• 제목/요약/키워드: Slow Release Fertilizer

검색결과 89건 처리시간 0.033초

N Use Efficiency and Nitrate Leaching by Fertilization Level and Film Mulching in Sesame Cultivated Upland

  • Lee, Dong-Wook;Park, Ki-Do;Park, Chang-Young;Son, Il-Soo;Kang, Ui-Gum;Ko, Jee-Yeon;Shim, Kang-Bo;Cho, Young-Son;Park, Sung-Tae
    • 한국작물학회지
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    • 제52권3호
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    • pp.296-302
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    • 2007
  • This study was conducted to evaluate the effect of slow release fertilizers (SRF), crotonylidene diurea (CDU) and latex coated urea (LCU), on nitrogen (N) use efficiency (NUE) and nitrate-N leaching in a silty clay loam soil under polyethylene film mulching (PFM) for sesame cultivation. In PFM plot, concentrations of $NO_3-N$ and $NH_4-N$ in SRF applied soils were less than that in the urea plot during the whole growing period. However, $NO_3-N$ and $NH_4-N$ in all the non-mulched plots (NM) were not significantly different. Urea-N in soil treated with SRF was higher than urea plot until 50 days after application and was comparable in all the treatments after 50 days. $NO_3-N$ concentrations in leached solution in 21 days after urea fertilization in PFM and NM were 26 mg $L^{-1}$ and 83 mg $L^{-1}$, respectively. However, $NO_3-N$ in leached solution at applied CDU and LCU was less than that of urea similar to nitrate concentration in soil. $NO_3-N$ in leached solution in applied CDU and LCU in 44 days after application was about 25% lower than that urea plot and PFM, while the $NO_3-N$ concentration of CDU and LCU treatment in NM did not changed. Application of SRF increased the yield of sesame and N recovery compared to urea and there was a little difference between SRF and N levels. In conclusion, application of 80% N level with SRF increased N recovery and reduced nitrate leaching without reduction of yields compared with urea application.

Effectiveness of Bioremediation on Oil-Contaminated Sand in Intertidal Zone

  • Oh, Young-Sook;Sim, Doo-Suep;Kim, Sang-Jin
    • Journal of Microbiology and Biotechnology
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    • 제13권3호
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    • pp.437-443
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    • 2003
  • Bioremediation technologies were applied to experimental microcosms, simulating an oil spill in a lower intertidal area. Three treatments (oil only, oil plus nutrients, and oil plus nutrients and microbial inocula) were applied, and each microcosm was repeatedly filled and eluted with seawater every 12 h to simulate tidal cycles. To minimize washing-out of the inoculum by the tidal cycles, microbial cells were primarily immobilized on diatomaceous earth before they were applied to the oiled sand. Oil degradation was monitored by gravimetric measurements, thin layer chromatography/flame ionization detector (TLC/FID) analysis, and gas chromatography (GC) analysis, and the loss of oil content was normalized to sand mass or nor-hopane. When the data were normalized to sand mass, no consistent differences were detected between nutrient-amended and nutrient/inoculum-amended microcosms, although both differed from the oil-only microcosm in respect of oil removal rate by a factor of 4 to 14. However, the data relative to nor-hopane showed a significant treatment difference between the nutrient-amended and nutrient/inoculum-treated microcosms, especially in the early phase of the treatment. The accelerating effect of inoculum treatment has hardly been reported in studies of oil bioremediation in the Tower intertidal area. The inoculum immobilized on diatomaceous earth seemed to be a very effective formulation for retaining microbial cells in association with the sand. Results of this study also suggest that interpretation of the effectiveness of bioremediation could be dependent on the selection of monitoring methods, and consequently the application of various analytical methods in combination could be a solution to overcome the limitations of oil bioremediation monitoring.

Enhancing the Intrinsic Bioremediation of PAH-Contaminated Anoxic Estuarine Sediments with Biostimulating Agents

