• 제목/요약/키워드: paddy soils

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우리나라 논 토양의 토양유기탄소 변동 특성 (Soil Organic Carbon Dynamics in Korean Paddy Soils)

  • 정원교;김선관
    • 한국토양비료학회지
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    • 제40권1호
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    • pp.36-42
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    • 2007
  • 지구온난화, 기후변화 및 온실가스 배출 및 저감기술에 관한 많은 연구가 수행되고 있으나, 토양 내 유기탄소의 축적을 통한 온실가스 배출억제에 대한 연구는 매우 미진하며, 특별히 우리나라 농경지의 주요 이용형태인 논토양에 대해서는 유기탄소의 축적량 산정을 포함한 변동 등에 대한 연구가 매우 미흡하다. 본 연구에서는 도서를 제외한 우리나라 전국적인 논 토양 유기탄소의 연차별 모니터링을 통하여 토양에서 유기탄소의 연차간 변동을 평가하였으며 토양의 생성학적, 물리적 특성에 따라 토양유기탄소의 변화에 대한 해석을 시도하였다. 연구결과, 토양 생성분류학적으로 우리나라의 주된 논토양인 Inceptisol 에서 토양유기탄소량이 1999년에 비하여 2003년에 증가하는 경향이었던 것으로 나타났으며, 논의 이용형태별로는 염해답이나 미숙답에서 보다 보통답, 사질답, 배수불량답에서 토양유기탄소가 증가하는 것으로 나타났다. 표토의 토성별로 양토에서 보다 미사 식양토 및 미사양토에서 유기탄소의 증가가 높게 나타났다. 지형적으로는 곡간지에서 보다 평탄지에서 토양유기탄소의 증가율이 높게 나타났다. 결론적으로, 본 연구의 결과를 통하여, 1999년 이후 논토양에서 토양유기탄소의 양이 증가하는 경향을 나타내고 있으며 ($+0.11g\;kg^{-1}yr^{-1}$) 이는 대기중의 이산화탄소를, 논 토양의 유기탄소 축적기능을 통해, 토양 중에 저장함으로써 논토양이 온실가스 흡수원으로서의 역할을 하는 것으로 해석할 수 있다.

원자흡광법(原子吸光法)에 의(依)한 답토괴(沓土壞)의 미량원소(微量元素) 정량(定量) (Determination of Inorganic Elements in Paddy Soils by Atomic Absorption Spectrophotometry)

  • 황재순
    • 한국식품영양과학회지
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    • 제10권1호
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    • pp.107-116
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    • 1981
  • This experiment was attempted to establish the optimal condition, e.g., the effects of pH, interferences of other elements, for the determination of the inorganic elements in the paddy soils by atomic absorption spectrophotometry. Inorganic elements of 100 paddy soils which were sampled in Jeon bug provincial farm land were determined by atomic absorption spectrophotometer in that condition. The results obtained in this experiment are summarized as follows: 1) The optimal pH for determination of inorganic elements in paddy soils is about 7.0. 2) It was investigated that the absorbance of potassium was increased, and that of calcium, magnesium and zinc was decreased by adding of $Fe^{++}$ and $Cu^{++}$ in the sample. 3) It was shown that paddy soils in Jeonbug provincial farm land contain the normal amounts of inorganic elements (K, Ca, Mg, Zn,). But comparing to the results of 1976 year, it was known that the contents of inorganic elements in paddy soils considerably was changed.

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Comparison of Soil Pore Properties between Anthropogenic and Natural Paddy Field Soils From Computed Tomographic Images

