• 제목/요약/키워드: Wastewater treatment plants

검색결과 484건 처리시간 0.029초

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

  • Kim, Dong-Jin
    • 한국환경과학회:학술대회논문집
    • /
    • 한국환경과학회 2019년도 정기학술대회 발표논문집
    • /
    • pp.134-134
    • /
    • 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.

  • PDF

수생식물을 이용한 농어촌하수 처리에 관한 연구 (A study on treatment farm.fishing village wastewater using aquatic plants)

  • 박진식;문추연;장성호
    • 환경위생공학
    • /
    • 제17권2호
    • /
    • pp.40-47
    • /
    • 2002
  • In this study, water hyacinth plants(Eichhornia crassipes), water parsley(Oenanthe javanica) and Lemna paucicostate were used to treat contaminants such as COD, T-N and T-P in far m·fishing village wastewater. The results were as follows : In the batch system experiment, water hyacinth was showed at the high removal efficiency in the 173∼412kgCOD/ha·day concentration that is rather than 260mg/1 of the high concentration. The next is Oenanthe javanica, Lemna. Oenanthe javanica was showed the high removal efficiency in the 96∼173kgCOD/ha·day concentration that is less than 260mg/1 of the low concentration.

담수계내 염료 분해 세균의 특성 (Characterization of the Dye-degrading Bacteria in Aquatic Habitat)

  • Kim, Do-Gyeom;Hong-Bum Cho;Ho-Yong Lee;Yong-Keel Choi
    • The Korean Journal of Ecology
    • /
    • 제16권1호
    • /
    • pp.51-61
    • /
    • 1993
  • Crystal violet, a typical triphenylmenthane dye (N, N, N', N', N", N"-hexa methylparaosaniline), extensively used in textile dye, industry and research, has been suggested to cause tumor growth in botton-feeding fishes. For the isolation of crystal violet degrading bacteria, wastewaters were sampled from plants' wastewater treatment facility, textile treatment facility, textile wastewater treatment plant and etc.. The most efficient strain in crystal violet degrading bacteria was identified as Klebsiella oxytoca. Added sole carbon source in PAS minimal media was 10mg/l crystal violet, which incubated at 30。C, the degrading efficiency was maximum 12.3%. When fructose, glucose, sucrose and yeast-extract were added 0.01% in PAS media respectively, the degrading efficiency were all 96% within 24 hours.

  • PDF

상수처리에서 망간 제거 (Manganese Removal in Water Treatment Processes)

  • 김진근;정상기;김종숙;박세진
    • 상하수도학회지
    • /
    • 제19권5호
    • /
    • pp.595-604
    • /
    • 2005
  • To determine the characteristics of manganese removal in Korea, 31 multi-regional water treatment plants (WTPs) were examined. The concentration of manganese in raw water was higher than the standards for drinking water at 2 WTPs. Manganese should be properly removed during water treatment processes to reduce the occurrence of black water in the distribution system because $Mn^{+2}$ can cause black deposits when it is oxidized. Manganese can effectively removed by oxidation, followed by sedimentation and filtration as well as absorption by greensand. Manganese absorption by greensand was the major mechanism for the removal of manganese, and it is effectively removed using this process. Regeneration of greensand using an oxidation agent was necessary for continuous and adequate removal of manganese.

급속여과공정에서 여과수질 저하원인 및 개선방안 (Cause of Filtrate Deterioration and Its Improvement in Rapid Filtration)

  • 김진근;이송희;김재원
    • 상하수도학회지
    • /
    • 제24권3호
    • /
    • pp.333-339
    • /
    • 2010
  • Particle removal is an important step taken at water treatment plants (WTPs) for the safety of tap water due to its proportionality to the pathogen inactivation. Government promulgated a treatment technique for the optimization of filtration including continuous turbidity monitoring using on-line turbidimeters. Based on the turbidity measurements of 460 filters at 31 WTPs operated by K-water, the evaluation of filtration performance and the investigation of major causes related to particle breakthrough were explored. 98.1 % of the filters had an effluent turbidity measurement which was less than 0.1 NTU, but turbidity breakthrough of more than 0.3 NTU was noticed occasionally which is in violation of AWWA 5-Star guidelines. It was shown that the optimization of coagulation, filter-to-waste, the observance of optimal filtration velocity and backwashing process based on filtrate turbidity were crucial for the improvement of filtrate.

