• 제목/요약/키워드: soil fertilizer

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음식물류 폐기물 퇴비화시설에서 생산된 퇴비품질 특성 (Characteristics of compost produced in food waste processing facility)

  • 이창훈;박성진;김명숙;윤순강;고병구;이덕배;김성철;오택근
    • 농업과학연구
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    • 제42권3호
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    • pp.177-181
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    • 2015
  • Food waste has been widely considered as a recycling resource to be applied to agricultural lands due to the effects of organic matter and nutrient for plant productivity. but the maturity and salt concentration in the compost produced from food waste processing facilities should be considered firstly, which was little information on compost quality produced from food waste treatment facility. In this study, we examined actual situation of food waste processing facility on the composting of food waste and evaluated the characteristics of composts produced from food waste processing facilities. The quality of composts was analyzed on the basis of the criteria of fertilizer processing manual. The 46% of food waste treatment facility registered composting produced actually the compost mixed with food waste or animal waste. The compost maturity and salt concentration as indicators of the quality of compost were not met 46.8% of composts collected from food waste processing facilities to the criteria of fertilizer processing manual. Also, 15.6%(moisture) were not satisfied with the criteria. In conclusion, the compost produced from food waste processing facilities is firstly required with better compost maturity and reduced salt concentration in order to use to agricultural lands as an amendment.

수도(水稻)에 대(対)한 규산질비료(珪酸質肥料)의 잔효(殘効) (Residual Effect of Silicate Fertilizer on Rice)

  • 유순호;박무언;박리달;노희명
    • 한국토양비료학회지
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    • 제15권2호
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    • pp.95-100
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    • 1982
  • 광재규산질비료(鉱滓珪酸質肥料)의 잔효(殘効)를 보기 위하여 서울대학교(大学校) 농과대학(農科大学) 시험답(試験畓) (강서(江西) 사양토(砂壤土) : Fluvaquentic Eutrochrepts)에서 4년간(年間) 포장시험(圃場試験)을 수행(遂行)하였다. 유효규산함량(有効珪酸含量)이 40ppm 미만인 토양(土壤)에 광재규산질비료(鉱滓珪酸質肥料)를 10a당 250kg 시용(施用)했을 때 17~18개월(個月) 후(後) 토양(土壤)의 유효규산함량(有効珪酸含量)은 130ppm으로 감소하였다. 토양(土壤)의 유효규산함량(有効珪酸含量)은 시용당년(施用当年)에 급격히 감소(減少)하고 그 후(後)의 변화(変化)는 완만하여 3~4년차(年次)에 90~100ppm으로 수렴(收斂)하였다. 규산시용(珪酸施用)에 의(依)한 증수효과(増收効果) 기대연한(期待年限)은 최장(最長) 3년(年)으로 생각되었다.

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Effects of Animal Waste Addition on Food Waste Compost under Co-composting

  • Lee, Chang Hoon;Kim, Seok-Cheol;Park, Seong-Jin;Kim, Myeong-Sook;Oh, Taek-Keun
    • 한국토양비료학회지
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    • 제50권6호
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    • pp.623-633
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    • 2017
  • Food waste has been recognized as a organic sources for composting and many research was conducted to efficiently utilize or treat. This study was to evaluate a feasibility for producing food waste compost under co-composting with mixture of food and animal waste. The mixing ratio of food and animal waste was 35% as main material, which additionally mixed 30% of sawdust for co-composting. Total days of composting experiment were 84 days and each sub samples were collected at every 7 days from starting of composting. Results showed that inner temperature in composting was rapidly increased to $70{\pm}4^{\circ}C$ within 3~5 days depending on mixing animal waste of cattle, pig, and chicken base compared to sole food waste base. Expecially, the CN ratio in the mixture of food and pig water was the highest (16.2) among compost. After finishing composting experiment, maturity was evaluated with solvita and germination test. Maturity index (MI) of the mixture of food and animal waste was ranged between 6~7, but was 3 in sole food waste. Calculated germination index (GI) was at the range of about 100 irrespectively of mixing of food and animal waste. However, NaCl content and heavy metal as Cr, Cu, Ni, Pb, and Zn contents was increased in the mixture of food and animal waste. which was the highest in compost mixed the food and pig waste. Both MI and GI showed that manufactured fertilizer was suitable for fertilizer criteria while sole food waste was not adequate for composting due to composting periods. Overall, mixing the food and animal waste can be utilized for improving compost maturity, but more research should be conducted to make high quality of food waste compost with animal waste in agricultural fields.