  • Chun, Hyen Chung;Jung, Ki-Yuol;Choi, Young Dae;Jo, Su-min;Lee, Sanghun;Hyun, Byung-Keun;Shin, Kooksik;Sonn, Yeonkyu;Kang, Hang-Won
    • 한국토양비료학회지
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    • 제48권5호
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    • pp.351-360
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    • 2015
  • Human influence on soil formation has dramatically increased with human civilization and industry development. Increase of anthropogenic soils induced researches on the anthropogenic soils; classification, chemical and physical characteristics of anthropogenic soils and plant growth from anthropogenic soils. However there have been no comprehensive analyses on soil pore or physical properties of anthropogenic soils from 3 dimensional images in Korea. The objectives of this study were to characterize physical properties of anthropogenic paddy field soils by depth and to find differences between natural and anthropogenic paddy field soils. Soil samples were taken from two anthropogenic and natural paddy field soils; anthropogenic (A_c) and natural (N_c) paddy soils with topsoil of coarse texture and anthropogenic (A_f) and natural (N_f) paddy soils with topsoil of fine texture. The anthropogenic paddy fields were reestablished during the Arable Land Remodeling Project from 2011 to 2012 and continued rice farming after the project. Natural paddy fields had no artificial changes or disturbance in soil layers up to 1m depth. Samples were taken at three different depths and analyzed for routine physical properties (texture, bulk density, etc.) and pore properties with computer tomography (CT) scans. The CT scan provided 3 dimensional images at resolution of 0.01 mm to calculate pore radius size, length, and tortuosity of soil pores. Fractal and configuration entropy analyses were applied to quantify pore structure and analyze spatial distribution of pores within soil images. The results of measured physical properties showed no clear trend or significant differences across depths or sites from all samples, except the properties from topsoils. The results of pore morphology and spatial distribution analyses provided detailed information of pores affected by human influences. Pore length and size showed significant decrease in anthropogenic soils. Especially, pores of A_c had great decrease in length compared to N_c. Fractal and entropy analyses showed clear changes of pore distributions across sites. The topsoil layer of A_c showed more degradation of pore structure than that of N_c, while pores of A_f topsoil did not show significant degradation compared with those of N_f. These results concluded that anthropogenic soils with coarse texture may have more effects on pore properties than ones with fine texture. The reestablished paddy fields may need more fundamental remediation to improve physical conditions.

Impacts of Soil Organic Matter on Microbial Community of Paddy Soils in Gyeongnam Province

  • Son, Daniel;Sonn, Yeon-Kyu;Weon, Hang-Yeon;Heo, Jae-Young;Kim, Dae-Ho;Choi, Yong-Jo;Lee, Sang-Dae;Ok, Yong Sik;Lee, Young Han
    • 한국토양비료학회지
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    • 제49권6호
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    • pp.783-788
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    • 2016
  • Agricultural management of paddy soil depends on the effects of soil microbial activities. The present study evaluated the soil microbial community of 25 paddy soils in Gyeongnam Province by fatty acid methyl ester (FAME). The average of microbial communities in paddy soils were 32.2% of total bacteria, 16.7% of Gram-negative bacteria, 12.9% of Gram-positive bacteria, 2.0% of actinomycetes, 14.9% of fungi, and 1.3% of arbuscular mycorrhizal fungi. The communities of total bacteria (34.9%) and Gram-negative bacteria (19.4%) in soils with $30{\sim}35g\;kg^{-1}$ of organic matter were significantly larger than those in soils with other organic matter levels. However, soils with $20{\sim}30g\;kg^{-1}$ of organic matter had significantly low ratio of cy17:0 to $16:1{\omega}7c$ and cy19:0 to $18:1{\omega}7c$ as compared with soils with $30{\sim}35g\;kg^{-1}$ of organic matter, indicating microbial stress decreased (p < 0.05). In principal component analyses of soil microbial communities, Gram-negative bacteria should be considered as a potential responsible factor for the obvious microbial community differentiation that was observed between the two different organic matter levels in paddy fields. Thus, soils containing $20{\sim}30g\;kg^{-1}$ of organic matter were responsible for strong effect on microbial biomass and stress in paddy fields.

논에서 전환한 포도원의 토양물리적 특성변화 (Changes in the Soil Physical Properties of Vineyard Converted from Paddy Field)

  • 윤을수;정기열;박기도;고지연;이재생;박성태
    • 한국토양비료학회지
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    • 제42권3호
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    • pp.145-151
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    • 2009
  • 논에서 전환된 포도원(전환포도원)의 전환 후 년수 및 토양특성별 물리적 특성변화 양상을 구명하여 전환지 생산성 향상을 위한 합리적 토양 관리대책을 제시코자 전환지가 많은 경북 김천, 영천지역을 중심으로 포도원과 인근 벼 재배지 50개 지점을 조사 분석한 결과 전환포도원의 이랑 높이는 토성이 세립질이고 배수가 불량할수록 높았고, 토양단면 내 반문의 출현깊이(Ap층 두께)는 조립질 토양에서 깊은 경향이었음. 전환지는 인근 유사토양 벼 재배지 작토층 토색의 경우 색상이 밝아지는 경향을 보여 회색도가 벼 재배지의 경우 20인데 비해 전환지는 5로 감소했고, 이 경향은 토양 배수조건이 양호한 토양에서 현저하였음. 전환여부에 따른 투기도 차이는 토심10cm 이하에서 현저했고 토심 30cm 이하에서는 뚜렷한 차이가 없었고 전환지에서 투기도에 미치는 토양특성의 영향은 세립질의 경우 이랑의 높이가, 조립질은 배수등급이었다. 전환포도원의 물리성은 전환 후 년수가 경과함에 따라 공극율과 내수성입단이 증가하는 경향이었고, 원추관입저항의 경우 휴립한 부위는 $5kg/cm^2$ 이하인 반면, 그 이하의 부위는 $10kg/cm^2$ 이상을 보였음. 이상의 결과로 볼 때 전환포도원의 토양특성은 세립질보다 조립질이 쉽게 변하는 경향이었고, 배수불량인 세립질토양에서는 고휴재배 등 적절한 표토관리가 요구되었다.

