• Title/Summary/Keyword: 운전 pH

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Thermophilic Biohydrogen Production from Glucose with a Long-term Operation of CSTR (CSTR의 장기운전을 통한 포도당으로부터의 고온 수소생산)

  • Ahn, Yeong-Hee;Oh, You-Kwan;Park, Sung-Hoon
    • KSBB Journal
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    • v.20 no.6
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    • pp.425-430
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    • 2005
  • Thermophilic $H_2$ was produced for 1 year using a bench-scale continuous stirred tank reactor(CSTR). The CSTR was inoculated with anaerobically digested sludge after heat treatment and fed with a glucose-based medium. The reactor showed relatively short start-up period(30 days) and high maximal $H_2$ yield(2.4 mol $H_2/mol$ glucose). Keeping pH 5.0 or less suppressed methanogenic activity. Bacteria affiliated with Thermoanaerobacterium thermosaccharolyticum kept being dominant from approximately 40 days as determined by DGGE. Environmental perturbation(pH or temperature) caused the decrease of biomass concentration in the reactor and the instability of reactor performance, $H_2$ production rate and $H_2$ yield. The unstable performance was accompanied with high concentration of lactate in the effluent. Taken together, the poor recovery of CSTR after perturbations could be partly explained by low biomass concentration and/or metabolic shift of the major population in the CSTR.

Effects of Operating Parameters on Dissolved Ozone and Phenol Degradation in Ozone Contact Reactor (오존 접촉 반응기의 용존 오존 농도 및 페놀 분해에 미치는 운전변수의 영향)

  • Chung, Jae-Woo;Park, Jeong-Wook;Lee, Chun-Sik
    • Journal of Korean Society of Environmental Engineers
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    • v.32 no.3
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    • pp.241-247
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    • 2010
  • The Effects of operating parameters such as initial pH, gaseous ozone concentration, supplied gas flow rate on dissolved ozone concentration and phenol degradation in ozone contact reactor were investigated. Dissolved ozone concentrations were saturated to constant values after a certain ozone contact time. The saturation values were influenced by experimental parameters. Dissolved ozone concentration decreased with the increase of initial pH because the ozone is unstable in high pH regions. The gaseous ozone concentration in a constant gas supply affected the saturation concentration of dissolved ozone and the injection rate of gas with a constant ozone concentration determined the rate to reach dissolved ozone saturation. Effects of operating parameters on phenol degradation were closely related with those of parameters on dissolved ozone concentration. Phenol degradation was enhanced by the increase of initial pH, because the degradation of dissolved ozone gave birth to free radicals which have much higher reactivity with phenol. Increase of gaseous ozone concentration and gas flow rate promoted the phenol degradation through the generation of dissolved ozone which plays the role in phenol degradation. The injection of methanol deteriorated the phenol degradation through the scavenging effect on OH radicals.

Desirable pH of Slurry in Desulfurization Absorber for a 1000 MW Coal Fired Power Plant (1000 MW급 석탄화력발전용 탈황흡수탑의 적정슬러리 pH)

  • Park, Jeong-kee;Yoo, Hoseon
    • Plant Journal
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    • v.15 no.1
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    • pp.38-44
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    • 2019
  • This research is an experimental investigation to find the desirable pH of slurry in the desulfurization absorber for a 1000 ㎿ coal fired power plant, operating in compliance with the Air Environmental Conservation Act and the plant's internal regulations. In case the average sulfur dioxide concentration in inflow flue gas, ${\bar{C\;in}}$ [ppm] changed to 500 ppm, 550 ppm, 600 ppm and 635 ppm after fixing inflow flue gas flow rate, generator output, pressure drop in the absorber, and oxidation air flow rate, the desirable pH of the slurry in the absorber, was 5.0, 5.2, 5.3 and 5.4. Thus, it is recommended that the desirable pH of slurry is calculated using the correlation equation, $RpH=0.0018{\times}{\bar{C\;in}}+4,2031$ when the average sulfur dioxide concentration in the inflow flue gas is in the range of 500 ppm to 635 ppm.

