• 제목/요약/키워드: soil chemical and physical properties

검색결과 380건 처리시간 0.038초

Responses of Low-Quality Soil Microbial Community Structure and Activities to Application of a Mixed Material of Humic Acid, Biochar, and Super Absorbent Polymer

  • Li, Fangze;Men, Shuhui;Zhang, Shiwei;Huang, Juan;Puyang, Xuehua;Wu, Zhenqing;Huang, Zhanbin
    • Journal of Microbiology and Biotechnology
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    • 제30권9호
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    • pp.1310-1320
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    • 2020
  • Low-quality soil for land reuse is a crucial problem in vegetation quality and especially to waste disposal sites in mining areas. It is necessary to find suitable materials to improve the soil quality and especially to increase soil microbial diversity and activity. In this study, pot experiments were conducted to investigate the effect of a mixed material of humic acid, super absorbent polymer and biochar on low-quality soil indexes and the microbial community response. The indexes included soil physicochemical properties and the corresponding plant growth. The results showed that the mixed material could improve chemical properties and physical structure of soil by increasing the bulk density, porosity, macro aggregate, and promote the mineralization of nutrient elements in soil. The best performance was achieved by adding 3 g·kg-1 super absorbent polymer, 3 g·kg-1 humic acid, and 10 g·kg-1 biochar to soil with plant total nitrogen, dry weight and height increased by 85.18%, 266.41% and 74.06%, respectively. Physicochemical properties caused changes in soil microbial diversity. Acidobacteria, Bacteroidetes, Chloroflexi, Cyanobacteria, Firmicutes, Nitrospirae, Planctomycetes, and Proteobacteria were significantly positively correlated with most of the physical, chemical and plant indicators. Actinobacteria and Armatimonadetes were significantly negatively correlated with most measurement factors. Therefore, this study can contribute to improving the understanding of low-quality soil and how it affects soil microbial functions and sustainability.

신개간경사지 토양개량과 작물생육에 관한 연구 VI. 토양의 물리화학성 년차간 변화가 옥수수 청예수량에 미치는 영향 (The Soil Improvement and Plant Growth on the Newly-Reclaimed Sloped land VI. Relationship between annual change of soil phsico-chemical properties and yield of silage corn)

  • 허봉구;김무성
    • 한국초지조사료학회지
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    • 제11권1호
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    • pp.22-29
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    • 1991
  • This study was experimented to obtain the basic information on the changeable aspect and improvement of soil fertility in newly-reclaimed sloped land. Silage corn was cultivated under the six different treatments for 4 years. The relation between the amount or ratio of annual changes of soil physico-chemical properties and yield of silage corn were analyzed. Soil bulk density was decreased in 3rd year at topsoil, but that decreased in 4th year at subsoil. Soil organic matter also decreased in 2nd year at topsoil, and decreased continuously at subsoil. Bulk density and hardness of soil depths showed significant negative simple correlation with dry matter yield and cation exchange capacity showed positive. Correlation coefficient of chemical properties with dry matter yield were low. The range of annual changes of moisture percent, hardness and organic matter were wider than the other properties. The significantly different of physical properties were higher than the chemical properties, and those of topsoil were higher than subsoil. According to multiple regression between yield and physico-chemical properties of subsoil, bulk density and cation exchange capacity were in the greatest contribution at the variations, but bulk density was greatest at the ratios.

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임해매립지 녹화를 위한 토양의 물리·화학적 특성 분석 - 율촌제1산업단지를 중심으로 - (The Analysis of Physical and Chemistry Properties on the Reclaimed Area for Replantation - A Case Study on the YOULCHON 1'st Industrial Complex -)

  • 전형순
    • 한국환경복원기술학회지
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    • 제14권6호
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    • pp.87-95
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    • 2011
  • This study investigates Youl Chon Industrial Complex 1 by dividing into three regions : the drainage site, the area inside the complex, and the seaside. Then each region was subdivided into three areas resulting in a total of nine areas for soil sampling and analysis. After analyzing the physical and chemical properties of the soil, all nine area's pH and EC readings indicated that the soil condition is not suitable for vegetation growth (according to the previous study, the pH level was 5.8 and EC was 2.0dS/m). Therefore, for Youl Chon Industrial Complex 1 to become green, the neutralization and reduction of pH and EC level is needed; first, vegetation through dredging soil, and second, introduction of halophytes is suggested. This study finds out that vertical changes in physical and chemical properties of soils in reclaimed sites are very variable and the result depends on surrounding environments, so it suggested the basic data for building vegetation or reclaimed sites. However, the additional study aiming at various reclaimed sites is required as this study was conducted only to limited areas, and this study has left monitoring analysis as the follow-up task to check the relations between a plant community and soils.