Effect of Suboptimal Nutritional Status on Mineral Uptake and Carbohydrate Metabolism in Tomato Plants

  • Sung, Jwakyung;Lee, Sangmin;Lee, Suyeon;Kim, Rogyoung;Lee, Yejin;Yun, Hongbae;Ha, Sangkeun;Song, Beomheon
    • 한국토양비료학회지
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    • 제46권5호
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    • pp.351-358
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    • 2013
  • A suitable supply of mineral elements into shoot via a root system from growth media makes plants favorable growth and yield. The shortage or surplus of minerals directly affects overall physiological reactions to plants and, especially, strongly influences carbohydrate metabolism as a primary response. We have studied mineral uptake and synthesis and translocation of soluble carbohydrates in N, P or K-deficient tomato plants, and examined the interaction between soluble carbohydrates and mineral elements. Four-weeks-old tomato plants were grown in a hydroponic growth container adjusted with suboptimal N ($0.5mmol\;L^{-1}\;Ca(NO_3)2{\cdot}4H_2O$ and $0.5mmol\;L^{-1}\;KNO_3$), P ($0.05mmol\;L^{-1}\;KH_2PO_4$), and K ($0.5mmol\;L^{-1}\;KNO_3$) for 30 days. The deficiency of specific mineral element led to a significant decrease in its concentration and affected the concentration of other elements with increasing treatment period. The appearance of the reduction, however, differed slightly between elements. The ratios of N uptake of each treatment to that in NPK sufficient tomato shoots were 4 (N deficient), 50 (P deficient), and 50% (K deficient). The P uptake ratios were 21 (N deficient), 19 (P deficient), and 28% (K deficient) and K uptake ratios were 11 (N deficient), 46 (P deficient), and 7% (K deficient). The deficiency of mineral elements also influenced on carbohydrate metabolism; soluble sugar and starch was substantially enhanced, especially in N or K deficiency. In conclusion, mineral deficiency leads to an adverse carbohydrate metabolism such as immoderate accumulation and restricted translocation as well as reduced mineral uptake and thus results in the reduced plant growth.

Temporal Changes in N Assimilation and Metabolite Composition of Nitrate-Affected Tomato Plants

  • Sung, Jwakyung;Lee, Suyeon;Lee, Yejin;Kim, Rogyoung;Lee, Juyoung;Lee, Jongsik;Ok, Yongsik
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.910-919
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    • 2012
  • The role of inorganic nitrogen assimilation in the production of amino acids, organic acids and soluble sugars is one of the most important biochemical processes in plants, and, in order to achieve normally, nitrate uptake and assimilation is essential. For this reason, the characterization of nitrate assimilation and metabolite composition from leaves, roots and xylem sap of tomato (Solanum lycopersicum) was investigated under different nitrate levels in media. Tomato plants were grown hydroponically in liquid culture under five different nitrate regimes: deficient (0.25 and 0.75 mM $NO_3{^-}$), normal (2.5 mM $NO_3{^-}$) and excessive (5.0 and 10.0 mM $NO_3{^-}$). All samples, leaves, roots and xylem sap, were collected after 7 and 14 days after treatment. The levels of amino acids, soluble sugars and organic acids were significantly decreased by N-deficiency whereas, interestingly, they remained higher in xylem sap as compared with N-normal and -surplus. The N-excessive condition did not exert any significant changes in metabolites composition, and thus their levels were similar with N-normal. The gene expression and enzyme activity of nitrate reductase (NR), nitrite reductase (NIR) and glutamine synthetase (GS) were greatly influenced by nitrate. The data presented here suggest that metabolites, as a signal messenger, existed in xylem sap seem to play a crucial role to acquire nitrate, and, in addition, an increase in ${\alpha}$-ketoglutarate pathway-derived amino acids under N-deficiency may help to better understand plant C/N metabolism.

