• 제목/요약/키워드: soil organic carbon

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산업폐기물의 잔디용 유기질 비료화에 관한 연구 (Utilization of Industrial Waste to Organic Fertilizer for Lawn)

  • 주영규
    • 아시안잔디학회지
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    • 제5권2호
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    • pp.81-86
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    • 1991
  • The sludge, a waste of brewery industries, was examined for potentials as a natural organic fertilizer (or soil conditioner) for lawn. Trial products were measured for changes of physical, chemical properties in laboratory and seed germination and seedling growth in green house were also tested. The results are as the following:1The sludge from distilled liquor brewery contained high quantity of organic matter which had proper physical and chemical properties for lawn fertilizer (natural organic fertilizer, soil conditioner, top-dressing mix) . It showed good characteristics in handling and capabilities to be developed as commercial products for golf courses. 2.Sludge from beer company needs proper treatment to improve physical properties for futher degradiation. It is because aggregation of the sludge particles prevented microbial activities and changing to soluble form. 3.Green carbon can be used as carbon source for organic fertilizer production using brewery sludge, but it should not contain wood extract which inhibit seed germination and seedling growth.

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중금속(重金屬) 이온의 토양(土壤) 흡착에 관한 연구 -(제1보) CEC 및 유기탄소 함량이 낮은 광물토양에의 Cd, Cu, Ni, 및 Zn의 흡착과 이에 미치는 pH 및 인산의 효과- (Studies on Heavy Metal Ion Adsorption by Soils. -(Part 1) PH and phosphate effects on the adsorption of Cd, Cu, Ni and Zn by mineral soils with low CEC and low organic carbon content)

  • 김명종;해리.엘.마토
    • Applied Biological Chemistry
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    • 제20권3호
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    • pp.300-309
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    • 1977
  • The information related to the heavy metal pollution in the environment was obtained from studies on the effects of pH, phosphate and soil properties on the adsorption of metal ions (Cd, Cu, Ni, and Zn) by soils. Three soil materials; soil 1 with low CEC (8.2 me/100g) and low organic carbon content (0.34%); soil 2 with high CEC (36.4 me/100g) and low organic carbon content (1.8%) and soil 3 with high CEC (49.9 me/100g) and high organic carbon content (14.7%) were used. Soils were adjusted to several pH's and equilibrated with metal ion mixtures of 4 different concentrations, each having equal equivalents of each metal ion (0.63, 1.88, 3.12 and 4.38 micromoles per one gram soil with and without 10 micromoles of phosphate per one gram soil). Reported here are the results of the equilibrium study on soil I. The rest of the results on soil 2 and soil 3 will be repoted subsequeutly. Generally higher metal ion concentration solution resulted in higher final metal ion concentrations in the equilibrated solution and phosphate had minimal effect except it tended to enhance removal of cadmium and zinc from equilibrated solutions while it tended to decrease the removal of copper and nickel. In soil 1, percentages of added metal ions removed at pH 5.10 were; Cu 97, Ni 69, Cd 63, and Zn 55, while increasing pH to 6.40, they were increased to Cu 90.9, Zn 99, Ni 96, and Cd 92 per As initial metal ion concentration increased, final metal ion concentrations in the equilibrated solution showed a relationship with pH of the system as they fit to the equation $p[M^{++}]=a$ pH+b where $p[M^{++}]=-log$[metal ion concentration in Mol/liter]. The magnitude of pH and soil effects were reflected in slope (a) of the equation, and were different among metal ions and soils. Slopes (a) for metal ions in the aqueous system are all 2. In soil 1 they were; Zn 1.23, Cu 0.99, Ni 0.69 and Cd 0.59 at highest concentration. The adsorption of Cd, Ni, and Zn in soil 1 could be represented by the Iangmuir isotherm. However, construction of the Iangmuir isotherm required the correction for pH differences.

