• 제목/요약/키워드: 오수처리수관개

검색결과 7건 처리시간 0.022초

벼 재배시 생활오수 처리수 관개 효과 (The Effect of Reclaimed Sewage Irrigation on the Rice Cultivation)

  • 윤춘경;권순국;정일민;권태영
    • 한국환경농학회지
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    • 제18권3호
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    • pp.236-244
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    • 1999
  • 본 연구에서는 인공습지 처리시설에서 나오는 생활오수 처리수의 농업용수로 재이용 가능성을 조사하기 위하여 관개용수의 수질과 시비량을 조절하여 벼재배실험을 수행하였으며, 실험결과를 요약하면 다음과 같다. 1. T-N농도가 약 $25mgL^{-1}$까지는 생활오수 처리수를 함유한 관개용수의 수질이 벼의 생장과 수확면에 모두 거의 영향을 미치지 않았으며, 결정적인 영향을 미친 요인은 시비량이었다. 2. 시비량을 동일하게 하였을 경우에 수돗물을 관개한 대조구보다 T-N을 약 $25mgL^{-1}$로 조절 하여 영양물질을 함유한 상태의 생활오수처리수를 관개한 실험구가 오히려 약 9%정도 많이 수확하였다. 이러한 결과는 적절한 농도의 오수처리수는 벼의 재배에 장해가 되는 것이 아니고 오히려 유익할 수도 있음을 의미한다. 3. 종실의 중금속성분 분석결과에 의하면 생활오수처리수의 관개가 종실의 중금속축적에 미치는 영향이 거의 없었다. 따라서, 생활오수처리수를 관개함으로서 종실에 중금속유해성분이 증가하여 건강에 악영향을 미칠 가능성은 적다고 생각된다. 다만 위생적인 작업환경 및 심미적인 영향에 대해서는 구체적인 연구가 수행되어야 할 것이다. 4. 이상의 실험결과에 의하면 오수처리수는 벼재배에 오염성분으로 작용하기보다는 오히려 유익한 관개용수로 재이용할 수 있다고 판단된다. 이러한 결과는 물 부족 국가로서 다량의 관개용수를 필요로 하며 용수부족을 자주 겪는 우리나라의 벼재배에는 특히 적용가능성이 높아고 판단된다. 5. 생활오수 처리수의 관개를 본격적으로 적용하기 위해서는 벼재배에 악영향을 미치지 않는 범위에 대한 과학적이고 현실적인 수질기준을 설정, 영양물질을 함유한 관개용수 사용에 따른 시비량의 조정, 그리고 인공습지와 같은 저기술형 오수처리시설들이 농촌지역의 소규모 처리시설로서의 활발한 보급을 위하여 지속적인 추가연구가 필요하다.

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오수처리수 관개방법에 따른 수도 생육과 토양내 영양물질 변화 (Rice growth and Nutrient change in paddy soil with reclaimed sewage irrigation)

  • 윤춘경;황하선;우선호
    • 한국농공학회지
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    • 제43권6호
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    • pp.154-162
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    • 2001
  • This study was performed to examine the rice growth and nutrient change in paddy soil with reclaimed sewage irrigation. Total nitrogen and total phosphorus in the experimental system were analyzed before and after rice culture. The experiment lasted three consecutive years, and this paper presents results of the last year. Additional supply of nutrients to the rice culture by reclaimed sewage irrigation was significant and it increased the yield. Nutrient uptake by rice plant increased with more nutrient supplied, however. there was limit in plant uptake. Nutrient accumulation occurred in the soil and it was more apparent for the phosphorus where most of the remaining quantity was accumulated while substantial amount of nitrogen was lost during the growing season. This study suggested that additional nutrient supply by reclaimed sewage irrigation might be a supplemental benefit to the rice culture, and it can help the fertilization management. However, long term effects of continual reclaimed sewage irrigation should be assessed carefully including nutrient mass balance in the paddy rice culture system.

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오수처리수의 관개가 벼 생육 및 토양 특성에 미치는 효과 (Effect of Reclaimed Sewage Irrigation on Paddy Rice Culture and Soil Characteristics)