Mineral- and Tissue-Specific Metabolic Changes in Tomato (Lycopersicon esculentum L.) Plants Grown under NPK-Starved Conditions

  • Sung, Jwakyung;Lee, Yejin;Lee, Seulbi;Lim, Jungeun;Lee, Deogbae
    • 한국토양비료학회지
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    • 제49권6호
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    • pp.689-698
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    • 2016
  • Specific metabolic network responses to mineral starvation are not well-defined. We examined a detailed broad-scale identification of metabolic responses of tomato leaf and root to N, P or K starvation. Tomato plants were grown hydroponically under optimal (5 mM N, 0.5 mM P, or 5 mM K) and starved (0.5 mM N, 0.05 mM P, or 0.5 mM K) conditions and metabolites were measured by LC-MS and GC-MS. Overall, the levels of metabolites (lipids, nucleotides, peptides and secondary metabolites) presented in this paper largely showed mineral- and tissue-specific responses. Most strikingly, G3P (glycerol-3-P), GPC (glycerol-P-choline) and choline phosphate responded differently to a type of mineral; an increase in N or K starvation and a decrease in P starvation. A dramatic increase in the levels of secondary metabolites, in particular, rutin and chlorogenate in both tomato tissues during N starvation were observed. Based on these data, it is necessary to clearly elucidate an unknown event taking place in a variety of abiotic impacts, and we are now studying to expand our knowledge on metabolic- and proteomic-responses using GS-MS and LC-MS.

시설재배 토양의 질산태질소 검정에 의한 배추의 질소시비량 결정 (Nitrogen Recommendation Based on Soil Nitrate Test for Chinese Cabbage Grown in Plastic Film House)

  • 곽한강;송요성;홍종운
    • 한국토양비료학회지
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    • 제30권1호
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    • pp.84-88
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    • 1997
  • 시설재배조건하에서 토양의 질산태질소함량과 시용질소에 대한 배추의 수량반응 및 시비효율 등을 검토한 결과를 요약하면 다음과 같다. 토양의 $NO_3{^-}-N$함량은 배추의 수량 및 질소흡수량과는 유의한 정상관, 시비효율과는 유의한 부의 상관이 있어서, 시험전 토양의 $NO_3{^-}-N$ 310mg/kg정도 있으면 질소무비재배가 가능하였다. 질소시비량 추정회귀식에서 시험전토양의 질산태질소함량에 따른 배추의 질소시비량 추천식은 y=-1.424x+441.356(x:시험전토양의 $NO_3{^-}-N$, mg/kg, y:질소시비량 kg/ha)이었다.

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분포형 토양침식지도를 이용한 한강상류지역 토양유실 위험성 평가 (Soil Erosion Risk Assessment in the Upper Han River Basis Using Spatial Soil Erosion Map)

  • 박찬원;손연규;장용선;홍석영;현병근;송관철;하상건;문용희
    • 한국토양비료학회지
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    • 제43권6호
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    • pp.828-836
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    • 2010
  • 본 연구에서는 1:25,000 정밀토양도 등 가용한 공간자료를 이용하여 작성된 토양유실도를 이용하여 한강 상류지역 10개 중권역 108 소유역에 대하여 토양유실량 평가하고 토지이용별 토양유실 위험지역을 분석하였다. 대상유역 총 토양유실량은 895만 Mg $yr^{-1}$으로 예측되었으며, 면적당 평균 토양유실량은 6.1 Mg $ha^{-1}yr^{-1}$ 이었다. 중소유역 단위로 살펴보면 남한강지역이 북한강 지역의 유실량 뿐만 아니라 면적당 유실량이 더 많았다. 이는 북한강 권역의 경우 화강암 및 화강편마암이 주요모재인 반면에 남한강 권역의 경우 토양모재가 퇴적암지대를 많이 포함있어 토양침식성 인자 (K factor)와 경사인자 (LS factor)가 상대적으로 높고, 남한강 지역의 경우 농경지 토양이 상대적으로 많이 분포하고 있기 때문으로 판단된다. 대상유역의 토지이용별 연평균 토양유실량을 분석한 결과 산림/초지 > 밭 ${\gg}$ 도심/대지 ${\gg}$ 논 > 과수의 순로분석 대상유역 중 10.7%를 차지하고 있는 농경지에서 유실되는 토양의 추정량은 41.3%이였으며, 이중 6.2% 면적을 차지하는 밭이 40.6%으로 44.2%의 산림/초지와 비슷한 수준이었다. 한강상류지역 토양유실 위험성 평가시 분포형 토양침식지도와 항공사진을 비교한 결과 토양유실에 대한 공간인 정보를 확실하게 보여주고 있으며, 토양침식위험성은 남한강권역의 남한강 상류 (1001), 평창강 (1002), 충주댐 (1003) 권역에서 각각 토양침식위험성이 "보통" 이상으로 높은 지역이 각각 8.7%, 7.9%, 7.8%로 평균인 5.9%보다 높았으며, 이에 대한 보전방안이 강구될 필요가 있고 판단된다.