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.

한국산림토양의 형태학적 및 이화학적성질과 낙엽송, 잣나무의 성장(成長)에 관한 연구(硏究) (Studies on the Morphological, Physical and Chemical Properties of the Korean Forest soil in Relation to the Growth of Korean White Pine and Japanese Larch)

  • 정인구
    • 한국토양비료학회지
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    • 제12권4호
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    • pp.189-213
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    • 1980
  • 1. 본(本) 연구(硏究)는 우리나라의 산림토양(山林土壤)의 형태학적(形態學的) 이학적(理學的) 화학적성질(化學的性質)이 임목생장(林木生長)에 미치는 영향(影響)을 조사(調査)하여 수종별(樹種別)로 토양조건(土壤條件)의 요구(要求) 경향(傾向)을 파악(把握)하므로서 적지적수(適地適樹) 및 비배관리(肥培管理)의 기초자료(基礎資料)를 얻고자 10여년간(余年間)에 걸쳐서 자료(資料)를 수집(蒐集)하여 수량화방법(數量化方法)의 이론(理論)을 적용(適用)하여 다변량해석(多變量解析)으로 분석(分析)한 것이다. 2. 공시수종(供試樹種)인 낙엽송(落葉松)과 잣나무는 온대중부(溫帶中部)에서 온대북부(溫帶北部) 지방(地方)에 이르기까지 조림적지(造林適地)가 광대(廣大)하게 분포(分布)되고 있고 한국(韓國)의 이대(二大) 조림수종(造林樹種)으로 되고 있으나, 적지특성(適地特性)이 밝혀지고 있지않아 조림시(造林時)에 혼동(混同)하여 조림(造林)하거나 동일지위급(同一地位級)으로 취급(取級)되어 왔으며 낙엽송(落葉松) 적지(適地)에는 잣나무를 조림(造林)하여도 비교적(比較的) 생장(生長)이 양호(良好)하나 반면(反面) 잣나무 적지(適地)에 냑엽송(落葉松)을 조림(造林)할 경우(境遇) 생장(生長)은 양호(良好)하다고는 할 수 없다. 이러한 차이(差異)에 대(對)하여 토양형태학적요인(土壤形態學的因子), 토양(土壤)의 이화학적인자(理化字的因子)가 임목생장(林木生長)에 어떻게 영향(影響)하는 것인가를 Computer를 이용(利用)하여 토양인자(土壤因子)를 추적(追敵)하여 보았다. 3. 조사(調査)된 임분(林分)은 인공조림지(人工造林地)의 성림지(成林地)로서 낙엽송(落葉松) 294plot 잣나무 259plot에서 우세목(優勢木)의 표준목(標準木)을 벌채(伐採)하여 수간석해(樹幹析解)에 의(依)하여 지위지수(地位指數)를 결정(決定)하고 당해임지(當該林地)에서 토양단면조사(土壤斷面調査)를 실시(實施)하고 층위별(層位別)로 토양시료(土壤試料)를 채취(採取)하여 토양(土壞)의 이화학적성질(理化學的性質)을 분석(分析)하여 수종별(樹種別)로 임지생산력(林地生産力) 구분표(區分表)를 만들어 토양(土壤)의 물리성(物理性) 화학성(化學性) 및 이화학성(理化學性)과 임목생장(林木生長) 관계(開係)를 구명(究明)하였다. 4. 토양(土壤)의 물리적(物理的) 요인(要因)과 임목생장(林木生長) 관계(開係)의 순위(順位)는 낙엽송(落葉松)에서는 퇴적양식(堆積樣式), 토심(土深), 토양수분(土壤水分), 표고(標高), 지형(地形) 토양형(土壤型) A층(層)의 두께, 견밀도(堅密度), 유기물함량(有機物含量), 토성(土性), 기암(基岩) 석력함량(石礫含量), 방위(方位), 경사(傾斜) 등(等)의 순위(順位)이며 잣나무는 토양형(土壤型), 견밀도(堅密度), 기암(基岩), 방위(方位) A층(層)의 두께 토양수분(土壞水分) 표고(標高) 지형(地形) 퇴직양식(堆積樣式) 토심(土深) 토성(土性) 석력함량(石礫含量) 경사등(傾斜等)의 순(順)이였다. 5. 