• 제목/요약/키워드: Biological Nitrogen Treatment

검색결과 352건 처리시간 0.025초

생물학적 질소제거시 운전조건의 변화가 N2O 발생에 미치는 영향 (Effects of Operational Condition on N2O Production from Biological Nitrogen Removal Process)

  • 장현섭;김태형;이명주;황선진
    • 상하수도학회지
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    • 제23권5호
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    • pp.547-555
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    • 2009
  • The objectives of this research were focused on the effects of various operating parameters on nitrous oxide emission such as C/N ratio, ammonia concentration and HRT in the hybrid and suspension reactors. With the decreasing of C/N ratios, $N_2O$ emission rates in the both processes were increased because organic carbon source for denitrification was depleted. In case of biofilm reactor operated using medium, $N_2O$ release from the nitrification was not affected by the variation of ammonia concentration. But in the suspension reactor, $N_2O$ production from the nitrification was rapidly increased with the increase of ammonia. Nitrite accumulation caused by undesirable nitrification conditions could be a important reason for the increase in the $N_2O$ production from the aerobic reactor. And rapid increase in $N_2O$ production was reflected by the decrease of HRT, similar to the results observed in the results of ammonia loading changes. So it could be said that it is very important to put in consideration both its optimum conditions for wastewater treatment efficiency and suitable conditions for $N_2O$ diminish, simultaneously, in order to development an eco-friendly and advanced wastewater treatment, especially in BNR process.

Effect of different biochar formulations on the growth of cherry tomatoes

  • Lee, Jae-Han;Luyima, Deogratius;Ahn, Ji-Young;Park, Seong-Yong;Choi, Bong-Su;Oh, Taek-Keun;Lee, Chang-Hoon
    • 농업과학연구
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    • 제46권4호
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    • pp.931-939
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    • 2019
  • Biochar is a solid carbon material made by pyrolyzing a biomass under limited oxygen conditions. Biochar has been reported to confer various benefits, such as increased soil productivity, pollutant absorption, and reduced greenhouse gas. In this study, oak pyrolyzed at 600℃ for 3 hours was either powdered or pelleted. Each of the biochar types was added to the soil at a rate of 2%. The control did not receive any biochar while a combination of the biochar and NPK treatment (biochar 2% + NPK) was also included. The cherry tomatoes were grown in greenhouse pots for 50 days to compare the growth characteristics of the different treatments. The cherry tomato with the powdered biochar 2% + NPK treatment had the heaviest plant fresh shoot weight of 276.4 g and the highest chlorophyll content of 59.3 SPAD. The control had the lightest plant fresh shoot weight of 44.2 g and a chlorophyll content of 26.5 SPAD. Both forms of biochar affected the chemical properties of the soil, increased the pH, electrical conductivity, available phosphate, total carbon and total nitrogen and positively influenced the cherry tomato growth and productivity. From the above results, therefore, both biochar forms are suited for use as soil amendments.

주성분분석에 의한 $A_{2}O$공법의 처리성 평가 (Treatability Evaluation of $A_{2}O$ System by Principal Component Analysis)

  • 김복현;이재형;이수환;윤조희
    • 한국환경보건학회지
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    • 제18권2호
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    • pp.67-74
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    • 1992
  • The lab-scale biological A$_{2}$O system was applied from treating piggery wastewater highly polluted organic material which nitrogen and phosphorous are much contained relatively in conversion with other wastewater. The objective of this study was to investigate the effect of variance parameters on the treatability of this system according to operation conditions. An obtained experimental data were analysed by using principal component analysis (PCA) method. The results are summarized as follows: 1. From Varimax rotated factor loading in raw wastewater, variance of factor 1 was 36.8% and cumulative percentage of variance from factor 1 to factor 4 was 81.5% and of these was related to BOD, TKN and BOD loading. 2. In anaerobic process, variance of factor 1 was 33.5% and cumulative percentage of variance from factor I to factor 4 was 81.8% and of these was related to PO$_{4}$-P, BOD, DO and Temperature. 3. In anoxic process, variance of factor 1 was 30.1% and cumulative percentage of variance from factor i to factor 4 was 84.3% and of these was related to pH, DO, TKN and temperature. 4. In aerobic process, variance of factor 1 was 43.8% and cumulative percentage of variance from factor 1 to factor 4 was 81.5% and of these was highly related to DO, PO$_{4}$-P and BOD. 5. It was better to be operated below 0.30 kg/kg$\cdot$day F/M ratio to keep over 90% of BOD and SS, 80% of TKN, and 60% of PO$_{4}$-P in treatment efficiencies. 6. Treatment efficiencies was over 93% of BOD and SS, 81% of TKN and 60% of PO$_{4}$-P at over 20$^{\circ}$C, respectively.