벼 재배시 혼합유기질비료 시용이 질소이용율과 수량에 미치는 영향 (Effects of Mixed Organic Fertilizer Application with Rice Cultivation on Yield and Nitrogen Use Efficiency in Paddy Field)

  • 조광래;원태진;강창성;임재욱;박경열
    • 한국토양비료학회지
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    • 제42권3호
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    • pp.152-159
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    • 2009
  • 혼합유기질비료 시용 후 벼 재배시 무기태질소 함 량, 질소이용율, 수량 등을 조사하여 질소 화학비료 대체 가능성을 검토코자, 화학비료 3요소구, 혼합유기질비료 0, 100, 150% 시용구 등 5처리를 두어 2006년도에 시험을 수행한 결과는 다음과 같다. 혼합유기질비료 100% 시용구 토양 중 $NH_4-N$ 함량은 대조구에 비해 많았으며 표면수에서도 같은 경향이었다. 시험후 토양 중 Av. $P_2O_5$ 함량은 대조구에 비해 혼합유기질비료 100% 시용구에서 많았으나 Ex. K 함량은 적었다. 수도체 중 질소이용율은 혼합유기질비료 100% 시용구가 대조구에 비해 높아 질소 화학비료 대체 가능성이 있었다. 이앙 후 30일, 60일에서 경수는 혼합유기질비료 100% 시용구가 대조구 보다 많았다. 혼합유기질비료 중 질소 함량과 단백질 함량과는 정의 상관, 식미치와는 고도의 부의 상관, 완전립 비율과는 부의 상관이 있었다. 혼합유기질 비료 100% 시용구의 쌀 수량은 대조구 $4,892kg\;ha^{-1}$에 비해 4% 증가하였다. 벼 재배시 대조구의 쌀 수량과 대등한 혼합유기질비료의 시용량은 [질소 토양검정시비량 ${\div}$ 혼합유기질비료질소함량 $(g\;kg^{-1})/1,000{\times}0.93)/1,000$]으로 산출되었다.

토양 특성 및 토지이용에 따른 낙동강 상류지역 토양침식위험성 평가 (Soil Erosion Risk Assessment by Soil Characteristics and Landuse in the Upper Nakdong River Basin)

  • 박찬원;손연규;현병근;송관철;전현정;조현준;문용희;윤순강
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.890-896
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    • 2012
  • 본 연구에서는 농촌진흥청에서 구축한 우리나라의 분포형 토양침식지도를 이용하여 낙동강 상류지역인 35개 표준유역 (안동댐 유역 18, 임하댐유역 17)에 대하여 환경부 토지피복도와 중첩분석을 통하여 토지이용별 토양침식위험성을 평가하여 토양침식위험지를 구분하였으며, 이를 정량화 하였다. 추정된 대상유역 총 토양유실양은 2,013천 Mg $yr^{-1}$ 이었으며, 면적당 평균 토양유실량은 $5.6Mg\;ha^{-1}yr^{-1}$ 이었다. 중권역 단위로 살펴보면 토양유실량은 각각 안동댐 유역 979천 Mg $yr^{-1}$, 임하댐 유역 1,034천 Mg $yr^{-1}$ 이었고, 면적당 평균 토양유실량은 각각 안동댐 유역 $6.0Mg\;ha^{-1}yr^{-1}$, 임하댐 유역 (2002) $5.2Mg\;ha^{-1}yr^{-1}$ 이었다. 임하댐과 안동댐 유역내 농경지에서 발생되는 면적당 토양유실량을 비교해 보면 각각 안동댐 유역 $24.0Mg\;ha^{-1}yr^{-1}$, 임하댐 유역 $20.7Mg\;ha^{-1}yr^{-1}$으로 안동댐 유역의 값이 컷지만, 전체 농경지에서 발생되는 토양유실량은 각각 $479,242Mg\;yr^{-1}$, $612,285Mg\;yr^{-1}$ 으로 임하댐 유역이 더 많은 양의 토양침식이 농경지에서 발생할 것으로 추정되었고, 이는 임하댐 유역 전체에서 발생되는 추정 토양침식량의 임하댐 59%에 해당하는 값이었다. 토양의 모재별 특성으로 전체 35개 소유역을 구분 후 소 유역별 면적당 추정 토양유실량을 비교한 결과 "퇴적암 그룹" ($6.4MT\;ha^{-1}yr^{-1}$) > "혼합지역 그룹" (5.8) > "변성암 그룹" (5.5) > "화성암 그룹" (4.3) 순이었으며, 이는 토양유실에 영향을 미칠 수 있는 토양인자인 토성, 경사도 등을 잘 반영하고 있었다.