토양(土壞)의 화학적요인(化學的要因)과 임목생장(林木生長) 관계(開係)의 순위(順位)는 낙엽송(落葉松)에서는 염기포화도(鹽基飽和度) 토양유기물(土壤有機物) 석회(石灰), C/N율(率) 유효인산(有效燐酸) pH 치환성가리(置換性加里) 전질소(全窒素) 고토(苦土) 양(陽)ion치환능력(置換能力) 염기총량(나토륨 등(等)의 순위(順位)이며 잣나무는 유효인산(有效燐酸) 염기총량(전질소(全窒素) 나토륨 C/N율(率) pH, 석회(石灰) 염기포화도(鹽基飽和度) 토양유기물(土壤有機物) 치환성가리(置換性加里) 양(陽)ion 치환능력(置換能力) 고토(苦土) 등(等)의 순(順)이였다. 6. 토양(土壤)의 이화학성(理化學性)과 임목생장(林木生長) 관계순위(關係順位)는 낙엽송(落葉松)에서는 토심(土深) 퇴적양식(堆積樣式) 토양수분(土壞水分) pH 지형(地形) 토양형(土壤型) 표고(標高) 전질소(全窒素) 견밀도(堅密度) 유효인산(有效燐酸) 토성(土性) A층(層)의 두께 염기총량(치환성가리(置換性加里) 염기포화도(鹽基飽和度) 등(等)의 순위(順位)이며 잣나무는 토양형(土壤型) 토양견밀도(土壤堅密度) 방위(方位) 유효인산(有效燐酸) A층(層)의 두께 치환성가리(置換性加里) 토양수분(土壞水分) 염기총량 표고(標高), 토심(土深) 염기포화도(鹽基飽和度) 지형(地形) 전질소(全窒素) C/N율(率) 최적양식(堆積樣式) 등(等)의 순위(順位)이였다. 7. 산림토양(山林土壤)의 물리적성질(物理的性質)과의 중상관관계(重相關關係)에서는 낙엽송(落葉松) 0.9272 잣나무 0.8996이며 토양(土壤)의 화학적성질(化學的性質)은 낙엽송(落葉松) 0.7474 잣나무 0.7365이였다. 이상(以上)과 같이 토양(土壤)의 물리적성질(物理的性質)과 임목생장관계(林木生長關係)는 토양(土壤)의 화학적성질(化學的性質) 보다는 상관성(相關性)이 높은 것으로 나타났으나 토양(土壤)의 화학적(化學的) 제인자(諸因子)에 처한 표시방법(表示方法)이 미흡(未洽)한 것이라고 사료(思料)되며 토양(土壤)의 화학적성질(化學的性質)이 물리적성질(物理的性質) 못지않게 중요(重要)한 것이라는 것을 입정하기에 이르렀다. 산림토양(山林土壞)의 형태학적(形態學的) 및 물리적(物理的) 중요인자(重要因子)와 토양(土壤) 화학적(化學的) 중요인자(重要因子)를 발췌(拔萃)한 산림토양(山林土壤)의 이화학적성질(理化學的性質)과 임목생장(林木生長)과의 중상관관계(重相關關係)는 낙엽송(落葉松) 0.9434이고 잣나무 0.9103으로서 가장높은 상관성(相關性)을 나타냈다. 8. 편상관계수(偏相關係數)에서 나타난 것과 같이 낙엽송(落葉松)은 잣나무보다 토심(土深)이 깊어야하며 퇴적양식(堆積樣式)에 있어서도 붕적토(崩積土) 포행토(匍行土)이어야하며 토양건습도(土壤乾混度)에서도 적윤지(適潤地) 내지(乃至) 습윤지(混潤地)를 요구(要求)하고 있으며 pH5.5~6.1을 요구(要求)하며 전질소(全窒素)(T-N) 토성(土性) 및 토양양료(土壞養料)도 낙엽송(落葉松)이 잣나무보다 훨씬 많은 토양조건(土壤條件)을 요구(要求)하고 있다. 즉(卽) 토심(土深) 퇴적양식(堆積樣式) 지형(地形)의 기복(起伏) 토양건습도(土壤乾混度) pH N 표고(標高) 토성등(土性等)이 낙엽송(落葉松)과 잣나무 적지(適地) 구분(區分)의 유효(有效)한 지표(指標)가 되며 토양형(土壤型) 토양견밀도(土壤堅密度)는 식재환경(植載環境)의 변이폭(變異幅)이 넓으므로 지표성(指標性)은 있으나 낮다고 할 수 있다. 적지판별(適地判]別)은 낙엽송(落葉松)은 토심(土深) 퇴적양식(堆積樣式) 지형(地形) 토양(土壤) 수분(水分) pH 토양형(土壤型) N 토성등(土性等)이 생장(生長)을 도모(圖謀)하는 지표인자(指標因子)인데 반(反)하여 잣나무는 토양형(土壤型) 토양견밀도(土壤堅密度) 유효인산(有效燐酸) 치환성가리(置換性加里) 등(等)이 생장(生長)을 도모(圖謀)하는 유효(有效)한 요인(要因)이였다. 토양양료(土壤養料)에 대(對)하여도 일반적(一般的)으로 잣나무 보다 낙엽송(落葉松)이 요구도(要求度)가 크게 나타나고 있으나 $K_2O$에 대(對)하여서만 잣나무가 낙엽송(落葉松)보다 많이 요구(要求)하고 있다. 9. 지금(只今)까지 임목생장(林木生長)에 크게 영향(影響)을 미치는 것은 산림(山林) 토양(土壤)의 물리적성질(物理的性質)이라고 하였으나 본(本) 연구결과(硏究結果) 토양(土壤)의 화학적성질(化學的性質)도 물리적성질(物理的性質) 못지 않게 매우 중요(重要)한 임목생장(林木生長) 요인(要因)이 된다는 것을 Computer를 이용(利用) 추적(追跳)하여 입정하였으며 아울러 도래(徒來) 낙엽송(落葉松)과 잣나무 적지(適地) 특성(特性)을 구명(究明)하였다.

