• 제목/요약/키워드: Fertilizer Efficiency

검색결과 446건 처리시간 0.026초

완효성 비료 분시방법에 따른 두물차의 수량 및 품질 (Effect of Split-Application of Slow-Release Fertilizer on Yield and Quality of 2nd Harvested Tea Leaves)

  • 박장현;국용인;최형국
    • 한국약용작물학회지
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    • 제11권3호
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    • pp.190-194
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    • 2003
  • 두물차의 수량은 관행시비 (4회 분시)에 비해 완효성 비료 9월, 3월 분시 2회 와 3월 1회 분시는 수량차가 없었으나 9월 1회 분시는 감수되었다. 관행시비에 비해 완효성비료 2회 분시가 총 질소, 총 아미노산은 많았고, tannin과 caffeine 함량은 적은 경향이었으며 엽록소, 비타민 C, 유리당 함량과 감칠맛 주성분인 theanine 함량은 차이가 없었다. 형상, 향, 맛 등 제다품질은 완효성 비료 2회 분시가 1회 분시나 관행 시비 (4회 분시)에 비해 우수하였다. 그러나 완효성 비료처리는 토양비료성분 중 질소, 인산, 칼리의 효율성을 향상시켜 차잎 수량 및 품질을 증가시킨다고 생각된다.

Effect of Mixed Treatment of Nitrogen Fertilizer and Zeolite on Soil Chemical Properties and Growth of Hot Pepper

  • Park, Jun-Hong;Park, Sang-Jo;Kwon, Oh-Heun;Choi, Seong-Yong;Park, So-Deuk;Kim, Jang-Eok
    • 한국토양비료학회지
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    • 제48권1호
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    • pp.44-49
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    • 2015
  • Urea has been the most useful N-source, due to lower cost per unit of N. But nitrogen use efficiency of urea may be reduced because of losses from agricultural system by volatilization of ammonia to atmosphere. This study was conducted to evaluate the nitrogen efficiency and growth of hot pepper (Capsicum annuum L.) by mixed treatment with nitrogen and zeolite. They were treated with N $161kg\;ha^{-1}$, N $230kg\;ha^{-1}$, nitrogenzeolite mixture (NZM) $161kg\;ha^{-1}$, NZM $230kg\;ha^{-1}$ and N $0kg\;ha^{-1}$, respectively. In the soil chemical properties after experiment, soil pH decreased but available $P_2O_5$, EC and total nitrogen increased in nitrogen-zeolite mixture treatment. $NO_3-N$ content in the soil showed the highest level in NZM $230kg\;ha^{-1}$. NZM $161kg\;ha^{-1}$ treatment increased growth and yield of hot pepper compared to urea alone. Nitrogen utilization efficiency of hot pepper plant was 47.15% at the treatment of NZM $161kg\;ha^{-1}$, while 36.74% at N $230kg\;ha^{-1}$. These results showed that application of mixture of nitrogen and zeolite had positive influence to improve the efficiency of nitrogen utilization and increase of red pepper yield.

Effect of Legume Cover Crops and Nitrogen Fertilization Rates on Yield and Nitrogen Use Efficiency of Waxy Corn (Zea mays L.) in No-Tillage System

  • Choi, Jong-Seo;Kim, Min-Tae;Ryu, Jin-Hee;Kim, Kwang Seop;Kim, Sook-Jin;Park, Ki-Do
    • 한국토양비료학회지
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    • 제49권5호
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    • pp.531-540
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    • 2016
  • The adoption of legume cover crops in no-tillage system can contribute to improve soil fertility by providing several benefits, including reduction in soil erosion, suppression of weed growth and N supply to subsequent crops. We conducted a field study to investigate the effect of cover crops and nitrogen fertilization rates on yield and nitrogen use efficiency of waxy corn (Zea mays L.) in no-tillage upland field. Two legume cover crops, hairy vetch (Vicia villosa Roth) and crimson clover (Trifolium incarnuturn L.) were mechanically terminated with roller in early June. For each cover crop treatment, nitrogen (N) fertilizer was applied at three different rates (145, 72.5 and $0kg\;N\;ha^{-1}$). The growth and yield characteristics of corn were significantly affected by the N fertilization rates in crimson clover plots, which suggest N mineralization from the cover crop residue was not sufficient. In contrast, N fertilization rates had no significant effect on growth and yield of corn in hairy vetch plots, indicating that the amount of N released from the cover crop is large enough to meet most of the N requirement of corn. However, the application of N fertilizer in hairy vetch cover plots resulted in slight increase of crop yield, though not statically significant, and high levels of N concentration in corn plant tissue possibly due to luxury consumption of N. Organic residues on the soil surface in hairy vetch cover plots had substantial amounts of N after harvest, ranging from 100 to $116kg\;N\;ha^{-1}$, which is presumably retained during winter season and released by microbial mineralization in subsequent year. The highest nitrogen yield efficiency was achieved in the plot with hairy vetch cover and no N fertilizer application, followed by the plot with hairy vetch cover and $72.5kg\;N\;ha^{-1}$ fertilization rate. In conclusion, hairy vetch showed better performance in corn productivity as compared with crimson clover. In addition, it was concluded that the application of N fertilizer between 0 and $72.5kg\;N\;ha^{-1}$ in combination with hairy vetch cover crop might be most efficient for corn yield under no-tillage system with climatic and soil characteristics similar to those of the experimental site.