정수 슬러지 발생량 조사 및 슬러지 처리시설의 공정평가 (Research of Sludge Quantity and Evaluation of Sludge Handling Facilities in Water Treatment Plants)

  • 문성용;김승현
    • 상하수도학회지
    • /
    • 제18권3호
    • /
    • pp.279-290
    • /
    • 2004
  • Sludge quantity has increased at "A"water treatment plant due to deterioration of raw water quality and GAC installation. Increased sludge resulted in overloading on sludge handling facilities. The object of this study is to survey sludge quantity and capacity of sludge handling facilities at "A"water treatment plant. Measured quantity of sedimentation sludge considerably exceeded the design capacity of sludge holding basin. Sludge holding basin was properly designed, but low concentration of sludge discharged from sedimentation basin caused production of large volume of the sludge. Timer operated control system for sludge withdrawal unit and leakage through a control valve were suspected to cause the low concentration. Augmentation of the control system by a turbidity meter and addition of a new control valve successfully reduced the sludge volume enough to satisfy the design capacity of sludge holding basin. Unlike sedimentation sludge, measured quantity of washwater was considerably less than the design capacity of washwater basin because it was over-designed.

국내 수돗물의 부식성 특성 및 개선방안 (Characteristics and Improvement of Tap Water Corrosivity in Korea)

  • 김진근;김영관
    • 상하수도학회지
    • /
    • 제25권5호
    • /
    • pp.731-739
    • /
    • 2011
  • To investigate corrosivity characteristics of tap water in Korea, Langelier index (LI) of 30 multi-regional water treatment plants (WTPs) were evaluated. Weekly LI values of 30 WTPs were all negative, which means tap water in Korea might be very corrosive. Maximum LI decrease through water treatment processes was 0.95 under no additional corrosion control process. Based on the correlation results between LI and tap water qualities, pH and calcium concentration were confirmed as major parameters for LI control. Addition of calcium hydroxide with $CO_{2}$ or calcium hydroxide or sodium hydroxide can be chosen based on water quality. Continuous monitoring of LI and related parameters is recommended in water distribution system.

고도 하수처리장의 전과정평가에 따른 환경성 및 경제성 평가 (Evaluation of Environmental and Economic Impacts of Advanced Wastewater Treatment Plants with Life Cycle Assessment)

  • 표세희;김민정;이승철;유창규
    • Korean Chemical Engineering Research
    • /
    • 제52권4호
    • /
    • pp.503-515
    • /
    • 2014
  • 최근 하수처리장의 질소 및 인 방류수 수질기준이 강화되고 슬러지의 해양투기가 금지됨에 따라 기존 표준활성슬러지공법의 고도처리공법으로의 증설 및 새로운 하수슬러지 처리공법에 대한 환경성, 경제성 평가의 필요성이 증가하고 있다. 이러한 고도처리 및 슬러지 처리공법은 운영 단계뿐만 아니라 건설, 폐기를 포함한 전과정에 걸쳐 환경 전반에 영향을 미치며 경제적 비용을 소모하므로, 본 연구에서는 건설에서부터 폐기까지의 전과정을 고려하여 고도처리공정 및 슬러지 처리 공법의 환경성, 경제성을 평가하고자 한다. 고도처리공법으로 Anaerobic/Anoxic/Oxic ($A_2O$), Bamard Denitrification Phosphate (Bardenpho), Virginia Initiative Plant (VIP), Modified University of Cape Town (MUCT) 공법을, 슬러지 처리공법으로는 매립, 소각, 퇴비화를 선정하였다. 각 공법에 따른 환경성, 경제성 평가를 위하여 International organization for standardization (ISO)에서 제시하는 가이드라인을 따라 전과정평가를 수행하였으며, 전생애비용을 산정 비교하였다. 각 고도처리 공법에 대한 평가 결과, 환경영향 측면에서는 운영 단계에서의 생물학적 처리로 인한 온실가스 배출이, 경제성 측면에서는 운영 단계에서의 전력소모가 가장 많은 영향을 미치는 것으로 나타났다. 또한 가장 친환경적인 하수처리 및 슬러지 처리공법은 $A_2O$ 공법과 퇴비화로 환경에 가장 큰 영향을 미치는 CAS 공법과 매립에 비해 환경영향을 52% 줄일 수 있는 것으로 나타났다. 경제적인 측면에서는 가장 많은 비용을 소요하는 CAS 공법과 매립 적용 시에 비해 MUCT 공법과 퇴비화가 전생애비용을 62% 절약할 수 있음을 알 수 있었다. 본 연구를 통해 고도처리 공법으로의 증설 및 슬러지 처리에 대한 전과정을 고려하여 친환경적이며 경제적인 공법을 선정하기 위해 전과정평가를 수행하고 전생애비용을 산출하여 각 공법을 비교 및 평가하였으며, 전과정평가의 환경성 및 경제성에 중요한 영향인자를 분석하였다. 따라서 본 연구의 방법론을 통하여 환경부하 및 경비 절감을 고려한 고도처리공법의 개보수 공정 및 슬러지 공정 선택이 가능할 것으로 예상된다.