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토양 특성을 이용한 토양유기탄소저장량 산정 모형 개발 (Development of Soil Organic Carbon Storage Estimation Model Using Soil Characteristics)

  • 이태화;김상우;신용철;정영훈;임경재;양재의;장원석
    • 한국농공학회논문집
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    • 제61권6호
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    • pp.1-8
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    • 2019
  • Carbon dioxide is one of the major driving forces causing climate changes, and many countries have been trying to reduce carbon dioxide emissions from various sources. Soil stores more carbon dioxide(two to three times) amounts than atmosphere indicating that soil organic carbon emission management are a pivotal issue. In this study, we developed a Soil Organic Carbon(SOC) storage estimation model to predict SOC storage amounts in soils. Also, SOC storage values were assessed based on the carbon emission price provided from Republic Of Korea(ROK). Here, the SOC model calculated the soil hydraulic properties based on the soil physical and chemical information. Base on the calculated the soil hydraulic properties and the soil physical chemical information, SOC storage amounts were estimated. In validation, the estimated SOC storage amounts were 486,696 tons($3.526kg/m^2$) in Jindo-gun and shown similarly compared to the previous literature review. These results supported the robustness of our SOC model in estimating SOC storage amounts. The total SOC storage amount in ROK was 305 Mt, and the SOC amount at Gyeongsangbuk-do were relatively higher than other regions. But the SOC storage amount(per unit) was highest in Jeju island indicating that volcanic ashes might influence on the relatively higher SOC amount. Based on these results, the SOC storage value was shown as 8.4 trillion won in ROK. Even though our SOC model was not fully validated due to lacks of measured SOC data, our approach can be useful for policy-makers in reducing soil organic carbon emission from soils against climate changes.