Computer Tomography as a Tool for Physical Analysis in an Anthropogenic Soil

  • Chun, Hyen Chung;Park, Chan Won;Sonn, Yeon Kyu;Cho, Hyun Joon;Hyun, Byung Keun;Song, Kwan Cheol;Zhang, Yong Seon
    • 한국토양비료학회지
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    • 제46권6호
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    • pp.549-555
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    • 2013
  • Human influence on soil formation has dramatically increased as the development of human civilization and industry. Increase of anthropogenic soils induced research of those soils; classification, chemical and physical characteristics and plant growth of anthropogenic soils. However there have been no reports on soil pore properties from the anthropogenic soils so far. Therefore the objectives of this study were to test computer tomography (CT) to characterize physical properties of an anthropogenic paddy field soil and to find differences between natural and anthropogenic paddy field soils. Soil samples of a natural paddy field were taken from Ansung, Gyeonggi-do (Ansung site), and samples of an anthropogenic paddy field were from Gumi in Gyeongsangnam-do (Gasan) where paddy fields were remodeled in 2011-2012. Samples were taken at three different depths and analyzed for routine physical properties and CT scans. CT scan provided 3 dimensional images to calculate pore size, length and tortuosity of soil pores. Fractal analysis was applied to quantify pore structure within soil images. The results of measured physical properties (bulk density, porosity) did not show differences across depths and sites, but hardness and water content had differences. These differences repeated within the results of pore morphology. Top soil samples from both sites had greater pore numbers and sizes than others. Fractal analyses showed that top soils had more heterogeneous pore structures than others. The bottom layer of the Gasan site showed more degradation of pore properties than ploughpan and bottom layers from the Ansung site. These results concluded that anthropogenic soils may have more degraded pore properties as depth increases. The remodeled paddy fields may need more fundamental remediation to improve physical conditions. This study suggests that pore analyses using CT can provide important information of physical conditions from anthropogenic soils.

Detection and Potential Abundances of Anammox Bacteria in the Paddy Soil

  • Khanal, Anamika;Lee, Seul;Lee, Ji-Hoon
    • 한국환경농학회지
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    • 제39권1호
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    • pp.26-35
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    • 2020
  • BACKGROUND: Microbes that govern a unique biochemical process of oxidizing ammonia into dinitrogen gas, such as anaerobic ammonium oxidation (anammox) have been reported to play a pivotal role in agricultural soils and in oceanic environments. However, limited information for anammox bacterial abundance and distribution in the terrestrial habitats has been known. METHODS AND RESULTS: Phylogenetic and next-generation sequencing analyses of bacterial 16S rRNA gene were performed to examine potential anammox bacteria in paddy soils. Through clone libraries constructed by using the anammox bacteria-specific primers, some clones showed sequence similarities with Planctomycetes (87% to 99%) and anammox bacteria (94% to 95%). Microbial community analysis for the paddy soils by using Illumina Miseq sequencing of 16S rRNA gene at phylum level was dominated by unclassified Bacteria at 33.2 ± 7.6%, followed by Chloroflexi at 20.4 ± 2.0% and Acidobacteria at 17.0 ± 6.5%. Planctomycetes that anammox bacteria are belonged to was 1.5% (± 0.3) on average from the two paddy soils. CONCLUSION: We suggest evidence of anammox bacteria in the paddy soil. In addition to the relatively well-known microbial processes for nitrogen-cycle, anammox can be a potential contributor on the cycle in terrestrial environments such as paddy soils.

