• Title/Summary/Keyword: Organic fertilizers

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Influences of Major Nutrients in Surface Water, Soil and Growth Responses to Application of Supplemental Activated Biochar Pellet Fertilizers in Rice (Oryza sativa L.) Cultivation (벼 재배 시 활성 바이오차 팰렛 비료 시용에 따른 논 표면수와 토양의 주요 양분 함량 및 벼 생육에 미치는 영향)

  • Lee, SangBeom;Park, DoGyun;Jeong, ChangYoon;Nam, JooHee;Kim, MinJeong;Nam, HongShik;Shim, ChangKi;Hong, SeungGil;Shin, JoungDu
    • Journal of the Korea Organic Resources Recycling Association
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    • v.30 no.2
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    • pp.17-28
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    • 2022
  • The application of supplemental activated biochar pellet fertilizers (ABPFs) was evaluated by investigating key factors such as changes of surface paddy water and soil chemical properties and rice growth responses during the growing season. The treatments consisted of control, activated rice hull biochar pellet (ARHBP-40%), and activated palm biochar pellet (APBP-40%) applications. It was shown that the lowest NH4+-N and PO4--P concentrations were observed in surface paddy water to the ARHBP-40%, while the NH4+-N concentration in the control was abruptly decreased until 30 days after transplant in the soil. However, the lowest NH4+-N concentration in the blended biochar application was 9.18 mg L-1 at 1 day of transplant, but its ABPFs application was observed to be less than 1 mg L-1 at 56 days after transplant. The lowest PO4--P concentration in paddy water treated ARHBP-40% ranged from 0.06 mg L-1 to 0.08 mg L-1 until 30 days after transplant among the treatments. For the paddy soil, the NH4+-N concentration in the control was abruptly decreased from 177.7 mg kg-1 to 49.4 mg kg-1, while NO3--N concentration was highest, 13.2 mg kg-1 in 14 days after transplant. The P2O5 concentrations in the soils increased from rice transplants until the harvesting period regardless of the treatments. The highest K2O concentration was 252.8 mg kg-1 in the APBP-40% at 84 days after transplant. For the rice growth responses, plant height in the control was relatively high compared to others, but grain yield was not significantly different between the control and ARHBP-40%. The application of ARHBP-40% can minimize nitrogen and phosphorous application rates into the agro-ecosystem.

Effect of Temperature Condition on Nitrogen Mineralization of Organic Matter and Soil Microbial Community Structure in non-Volcanic Ash Soil (온도가 유기물의 질소무기화와 미생물 군집구조에 미치는 영향)

  • Joa, Jae-Ho;Moon, Kyung-Hwan;Kim, Seong-Cheol;Moon, Doo-Gyung;Koh, Sang-Wook
    • Korean Journal of Soil Science and Fertilizer
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    • v.45 no.3
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    • pp.377-384
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    • 2012
  • This study was carried out to evaluate effect of temperature condition on nitrogen mineralization of organic matter, distribution of microbial group by PLFA profiles, and soil microbial community in non-volcanic ash soil. Dried soil 30 g mixed well each 2 g of pellet (OFPE) organic fertilizers, pig manure compost (PMC), and food waste compost (FWC). And then had incubated at $10^{\circ}C$, $20^{\circ}C$, and $30^{\circ}C$, respectively. Nitrogen mineralization rate increased with increasing temperature and that was in the order of FWC>OFPE>PMC. Distribution ratio of microbial group by PLFA profiles showed that was different significantly according to incubation temperature and the type of organic matter. As incubating time passed, density of microbial group decreased gradually. The Gram-bacteria PLFA/Gram+ bacteria PLFA, Fungi PLFA/Bacteria PLFA, and Unsaturated PLFA/saturated PLFA ratios were decreased according to the increasing temperature gradually. Principal component analysis using PLFA profiles showed that microbial community structures were composed differently by temperature factor at both 75 days ($10^{\circ}C$) and 270 days ($30^{\circ}C$). In conclusion, Soil microbial community structure showed relative sensitivity and seasonal changes as affected by temperature and organic matter type.