부산 하수처리장에서 공정별 용존 희토류 원소의 농도 및 인위적 기원 가돌리늄의 배출량 평가 (Assessments of Dissolved Rare Earth Elements and Anthropogenic Gadolinium Concentrations in Different Processes of Wastewater Treatment Plant in Busan, Korea)

  • 임이진;류종식;이준엽;이준호;조형미;김태진
    • 한국지구과학회지
    • /
    • 제43권2호
    • /
    • pp.303-311
    • /
    • 2022
  • 자기공명영상(MRI) 장비의 조영제로 흔히 사용되는 가돌리늄(Gd)은 매우 안정된 상태로 하수처리과정에서 거의 제거되지 않고 수환경으로 유입된다고 알려져 있다. 따라서 본 연구에서는 세 가지의 공법으로 하수처리를 하는 부산 수영 하수처리장에서 채취한 하수 시료의 공정별 용존 희토류 원소의 제거율 및 수환경으로 배출되는 인위적 기원 Gd(Gdanth)의 배출량을 평가하고자 하였다. 용존 희토류 원소는 공정별 처리 단계에 따라 무거운 희토류 원소(Tb-Lu)에 비해 가벼운 희토류 원소(La-Eu)에서 농도가 감소하는 경향을 보였다. 또한 일부 시료에서 나타난 음의(negative) Sm anomaly (<1)는 생물학적 제거 과정에서 Sm이 입자나 인산염과 흡착되어 함께 제거되었을 가능성을 시사한다. 모든 시료에서 양의(positive) Gd anomaly (149±50, n=9)를 보였으며, 공정별로 측정된 Gd의 총 농도 중 Gdanth은 약 97% 이상을 차지하는 것으로 나타났다. 이는 하수처리과정에서 Gdanth 이 거의 제거되지 않고 수영강 하류로 배출된다는 것을 의미한다. 일별 처리용량을 고려하여 각 공정에서 배출되는 Gdanth의 배출량은 259 mmol/day로 추정할 수 있다. 본 연구의 결과는 하수처리장을 통해 수영만 연안으로 Gdanth이 지속적으로 배출될 것으로 예상되며, 향후 Gd의 중장기적인 관측이 필요함을 시사한다.

실규모 연속유입간헐폭기 공정(ICEAS)에서 최적운전조건이 경제성에 미치는 영향 (Economic implications of optimal operating conditions in a full-scale continuous intermittent cycle extended aeration system (ICEAS))

  • 정용재;최윤성;이승환
    • 상하수도학회지
    • /
    • 제38권1호
    • /
    • pp.29-38
    • /
    • 2024
  • Wastewater management is increasingly emphasizing economic and environmental sustainability. Traditional methods in sewage treatment plants have significant implications for the environment and the economy due to power and chemical consumption, and sludge generation. To address these challenges, a study was conducted to develop the Intermittent Cycle Extended Aeration System (ICEAS). This approach was implemented as the primary technique in a full-scale wastewater treatment facility, utilizing key operational factors within the standard Sequencing Batch Reactor (SBR) process. The optimal operational approach, identified in this study, was put into practice at the research facility from January 2020 to December 2022. By implementing management strategies within the biological reactor, it was shown that maintaining and reducing chemical quantities, sludge generation, power consumption, and related costs could yield economic benefits. Moreover, adapting operations to influent characteristics and seasonal conditions allowed for efficient blower operation, reducing unnecessary electricity consumption and ensuring proper dissolved oxygen levels. Despite annual increases in influent flow rate and concentration, this study demonstrated the ability to maintain and reduce sludge production, electricity consumption, and chemical usage. Additionally, systematic responses to emergencies and abnormal situations significantly contributed to economic, technical, and environmental benefits.