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Study on the Systematic Technology of Promoting Purification for the Livestock Wastewater and Reuse

  • Okada, Yoshiichi;Shim, Jae-Do;Mitarai, Masahumi;Kojima, Takayuki;Gejima, Yoshinori
    • 한국농업기계학회:학술대회논문집
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    • 한국농업기계학회 1996년도 International Conference on Agricultural Machinery Engineering Proceedings
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    • pp.692-700
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    • 1996
  • The objective of this study is to develop a systematic purification plant using the metabolism of aerobic microorganisms. This system is subsequently aerated and continuously removes suspended solids and settling sludges caused by aerating pressure at the bottom of a lower pipe (i.e., Continuous Removal of Suspended solids and Settling sludges, CRSS). The CRSS plants are brought out by introducing fine air bubbles into the liquid phase of a lower pipe in the bio-reactor. These plant uses aeration pipe, with multiple inlets to sweep the floor of bio-reactor tank, instead of the conventional scraper mechanisms. The principal advantage of this system is that it can continuously remove very small or light particles that settles completely within a short time. Once the particles have been floated to the surface, they can be moved into the pipe and collected in the settling tank by sequently aerated pressure. The experimental results shows that about 99.0% of the biochemical oxygen demand(BOD), 99.3% of the suspended solid(SS), 92.3% of the total nitrogen(T-N), 99.0% of the turbidity(TU), 100% of the total coliform(TC)and ammonia was respectively removed during aerobic digestion for 9 days. These result indicates that the CRS S plants are very effective for reduction and deodorization of swine wastewater contaminants, and the efflux from CRS S can either be discharged in the river or used as nutrient solution of formulation for plant growth factories. The developed CRSS plant proved to be flexible and it can simply be adapted to any type of biological waste treatment problem.roblem.

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MSBR을 이용한 크루즈선 오·폐수 처리 장치 (Shipboard sewage treatment using Membrane Sequence Batch Reactor)

  • 김인수;이언승;오염재;김억조
    • 한국항해항만학회지
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    • 제34권5호
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    • pp.383-388
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    • 2010
  • 본 연구는 크루즈선에 적합한 생물학적 오 폐수처리장치 개발을 위하여 SBR, MBR, MSBR 공정을 Lab scale 실험을 수행하여 오염물 처리 효율과 크루즈선이라는 특수 환경과의 접목성을 검토한 결과 MSBR공정이 처리효율과 장치 운영 면에서 가장 적합한 공정으로 평가되었다. MSBR 공정은 처리 대상 물질이 특정 성분에 국한 되지 않고 유기물, 영양염류, 병원성 미생물 처리에 있어 모두 안정적인 효율을 나타내었으며, 소요용적 및 장치의 운영 면에서도 우수한 결과를 나타내어 선박이라는 특수한 현장 적용에 매우 유리한 공정으로 확인되었다. MSBR 공정의 BOD, COD 및 SS 제거 효율은 99%, 98%, 99%로 나타나 IMO의 규제 기준을 모두 만족하였으며, 총질소와 인의 제거 효율도 76%, 59%로 강화되어 가는 해양오염기준을 충만족시킬 수 있는 공정으로 판단되었다.

폭기 에너지 저감 연속회분식반응조 운전과 미생물 군집 변화 특성 (Performance of sequencing batch reactor under aeration-limited condition and characteristics of microbial community change)

  • 황국선;신동혁;정인교;박성제;장인수;김정배;최정동
    • 상하수도학회지
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    • 제33권3호
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    • pp.215-224
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    • 2019
  • Recent focus on wastewater treatment includes energy-saving and renewable energy generation for energy-independence of water infrastructures. Aeration and pumping in biological wastewater removal processes account for nearly 30-60% of the total electricity cost in real wastewater treatment plants. In this study, the performance and microbial characteristics were investigated in sequencing batch reactor under typical oxygen and oxygen limited condition. Under typical DO ($7.55{\pm}0.99mg/L$) and low DO ($0.23{\pm}0.08mg/L$) conditions, COD removal was stable over 91 % during SBR operation. Ammonia removal efficiency was reduced from 95.6 % to 89.2 % when DO concentration was dropped sharply. Phosphorus removal efficiency also reached 77% at oxygen-limited condition. The results indicated that removal efficiency both ammonia and phosphorus was influenced by DO condition. Microbial analysis revealed that Proteobacteria and Bacteroidetes at phylum level was dominant in typical DO and low DO conditions and DO concentration did not much affect phylum distribution. Population decrease of genera of nitrifying bacteria(Dokdonella) and Dechloromonas spp. affect removal efficiency of nitrogen and phosphorus at low DO condition.