수량화(數量化)에 의(依)한 우리나라 삼림토양(森林土壤)의 형태학적(形態学的) 및 이화학적(理化学的) 성질(性質)과 잣나무 및 낙엽송(落葉松)의 생장(生長) 상관분석(相關分析) (Analysis on the Relation between the Morphological Physical and Chemical Properties of Forest Soils and the Growth of the Pinus koraiensis Sieb. et Zucc. and Larix leptolepis Gord by Quantification)

  • 정인구
    • 한국산림과학회지
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    • 제53권1호
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    • pp.1-26
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    • 1981
  • 1. 본(本) 연구(研究)는 우리나라의 삼림토양(森林土壤)의 형태학적(形態学的) 이학적(理学的) 화학적(化学的) 성질(性質)이 임목생장(林木生長)에 미치는 영향(影響)을 조사(調査)하여 수종별(樹種別)로 토양조건(土壤條件)의 요구(要求) 경향(傾向)을 파악(把握)하므로서 적지적수(適地適樹) 및 비배관리(肥培管理)의 기초자료(基礎資料)를 얻고자 10여년간(余年間)에 걸쳐서 자료(資料)를 수집(蒐集)하여 수량화방법(數量化方法)의 이론(理論)을 적용(適用)하여 다변량해석(多變量解析)으로 분석(分析)한 것이다. 2. 공시수종(供試樹種)인 낙엽송(落葉松)과 잣나무는 온대중부(温帶中部)에서 온대북부(温帶北部) 지방(地方)에 이르기까지 조림적지(造林適地)가 광대(廣大)하게 분포(分布)되고 있고 한국(韓國)의 이대(二大) 조림수종(造林樹種)으로 되고 있으나 적지특성(適地特性)이 밝혀지고 있지않아 조림시(造林時)에 적지선정(適地選定)의 혼동(混同)을 초래(招來)하는 경우가 있고 때로는 동일지위급(同一地位級)으로 취급(取扱)되기도 하였다. 낙엽송적지(落葉松適地)에는 잣나무를 조림(造林)하여도 비교적(比較的) 생장(生長)이 양호(良好)하나 반면(反面) 잣나무 적지(適地)에 낙엽송(落葉松)을 조림(造林)할 경우(境遇)는 반드시 좋은 생장(生長)은 기대할 수 없다. 이러한 차이(差異)에 대(對)하여 토양형태학적(土壤形態学的) 인자(因子) 이화학적(理化学的) 인자(因子)가 임목생장(林木生長)에 어떻게 영향(影響)하는 것인가를 Computer를 이용(利用)하여 추적(追跡)하여 보았다. 3. 조사(調査)된 임분(林分)은 인공조림지(人工造林地)의 성림지(成林地)로서 낙엽송(落葉松) 294Plot 잣나무259Plot에서 우세목(優勢木)의 표준목(標準木)을 벌채(伐採)하여 수간석해(樹幹析解)에 의(依)하여 지위지수(地位指數)를 결정(決定)하고 동시에 당해림지(當該林地)에서 토양단면조사(土壤斷面調査)를 실시(實施)하고 층위별(層位別)로 토양시료(土壤試料)를 채취(採取)하여 토양(土壤)의 이화학적(理化学的) 성질(性質)을 분석(分析)하여 수종별(樹種別)로 임지생산력(林地生産力) 구분표(區分表)를 만들어 토양(土壤)의 물리성(物理性) 화학성(化学性) 및 이화학성(理化学性)과 임목생장(林木生長) 관계(關係)를 구명(究明)하였다. 4. 토양(土壤)의 물리적(物理的) 요인(要因)과 임목생장(林木生長) 관계(関係)의 순위(順位)는 낙엽송(落葉松)에서는 퇴적양식(堆積樣式) 토심(土深) 토양수분(土壤水分), 표고(標高), 지형(地形), 토양형(土壤型), A층(層)의 두께, 견밀도(堅密度), 유기물함량(有機物含量), 토성(土性), 기암(基岩), 석력함량(石礫含量), 방위(方位), 경사등(傾斜等)으로 나타나고 잣나무는 토양형(土壤型), 견밀도(堅密度), 기암(基岩), 방위(方位), A층(層)의 두께, 토양수분(土壤水分), 표고지형(標高地形), 퇴적양식(堆積樣式), 토심(土深), 토(土), 석력함량(石礫含量), 경사등(傾斜等)의 순(順)이였다. 5. 토양(土壤)의 화학적(化学的) 요인(要因)과 임목생장관계(林木生長関係)의 순위(順位)는 낙엽송(落葉松)에서는 염기포화도(塩基飽和度), 토양유기물(土壤有機物), 석회(石灰) C/N율(率) 유기인산(有機燐酸), PH 치환성가리(置換性加里), 전질소(全窒素), 고토(苦土), 양(陽)ion 치환능력(置換能力), 염기총량(塩基總量), 나토륨 등(等)으로 나타났고 잣나무는 유효인산(有効燐酸), 염기총량(塩基總量), 전질소(全窒素) 나토륨, C/N율(率), PH석회(石灰), 염기포화도(塩基飽和度), 토양유기물(土壤有機物), 치환성가리(置換性加里), 양(陽)ion, 치환능력(置換能力), 고토(苦土) 등(等)의 순(順)이였다. 6. 