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토양-휴민의 물리화학적 특성 및 PAHs의 결합 특성 연구

  • 임동민;신현상
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2006년도 총회 및 춘계학술발표회
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    • pp.16-19
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    • 2006
  • Humin is the insoluble fraction of humic materials and play an important roles in the irreversible sorption of hydrophobic organic contaminants onto soil particles. However, there have been limited knowledge about the sorption and chemical properties of humin due to the difficulties in its separation from the inorganic matrix(mainly clays and oxides). In this study, do-ashed humin was isolated from a soil sample after removing free lipid and alkali-soluble humic fractions followed by dissolution of mineral matrix with 2% HF, and characterized by elemental analysis, C-13 NMR spectroscopic method. Sorption behavior of 1-naphthol with humin was also investigated from aqueous solution. C-13 NMR spectra indicate that humin molecules are mainly made up of aliphatic carbon including carbohydrate, methylene chain etc.. Sorption intensity for 1-naphthol was increased as organic carbon content of humin increased and log Koc values for the 1-naphthol sorption were determined to be ${\sim}3.12$

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유기질비료의 사용이 작물의 생육, 토양화학성 및 토양탄소 축적량에 미치는 영향 (Effect of organic fertilizer application on soil carbon accumulation)

  • 이유나;이동원;윤진주;심재홍;전상호;이윤혜;권순익;김성헌
    • 유기물자원화
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    • 제32권1호
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    • pp.5-11
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    • 2024
  • 유기질비료는 무기질비료와 달리 작물의 생산량뿐만 아니라 토양 비옥도 등을 향상시킨다고 알려져 있다. 그러나 유기질비료의 사용이 작물 생산성 및 토양특성뿐만 아니라 최근 이슈화 되고 있는 탄소 축적에 미치는 영향에 대해서는 연구가 미비한 실정이다. 이에 본 연구는 배추 재배시 유기질비료를 밑거름으로 사용하고 이때 작물의 생산성 및 토양 화학성의 변화와 작물 재배 후 토양의 탄소축적량에 대해 평가하고자 하였다. 본 시험은 무처리, NPK처리구(N-P2O5-K2O : 32-7.8-12.8 kg 10a-1), 유기질비료 처리구로 설정하였으며, 유기질비료 처리구는 질소 밑거름 시비량(11 kg 10a-1)을 기준으로 50, 100 및 150%로 설정하였다. 배추의 생산량은 무처리구를 제외하고는 유의적인 차이가 없었으며 밑거름 비율에 따라서도 차이가 없었다. 토양의 화학성은 토양 유기물함량, 전기전도도 및 질산성질소의 함량은 유기질비료 사용에 따라 증가하는 경향이었으나 그 외 항목은 차이가 나지 않는 것으로 확인되었다. 유기질비료 사용에 따른 토양 유기탄소축적은 무기질비료에 비해 유기질비료 처리구에서 증가하는 경향이었으며 밑거름 사용량에 따라서는 큰 차이를 보이지 않았다. 이를 통해 농업에서 유기질비료의 밑거름 사용은 작물의 생산성뿐만 아니라 토양 유기탄소의 축적에 효과적이었으며 탄소중립을 위한 하나의 방법으로 판단된다.

형광스펙트럼을 이용한 유역 하류 저수지의 유입 유기물 내 유기인 기여도 평가 (Estimating the Relative Contribution of Organic Phosphorus to Organic Matters with Various Sources Flowing into a Reservoir Via Fluorescence Spectroscopy)

  • 이미희;이승윤;허진
    • 한국물환경학회지
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    • 제40권2호
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    • pp.67-78
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    • 2024
  • The introduction of a significant amount of phosphorous into aquatic environments can lead to eutrophication, which can in turn result in algal blooms. For the effective management of watersheds and the prevention of water quality problems related to nonpoint organic matter (OM) sources, it is essential to pinpoint the predominant OM sources. Several potential OM sources were sampled from upper agricultural watersheds, such as fallen leaves, riparian reeds, riparian plants, paddy soil, field soil, riparian soil, cow manure, and swine manure. Stream samples were collected during two storm events, and the concentrations of dissolved organic carbon (DOC) and phosphorous (DOP) from these OM sources and stream samples were assessed. DOM indicators using fluorescence spectroscopy, including HIX, FI, BIX, and EEM-PARAFAC, were evaluated in terms of their relevance in discerning DOM sources during storm events. Representative DOM descriptors were chosen based on specific criteria, such as value ranges and pronounced differences between low and high-flow periods. Consequently, the spectral slope ratio (SR) paired with fluorescence index (FI) using end-member mixing analysis (EMMA) proved to be suitable for estimating the contribution of organic carbon (OC). The contribution of each organic phosphorous (OP) in stream samples was determined using the phosphorous-to-carbon (P/C) ratio in conjunction with the OC contribution. Notably, OP derived from swine manure in stream samples was found to make the most dominant contribution, ranging from 61.3% to 94.2% (average 78.1% ± 12.7%). The results of this research offer valuable insights into the selection of suitable indicators to recognize various OM sources and highlight the main sources of OP in forested-agricultural watersheds.