Mg/Al Impregnated Biochar for the Removal and Recovery of Phosphates and Nitrate

  • Kim, Dong-Jin
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2019년도 정기학술대회 발표논문집
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    • pp.134-134
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    • 2019
  • Utilization of organic waste as a renewable energy source is promising for sustainability and mitigation of climate change. Pyrolysis converts organic waste to gas, oil, and biochar by incomplete biomass combustion. Biochar is widely used as a soil conditioner and adsorbent. Biochar adsorbs/desorbs metals and ions depending on the soil environment and condition to act as a nutrient buffer in soils. Biochar is also regarded as a carbon storage by fixation of organic carbon. Phosphorus (P) and nitrogen (N) are strictly controlled in many wastewater treatment plants because it causes eutrophication in water bodies. P and N is removed by biological and chemical methods in wastewater treatment plants and transferred to sludge for disposal. On the other hand, P is an irreplaceable essential element for all living organisms and its resource (phosphate rock) is estimated about 100 years of economical mining. Therefore, P and N recovery from waste and wastewater is a critical issue for sustainable human society. For the purpose, intensive researches have been carried out to remove and recover P and N from waste and wastewater. Previous studies have shown that biochars can adsorb and desorbed phosphates implying that biochars could be a complementary fertilizer. However, most of the conventional biochar have limited capacity to adsorb phosphates and nitrate. Recent studies have focused on biochar impregnated with metal salts to improve phosphates and nitrate adsorption by synthesizing biochars with novel structures and surface properties. Metal salts and metal oxides have been used for the surface modification of biochars. If P removal is the only concern, P adsorption kinetics and capacity are the only important factors. If both of P and N removal and the application of recovery are concerned, however, P and N desorption characteristics and bioavailability are also critical factors to be considered. Most of the researches on impregnated biochars have focused on P removal efficiency and kinetics. In this study, coffee waste is thermally treated to produce biochar and it was impregnated with Mg/Al to enhance phosphates and nitrate adsorption/desorption and P bioavailability to increase its value as a fertilizer. Kinetics of phosphates and nitrate adsorption/desorption and bioavailability analysis were carried out to estimate its potential as a P and N removal adsorbent in wasewater and a fertilizer in soil.

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돼지 성장 및 육질 형질에 영향하는 종료웅돈의 효과 (Estimation of Terminal Sire Effect on Swine Growth and Meat Quality Traits)

  • 김효선;김병우;김희열;임현태;양한술;이정일;주영국;도창희;주선태;전진태;이정규
    • Journal of Animal Science and Technology
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    • 제49권2호
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    • pp.161-170
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    • 2007
  • 본 연구에서는 생산성이 인정된 모돈 F1(YL)에 종료웅돈(Terminal Sire)으로 Duroc종 이외에 생산성 저하에 많은 영향을 미치지 않을 것으로 판단되는 최종 종료웅돈(Terminal Sire) Berkshire종과 Berkshire×Duroc(F1)을 YL(♀) 교배시켜 생산된 비육돈(YLD, YLB, YLBD)의 성장과 육질을 비교 분석 하였다. 성장형질에서는 YL(♀)×BD(♂)가 YL(♀)×D(♂)보다 우수하였으며, 조사된 성장형질 전체에서 유의적인 차이(p<0.05)를 보였다. 육질에서도 pH, 보수력, 육색이 다른 비육돈 보다 유의적으로(p<0.05) 우수하였고, 돼지 육질의 표준이 되는 등심조지방 함량에서 YL(♀)×BD(♂)가 유의적으로 우수하였다. 교배조합별 육색에서는 YL(♀)×BD(♂)가 대체로 명도와 적색도가 높았으며, 지방산 조성에 있어서는 불포화 지방산의 비율이 높은 것으로 나타났다. 따라서, 성장형질에서는 YL(♀)×BD(♂)가 비교 대상의 교배조합에 비해 우수하였으며, 육질에서도 YL(♀)×D(♂) 보다 좋거나 같아 비육돈 교배조합(YLBD)으로서의 이용가치가 있을 것으로 사료된다. 하지만 본 연구의 경우 경남 첨단양돈연구소의 계통조성이 완료된 American Berkshire종을 이용하여 경남의 경우 경남 첨단양돈연구소를 활용하여 별도의 비용이 없이 YLBD를 생산이 가능하겠으나, 다른 지역의 경우 Berkshire의 계통 조성하여 활용할 경우 기존의 종료웅돈 Duroc종을 계통 조성하는 비용만큼 더 소요될 것이라 사료된다.