  • 윤춘경
    • 한국농공학회지
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    • 제42권3호
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    • pp.66-75
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    • 2000
  • Effect of reclaimed sewage on the paddy rice culture was examined by field experiment for two consecutive years. The domestic sewage was treated by the constructed wetland and the effluent of the treatment wetland was used for irrigation water. The reclaimed sewage was diluted before irrigation in the first year and it was used without dilution in the second year experiment. Growth components and yields were compared against the control plot where conventional method was applied. And also soil characteristics of the plots before and after reclaimed sewage irrigation were analyzed Generally addition of the reclaimed sewage irrigation didn't affect paddy rice culture adversely and even enhancement was observed. Fertilization was thought to be important factor for rice culture rather than irrigation water quality. Conventional fertilization and reclaimed sewage irrigation which contained high nutrient concentration resulted in better growth and more yield. Unlike widespread concern lodging did not happen even in the case of irrigation with average 90mg/L of T-N and conventional fertilization. Soil characteristics changed after irrigation and significant EC increasing was observed for the reclaimed sewage irrigation plots. From soil analyses salt accumulation could be a more potential problem than nutrients like nitrogen and phosphorus in the use of reclaimed sewage irrigation. Overall reclaimed sewage irrigation was thought to be one of practical alternatives for the ultimate disposal of sewage in rural area.

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오수처리수 관개 벼재배를 통한 농업용수 수질기준의 검토 (Review of the Agricultural Water Quality Standards through Rice Culture with Treated Sewage Irrigation)

  • 윤춘경
    • 한국농공학회지
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    • 제41권2호
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    • pp.44-54
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    • 1999
  • Agricultural water quality standards were reviewed through rice culture using treated sewage irrigation . The seqage from school building of Konkuk University was treated by a constructed wetland system, and theeffluent of the systeml was irrigated for rice culutre after nutrient concentration adjusted by dilution. Average concentration of COD, SS, T-N and T-P in irrigated water was 22.3mg/$\ell$, 6.5mg/$\ell$, 25.8 mg/$\ell$and 2.2mg/$\ell$, respectively. Treatment include irrigation of adjusted effluent with conventional fertilization (TWCF), adjusted effluent with no fertilization (TWNF). and effluent of the wetland system as it was with no fertilization (SWNF). These treatment plots were compared with control plot irrigated by tap water with conventional fertilization (CONTROL). Other environmentals for rice culture were identical for all the plots. Among them, TWCF showed the best growth rate and the highest yield, and constituents in the harvested rice showed not much difference among them. Which implies that irrigation with relatively high nutrient concentration compared to the current water quality standards may cause no adverse effect on rice culture and could be even beneficial . Although T-N for this study was 25 times greater than the current standards, rice culture wasnot adversely affected by irrigatino water quality and even beeter results were observed than the CONTROL. It could be mistakenly that clean irrigation water produces better agricultural product, however, it is not necessarily true. Irrigation water with moderate nutrient concentration can enhance the plant growth, and better result might be expected. Therefore, peer review and modification if necessary are needed to the current agricultural water quality standards, especially for the nutrient components.

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인공습지 오수처리수를 이용한 벼재배 실험 (Paddy Rice Culture Experiment Using Treated Sewage Effluent From Constructed Wetland)

  • 윤춘경;함종화;우선호;김민희
    • 한국농공학회지
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    • 제43권2호
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    • pp.94-104
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    • 2001
  • A pilot study was performed at the experimental field of Konkuk University in Seoul, to examine the feasibility of the constructed wetland system for sewage and the effect of treated sewage irrigation on the paddy rice culture and its soil characteristics. The constructed wetland performed well, in that effluent concentrations of pollutants were significantly lower than concentrations of the influent. Median removal efficiencies of BOD$_{5}$ was about 78% and slightly lower during winter. Removal efficiencies form TN and TP were approximately 48 and 21%, respectively, and relatively less effective than that of BOD$_{5}$. Irrigation of treated sewage to paddy rice culture did not affect adversely in both growth and yield of rice. Instead, plots of treated sewage irrigation showed up to 50% more yield in average than the control plot. It implies that treated sewage irrigation might be beneficial to rice culture rather than detrimental as long as it is treated adequately and used properly. Soil was sampled and analyzed before transplanting and after harvesting. pH was slightly increased due to irrigation water, but it may not be concerned as long as the treated sewage is within the normal range. EC was increased in first year but decreased in second year, therefore salts accumulation in the soil could be less concerned. OM and CES was slightly increased, which might be beneficial on growing plants. TN did not show apparent pattern. Available phosphorus was decreased after rice culture, but the quantity of phosphorus(TP-available phosphorus) was rather increased which implies that excessive phosphorus supply may result in phosphorus accumulation in the soil. Overall, the constructed wetland was thought to be an effective sewage treatment alternative, and treated sewage could be reused as a supplemental source of irrigation water for paddy rice culture without causing adverse effect as long as it is treated adequately and used properly. For full-scale application, further investigation should be followed on environmental risk assessment, tolerable water quality, and fraction of supplemental irrigation.ion.