토양(土壤)의 이화학성(理化学性)과 임목생장(林木生長) 관계순위(関係順位)는 낙엽송(落葉松)에서는 토심(土深), 퇴적양식(堆積樣式), 토양수분(土壤水分), PH, 지형(地形), 토양형(土壤型), 표고(標高), 전질소(全窒素), 견밀도(堅密度), 유효인산(有効燐酸), 토성(土性)A층(層)의 두께, 염기총량(塩基總量), 치환성가리(置換性加里), 염기포화도(塩基飽和度), 등(等)으로 나타났고 잣나무는 토양형(土壤型), 토양견밀도(土壤堅密度), 방위(方位), 유효인산(有効燐酸), A층(層)의 두께, 치환성가리(置換性加里), 토양수분(土壤水分), 염기총량(塩基總量), 표고(標高), 토심(土深), 염기포화도(塩基飽和度), 지형(地形), 전질소(全窒素), C/N율(率), 퇴적양식(堆積樣式), 등(等)의 순위(順位)였다. 7. 산림토양(山林土壤)의 물리적(物理的) 성질(性質)과의 중상관관계(重相関関係)에서는 낙엽송(落葉松) 0.9272, 잣나무 0.8996이며 토양(土壤)의 화학적(化学的) 성질(性質)은 낙엽송(落葉松) 0.7474, 잣나무 0.7365이였다. 이상(以上)과 같이 토양(土壤)의 물리적(物理的) 성질(性質)과 임목생장관계(林木生長関係)는 토양(土壤)의 화학적(化学的) 성질(性質)보다는 상관성(相関性)이 높은 것으로 나타났으나 토양(土壤)의 화학적(化学的) 제인자(諸因子)에 대(對)한 표시방법(表示方法)이 미흡(未洽)한 것이라고 사료(思料)되며 토양(土壤)의 화학적(化学的) 성질(性質)이 물리적(物理的) 성질(性質) 못지않게 중요(重要)한 것이라는 것을 입증(立証)하기에 이르렀다. 산림토양(山林土壤)의 형태학적(形態学的) 및 물리적(物理的) 중요인자(重要因子)와 토양(土壤) 화학적(化学的) 중요인자(重要因子)를 발췌(拔萃)한 산림토양(山林土壤)의 이화학적(理化学的) 성질(性質)과 임목생장(林木生長)과의 중상관관계(重相関関係)는 낙엽송(落葉松) 0.9434이고 잣나무 0.9103으로서 가장높은 상관성(相関性)을 나타냈다. 8. 편상관계수(偏相関係数)에서 나타난 것과 같이 낙엽송(落葉松)은 잣나무보다 토심(土深)이 깊어야 하며 퇴적양식(堆積樣式)에 있어서도 붕적토(崩積土), 포행토(葡行土)이여야하며 토양건습도(土壤乾湿度)에서도 적윤지(適潤地) 내지(乃至) 습윤지(湿潤地)를 요구(要求)하고 있으며 PH. 5.5~6.1을 요구(要求)하며 전질소(全窒素)(T-N), 토성(土性) 및 토양양료(土壤養料)도 낙엽송(落葉松)이 잣나무보다 훨씬 많은 토양조건(土壤條件)을 요구(要求)하고 있다. 즉(即), 토심(土深) 퇴적양식(堆積樣式), 지형(地形)의 기복(起伏), 토양건습도(土壤乾湿度), PH, N, 표고(標高), 토심등(土深等)이 낙엽송(落葉松)과 잣나무 적지(適地) 구분(区分)의 유효(有効)한 지표(指標)가 되며 토양형(土壤型), 토양견밀도(土壤堅密度)는 식재환경(植栽環境)의 변이폭(變異幅)이 넓으므로 지표성(指標性)은 있으나 낮다고 할 수 있다. 적지판별(適地判別)은 낙엽송(落葉松)은 토심(土深), 퇴적양식(堆積樣式), 지형(地形), 토양수분(土壤水分), PH, 토양형(土壤型), N, 토성등(土性等)이 생장(生長)을 도모(図謀)하는 지표인자(指標因子)인데 반(反)하여 잣나무는 토양형(土壤型) 토양견밀도(土壤堅密度) 유효인산(有効燐酸) 치환성가리(置換性加里) 등(等)이 생장(生長)을 도모(図謀)하는 유효(有効)한 요인(要因)이였다. 토양양료(土壤養料)에 대(對)하여서도 일반적(一般的)으로 잣나무보다 낙엽송(落葉松)이 요구도(要求度)가 크게 나타나고 있으나 $K_2O$에 대(對)하여서만 잣나무가 낙엽송(落葉松) 보다 많이 요구(要求)하고 있다. 9. 지금(只今)까지 임목생장(林木生長)에 크게 영향(影響)을 미치는 것은 산림토양(山林土壤)의 물리적(物理的) 성질(性質)이라는 일반개념(一般槪念)이었으나 본연구결과(本研究結果) 토양(土壤)의 화학적(化学的) 성질(性質)도 매우 중요(重要)한 임목생장요인(林木生長要因)이 된다는 것을 Computer를 이용(利用) 추적(追跡)하여 입증(立証)하였으며 아울러 종래(從來) 낙엽송(落葉松)과 잣나무 적지(適地) 구분(区分)이 불분명(不分明)하던 것을 명료(明瞭)하게 적지(適地) 특성(特性)을 구명(究明)하였다.