우리나라 답토양(畓土壌)의 실용적분류(実用的分類)에 관(関)한 연구(硏究) -제1보(第一報) 사질답(砂質畓) 분류(分類)에 관(関)하여 (Studies on the Interpretative Classification of Paddy Soils in Korea I : A Study on the Classification of Sandy Paddy Soils)

  • 정연태;양의석;박래경
    • 한국토양비료학회지
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    • 제15권2호
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    • pp.128-140
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    • 1982
  • 저위(低位) 생산답중(生産畓中)에서 분포면적(分布面積)이 가장 넓고 개량(改良)의 효과(効果)가 큰 사질답(砂質畓)의 분포상태(分布状態) 및 실용적(実用的) 분류(分類)와 더불어 현재(現在) 널리 쓰이고 있는 답류형별(畓類型別) 분류체계(分類体系)의 개선(改善)을 위한 사질답(砂質畓) 유형분류(類型分類) 시안(試案)을 시도(試圖)하여 본 결과(結果)는 다음과 같다. 1. 현재(現在) 이용(利用)되고 있는 기준(基準)에 의(依)한 사질답(砂質畓)의 잠재생산력(潜在生産力)은 보통답(普通畓)의 86%이었고 생산력(生産力)의 변이정도(変異程度)가 커서 유형재분류(類型再分類)의 필요성(必要性)이 있었다. 2. 현재(現在) 이용(利用)되고 있는 답유형(畓類型) 구분기준중(区分基準中) "사질답(砂質畓)"은 토성(土性)이 사질(砂質)이더라도 습답(湿畓)인 경우(境遇)와 염농도(塩濃度)가 높은 경우(境遇)에는 제외(除外)되고 있으므로 "객토대상지(客土対象地)" 추천(推薦)이 복잡(複雜)하고 제염(除塩)되거나 배수조건(排水條件) 변화시(変化時)에 유형(類型)을 변경분류(変更分類)해야 하였다. 3. 본(本) 연구(硏究)에서 제안(提案)한 사질답분류(砂質畓分類) 시안(試案)에서는 토성(土性)이 사질(砂質)인 모든 답토양(畓土壌)을 포함(包含)시켰으며 수량(收量)에 영향(影響)이 큰 특성(特性)을 기준(基準)하여 개(個)의 아형(亜型)(산화용탈형(酸化溶脫型) 사질답(砂質畓); 건답형(乾畓型), 산화환원중간형(酸化還元中間型) 사질답(砂質畓); 반습답형(半湿畓型), 환원집적형(還元集積型) 사질답(砂質畓); 습답형(湿畓型), 환원염해형(還元塩害型), 사질답(砂質畓), 염해형(塩害型))으로 재분(再分)하였고 각아형(各亜型)은 토성계별(土性系別)로 토양통(土壌統)과 연결(連結)할 수 있었다. 그러므로 시안(試案)의 분류단계(分類段階)는 형(型)(사질답(砂質畓))-아형(亜型)(4개(個))-토성계(土性系)(5등급(等級))-토양통(土壤壌)(48개통(個統))으로 되었다. 4. 시안(試案)과 같이 사질습답(砂質湿畓)과 사질염해답(砂質塩害畓)을 사질답(砂質畓)의 일부(一部)에 포함(包含)시켜 생산력(生産力)의 변이정도(変異程度)를 검정(検定)해 본 결과(結果)는 현행(現行) 체계(体系)에 의(依)한 것보다 개선(改善)되엇다. 5. 전국(全国)의 사질답(砂質畓) 면적(面積)은 409,902ha로서 총(総) 답면적(畓面積)의 32.3%에 해당(該当)되며 시안(試案)대로 분류(分類)하면 38.9%(492,982ha)에 달(達)하였고 절대면적(絶対面積)이 많은 지역(地域)은 경기(京畿)(88,923ha), 전북(全北)(69,717ha), 경북(慶北)(55,390ha) 순(順)이었고 답면적(畓面積) 전체(全体)에 대(対)한 상대적(相対的) 비율(比率)이 높은 지역(地域)은 강원(江原)(58.9%), 경기(京畿)(50.5%), 충북(忠北)(48.5%), 전북(全北)(41.0%)의 순(順)이며 시안(試案)에 의(依)하면 사질답(砂質畓) 면적(面積)은 더욱 높아져서 강원도(江原道)의 경우(境遇)에는 71.4%가 사질질답(砂質質畓)에 해당(該当)되었다. 6. 사질답(砂質畓)은 답토양(畓土壌) 적성등급(適性等級)의 3급지(級地)(69.1%)와 4급지(級地)(29.2%)에 대부분(大部分)이 해당(該当)되었으며 3급지중(級地中)에서는 "3사질(砂質)"(53.3%), 4급지중(級地中)에서는 "4경사(傾斜)"(16.0%)에 해당(該当)하는 토양(土壌)이 가장 많았다. 토성계(土性系)(Texture family)별(別)로는 사양질계(砂壌質系)(Coarse loamy family)가 59.2%로 대부분(大部分)이었고 징사(徵砂) 사양질계(砂壌質系)(Coarse silty)인 것도 전체(全体)의 16.1%에 달(達)하였다. 7. 시안(試案)에 의(依)한 사질답(砂質畓) 아형별(亜型別) 면적(面積)은 반습답형(半湿畓型) 사질답(砂質畓)(酸化還元中間型)이 49.6%(245,012ha)로 가장 많았고 그 다음으로 건답형(乾畓型) 사질답(砂質畓)(산화용탈형(酸化溶脫型))이 33.5%(64,890ha)이었고 습답형(湿畓型)(14.0%)과 염해형(塩害型)(2.9%)도 그 분포면적(分布面積)은 83,081ha에 달(達)하였다.