SBR에서 아세트산을 이용한 양돈폐수의 질소·인 제거 특성 (Removal Characteristics of Nitrogen and Phosphorus in swine wastewater by Using Acetic acid on the SBR Process)

  • 허목;강진영
    • 유기물자원화
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    • 제12권1호
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    • pp.84-93
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    • 2004
  • 본 연구는 생물학적 처리공정의 하나인 SBR을 이용하여, 양돈폐수중의 유기물과 질소, 인의 동시 제거를 목적으로 적정의 수리학적 체류시간(HRT)과 반응기간 중 교반/폭기 시간비(M/A) 및 적정의 교반/폭기 시간비에서의 외부탄소원의 주입기간(Injection Time)에 따른 변화에 따른 실험 결과로부터 다음과 같은 결론을 얻었다. (1) $NH_4{^+}-N$의 제거효율은 M/A가 0.0/22.0일 때(Run 1) 가장 효율이 좋았으며, 외부탄 소원을 주입했을 경우 탈질균의 증식으로 인해서 질산화가 잘 이루어지지 않기 때문에 주입시간이 길어질수록 증가하였다. T-N의 제거효율은 M/A가 증가할수록, 외부탄소원 주입시간이 길어질수록 증가하였다. (2) T-P의 제거효율은 운전조건에 따라 큰 차이를 보이고 있으며, M/A가 증가할수록 제거효율은 증가하였으며, 외부탄소원의 주입기간을 두고 보았을때, 주입기간을 짧게 할 경우 탈질균의 증식으로 인해서 탈질이 더 효율적으로 이루어지기 때문에 그 제거효율은 증가하였다. (3) 총 반응시간 22시간 중 M/A 16.5/5.5, 무산소 기간의 16.5시간 중 15시간동안 외부탄소원을 주입했을 경우(Run 4-1)의 운전조건에서 유기물 및 질소 제거에 가장 효율적이었다. 각각의 효율을 살펴보면, $COD_{Cr}$, $COD_{Mn}$ 그리고 $BOD_5$인 경우, 각각 90.6%, 87.7% 그리고 96.1%이고, T-N의 경우 86.6%, T-P인 경우는 84.5%로 나타났다.

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철 석출장치가 결합된 무산소.호기공정에 의한 인 제거 특성 (Phosphorus Removal (Characteristics by Anoxic Oxic Process) by Anoxic and Oxic Processed Combined with Iron Electrolysis)

  • 김민호;김영규;김수복
    • 한국환경보건학회지
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    • 제36권6호
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    • pp.502-509
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    • 2010
  • In this study, the (phosphorous removal) the characteristics of phosphorous removal due to (the iron compound precipitated) iron compound precipitation by iron electrolysis in (the anoxic. oxic process) anoxic and oxic processes (equipped with the) in an iron precipitation device were analyzed. During the device operation period, the average concentration of BOD, T-N, and T-P were 219.9 mg/l, 54.6 mg/l and 6.71 mg/l, respectively. The BOD/$COD_{Cr}$ ratio was 0.74, and the BOD/T-N and BOD/T-P ratios were 4.0 and 32.8, respectively. The removal rate of (the organic matters) organic matter (BOD and $COD_{Cr}$) was very high at 91.6% or higher, and that of nitrogen was 80.5%. The phosphorous concentration (of the final) in the treated water was 0.43 mg/l (0.05-0.74 mg/l) on average, and the removal efficiency was high at 90.8%. The soluble T-P concentrations in (an) the anoxic reactor, oxic reactor (II) and final treated water were 1.99 mg/l, 0.79 mg/l and 0.43 mg/l, respectively, which indicated that the phosphorous concentration in the treated water was very low. Regardless of the changes in the concentrations of (organic matters) organic matter, nitrogen and phosphorous in the influent, the quality of the treated water was relatively stable and high. The removal rate of T-P somewhat increased with the increase in the F/M ratio in the influent, and it also linearly increased in proportion to the T-P loading rate in the influent. In the treatment process used in this study, phosphorous was removed (using) by the precipitated iron oxide. Therefore, the consumption of organic (matters) matter for biological phosphorus removal was minimized and (most of the organic matters were) was mostly used as the organic carbon source for the denitrification in the anoxic reactor. This (can be an economic) treatment process (without the need for the supply of additional organic matters) is economic and does not require the supply of additional organic matter.