Altitudinal Variation in Species Composition and Soil Properties of Banj Oak and Chir Pine Dominated Forests

  • Kumar, Munesh;Singh, Harpal;Bhat, Jahangeer A.;Rajwar, G.S.
    • Journal of Forest and Environmental Science
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    • 제29권1호
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    • pp.29-37
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    • 2013
  • The study was carried out in two different forest types viz., Banj oak and Chir pine forests to assess the variation in forest species composition and soil properties along altitudinal gradients in the Garhwal Himalayas. The results of the study showed that between the forests soil moisture was higher in Banj oak forest because of closed canopy and dense forest compared to Chir pine forest. The sand particles were reported higher in Banj oak forest which might be due to the addition of organic matter favouring coarse structure of soil, helping in holding maximum water in soils. However in the Chir pine forest low amount of soil organic matter and presence of clayey soil, develops soil compactness which reduces the penetration of water resulting in high soil bulk density. The higher accumulation of litter and presence of moisture in Banj oak forest favours higher nutrient level of nitrogen, phosphorus and potassium compared to Chir pine forest. The soil organic carbon also reduced with increasing altitude at both gradients. While bulk density has reverse trend with soil organic carbon in both the forests at different peaks of same region. In Banj oak forest, the highest density and total basal cover was reported 1,100 tree $ha^{-1}$ and 58.86 $m^2\;ha^{-1}$ respectively. However, the highest values of density and total basal cover of Chir pine forest was 560 tree$ha^{-1}$ and 56.94 $m^2\;ha^{-1}$ respectively. The total density and basal cover of both the forests reduced with increasing altitude. The study concludes that Banj oak forest has better nutrient cycling ability, well developed foest floor and has a greater protective and productive features compared to the Chir pine forest which is without lower vegetation cover and having only pine litter accumulation which does not allow any other species to grow.

오염물질 배출원과 하천에서의 유기탄소 분포 특성 (The Fractionation Characteristics of Organic Matter in Pollution Sources and River)

  • 김호섭;김상용;박지형;한미덕
    • 한국물환경학회지
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    • 제33권5호
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    • pp.580-586
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    • 2017
  • The fractionation characteristics of organic matter were investigated in inflow and effluent of each other pollution sources and river. While the DOC/TOC ratio in the influent of public sewage treatment plant and livestock disposal facilities was above 0.58, the POC/TOC ratio of human livestock Night soil treatment plant and stormwater runoff was more than 0.7. The TOC removal efficiency of public sewage treatment plant and human livestock Night soil treatment plant were 88.5 % and 99.6 %, respectively. Although the concentration distribution of organic matter pollution most of total organic carbon (TOC) in effluent of pollution sources accounted for dissolved organic carbon (DOC) type (DOC/TOC ratio >0.89) and Refractory-DOC (RDOC)/TOC ratio was higher (>0.65). The fractionation characteristics of organic matter in river were similar with that of sewage treatment plant and TOC concentration showed the positive correlation with DOC ($r^2=0.93$) and RDOC ($r^2=0.89$) concentration. The decay rate of Labile DOC (LDOC) (avg. $0.128day^{-1}$) was higher than labile particulate organic carbon (LPOC) ($0.082day^{-1}$), while that of DOC ($0.008day^{-1}$) was lower than POC ($0.039day^{-1}$) (paired t-test, p < 0.001, n = 5). These study results suggested that it should consider important both TOC and DOC as the target indicator to control refractory organic matter in pollution sources.