시설재배지에서 유기복합비료 시용량에 따른 상추 생육 및 토양화학성에 미치는 영향 (Effects of Application Amount of Organic Compound Fertilizer on Lettuce Growth and Soil Chemical properties under Plastic film house)

  • 김명숙;박성진;김성헌;황현영;심재홍;이윤혜
    • 유기물자원화
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    • 제28권3호
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    • pp.37-44
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    • 2020
  • 국가정책사업인 유기질비료 지원사업은 1999년부터 시작되었고, 유기질비료의 과다 시용은 시설재배지의 양분집적을 초래했다. 시설상추 재배시 안정적인수량 확보와 과다 시비로 인한 환경오염을 예방하기 위해 유기복합비료의 적정 추천량 기준을 설정하고자 시험하였다. 유기복합비료의 무기질 질소 기비량의 대체비율은 토양검정 질소 기비량(8.6 kg 10a-1)을 기준으로 100%에서 작물수량이 높았다. 토양의 질산태질소와 전기전도도도 무기질비료 처리구보다 낮은 함량을 나타냈다. 또한, 기비량 100%를 유기복합비료로 대체한 경우에 질소이용율은 23%로 무기질비료 처리구와 유사하게 나타났다. 이러한 결과로부터 상추의 수량을 증가시키고 토양 중에 투입된 비료성분의 토양 잔류 정도를 최소화하는 관점에서는 유기복합비료를 무기질 질소 기비량의 100%를 대체하는 것이 타당하다고 판단된다.

벼에 대한 인산 및 칼리질비료의 적정시비량 결정 (Determination of Optimal Application Rates of Phosphorus and Potassium Fertilizers for Paddy Rice)

  • 송요성;전희중;박우균;정병간;정규석;이기상;윤영상
    • 한국토양비료학회지
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    • 제41권2호
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    • pp.75-82
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    • 2008
  • 벼에 대하여 인산과 칼리비료의 비효를 검토하기 위하여 2005~2006년에 토양의 유효인산 및 치환성칼륨 함량이 다른 2개 토양, 품종은 추청벼를 공시하여 포장시험을 수행하였다. 수량으로 본 인산 및 칼리의 비효는 2년 평균수량으로 볼 때 표준시비구($45-57kg\;ha^{-1}$) 수량 100에 대하여 기본시비구($30-30kg\;ha^{-1}$) 97~98, 무비구 93~97이였으며, 인산 무비구는 표준시비구에 비하여 토양양분 함량이 낮은 토양에서 7%의 유의성 있는 수량감소가 있었다. 수량구성요소도 수량과 같은 경향으로서 인산과 칼리의 표준시비구와 기본시비구와의 차이는 적었다. 수확기 인산과 칼리의 흡수량 역시 표준시비구를 기준하여 볼 때 무비구는 근소한 감소를 보였으나 표준시비구와 기본량 시비구와는 차이가 없는 대등한 결과를 보였다. 인산 및 칼리이용률은 유효인산과 치환성칼륨 함량이 다른 답유형에 관계없이 인산 칼리의 기본시비구가 표준시비구보다 높았으며, 토양의 유효인산과 치환성칼륨 함량이 높은 보통답은 토양의 인산과 칼륨함량이 낮은 미숙답보다 높았다. 수확기 토양의 유효인산 및 치환성칼륨 함량은 재배전 이들 성분의 함량의 다소에 관계없이 무시용구에 비하여 표준시비구와 기본시비구는 다소 증가하는 경향이지만 표준시비구와 기본시비구와의 차이는 적었다. 현미품위 및 식미관련 형질로 볼 때 현행 인산 및 칼리의 표준시비구에 비하여 기본시비구는 근소한 차이나마 완전립은 증가하였으나 분상질립, 피해립, 균열립, 아미로스 함량 및 단백질 함량은 감소하였다. 이상에서 인산과 칼리질비료 시용이 수량, 수량구성요소, 흡수량, 이용률, 토양화학성및 미질 등을 종합해 볼 때 사질답, 습답, 중산간답, 냉조풍지, 산간고랭지, 냉수용출답및 객토답을 제외한 보통답 조건에서는 현행 인산과 칼리 표준시비량 4.5, $5.7kg\;ha^{-1}$를 기본량인 3.0, $3.0kg\;ha^{-1}$로의 조정이 가능하였다.