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담수심과 오수처리수 관개가 벼재배에 미치는 영향 (Effects of fended-Water Depth and Reclaimed Wastewater Irrigation on Paddy Rice Culture)

  • 윤춘경;황하선;정광욱;전지홍
    • 한국농공학회지
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    • 제45권4호
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    • pp.55-65
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    • 2003
  • Pilot study was conducted to examine the effects of ponded-water depth and reclaimed wastewater irrigation on paddy rice culture. For the ponded-water depth effect, three treatments of shallow, traditional, and deep water depths were applied, and each treatment was triplicated. The irrigation water for the treatment pots was an effluent from constructed wetland system for sewage treatment, while the control pot was irrigated with tap water kept traditional ponded-water depth. Irrigation water quantity varied with ponded-water depth as expected and drainage water quantity also varied similarly, which implies that shallow irrigation might save irrigation water and also reduce environmental impacts on downstream water quality. Rice growth and production were not significantly affected by ponded-water depth within the experimental condition, instead there was an indication of increased production in shallow and deep ponded-water depths compared to the traditional practice. Raising drainage outlet to the adequate height in paddy dike might be beneficial to save water resources within the paddy field. There was no adverse effect observed in reclaimed wastewater irrigation on the rice production, and mean yield was even greater than the control pots with tap water irrigation although statistically not significant. Water-saving irrigation by shallow ponded-water depth, raising the outlet height in diked rice paddy fields, minimizing forced surface drainage by well-planned irrigation, and reclaimed wastewater irrigation are suggested to save water and protect water quality. However, deviation from traditional farming practices might affect rice growth in long term, and therefore, further investigations are recommended before full scale application.

농촌용수 수질관리를 위한 비농업시설의 영향 연구 (Effect of Non-Agricultural Facilities on Water Quality and Contamination in Rural Area)

  • 이병선;엄재연;김양빈;우남칠;남경필;이종민
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제14권2호
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    • pp.1-9
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    • 2009
  • 국제농촌지역은 국제적인 농산물 개방 여파, 대도시 인근지역 택지개발 및 산업시설 설치, 각종 레저산업의 유입등 비농업시설이 기존 농경지를 대체 개발하면서 다각적인 발전의 활로를 모색하고 있다. 그러나 이러한 개발속도에 비해 수질솬리는 상대적으로 뒤쳐지는 편이다. 이연구는 개발이 활발한 경기도 OO시 A저수지 유역 대표적인 비농업시설을 중심으로 지하수 및 하철수 시료를 채수하여, 비농업시설 설치운영이 농촌용수 수질에 미치는 영향을 살펴보았다. 연구지역 내 비농업시설에 의한 수질오염은 적절한 처리시설 없이 하수가 A 저수지로무단 방류되는 지역과 공장밀집지역에서 발생했다. 배경수질 분석결과, 두 지역의 하철수 및 지하수에서 (Na+K)-Cl, Ca-(Cl, SO$_4$, Ca-Cl유형들이 나타나 외부 오염 물질의 유입을 보였다. 하수 무단방류지는 면소재지 발생하수가 하천수에 유입됨에 다라 COD, T-N, T-P 오염이 심각했고, 인접한 지하수는 하철수의 유도함양 결과, 화학비료 기원의 NO$_3$-N 오염이 진행 중이었다. 공장밀집지는 T-N, NO$_3$-N 오염이 심각했고, 공장지역 정화조 액상오수의 무단방류가 NO$_3$-N오염의 원이이었다. 축산시설개발지역에서는 가축분뇨에서 기원한 유기물이 하천수 및 지하수에 유입되어NO$_3$-N, Mn오염을 보였다. 농약은 골프장을 비롯한 전체 빈오시설 지역에서 불검출 되었고, SAR(Sodium Adsorption Ratio)-전기전도도 분석 결과,연구지역 용수를 관개용수로 사용 시 알칼리도 및 염도에 대한 위해가 없는 것으로 나타났다. 실버타운, 레저관광지, 골프장 주변 지역의 용수는 대체적으로 수질이 양호했다. 결론적으로 연구지역 내 수질 오염은 국지적인 비농업시설 설치지에서 발생하였으나, 이러나 오염수가 연구지역의 최종 집수지인 A저수지에 유입되면, 타 수계의 청정수와 혼합 희석에 의해 A 저수지에서는 수질 오염이 거의 나타나지 않았다. 그러나 향후 연구지역에 비농업시설이 난립할 경우 A저수지의 희석효과를 기대하기 어려우므로, 농촌개발과 병해할 수 있는 농촌 용수 수질관리 계획이 수립되어 청정한 농촌용수 수질관리가 이루어질 필요가 있다.