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미국 중부 토양의 이화학적 특성 추정을 위한 광 확산 반사 신호 전처리 및 캘리브레이션 (Preprocessing and Calibration of Optical Diffuse Reflectance Signal for Estimation of Soil Physical and Chemical Properties in the Central USA)

  • 나우정;;정선옥;김학진
    • Journal of Biosystems Engineering
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    • 제33권6호
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    • pp.430-437
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    • 2008
  • Optical diffuse reflectance sensing in visible and near-infrared wavelength ranges is one approach to rapidly quantify soil properties for site-specific management. The objectives of this study were to investigate effects of preprocessing of reflectance data and determine the accuracy of the reflectance approach for estimating physical and chemical properties of selected Missouri and Illinois, USA surface soils encompassing a wide range of soil types and textures. Diffuse reflectance spectra of air-dried, sieved samples were obtained in the laboratory. Calibrations relating spectra to soil properties determined by standard methods were developed using partial least squares (PLS) regression. The best data preprocessing, consisting of absorbance transformation and mean centering, reduced estimation errors by up to 20% compared to raw reflectance data. Good estimates ($R^2=0.83$ to 0.92) were obtained using spectral data for soil texture fractions, organic matter, and CEC. Estimates of pH, P, and K were not good ($R^2$ < 0.7), and other approaches to estimating these soil chemical properties should be investigated. Overall, the ability of diffuse reflectance spectroscopy to accurately estimate multiple soil properties across a wide range of soils makes it a good candidate technology for providing at least a portion of the data needed in site-specific management of agriculture.