Comparison of Physico-Chemical Properties of Organic Liquid Fertilizer Made from Seaweed by Adding Microorganism and Molasses (해초류를 이용한 유기 액비 제조 시 발효 미생물원 및 당밀 첨가에 따른 액비의 특성 비교)

  • An, Nan-Hee;Cho, Jung-Rai;Shin, Jae-Hun;Ok, Jung-Hun;Kim, Seok-Cheol
    • Journal of the Korea Organic Resources Recycling Association
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    • v.23 no.4
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    • pp.32-39
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    • 2015
  • Objective of this study was to investigate characteristics of inorganic components contained in liquid fertilizer produced using seaweed by adding microorganisms and molasses. Addition of dry yeast to liquid fertilizer resulted in little change in pH and considerable increase in EC with high EC value compared to other liquid fertilizers which have microorganisms additives. Also, it was appeared that the dry yeast-added treatment had higher $NH_4-N$ concentration than other treatments. In the other hand, addition of molasses resulted in low pH compared to the control which has no additives, and EC was not different depending on the amount of molasses. $NH_4-N$ concentration in the 2% molasses added treatment was lowest and it showed a significant difference in the no and 1% molasses added treatments. In conclusion, it was shown that addition of dry yeast to liquid fertilizer increased ammonium nitrogen concentration by accelerating nitrogen mineralization, while molasses has an effect of inhibiting nitrogen mineralization. With application of organic liquid fertilizer containing seaweed increased the fresh weight of chinese cabbage.

Effects of Compost and Rice Straw Application on Growth of Soybean Plant in Newly Reclaimed Upland Soil (신개간지(新開墾地) 토양(土壤)에서 퇴비(堆肥)와 볏짚시용(施用)이 대두생육(大豆生育)에 미치는 영향(影響))

  • Lee, Myong-Gu;Hwang, Kwang-Nam
    • Korean Journal of Soil Science and Fertilizer
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    • v.15 no.3
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    • pp.199-206
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    • 1982
  • A field experiment was conducted to compare the effects of compost and rice straw application on the growth of soybean, chemical properties and soil microorganism in newly reclaimed silty clay loamy upland soil. Application rates of the arganic materials were 750 Kg, 1,500 Kg and 3,000 Kg/10a in compost, and 340 Kg, 680 Kg and 1,360 Kg/10a in rice straw. The differences of N.P.K. application rates caused by the two different organic materials were balanced by chemical fertilizers of N.P.K. The results can be summarized as follows; 1. The yield of soybean was increased upon compost application, but no significant difference on yield was observed except luxuriant plant growth upon rice straw application. 2. There was highly possitive correlation between concentration of phosphorous, potassium in soybean plant at 71 days after planting and dry weight of grain vs. stem plus bean chaff of harvest plant in compost applied plots, but no correlation was found in rice straw applied plots. 3. In greneral, the soil water contents in organic material applied plots, expecially in plots of rice straw, were higher than in no organic material plots. However, at wilting point, the soil water content in organic material applied plot was lower compare to no organic material plot. 4. The weight of nodules per soybean plant was heavier notwithstanding the fewer number of soil bacteria and fungi in compost application plots than rice straw application plots.

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Biomass, Nitrogen, and Phosphorus Productivities of Green Manure by Barley and Hairy Vetch Mixtures (보리와 헤어리베치 혼파재배에 따른 녹비작물 수량과 질소와 인산의 생산성)