Effect of Operating Conditions of UASB Reactor on Biodegradation of C. I. Reactive Blue 114 (C. I. Reactive Blue 114의 분해에 미치는 혐기성 UASB 반응기 운전조건의 영향)

  • Oh, You-Kwan;Lee, Sung-Ho;Kim, Hyo-Seob;Park, Tae-Joo;Park, Sung-Hoon
    • Journal of Korean Society of Environmental Engineers
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    • v.22 no.4
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    • pp.619-627
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    • 2000
  • Biodegradation of the C. I. Reactive Blue 114 was investigated in an upflow anaerobic sludge blanket (UASB) reactor. Important parameters studied include dye concentration, the kind and concentration of carbon source, hydraulic retention time (HRT), and influent pH. Glucose was found to be a better co-substrate than the mixture of volatile fatty acids (VFAs), although its concentration did not affect dye removal efficiency in the range of $1000{\sim}3000mg/{\ell}$. When HRT increased from 6 hr to 24 hr, dye removal efficiency increased up to 12 hr and remained almost constant thereafter at about 40%. When influent pH was varied in the range of 6.0~8.0, the effluent pH was varied in the range of 6.8~7.5 with maximum efficiency at pH 7.0. The highest dye removal rate obtained was $52mg/{\ell}{\cdot}day$, while the maximum dye load to meet the discharge limit of color intensity was estimated to be $46mg/{\ell}{\cdot}day$ at HRT of 12 hr and an influent glucose concentration of $2200mg/{\ell}$.

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Production of Palatinose by Immobilized Cells of Erwinia rhapontici (Erwinia rhapontici 고정화에 의한 Palatinose의 생산)

  • 윤종원;오광근
    • KSBB Journal
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    • v.7 no.1
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    • pp.79-83
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    • 1992
  • The characteristics of Erwinia rhapontici cells with $\alpha$-glucosyltransferase activity immobilized in Ca-alginate beads and the performance of two different types of reactor-stirred tank reactor(STR) and packed bed reactor(PBR)-charged with these immobilized cells to produce palatinose from sucrose were investigated. The optimal pH(5.5-6.0) and temperature($30-35^{\circ}C$) showed no appreciable difference between free and immobilized cells. The apparent Km value of the immobilized cells(0.28M) was approximately two times higher than that of free cells(0.13M) at $30^{\circ}C$. The half life of the immobilized cells was found to be 380 h with STR while much greater operational stability was achieved with PBR. Continuous operation of PBR at a space velocity of $0.2h^{-1}$ for 30 days showed only 5% loss of initial activity.

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중수로 수화학 운전평가

  • 백승우;안도희;이한수;정홍석;손순환;정양근
    • Proceedings of the Korean Nuclear Society Conference
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    • 1996.05a
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    • pp.545-549
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    • 1996
  • 원자력발전소에서는 수질관리를 위하여 여러가지 화학적 매개변수들의 운전범위를 지정하여 관리하고 있다. 특히, 중수를 냉각재와 감속재로 사용하는 중수로의 경우에 일차계통에서는 pH$_{A}$, 전도도, 리튬농도를 중요한 매개변수로 활용하여 관리하고 있다. 본고에서는 중수로의 화학조절지침을 작성하는데 고려되는 매개변수들 사이의 이론적인 상관관계를 검토하고 이러한 이론적인 배경에 기초하여 월성 1호기의 운전자료를 분석한 결과, 운전변수들이 대체적으로 운전범위내에서 잘 유지되고 있음을 알 수 있었다.