  • Bach Quang-Dung;Kim Sang-Jin;Choi Sung-Chan;Oh Young-Sook
    • Journal of Microbiology
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    • 제43권4호
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    • pp.319-324
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    • 2005
  • Estuarine sediments are frequently polluted with hydrocarbons from fuel spills and industrial wastes. Polycyclic aromatic hydrocarbons (PAHs) are components of these contaminants that tend to accumulate in the sediment due to their low aqueous solubility, low volatility, and high affinity for particulate matter. The toxic, recalcitrant, mutagenic, and carcinogenic nature of these compounds may require aggressive treatment to remediate polluted sites effectively. In petroleum-contaminated sediments near a petrochemical industry in Gwangyang Bay, Korea, in situ PAH concentrations ranged from 10 to 2,900 ${\mu}g/kg$ dry sediment. To enhance the biodegradation rate of PAHs under anaerobic conditions, sediment samples were amended with biostimulating agents alone or in combination: nitrogen and phosphorus in the form of slow-release fertilizer (SRF), lactate, yeast extract (YE), and Tween 80. When added to the sediment individually, all tested agents enhanced the degradation of PAHs, including naphthalene, acenaphthene, anthracene, fluorene, phenanthrene, fluoranthene, pyrene, chrysene, and benzo [a] pyrene. Moreover, the combination of SRF, Tween 80, and lactate increased the PAH degradation rate 1.2-8.2 times above that of untreated sediment (0.01-10 ${\mu}g$ PAH/ kg dry sediment/day). Our results indicated that in situ contaminant PAHs in anoxic sediment, including high molecular weight PAHs, were degraded biologically and that the addition of stimulators increased the biodegradation potential of the intrinsic microbial populations. Our results will contribute to the development of new strategies for in situ treatment of PAH-contaminated anoxic sediments.

토양별(土壤別) 암모늄의 흡착(吸着)및 탈착(脫着)에 관한 연구 -II. 암모늄의 탈착(脫着) (Studies on Ammonium Adsorption by and Desorption from Various Soils -II. Desorption of Ammonium)

  • 심상칠;박훈;김무성;김광래
    • 한국토양비료학회지
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    • 제11권2호
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    • pp.75-80
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    • 1979
  • 암모니움 탈착(脫着)을 16개(個) 토양에 대하여 $(NH_4)_2HPO_4$를 처리하여 0.01M $CaCl_2$로 7회(回) 연속침출(連續浸出)하여 검토하였다. 1. 탈착(脫着)은 2~4개의 속탈(速脫) 또는 완탈단계(緩脫段階)의 반복(反復)으로 진행(進行)된다. 2. 탈착단계(脫着段階)는 탈착량(脫着量)(y)과 침출회수(浸出回數)(x)간(間)에 log y=b-ax의 관계식(關係式)이 성립(成立)된다. 3. 탈착율(脫着率)(100${\times}$탈착량(脫着量)/흡착량(吸着量))은 15개(個) 토양평균이 65%였고 최고(最高)는 김천통(金泉統)의 87% 최소(最小)는 삼각통(三角統)의 32%였으며 이탄토(泥炭土)인 용호통(龍湖統)은 156%로 토양 ammonium 이 다량방출(多量放出)되었다. 4. 탈착률(脫着率)은 흡착량(吸着量)과 부(否)의 상관을 보이며 이 관계에서 토양은 세개의 계열(系列)로 분류(分類)되었다. 5. 탈착누적곡선(脫着累積曲線)은 최대치(最大値)에 접근(接近)하고 있으며 7회탈착(回脫着)으로 모든 토양이 최대치(最大値)에 접근(接近)하였다. 이때의 흡착량(吸着量)은 CEC의 502%(삼각통(三角統))에서 25%(김해통(金海統))의 범위(範圍)에 있었다. 6. 탈착량(脫着量) 또는 탈착률(脫着率)은 LAMA, (암모니움 Langmuir 최대흡착) CEC, 점토함량(粘土含量), 유효인산, 유기물함량등(有機物含量等)과 아무런 관계가 없었다. 7. 이상(以上)의 결과(結果)들은 ammonium의 흡착(吸着)과 탈착(脫着)에 있어 Fe, Al Si 등(等)의 관련성과 동반음(同伴陰) ion 흡탈착(吸脫着)이 관여함을 강하게 암시하는 것 같다.

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토양 Column을 이용한 벼 재배 시 바이오차 팰렛의 양분용출 특성 (Characteristics of Nutrient Release of Biochar Pellets through Soil Column during Rice Cultivation)

  • 신중두
    • 유기물자원화
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    • 제26권3호
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    • pp.63-70
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    • 2018
  • 본 연구는 토양 칼럼에 벼를 재배하면서 바이오차 팰렛처리에 따른 침출 수 및 토양 중의 작물 양분 이동 동태를 구명하기 위해 수행하였다. 칼럼 실험을 위한 시험구 처리는 돈분퇴비처리구를 대조구, 100% 돈분퇴비 팰렛구, 바이오차 팰렛 그리고 완효성비료 처리구로 구성되어있다. 연구 결과로서, 침출수 중의 $NH_4-N$의 농도는 이양후 35일을 정점으로 점차적으로 감소하였으며, $NO_3-N$의 농도는 이양 후 63-98일 사이에 가장 높게 관측 되었다. 침출수 중의 돈분 팰렛 및 바이오차 팰렛 처리구에서 $PO_4-P$의 농도가 가장 낮게 나타났다. 침출수 중의 K의 함량이 대조구에서 가장 높게 보인 반면, 완효성비료 처리구에서 가장 낮게 나타났다. 토양의 깊이별 $NH_4-N$의 농도는 40-60cm사이가 가장 높게 났으며, 돈분 팰렛 처리구를 제외하고 처리구 간에 유의차가 없었다. 또한 토양 깊이가 깊을수록 $NH_4-N$의 농도가 높게 관측 되었다. 반면에 $PO_4-P$의 농도는 완효성비료 처리구를 제외하고 토양깊이가 깊을수록 낮게 나타났다. 대조구에서 $PO_4-P$의 농도가 가장 높았다. 토양중의 가리의 이동 패턴은 대조구와 돈분 퇴비 팰렛구, 그리고 바이오차 팰렛구와 완효성처리구가 비슷한 것으로 나타났다. 그러므로 벼 재배 시 바이오차 팰렛을 시용함으로쎄 식물 양분 이동에 의한 손실을 줄일 수 있는 것으로 사료 되다.