  • Lee, Cho-Rong;Kim, Pil-Joo;Oh, Yura;Park, Choong-Bae;Park, Kwang-Lai;Nam, Hong-Sik;Park, Gi-Chun
    • Korean Journal of Organic Agriculture
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    • v.26 no.4
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    • pp.719-729
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    • 2018
  • Green manure crops can be efficient replacements of high nutrient materials such as livestock compost, organic fertilizers, etc. in organic farming. Grass-legume mixtures or mixed cropping of legumes with non-legumes can aid in abating the shortcomings of each plant type under monoculture (i.e. legumes have low biomass yields while grasses are poor at fixing nitrogen). This study was conducted to investigate the effects of barley (B) and hairy vetch (H) mixtures on green manure yield in nutrient accumulated organic upland soils of Korea. In one cropping season, single crops of barley and hairy vetch (Barley: 160 kg/ha, Hairy vetch: 90 kg/ha) as well as mixtures of both crops at different seeding rates (B66:H33, B33: H66) were grown and the obtained results are as shown below. The biomass yield and nutrient productivities were higher in barley-hairy vetch mixture. The biomass yield and total phosphorus content were higher for the mixed crops by 78~132% and 200% respectively than those of the hairy vetch monoculture. Total nitrogen content of the mixed crops was also higher than those of the barley monoculture by 43~44%. The biomass yield (5.60 Mg/ha) and nutrient contents (87.7 kg N/ha, 23 kg $P_2O_5/ha$) were highest in the case of B66:H33 seeding rate. Accordingly, this study concludes that the barley-hairy vetch mixtures cropped at B66:H33 seeding rate is efficient in increasing green manure productivity due to complementary effects observed and the highest biomass yield and nutrient contents.

Use of Industrial Wastes as Sources of Organic Fertilizer II. Effect of Activated Sludge from Alcohol Fermentation on Rice (산업폐기물(産業廢棄物)의 비료화(肥料化)에 관(關)한 연구(硏究) II. 수도(水稻)에 대(對)한 주정오니(酒精汚泥) 비효시험(肥效試驗))

  • Shin, Jae-Sung;Lim, Dong-Kyu;Seong, Ki-Seog
    • Korean Journal of Soil Science and Fertilizer
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    • v.16 no.3
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    • pp.256-259
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    • 1983
  • An activated sludge from alcohol fermentation was applied on rice field to determine the effect of the sludge on rice growth and its optimum application rate. The mineralization of sludge was rather rapid compared to compost and about 60% of the total nitrogen in sludge applied was decomposed. Plant growth and nitrogen content in plant increased as sludge application rate increased but the yield markedly decreased when more than 1,600kg/10a of sludge was applied. The optimum application rate was found to be 800kg/10a. Results from this experiment confirm that the sludge from alcohol fermentation is potentially useful resources for organic fertilizers and soil amendments.

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Mechanisms of Phosphate Solubilization by PSB (Phosphate-solubilizing Bacteria) in Soil (인산가용화 미생물에 의한 토양 내 인산이온 가용화 기작)

  • Lee, Kang-Kook;Mok, In-Kyu;Yoon, Min-Ho;Kim, Hye-Jin;Chung, Doug-Young
    • Korean Journal of Soil Science and Fertilizer
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    • v.45 no.2
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    • pp.169-176
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    • 2012
  • Among the major nutrients, phosphorus is by far the least mobile and available to plants in most soil conditions. A large portion of soluble inorganic phosphate applied to soil in the form of phosphate fertilizers is immobilized rapidly and becomes unavailable to plants. To improve the plant growth and yield and to minimize P loss from soils, the ability of a few soil microorganisms converting insoluble forms into soluble forms for phosphorus is an important trait in several plant growth-promoting microorganisms belonging to the genera Bacillus and Pseudomonas and the fungi belonging to the genera Penicillium and Aspergillus in managing soil phosphorus. The principal mechanism of solubilization of mineral phosphate by phosphate solubilizing bacteria (PSB) is the release of low molecular weight organic acids such as formic, acetic, propionic, lactic, glycolic, fumaric, and succinic acids and acidic phosphatases like phytase synthesized by soil microorganisms in soil. Hydroxyl and carboxyl groups from the organic acids can chelate the cations bound to phosphate, thereby converting it into soluble forms.

Physiological Responses of Tomato Plants and Soil Microbial Activity in Salt Affected Greenhouse Soil

