• 제목/요약/키워드: physico-chemical soil analysis

검색결과 62건 처리시간 0.028초

침.활엽수림에서 산림토양의 이.화학적 특성 비교 (Comparison of Soil Physical and Chemical Properties between Coniferous and Deciduous forests in Mt. Palgong)

  • 허태철;주성현
    • Current Research on Agriculture and Life Sciences
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    • 제20권
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    • pp.39-47
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    • 2002
  • This study was carried out in order to produce useful material for the forest multiple use and forest protection by soil physico-chemical analysis of studied area in Mt. Palgong. The results of soil physico-chemical analysis and statistical analysis represented as following 2 points. 1. Soil depth was in the range of average 61.1 cm and soil texture was loamy sand and sandy loam except Donghwasa area. The part of solid phase and gaseous phase were higher than other areas, but liquid phase was less in verse. Soil water content was in an average 49.5%, penetrability was average $1.95{\times}E^{-2}cm/sec$ and the average of soil hardness was $1.64Kg/cm^2$. This data showed that soil water content, penetrability and soil hardness were good at Mt. Palgong forest soils. 2. Soil pH was the range of 3.4 to 6.0, organic carbon content was 2.8% that is nearly mean of the Korea brown forest soils, total N content is somewhat smaller than that of other places, and total average C/N ratios was 13.9. Average available $P_2O_5$ concentration was 5.05 mg/kg that is lower than that of any others. The concentration of available P of coniferous forests is higher than that of deciduous forests. Exchangeable cations content is similar to those of the Korea brown forest soil and the order of the cation content extent is $Ca^{2+}$ > $Mg^{2+}$ > $Na^+$ > $K^+$.

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온대 숲 토양 생태계에서 지렁이가 톡토기류 개체수에 미치는 영향 (Effect of Earthworms on Collembola Abundance in Temperate Forest Soil Ecosystem)

  • 이주형;박지현;유지연;한수현;남보은;김재근
    • 한국환경복원기술학회지
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    • 제13권6호
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    • pp.97-106
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    • 2010
  • Earthworm, a prominent ecosystem engineer within many terrestrial ecosystems, can exert profound influences on various abiotic/biotic environments through bioturbation processes such as burrowing, casting and mixing of litter and soil. In this study, we investigated how the presence or absence of earthworm (Oligochaeta) can alter the soil physico-chemical conditions and ultimately the distribution and abundance of Collembola which constitutes a large proportion of the soil fauna. During September 2010, soil organisms along with soil samples were collected from randomly installed 20 plots in Mt. Gwan-ak. We examined the differences in the abundance of Collembola among plot samples in respect to the presence/absence of earthworm and soil physico-chemical conditions (i.e., pH, $PO_4^{3-}$, $NO_3^{2-}$, organic matter (OM), electrical conductance and water content). Analysis of soil physico-chemical environment revealed a significantly higher organic matter content and electrical conductance in plots with earthworm compared to plots without earthworm. Abundance of Collembola were not only higher in plots with earthworm than in plots without earthworm, but were also positively correlated with availability of OM present in the environment. The results suggest that positive impacts of earthworm on the abundance of Collembola in this study may have been due to their ability to effectively modify soil physico-chemical conditions favored by Collembola. Such conspicuous influence of earthworm's activity on below-ground community suggests their potential significance in forest restoration or revegetation process.

인삼 유묘 뿌리썩음병 진전에 따른 토양군별 특성 (Characteristics of Soil Groups Basd on the Development of Root Rot of Ginseng Seedlings)

  • 박규진;정후섭
    • 한국식물병리학회지
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    • 제13권1호
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    • pp.46-56
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    • 1997
  • Based on the principal component analysis (PCA) of Richards' parameter estimates, ginseng field soils were grouped as the principal component 1 (PC1) and the principal component 2 (PC2). The microflora and physico-chemical characteristics of each soil group were compared to elucidate soil environmental factors affecting the disease development of root rot of ginseng seedling. Among 3 soil groups by PC1, there were differences in the populations of total fungi (TF) and Cylindrocarpon plus Fusarium (C+F), and the population ratio of Cylindrocarpon plus Fusarium to total fungi or total bacteria (C+F/TF, C+F/TB) in rhizoplane of ginseng seedlings, the population of total actinomycetes (TA) and the population ratio of total Fusarium to total actinomycetes (Fus/TA) in soil, and soil chemical properties (EC, NO3-N, K, Mn, ect.). Among 4 soil groups by PC2, there were differences in TF, C+F, TB, C+F/TF and C+F/TB in the rhizoplane, Trichoderma plus Gliocladium (T+G) in soil, and P2O5 content in soil. Especially, EC, NO3-N, K, K/Mg and Mn were positively correlated to PC1, and TA was negatively to PC1; however, TF, C+F, TB, C+F/TF and C+F/TB in the rhizoplane were significantly correlated to PC2 positively. On the other hand, microbes in the rhizoplane were not significantly correlated to the stand-missing rate (SMR), although TA and Fe/Mn were negatively correlated, and pH and Ca were positively correlated to SMR.