벼 재배 시 바이오차 펠렛 시용 수준에 따른 농업 환경 영향 및 토양 탄소격리 평가 (Evaluation of Agro- Environmental Effect and Soil Carbon Sequestration to different Application Ratios of Supplemented Biochar Pellet in the Paddy during Rice Cultivation)

  • 신중두;박도균;김희선;이선일;홍승길
    • 한국환경농학회지
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    • 제39권2호
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    • pp.114-121
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    • 2020
  • BACKGROUND: Biochar-based fertilizers delay the nutrient release and feature a slow release effect for agricultural and environmental advantages. This experiment was conducted to evaluate agro-environmental effects of different application ratios of modified biochar pellets supplemented. METHODS AND RESULTS: The treatments consisted of the control, 40% N, 60% N and 60% N (0.07M MgO) of modified supplemented biochar pellets (MSBP), which were based on recommended ratio of nitrogen for rice cultivation. For the paddy water, the NH4-N and NO3-N concentrations in whole treatments rapidly increased at 84 days and 40 days after transplanting, respectively. The PO4-P concentrations in the MSBP were generally lower than those of the control. For the paddy soil, NH4-N concentrations in the MSBP were higher than those of the control at 5 days after transplanting, while NO3-N concentrations were not significantly different in the treatments through rice cultivation. P2O5 concentrations in the control were higher than those of the MSBP until 40 days after transplanting while K2O concentrations were not significantly different among the treatment. The highest carbon sequestration was 970 kg ha-1 in the 60% N (0.07M MgO), and the potential carbon storage in the 60% N (0.07M MgO) was higher at 222 kg ha-1 than the control during rice cultivation. It shown that the rice yield in the control was not significantly different from the 40% N and 60% N (0.07M MgO) application plots. CONCLUSION: Application of MSBP for rice cultivation was effective for carbon sequestration and agro-environmental effects even though nitrogen application ratio was reduced at 40% based on recommended application ratio of fertilizer.

베란다 재배에 적합한 채소작물 및 관비방법 선발 (Selection of Vegetables and Fertigation Methods for Veranda Gardening)

  • 문지혜;이상규;장윤아;이우문;이지원;김승유;박현준
    • 생물환경조절학회지
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    • 제16권4호
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    • pp.314-321
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    • 2007
  • 도시농업에 대한 관심과 수요가 증가하고 있으나 실내 채소재배에 대한 연구는 매우 미진한 상황이다. 따라서 본 연구는 아파트 베란다에서 이용하기에 좋은 관비방법 및 재배가 적합한 채소작목을 선발하고자 수행되었다. 가정용 채소 관비방법을 선발하기 위하여 담액수경, 심지관수(양액 또는 완효성비료), 두상관수 등 4가지 방법을 비교해 본 결과 심지관수법에서 상추, 겨자채, 적근대 모두 관행대비 생육과 수량이 높았다. 뿐만 아니라 심지관수 방법은 양수분관리에 필요한 노력과 시간을 대폭 줄일 수 있고 (주)애그로액티브와 공동 개발한 완효성비료를 이용하면 별도의 양분관리 없이 채소를 생산할 수 있다. 한편, 물이 바닥으로 흘러 나오지 않기 때문에 실내에서 사용도 가능하다. 한편, 가을의 베란다 환경을 조사한 결과 온 습도 환경은 채소 재배에 적절하였으나 광환경은 최고 광량이 남향 베란다에서는 온실의 48%, 남동향 베란다에서는 35%에 불과하여 생육에 가장 큰 제한요인으로 나타났다. 따라서 베란다의 약광 조건에서도 생육이 우수한 작물을 선발하고자 0%, 50%, 70%, 90% 차광조건에서 로메인상추, 청치마상추, 생채, 엔다이브, 청경채, 겨자채, 쑥갓, 적근대, 부추 등 9종의 엽채류를 재배하였다. 부추가 광이 부족한 환경에서도 가장 생육이 우수하였고 엔다이브도 약광에서 생육이 좋았으며 상추, 쑥갓, 청경채가 뒤를 이었다. 이 연구결과를 토대로 각 베란다의 방향이나 위치, 계절에 따라 달라지는 광환경에 적합한 채소작물 선발에 도움이 될 것으로 생각된다.