The Removal of Petroleum Hydrocarbon from Fine Soil in Soil Washing Water using Advanced Oxidation Processes

  • Jang, Gwan-Soon
    • 한국토양비료학회지
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    • 제47권5호
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    • pp.362-367
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    • 2014
  • This study was performed to test the applicability of the ozone/hydroxy radical reaction system, which applied advanced oxidation processes, to remove total petroleum hydrocarbon (TPH) from the fine soil in washing water of the soil washing process. Removal efficiency was tested on 40 L of washing water in a pilot reaction tank. Fine soil contaminated with $800mg\;kg^{-1}$ TPH was prepared at 5% and 10% suspended solids. Testing conditions included ozone/hydroxy radical flow rates of 40, 80, and $120L\;min^{-1}$, and processing time of 2 to 12 hours. The removal efficiency of petroleum hydrocarbon from water waster by ozone/hydroxy radical was increased with higher flow rates and lower percentages of suspended solids. Optimal efficiency was achieved at $80L\;min^{-1}$ flow rate for 4 hours for the 5% suspended solids, and $120L\;min^{-1}$ for 6 hours for the 10% suspended solids. These results verified the efficiency of hydroxy radical in removing TPH and the applicability of the ozone/hydroxy radical reaction system in the field.

A Study on Inactivation of Pathogenic Bacteria for Nutrient Solution Recycling Using Advanced Oxidation Processes

  • Jang, Gwan-Soon;Nam, Yi
    • 한국토양비료학회지
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    • 제50권5호
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    • pp.489-496
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    • 2017
  • This study was conducted to test the applicability of hydroxy radical reactor system, which applied advanced oxidation processes, to sterilize pathogenic bacteria for nutrient solution recycling in closed hydroponics. Removal efficiency was tested on 25 L of nutrient solution maxed with 10 mL culture solution of bacteria, E. coli, and R. solanacearum in a pilot tank. The testing conditions included various levels of hydroxy radicals resulting from air flow rates of 40, 80, and $120L\;min^{-1}$, and 12 hours processing time. The removal of bacteria, E. coli, and R. solanacearum by hydroxy radical in nutrient solution was significantly increased with an increase in the flow rate of the air from $40L\;min^{-1}$ to $120L\;min^{-1}$. The optimum removal efficiency was achieved at an air flow rate of $120L\;min^{-1}$ for 2 hours treatment. There were no significant differences in removal efficiency among bacteria, E. coli, and R. solanacearum for tested level and time of hydroxy radical. These results verified the efficiency of hydroxy radical in removing the pathogenic bacteria and the applicability of hydroxy radical reactor system in the field.

수도(水稻) 적정시비량(適正施肥量) 결정(決定)에 대한 대체모형(代替模型) (An Alternative Model for Determining the Optimal Fertilizer Level)

  • 장석환
    • 한국토양비료학회지
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    • 제13권1호
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    • pp.21-32
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    • 1980
  • Linear models, with and without site variables, have been investigated in order to develop an alternative methodology for determining optimal fertilizer levels. The resultant models are : (1) Model I is an ordinary quadratic response function formed by combining the simple response function estimated at each site in block diagonal form, and has parameters [${\gamma}^{(1)}_{m{\ell}}$], for m=1, 2, ${\cdots}$, n sites and degrees of polynomial, ${\ell}$=0, 1, 2. (2) Mode II is a multiple regression model with a set of site variables (including an intercept) repeated for each fertilizer level and the linear and quadratic terms of the fertilizer variables arranged in block diagonal form as in Model I. The parameters are equal to [${\beta}_h\;{\gamma}^{(2)}_{m{\ell}}$] for h=0, 1, 2, ${\cdots}$, k site variable, m=1, 2, ${\cdots}$ and ${\ell}$=1, 2. (3) Model III is a classical response surface model, I. e., a common quadratic polynomial model for the fertilizer variables augmented with site variables and interactions between site variables and the linear fertilizer terms. The parameters are equal to [${\beta}_h\;{\gamma}_{\ell}\;{\theta}_h$], for h=0, 1, ${\cdots}$, k, ${\ell}$=1, 2, and h'=1, 2, ${\cdots}$, k. (4) Model IV has the same basic structure as Mode I, but estimation procedure involves two stages. In stage 1, yields for each fertilizer level are regressed on the site variables and the resulting predicted yields for each site are then regressed on the fertilizer variables in stage 2. Each model has been evaluated under the assumption that Model III is the postulated true response function. Under this assumption, Models I, II and IV give biased estimators of the linear fertilizer response parameter which depend on the interaction between site variables and applied fertilizer variables. When the interaction is significant, Model III is the most efficient for calculation of optimal fertilizer level. It has been found that Model IV is always more efficient than Models I and II, with efficiency depending on the magnitude of ${\lambda}m$, the mth diagonal element of X (X' X)' X' where X is the site variable matrix. When the site variable by linear fertilizer interaction parameters are zero or when the estimated interactions are not important, it is demonstrated that Model IV can be a reasonable alternative model for calculation of optimal fertilizer level. The efficiencies of the models are compared us ing data from 256 fertilizer trials on rice conducted in Korea. Although Model III is usually preferred, the empirical results from the data analysis support the feasibility of using Model IV in practice when the estimated interaction term between measured soil organic matter and applied nitrogen is not important.