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Removal of Rhodamine B using Electrocoagulation Process (전기응집 공정을 이용한 Rhodamine B의 제거)

  • Kim, Dong-Seog;Park, Young-Seek
    • Journal of Korean Society of Environmental Engineers
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    • v.31 no.12
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    • pp.1081-1088
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    • 2009
  • The performance of a electrocoagulation (EC) process was examined for the removal of Rhodamine B (RhB) using iron electrode. The effects of operational parameters such as electrode material (aluminum and iron), current density, NaCl dosage, intial pH and initial dye concentration on RhB removal efficiency were investigated. The optimum range for each of these operating variables were experimentally determined. The experimental results showed that the iron is superior to aluminum as sacrificial electrode material. The optimum time of electrolysis, current density, NaCl dosage and pH were 10 min, 1630 A/$m^2$, 4 g/L and neutral pH, respectively. Under these conditions, RhB was effectively removed (> 93.4%) and also more than 80% of COD was removed (> 88.9%) when the initial concentration of RhB was 230 mg/L. The electrical energy consumption in the above conditions for the color and COD of RhB removal were 10.3 and 10.8 kWh/kg RhB, respectively. The electrocoagulation process could be a promising technology to treat dye wastewater containing RhB.

유기물부하에 따른 음식물지꺼기의 산발효

  • Jang, Seong-Ho;An, Cheol-U;Park, Jin-Sik;Mun, Chu-Yeon
    • Proceedings of the Korean Environmental Sciences Society Conference
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    • 2006.05a
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    • pp.355-357
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    • 2006
  • 본 연구에서는 산생성효율의 최적 운전인자 도출을 위하여 중온 및 고온혐기성산발효공정에서의 유기물부하에 따른 산발효 효율을 비교 검토하였으며, 다음과 같은 결론을 얻었다. 유기물 부하별로 고온과 중온 조건에서 실험을 진행했을 때 VFA생성과 pH변화를 비교했을 때, 고온 조건이 중온조건보다 더 높은 부하율에서 운전이 가능한 것으로 나타났으며, 생성되는 VFA의 농도도 더 높은 것으로 나타났으며, pH의 변화는 고온 조건에서 4.8$\sim$6.2, 중온 조건에서 5.8$\sim$6.7로 고온에서 중온보다 pH가 낮게 나타났다. 고온과 중온에서 유기물 부하별로 산발효시 생성된 유기산의 구성성분을 비교했을 때, 고온에서 생성된 유기산이 중온보다 acetic acid의 비율이 높은 것으로 나타났다. 음식물찌꺼기 고온 산발효액의 성상에서 $SCOD_{Cr}$/TKN, $SCOD_{Cr}$/T-P이 각각 18.9, 73.4로 나타나 하수처리장에서 저부하 유기물 유입시에 탄소원으로 충분히 활용 가능한 것으로 판단된다.

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Real-time Control of Biological Animal Wastewater Treatment Process and Stability of Control Parameters (생물학적 축산폐수 처리공정의 자동제어 방법 및 제어 인자의 안정성)

  • Kim, W.Y.;Jung, J.H.;Ra, C.S.
    • Journal of Animal Science and Technology
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    • v.46 no.2
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    • pp.251-260
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    • 2004
  • The feasibility and stability of ORP, pH(mV) and DO as a real-time control parameter for SBR process were evaluated in this study. During operation, NBP(nitrogen break point) and NKP(nitrate knee point), which reveal the biological and chemical changes of pollutants, were clearly observed on ORP and pH(mV)-time profiles, and those control points were easily detected by tracking the moving slope changes(MSC). However, when balance of aeration rate to loading rate, or to OUR(oxygen uptake rate), was not optimally maintained, either false NBP was occurred on ORP and DO curves before the appearance of real NBP or specific NBP feature was disappeared on ORP curve. Under that condition, however, very distinct NBP was found on pH(mV)-time profile, and stable detection of that point was feasible by tracking MSC. These results might mean that pH(mV) is superior real-time control parameter for aerobic process than ORP and DO. Meanwhile, as a real-time control parameter for anoxic process, ORP was very stable and more useful parameter than others. Based on these results, a stable real-time control of process can be achieved by using the ORP and pH(mv) parameters in combination rather than using separately. A complete removal of pollutants could be always ensured with this real-time control technology, despite the variations of wastewater and operation condition, as well as an optimization of treatment time and capacity could be feasible.