Assessing Changes in Selected Soil Chemical Properties of Rice Paddy Fields in Gyeongbuk Province

  • Park, Sang-Jo;Park, Jun-Hong;Won, Jong-Gun;Seo, Dong-Hwan;Lee, Suk-Hee
    • 한국토양비료학회지
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    • 제50권3호
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    • pp.150-161
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    • 2017
  • This study was conducted with the data of monitoring on soil chemical properties of rice paddy soils in Gyeongbuk Province. The selected soil chemical properties were analyzed every 4 year from 1999 to 2015. The soil pH measured in 2015 was higher than pH 6.0, which was 0.3-0.4 pH unit higher than data until 2007 survey year. The mean content of organic matter was greater than $24g\;kg^{-1}$ since 2003, but 35% of soil samples remained below the recommended level ($20-30g\;kg^{-1}$) in 2015. The mean concentration of available phosphate was maintained at $40mg\;kg^{-1}$ higher than the upper recommendation level ($80-120mg\;kg^{-1}$), and more than 40% of paddy soils tested were found to have less than the recommendation level during the survey period. The exchangeable K concentration ranged from 0.25 to $0.39cmol_c\;kg^{-1}$. Exchangeable Ca showed an average at the optimum range ($5.0-6.0cmol_c\;kg^{-1}$) during the monitoring period. Exchangeable Mg decreased linearly ($0.02cmol_c\;kg^{-1}\;year^{-1}$) from $1.55cmol_c\;kg^{-1}$ as of 1999 to below the lower level of the recommendation range ($1.5-2.0cmol_c\;kg^{-1}$). The amount of available $SiO_2$ was increased significantly from 2011 to over the recommendation level (${\geq}157mg\;kg^{-1}$). It was revealed that the soil chemical properties of rice paddy fields was influenced by topology, soil texture, type and region as result of principal component analysis or cluster analysis. Therefore, an assessment on chemical properties of rice paddy soils should be performed to consider various soil physical conditions and agronomic practices such as fertilization, cropping system, and so on. Because of the high variability of nutrient levels across Gyeongbuk Province, nutrient management based on soil fertility test is required by respective farm land unit.

Decision of Available Soil Depth Based on Physical and Hydraulic Properties of Soils for Landscape Vegetation in Incheon International Airport

  • Jung, Yeong-Sang;Lee, Hyun-Il;Jung, Mun-Ho;Lee, Jeong-Ho;Kim, Jeong-Tae;Yang, Jae E
    • 한국토양비료학회지
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    • 제48권5호
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    • pp.522-527
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    • 2015
  • Decision of available soil depth based on soil physical and hydraulic properties for the $3^{rd}$ Landscape Vegetation Project in the Incheon International Airport was attempted. The soil samples were collected from the 8 sites at different depths, 0-20 and 20-60cm, for the three project fields, A, B, and C area. Physical and chemical properties including particle size distribution, organic matter content and electrical conductivity were analyzed. Hydrological properties including bulk density and water holding capacity at different water potential, -6 kPa, -10 kPa, -33 kPa, and -1500 kPa were calculated by SPAW model of Saxton and Rawls (2006), and air entry value was calculated by Campbell model (1985). Based on physical and hydrological limitation, feasibility and design criteria of soil depth for vegetation and landfill were recommended. Since the soil salinity of the soil in area A area was $19.18dS\;m^{-1}$ in top soil and $22.27dS\;m^{-1}$ in deep soil, respectively, landscape vegetation without amendment would not be possible on this area. Available soil depth required for vegetation was 2.51 m that would secure root zone water holding capacity, capillary fringe, and porosity. Available soil depth required for landscape vegetation of the B area soil was 1.51 m including capillary fringe 0.14 m and available depth for 10% porosity 1.35 m. The soils in this area were feasible for landscape vegetation. The soil in area C was feasible for bottom fill purpose only due to low water holding capacity.