Comparison of Organic Matter Dynamics between Natural Deciduous Broad-Leaved Forest and Adjacent Artificial Evergreen Coniferous Forest

  • Takahiro, Ichikawa;Terumasa, Takahashi;Yoshito, Asano
    • The Korean Journal of Ecology
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    • 제27권4호
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    • pp.217-224
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    • 2004
  • The purpose of this study is to clarify the effects of the conversion of the forest management type from a natural deciduous broad-leaved forest to an artificial evergreen coniferous forest based on organic matter dynamics. We investigated the amounts and carbon contents of the forest floor and the litterfall, soil chemical characteristics and cellulose decomposition rates in the natural deciduous broad-leaved forest and adjacent artificial evergreen coniferous forest. In the artificial evergreen coniferous forest were planted Japanese cypress (Chamaecyparis obtusa) on the upper slope and Japanese cedar (Cryptomeria japonica) on the lower slope. The soil carbon and nitrogen contents, CEC and microbial activity had decreased due to the conversion of the forest management type from a natural deciduous broad-leaved forest to an artificial Japanese cypress forest, and were almost the same for the conversion to a Japanese cedar forest. Under the same conditions, it is considered that the soil fertility was different by planting specific tree species because the organic matter dynamics were changed by them.

The Characteristics of Soil Organic Matter

  • You Sun-Jae;Kim Jong-gu;Cho Eun-Il
    • 한국환경과학회지
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    • 제15권1호
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    • pp.1-7
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    • 2006
  • The purpose of this study is to illustrate the characteristics of soil organic matter (SOM) and partition coefficient $(K_{DOC})$. Humic substances (HS) from eight soils of varying properties were extracted by two different methods. The dissolved organic carbon (DOC) concentration was stabilized in 22hrs. The ratio of UV absorbance at 465nm and 665nm (E4/E6 ratio) for HS were similar pattern for 8 soils. The extraction with increasing pH increased dissolution of SON. The ratio of organic carbon (OC) associated with HA and FA (the HA:FA ratio) was varied widely in accordance with the soils and was highly correlated to OC $content(\%)$ of the soils. in modeling metal speciation in soils and soil solutions, assumptions that all DOC in soil solution is associated with FA and that HA:FA ratio in SOM is constant have been made. The results of this study indicate that the validity of these assumptions is questionable. By sequential pH extraction, the $K_{DOC}$ showed in a linear correlation with pH.

논토양에서 토양개량제 장기연용에 따른 벼의 생육 및 토양특성 평가 (Long-term Application Effects of Soil Amendments on Yield and Soil Properties in Paddy)

  • 권순익;이윤혜;황현영;김성헌
    • 유기물자원화
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    • 제30권1호
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    • pp.5-11
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    • 2022
  • 본 연구는 벼 재배 장기연용 시험포장에서 다른 특성의 토양개량제 사용이 벼(Oryza sativa) 생산량, 토양 가용성 탄소, 질소함량 및 탄소 저장량 변화에 미치는 영향을 평가하고자 하였다. 본 시험에 사용된 처리구는 NPK 처리구, NPKS 처리구(NPK+규산), NPKL 처리구(NPK+생석회), NPKC 처리구(NPK+볏짚퇴비)를 장기연용 포장에서 선별하여 실험을 진행하였다. 1995년 처리구 간의 유의한 벼 수량 차이 없었으나, 2019년 NPKL, NPKC 처리구 벼 수량은 NPK 처리구보다 각각 4.3%와 14.3%씩 증수되었다. 2019년 NPKS와 NPKL 처리구의 토양 pH는 각각 6.7과 6.4였고, 시험 전 토양 pH (5.2)보다 증가하였다. 시험 전과 비교할 때, NPK, NPKS 및 NPKL 처리구의 토양 유기물 함량은 통계적으로 유의적인 차이를 나타내지 않았으나 NPKC는 1995년과 2019년에 각각 34 g/kg, 27 g/kg으로 증가하였다. 토양의 가용성 탄소 및 질소 함량은 2019년의 NPKS 및 NPKL 처리구에서 1.1에서 1.9배 가량 증가하였다. 이러한 결과를 종합하여 벼 재배시 토양개량제 사용은 재배전 토양검정을 통해 토양의 특성을 파악하여 사용하는 것이 생산량 증대와 더불어 농업환경을 고려한 토양관리방법이라고 판단된다.