The nutrient balances originated from livestock manure in Korea has not being include minor livestock species (e.g., horse, deer, and goat) since their manure excretion unit (MEU), nutrient excretion unit (NEU), and nutrient loading coefficient (NLC) are not known yet. In the present research work, the primary focus had laid therefore on securing domestic MEU for the specified minor livestock species which provides the basis for the computation of NEU and NLC. Moreover, the nutrient potential and economic value of composted manure from minor livestock was assessed on the basis of contents in the inorganic fertilizers such as Urea, (46% N) and Fused superphosphate (20% phosphorus pentoxide). The obtained MEU was found to be 10.52±5.48, 4.07±1.69, and 0.843±0.1 kg/head/day for horse, deer, and goat, respectively. In addition, the measured NLCs of horse, deer, and goat were [N, 0.7; P, 0.9], [N, 0.7; P, 0.6] (Both deer and goat were the same.), respectively. Consequently, the horse, deer, and goat manure have a potential of 3,840.1 ton N/year and 9,390.2 ton P/year as an inorganic fertilizer of urea and fused superphosphate. These findings may facilitate the development of more accurate nutrient budget taking into account both major and minor livestock and improve the manure management measures for land application.
최근 농경지 투입양분으로 인한 환경영향의 우려와 함께 하천 등으로 유출되는 양분의 오염부하 관리가 요구되고 있다. 이에 정부는 국내 농지의 양분 과잉 투입 문제를 해결하기 위해 농경지의 양분관리 목표를 설정하여 관리하는 양분관리제도의 도입을 추진하고 있다. 본 연구는 국내 합리적인 양분관리제도 도입을 위한 양분관리 지표 기준을 설정하고자 도 단위의 양분부하와 양분수지 지표를 분석하고 지표별 특성을 비교 검토하였다. 도 단위 질소와 인성분의 양분부하와 양분수지 분석에서 지역별 양분 부하 순위와 양분수지 순위가 다르게 나타나, 지역의 양분 수준을 평가하는데 있어 양분부하와 양분수지의 두 지표는 서로 상이한 지표 값을 도출하는 것으로 나타났다. 양분부하와 양분수지 간의 상관관계 분석에서 질소성분의 경우 상관관계 계수 (r)는 0.2504로서 5% 유의수준에서 통계적 유의성이 없었으며, 인성분의 경우 상관관계 계수 (r) 가 0.7375로서 5% 유의수준에서 통계적 유의성이 인정되었다. 따라서 양분관리 지표활용에 있어 인성분의 경우 양분부하와 양분수지 간의 상호 호환성이 나타났으나, 질소 성분의 경우 양분부하와 양분수지 간의 상호 호환성이 없는 것으로 나타났다. 따라서 지역의 양분관리 지표로서 농업환경 특성을 반영하는 양분수지 지표의 활용이 합리적인 것으로 평가되었다.
This study investigated water quality of effluents and stream from the sewage treatment plants located at Gumi Complex 4, Gumi, and Wonpyeong in Gumi. Downstream region was found to increase the concentration of nutrients for sewage treatment plant effluent. Both phosphorus and nitrogen were accounted most as soluble form. In particular, the high ratio of dissolved effluent of sewage treatment plants were investigated. In the streams, Phosphorus concentration was high during rainy season and nitrogen concentration was high in the dry season. Sewage treatment plant effluent was relatively less microbial activity and nutrient concentrations were higher in the winter. TN/TP ratio was the highest in the upstream region and the lowest in the sewage treatment plant effluent. The effect of the nutrient matter from a discharge of a sewage treatment plant on rivers varied depending on the size of the river and the treatment plant. However, the influence of the concentration was greater than that of flowrate. Sewage treatment plant effluent loads phosphorus, nitrogen accounted for 8% and 6% respectively at the point N3 of the Nakdong river.
The purpose of this research was to investigate applicative possibility of field. Pilot-scale experiments were conducted, at outdoor temperature, HRT 10hour, IR(Internal Recycle) 150% and used 2.8㎥ Reactor. External carbon source was varied 80 to 120 mg/L. When External carbon source and Alkalinity were injected to the B3 pilot plant, the removal efficiencies of COD and BOD were not decreased. Nitrification rate were 5.95, 5.40, 4.08 mgNH4+-N/gSS/d during operation periods and denitrification rate was 3.12mgNO3--N/gSS/d. When we surveyed the relationship between loading rate of nitrogen and nitrogen removal quantity, this data was 0.949, B3 process will be possible application process of field.