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토양의 산성화에 관한 연구 (A Study on the Acidification of Soils)

  • 박병윤;어윤우;양소영;장상문;김정호;이동훈
    • 한국환경과학회지
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    • 제10권4호
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    • pp.305-310
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    • 2001
  • pH($H_2O$), pH(KCI), CEC(cation exchange capacity), O.M.(organic matter) and exchangeable cations(K, Na, Ca, Mg) of paddy soil, upland soil and forest soil in Kumi city were investigated for the purpose of knowing soil acidification and the correlation between soil acidification and leaching of inorganic salts. The mean pH($H_2O$) values of paddy soil were 5.23(surface soil) and 5.69(subsoil) and 4.74(subsoil). The were 6.37(surface soil) and 6.11(subsoil), and those of forest soil were 4.67(surface soil) and 4.74(subsoil). The mean pH(KCl) values of paddy soil were 4.59(surface soil) and 4.98(subsoil) were 5.48(surface soil) and 5.04(subsoil), and those of forest soil were 3.82(surface soil) and 3.89(subsoil). The acidification of forest soil was more rapid than that of paddy soil and upland soil/ The total mean amounts of exchangeable cations(K, Na, Ca, Mg) in paddy soils were 6.14me/100g(surface soil) and 5.64me/100g(subsoil), and those in upland soils were 6.86me/100g(surface soil) and 6.65me/100g(subsoil), and those in forest soils were 4.06me/100g(surface soil) and 3.34me/100g(subsoil). The contents of inorganic salts in forest soil were much less than those of paddy soil and upland soil. The correlation coefficients(r) between pH($H_2O$) values and the total amounts of exchangeable cations in soils were $0.6635^{**}$(surface soil) and $0.6946^{**}$(subsoil), and those between pH(KCl) values and exchangeable cations in soils were 0.6629(surface soil) and $0.5675^{**}$(subsoil). The correlation between soil acidification and leaching of inorganic salts in soil was positively significant at 1% level.

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우리나라 관개논에서 토양특성과 대형농기계를 사용한 경작년수에 따른 여름 강우기 분산성 점토의 함량 (Water-dispersible Clay Content in Summer Rainy Season for Korean Irrigated Rice Paddy Fields as Affected by Cultivated Years Using Heavy Agro-machinery and Soil Properties)

  • 한경화
    • 한국환경농학회지
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    • 제37권4호
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    • pp.317-323
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    • 2018
  • 우리나라 관개논의 여름철 강우기 Middleton's 분산성 점토는 불검출 ~ 4.8%의 범위로 나타났으며 최대값은 점토 함량 18% 이상 토양에서 나타났으나 점토 분산성은 점토 함량 18% 미만 토양에서 높게 나타났다. 대상지역의 60%에서 40마력이상 농기계를 사용한 경작연수가 길수록 분산성 점토 함량이 높은 값을 나타내었다. 단, 치환성 나트륨 함량 퍼센트의 차이가 큰 간척논은 예외로 나트륨함량이 높을수록 분산성 점토가 높았다.