일본 노지채소 집약 재배지역 토양 침출수 중의 NO3-N 농도와 질소 안정동위원소 자연존재비(δ15N) (Concentrations and Natural 15N Abundances of NO3-N in Groundwater and Percolation Water from Intensive Vegetable Cultivation Area in Japan)

  • 박광래;최재성;백형진;김원일;정구복;윤순강;조진규
    • 한국토양비료학회지
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    • 제36권3호
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    • pp.119-126
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    • 2003
  • 질소 안정동위체 자연존재비(${\delta}^{15}N$)측정을 통해 노지 채소 재배토양에서 침출되어 지하로 이동하는 $NO_3-N$의 동태를 조사한 결과는 다음과 같다. 1) 3 m 관정수와 6 m 관정수의 $NO_3-N$ 농도 평균값은 각각 25.7 및 $2.8mg\;L^{-1}$이었으며, ${\delta}^{15}N$는 +3.6 및 +4.7‰이었다. 2) 암거배수의 $NO_3-N$ 농도와 ${\delta}^{15}N$의 평균은 각각 $35.5mg\;L^{-1}$와 +6.6‰로 토양 침투수는 즐인 선상지 전체로부터 모아지며 비교적 민감하게 화학비료, 가축분 퇴비 유래 질소농도의 변화를 반영하였다. 3) 단지 말단부의 용출수의 $NO_3-N$ 농도와 ${\delta}^{15}N$의 평균은 각각 $19.4mg\;L^{-1}$ 및 +7.9‰로서 채소 재배지대의 복류수 중에는 축산폐기물 유래가 침투되어 있는 것을 나타냈다. 4) 본 지구의 채소재배 토양의 ${\delta}^{15}N$은 2 N KCl 추출 가용태 질소로서 +6.1‰, 질산태 질소로서 +5.1‰이며, 주로 사용되는 화학비료의 전질소의 ${\delta}^{15}N$은 질산 억제비료가 -6.1‰, 그리고 완효성비료가 2.2‰이었다.

Growth, Flowering, and Nutrient Composition of Salvia Grown in Peat moss Media Containing Pellets Processed with Poultry Feather Fibers at Different Mixing Ratios

  • Yoo, Yong Kwon;Kim, In Kyung;Roh, Mark S.;Roh, Yong Seung;Huda, Masud
    • 원예과학기술지
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    • 제35권3호
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    • pp.289-299
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    • 2017
  • The objective of this study was to determine the effect of replacing perlite (PL) with pellets processed with poultry feather fiber as an inert material to prepare growing medium. The growth and flowering of Salvia splendens 'Vista Red' grown in individual growing medium $Biosangto^{(R)}$, peat moss (PM), PL, and two pellets (P45-1 and P45-2) were evaluated. Peat moss was mixed with PL, P45-1, or P45-2 at various ratios (1:0 to 1:3 or 3:1 by volume) to investigate the feasibility of replacing PL with pellets. Nutrient composition of the growing medium and leaf tissues was analyzed. The number of florets, inflorescence length, plant height, and fresh weight of plants grown in media containing P45-1 or P45-2 were reduced compared to those grown in individual growing medium PM or PL. As the mixing ratio of P45-1 or P45-2 to PM was higher, the growth of salvia, such as inflorescence length, plant height, number of leaves, and fresh weight was inhibited. Our results indicate that mixing three parts PM with one part of P45-1 (PM/P45-1/3:1) or P45-2 (PM/P45-2/3:1) accelerated flowering and increased the number of florets and leaves compared to other mixing ratios of PM and pellets media. The concentrations of phosphorus (P), calcium (Ca), boron (B), iron (Fe), and copper (Cu) in individual growing medium PL, P45-1, and P45-2 were significantly lower than those in PM. The concentration of N was the highest in leaves of plants grown in P45-1 or P45-2 amended media, and the concentrations of P, Ca, and zinc (Zn) in leaves were lower in individual growing medium P45-1 or P45-2 than in PM and PL. The pH of PM/P45-1/3:1 or PM/P45-2/3:1 media was maintained at optimal level (5.8-5.9) and the concentrations of macro- and micro-elements in the media and leaves were considered to be optimal levels. Therefore, mixing three parts PM with one part P45-1(PM:P45-1/3:1) or P45-2 (PM:P45-2/3:1) is recommended for improved growth and flowering in salvia. This suggests that P45-1 or P45-2 can replace PL as an inert material to prepare growing medium.