environment. T22 steel corroded faster than STS430, indicating that the Cr content significantly influence the corrosion rates. T22 formed thick and non-protective Fe2O3 as the major oxide and Fe3O4 as the minor one. With an increase in corrosion temperature, their corrosion rates increased, being accompanied with formation of pores and cracks in the thickened oxide scales that were non-adherent. STS430 steel formed Fe2O3, Fe3O4 as the outer scale and (Fe, Cr)-O as the inner layer by which its corrosion rate is greatly reduced. Both the T22 and STS430 steel samples formed multi-layered scales by outward diffusion of Fe ions and inward diffusion of oxygen and sulfur ions at high-temperature more than 650℃.

다공성 세라믹 Biofilter를 이용한 Toluene 가스 제거 (Removal of Toluene Vapor by Porous Ceramic Biofilter)

  • 임재신;구자공;박상진
    • 한국대기환경학회지
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    • 제14권6호
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    • pp.599-606
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    • 1998
  • Removal of toluene vapor from airstreams was studied in a biological reactor known as a biofilter. The biofilter was packed porous ceramic inoculated with thickened activated sludge (MLVSS 17,683 mg/L). The lab-scale biofilter was operated for 42 days under various experimental conditions including inlet toluene concentrations and flow rates of the contaminated air streams. Removal efficiency reached up 96.6% after 4 days from start up. Nutrient limitation was proposed as a reason for the decrease in biofilter performence. Biofilter performance decreased substantially, coincident with the buildup of back pressure due to accumulation of excess VSS within the medium bed. Practically, the bed needs to be backwashed when the overall pressure drop is greater than 460.6 Pa at SV (Space Velocity) 100 h-1. Periodic backwashing of the biofilter was necessary for removing excess biomass and attaining stable long -term high removal efficiency The removal efficiency of toluene in the biofilter decreased as the gas velocity and toluene concentration in the inlet gas increased. The maximum elimination capacity of ceramic biofilter could reach up to 444.85 g/m3. hr. When the loading of toluene exceed this critical value, substrate inhibition occurred.

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유기성폐기물의 회분식 혐기성 최종생분해도와 다중분해속도 해석 (Determination of Ultimate Biodegradability and Multiple Decay Rate Coefficients in Anaerobic Batch Degradation of Organic Wastes)

  • 강호;신경숙
    • 대한환경공학회지
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    • 제27권5호
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    • pp.555-561
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    • 2005
  • 본 연구에서는 유기성폐기물의 최종생분해도를 평가하여 혐기소화조의 정확한 효율평가를 위한 기초자료를 확보하고 유기물의 분해경향을 보다 정확히 평가할 수 있는 다중 분해속도분석(Multiple k analysis)기법을 개발하여 다중 분해속도상수와 각각의 분해속도에 관여하고 있는 기질의 분율을 산정하려는데 목적이 있다. 연구 결과 폐활성슬러지의 최종생분해도는 50%, 농축슬러지는 40%로 평가되어 85%내외의 생분해도를 나타낸 Sorghum이나 Swine Waste에 비해 현저히 낮았다. 활성슬러지의 경우 생분해가능한 기질의 71%가 22일내에 초기분해속도상수 $k_1$인, $0.151\;day^{-1}$로 빠르게 분해되고 그 이후로 남아 있는 29%의 기질이 분해속도상수 $k_2$인, $0.021\;day^{-1}$로 아주 느리게 분해되었다. 반면 농축슬러지의 경우는 기질의 39%만이 $k_1$인, $0.123\;day^{-1}$로 빠르게 분해되었으며 60% 이상이 $k_2$인, $0.001\;day^{-1}$로 매우 느리게 분해되었다. 한편 Sorghum은 초기분해속도상수($k_1$)인 $0.248{\sim}0.358\;day^{-1}$ 범위로 기질의 약 90%($S_1$)가 16일 이내에 빠르게 분해되었으며 축분의 경우 $k_1$인, $0.155{\sim}0.209\;day^{-1}$ 범위로 기질의 $84{\sim}91%(S_1)$가 14일 이내에 빠르게 분해됨을 알 수 있다. 따라서 Multi k Analysis방법을 이용하여 도출된 하수 슬러지의 분해속도상수와 기질의 분율 및 분해패턴을 토대로 혐기성소화시 효율적이고 경제적인 HRT의 산정이 가능하다.