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신개발 심층시비장치를 이용한 심층시비가 벼와 콩 수량에 미치는 영향 (Effect of Fertilizer Deep Placement on Rice and Soybean Yield Using Newly Developed Device for Deep Fertilization)

  • 홍성창;김민욱;김진호
    • 한국환경농학회지
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    • 제42권1호
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    • pp.44-51
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    • 2023
  • Nitrogen fertilizer is an essential macronutrient that requires repeated input for crop cultivation. Excessive use of nitrogen fertilizers can adversely affect the environment by discharging NH3, NO, and N2O into the air and leaching into surrounding water systems through rainfall runoff. Therefore, it is necessary to develop a technology that reduces the amount of nitrogen fertilizer used without compromising crop yields. Fertilizer deep placement could be a technology employed to increase the efficiency of nitrogen fertilizer use. In this study, a deep fertilization device that can be coupled to a tractor and used to inject fertilizer into the soil was developed. The deep fertilization device consisted of a tractor attachment part, fertilizer amount control and supply part, and an underground fertilizer input part. The fertilization depth was designed to be adjustable from the soil surface down to a depth of 40 cm in the soil. This device injected fertilizer at a speed of 2,000 m2/hr to a depth of 25 to 30 cm through an underground fertilizer injection pipe while being attached to and towed by a 62-horsepower agricultural tractor. Furthermore, it had no difficulty in employing various fertilizers currently utilized in agricultural fields, and it operated well. It could also perform fertilization and plowing work, thereby further simplifying agricultural labor. In this study, a newly developed device was used to investigate the effects of deep fertilizer placement (FDP) compared to those with urea surface broadcasting, in terms of rice and soybean grain yields. FDP increased the number of rice grains, resulting in an average improvement of 9% in rice yields across three regions. It also increased the number of soybean pods, resulting in an average increase of 23% in soybean yields across the three regions. The results of this study suggest that the newly developed deep fertilization device can efficiently and rapidly inject fertilizer into the soil at depths of 25 to 30 cm. This fertilizer deep placement strategy will be an effective fertilizer application method used to increase rice and soybean yields, in addition to reducing nitrogen fertilizer use, under conventional rice and soybean cultivation conditions.

Production of liquid fertilizer from broken eggs and evaluation of its effect on lettuce growth

  • Kim, Bo-Ra;Lee, Jae-Han;Kim, Su-Hun;Choi, Ha-Yeon;Choi, Bong-Su;Oh, Taek-Keun;Lee, Chang-Hoon
    • 농업과학연구
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    • 제47권1호
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    • pp.11-18
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    • 2020
  • Eggs are likely to be used in agriculture because they can provide enough nutrients for crop growth. Statistics show that a large number of eggs are lost due to breakage before reaching the final consumer. The purpose of this study was to make a natural liquid fertilizer as a substitute for chemical fertilizers using broken eggs as a resource and to evaluate the efficiency of the formulated fertilizer. To make the liquid fertilizer, the broken eggs and distilled water were mixed at ratios of 6 : 4 and 4 : 6. Then, effective micro-organisms (EM) and sugar were added, and the mixture was fermented. The temperature and electrical conductivity (EC) increased gradually with the fermentation while the pH decreased. When evaluated following the seed germination index method of the compost, it was found that the fertilizer matured 10 days after the beginning of the experiment. The growth experiment was conducted with lettuce in which the fermented liquid fertilizer was compared with a commercial liquid fertilizer. The 6 : 4 treatment produced plants with the densest fresh shoot and roots weighing 41.6 and 4.6 g, respectively. The number of leaves (12.3 per plant) was also the highest for the 6 : 4 treatment. Soil analysis showed that the soil pH was improved, and the soil organic matter was increased in the fermented liquid fertilizer treatment.