  • Sung, Jwakyung;Lee, Suyeon;Nam, Hyunjung;Lee, Yejin;Lee, Jongsik;Almaroai, Yaser A.;Ok, Yongsik
    • Korean Journal of Soil Science and Fertilizer
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    • v.45 no.6
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    • pp.1065-1072
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    • 2012
  • Crop productivity decreases globally as a result of salinization. However, salinity impact on greenhouse-grown crops is much higher than on field-grown crops due to the overall concentrations of nutrients in greenhouse soils. Therefore, this study was performed to determine the short-term changes in growth, photosynthesis, and metabolites of tomato plants grown in greenhouse under heavily input of fertilizers evaluated by microbial activity and chemical properties of soils. The soils (< 3, 3.01~6, 6.01~10 and > 10.01 dS $m^{-1}$) from farmer's greenhouse fields having different fertilization practices were used. Results showed that the salt-accumulated soil affected adversely the growth of tomato plants. Tomato plants were seldom to complete their growth against > 10.0 dS $m^{-1}$ level of EC. The assimilation rate of $CO_2$ from the upper fully expanded leaves of tomato plants is reduced under increasing soil EC levels at 14 days, however; it was the highest in moderate or high EC-subjected (3.0 ~ 10.0 dS $m^{-1}$) at 28 days. In our experiment, soluble sugars and starch were sensitive markers for salt stress and thus might assume the status of crops against various salt conditions. Taken together, tomato plants found to have tolerance against moderate soil EC stress. Various EC levels (< 3.0 ~ 10.0 dS $m^{-1}$) led to a slight decrease in organic matter (OM) contents in soils at 28 days. Salinity stress led to higher microbial activity in soils, followed by a decomposition of OM in soils as indicated by the changes in soil chemical properties.

Assessment of water quality variations under non-rainy and rainy conditions by principal component analysis techniques in Lake Doam watershed, Korea

  • Bhattrai, Bal Dev;Kwak, Sungjin;Heo, Woomyung
    • Journal of Ecology and Environment
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    • v.38 no.2
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    • pp.145-156
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    • 2015
  • This study was based on water quality data of the Lake Doam watershed, monitored from 2010 to 2013 at eight different sites with multiple physiochemical parameters. The dataset was divided into two sub-datasets, namely, non-rainy and rainy. Principal component analysis (PCA) and factor analysis (FA) techniques were applied to evaluate seasonal correlations of water quality parameters and extract the most significant parameters influencing stream water quality. The first five principal components identified by PCA techniques explained greater than 80% of the total variance for both datasets. PCA and FA results indicated that total nitrogen, nitrate nitrogen, total phosphorus, and dissolved inorganic phosphorus were the most significant parameters under the non-rainy condition. This indicates that organic and inorganic pollutants loads in the streams can be related to discharges from point sources (domestic discharges) and non-point sources (agriculture, forest) of pollution. During the rainy period, turbidity, suspended solids, nitrate nitrogen, and dissolved inorganic phosphorus were identified as the most significant parameters. Physical parameters, suspended solids, and turbidity, are related to soil erosion and runoff from the basin. Organic and inorganic pollutants during the rainy period can be linked to decayed matters, manure, and inorganic fertilizers used in farming. Thus, the results of this study suggest that principal component analysis techniques are useful for analysis and interpretation of data and identification of pollution factors, which are valuable for understanding seasonal variations in water quality for effective management.

Effects of Methanolic Extracts from Some Native Plant Resources and Medicinal Plants on Early Seedling Growth of Rice(Oryza sativa L.) (국내 식물자원 및 약용식물 추출물이 벼 유묘 생장에 미치는 영향)

  • Ji, Gi-Su;Kim, Yong-Hun;Park, Jee-Sung;Kim, Kun-Woo
    • Korean Journal of Organic Agriculture
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    • v.22 no.2
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    • pp.321-334
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    • 2014
  • This study was conducted to identify plant growth promoting effects of native plant resources and medicinal plants. 65 kinds of plant extracts from 64 species were evaluated based on two rice(Oryza sativa) seedling bioassays for gibberellins and gibberellin-like substances. 12 extracts of Artemisia princeps stem and leaf, Cirsium japonicum var. maackii whole plant, Rhododendron mucronulatum branch and leaf, Phragmites communis stem, Coix lacryma-jobi var. mayuen whole plant, Lespedeza bicolor branch and leaf, Hydrangea serrata f. acuminata whole plant, Phlomis umbrosa whole plant, Glycyrrhiza uralensis Rhizome, G. uralensis stem and leaf, Angelica gigas root, and Cnidium officinale rhizome showed growth promotion of rice seedlings. Our results suggested that the parts of these plants could be the potential sources as farm-made liquid fertilizers for plant growth promotion.