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산림 토양의 이화학적 성질과 낙엽송 임분의 지위지수와의 관계 (Relation of the Physico-chemical Properties of Forest Soil to Site Indices of Larix leptolepis Stands)

  • 박남창;이광수;박문섭;신현철;전권석;정수영
    • 한국산림과학회지
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    • 제97권6호
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    • pp.589-596
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    • 2008
  • 우리나라 주요 수종인 낙엽송 임분의 80개 표준지를 대상으로 산림토양의 이화학적 성질 13개 요인에 의하여 지위지수를 추정함으로써 조림예정지, 수종갱신지 등의 미립목지에 대한 낙엽송 임분의 적지를 파악하고자 하였다. 단계별 회귀분석법에 의한 지위지수 추정 결과와 임목생장과 토양의 이화학적 성질과의 관계를 요약하면 다음과 같다. 토양의 이화학적 성질이 지위지수 추정식에 미치는 영향으로 토양산도 및 전질소 인자는 대체적으로 정의상관으로 나타났으며, 유기물 및 유효인산은 부의 관계로 나타났다. 지위지수 추정식에서 인자별 기여도를 분석하기 위하여 표준편회귀계수를 구하여 기여도가 높은 인자를 분석한 바, 낙엽송 임분 토양 A층에서는 염기포화도, 양이온 치환용량, 모래, 치환성 칼슘, 치환성 마그네슘 인자 순으로, 낙엽송 임분 토양 B층에서는 치환성 칼슘, 염기포화도, 전질소, 유효인산, 점토 인자 순으로 나타났다. 한편 낙엽송 임분에서 토양 인자별 A, B층에서 공통적으로 기여도가 높은 인자는 치환성 칼슘과 염기포화도로 주로 나타났다. 이러한 연구결과는 미립목지에서 낙엽송림의 적지를 판별하는데 그 활용가치 및 기대효과가 높을 것이라 사료된다.

울진 소광리 금강소나무림의 송이발생지와 능이발생지의 토양환경 비교 (Comparison to Soil Environment of Tricholoma matsutake and Sarcodon aspratus at Uljin Sokwang-ri Pinus densiflora for. erecta Uyeki Forest)

  • 허태철;주성현
    • Current Research on Agriculture and Life Sciences
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    • 제20권
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    • pp.77-82
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    • 2002
  • This study was carried out in order to produce useful material for the forest multiple use and forest protection by physico-chemical soil analysis of studied area in Sokwang-ri Forest Genetic Resource Protection Forest which was divided into in standard plots include Tricholoma matsutake and Sarcodon aspratus production forest. The result of physico-chemical soil analysis represented as following. The soil type of T. matsutake production forest was Dry brown forest soil(B1), while on the other hand the soil type of S. aspratus production forest was Moderately moist brown forest soil(B3). Between T. matsutake and S. aspratus production forest did not result in significant changes in soil pH(5.22-5.60) and soil depth(47cm), but available phosphorus, carbon, and nitrogen contents were different results. CN ratio of the fairy ring of T. matsutake was quite lower than that in S. aspratus production forests, which indicated that T. matsutake production forest was built up in the relatively immature soils which contain little organic matter. Generally, it was predicted that Pinus densiflora for. erecta forest succeeded to deciduous tree forest in stable soil environments. To conserve these T. matsutake and S. aspratus production forest, the contents of available phosphorous and exchangeable cation should be increased by continuous soil environment management and it should be established the secondary growth forests of old aged Pinus densiflora for. erecta trees as soon as possible.

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지하수 세균 군집에 미치는 물리화학적 환경요인의 영향 (The Effects of Physico-Chemical Factors on the Microbial Population in Groundwater)

  • 안영범;김여원;이대영;민병례;최영길
    • 대한지하수환경학회지
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    • 제5권4호
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    • pp.215-222
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    • 1998
  • 지하수 세균 군집에 미치는 환경요인의 영향을 분석하기 위하여, 서울 시내에서 음용수로 사용하는 2개 정점과 음용수외 생활용수로 사용하고 있는 8개 정점을 대상으로 조사하였다. 물리.화학적 환경요인과 중금속의 농도, 및 세균 군집의 분포 등 40개 변수를 분석한 결과, 음용수로 사용하는 정점을 제외한 나머지 정점에서 질산성 질소와 암모니아가 용수목적별 수질기준의 기준치 이상으로 측정되었다. 총세균은 5.1~41.4$\times$$10^{5}$cells/ml 범주로, 종속영양세균과 기능성 세균군집은 0.01~29.6$\times$$10^4$cfu/ml의 범주로 조사되었다. 세포외 효소의 활성도는 0.005~11.3$\mu$M/l/hr 의 범주로 나타났고, lipase, phophatase, $\beta$-glucosidase, cellulase, chitinase, amylase 순으로 활성도가 나타났다. 정점별로 조사된 세균 군집에 미치는 환경요인의 상호관계는 대응분석(correspondence analysis)과 다차원 척도법 분석(multidimensional scaling; MDS)으로 하였으며, 그 결과 4개의 집단으로 구분되었으며, 세균 군집에 미치는 주요한 환경요인은 정점별 잠재오염원과 일치하는 양상을 보였다.다.

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왕겨 바이오차 및 음식물쓰레기 바이오차가 밭 사양토에서 상추발아 및 수용성 유기탄소 용출에 미치는 영향 평가 (Evaluating germination of lettuce and soluble organic carbon leachability in upland sandy loam soil applied with rice husk and food waste biochar)

  • 한경화;장용선;정강호;조희래;손연규
    • 농업과학연구
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    • 제41권4호
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    • pp.369-377
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    • 2014
  • This study was carried out to evaluate the effect of rice husk (RHB) and food waste biochar (FWB) on upland soil with sandy loam texture, in terms of physico-chemical analysis, lettuce seed germination test, and orgainc carbon leaching experiment. RHB and FWB had different physico-chemical properties each other. Carbon to nitrogen ratio (C/N ratio) of RHB was 32, showing two times higher than that of FWB. FWB had high salt and heavy metal content, compared to RHB. This is probably due to different ingredients and production processing between two biochars each other. Results of germination test with Lettuce showed lower germination rate when FWB was applied because of higher salt concentration compared to control and RHB. Organic carbon leaching test using saturated soil column (${\Phi}75{\times}h75mm$) with $10MT\;ha^{-1}$ biochar application rate, showed higher saturated hydraulic conductivity in rice husk biochar treatment column, compared to control and food waste biochar treatment. The highest total organic carbon concentration in column effluent was lower than those in both of rice husk biochar and food waste biochar, whereas the differences was negligible after 9 pore volumes of effluent. Consequently, biochars from byproducts such as rice husk and food waste in sandy loam textured upland soil could enhance a buffer function such as reduction of leaching from soil, but the harmful ingredient to crops such as high salt and heavy metals could limit the agricultural use of biochars.

Evaluation of the performance of encapsulated lifting system composting technology with a GORE(R) cover membrane: Physico-chemical properties and spectroscopic analysis

  • Al-Alawi, Mutaz;El Fels, Loubna;Benjreid, Ramadan;Szegi, Tamas;Hafidi, Mohamed;Simon, Barbara;Gulyas, Miklos
    • Environmental Engineering Research
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    • 제25권3호
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    • pp.299-308
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    • 2020
  • Composting is among the most effective integrated waste management strategies used to recycle sewage sludge (SS) waste and generate a useful product. An encapsulated lifting system is a relatively new industrial-scale composting technology. The objective of this study was to evaluate the effectiveness of composting dewatered stabilized SS mixed with green waste using this new technology. The composting process was monitored by changes in the physico-chemical properties, UV-visible spectra, and fourier transform infrared (FTIR) spectra. The composting temperature was steady in the thermophilic range for 24 and 12 d in the intensive and maturation phases, respectively, which fulfilled the disinfection requirement. Moreover, the temperature increased rapidly to 76.8℃ within three days, and the thermophilic temperatures peaked twice and lasted longer than in traditional composting, which accelerated SS degradation and decreased the composting period necessary to obtain mature compost. FTIR spectroscopic analysis showed a diminished in methyl group derived from methylene C-H aliphatic groups because of organic matter degradation by microorganisms and an increased number of aromatic chains. The new technology may be a viable and sustainable alternative for SS management that converts waste into compost that is useful as a soil amendment.

생태독성평가를 위한 Soil Extracts, Soil Elutriates, Soil Suspensions 추출기법 (Review of the Extraction Methods of Soil Extracts, Soil Elutriates, and Soil Suspensions for Ecotoxicity Assessments)

  • 남선화;안윤주
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권3호
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    • pp.15-24
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    • 2014
  • Soil pollution has been recognized as a serious problem because it causes groundwater pollution through medium contacts. Although concentration of individual chemical could be more easily measured by physico-chemical analysis, it is not easy to consider the bioavailability of edaphic receptors living in soil or groundwater. To measure the toxicity of soil, the soil extracts (soil elutriates or soil suspensions in the other words) are often used due to the difficulties of extracting soil pore water. In this study, we reviewed 15 toxicity test methods found in literature to analyze the detail of each extraction method and to recommend the most frequently used extraction methods. The identified most commonly used extraction methods are as following: The 1 : 4 soil:water ratio, 24 hours shaking time, room temperature, dark, and separation of supernatant using a $0.45{\mu}m$ pore size filter.