• Title/Summary/Keyword: Soil chemical and biological properties

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특허맵을 이용한 지하수 오염현황 분석 연구 (Groundwater Pollution Analysis Using Patent Map)

  • 임은정;김성현;현동훈
    • 한국물환경학회지
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    • 제28권4호
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    • pp.601-607
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    • 2012
  • Advance countries are trying hard to acquire intellectual properties on the technologies for prior occupation in the future industry. Patent contains meaningful technical achievement. Patent map is required to propose the strategies for efficient development and use of these technologies. In this paper, analysis of foreign and domestic patents for groundwater pollution technologies analysis. It was analyzed by utilizing two processes of patent map and paper analysis. The patents in Korea, USA, Japan, China, and Europe were searched. It was found that the number of patent for groundwater pollution was USA patent 44.3%, Japan patent 17.1%, China 13.3%, EU 1.9% and Korea patent 23.3%, respectively.

The Effect of Food Waste Compost and Livestock Manure on Chinese Cabbage (Brassica rapa var. glabra) Growth

  • Lee, Young Don;Yoo, Jae Hong;Joo, Jin Ho
    • 한국토양비료학회지
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    • 제50권6호
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    • pp.547-553
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    • 2017
  • Treatment of food waste is becoming a big issue due to their significant quantities. Composting could be an effective alternative for food waste management which could be used as soil conditioner or fertilizer with little concerns about heavy metals and pathogens. The purpose of this research was to evaluate the effect of food waste on Chinese cabbage growth and soil properties. 9 different treatments (two livestock manures, two food wastes, two livestock manures + chemical fertilizer, two food wastes + chemical fertilizer, and control) were applied to Chinese cabbage. All treatments were carried out in 3 replicates. We measured leaf length, leaf width, fresh weight, dry weight, and leaf greenness of Chinese cabbage. Treatment of one of food waste composts significantly increased leaf length and leaf width of Chinese cabbage by 28.6, 26.6, 67.7, and 59.9%, respectively, in comparison to those of control, while no significant differences for leaf greenness were shown. Application of food waste compost resulted in significant increase of EC, available $P_2O_5$, CEC, organic matter, and exchangeable cations. However, further researches are needed to reduce NaCl content of food waste.

중국 길림성 백성지역 흑개토의 이화학성 및 인산 흡착 특성 (Physical-chemical Properties and Phosphorus Adsorption Characteristics of Soils in Baicheng, China)

  • 김성애;이상모;최우정;류순호
    • Applied Biological Chemistry
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    • 제44권2호
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    • pp.92-96
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    • 2001
  • 농경지로의 개발 가능성이 높은 중국 길림성 백성지역의 주요한 토양인 흑개토의 이화학성 및 인산 흡착특성을 조사하였다. 토지 이용방식 또는 재배작물이 서로 다른 중국 길림성 백성지역 4곳과 중국 용정에 위치한 연변 대학교 농과대학 부속 시험장 1곳에서 1993년 8월에 토양을 채취하여 실험을 수행하였다, 중국 길림성 백성지역 토양의 $_PH$는 미경작지 10.2, 경작지는 $7.3{\sim}7.6$으로 비교적 높았다. 양이온 치환용량은 20 cmol(+) $kg^{-1}$ 이상이었으며, 치환성 양이온 중 Na는 특히 표토에 많이 존재하였으며, Ca의 함량이 매우 높아 Ca 포화율이 100% 이상을 나타내었다. 토양 포화 침출액의 주요 양이온은 Na이었으며, ECe와 SAR을 기준으로 백성 미경작지 토양은 염류-나트륨성 토양, 경작지 토양은 나트륨성 또는 일반 토양에 해당하였다. 백성지역 토양의 유효인산 함량은 10mg P $kg^{-1}$ 미만으로 아주 낮았으며, 최대 인산흡착량은 $ $ mg P $kg^{-1}$이었다. 길림성 백성지역 토양의 경우 유효인산 함량이 매우 낮아 토양 비옥도 중진을 위한 인산질 비료의 시용과 함께 토양 투수성의 개선 등과 같은 적절한 토양 관리가 필요하며, 용정지역 토양의 경우에는 인산흡착 특성을 고려하여 인의 과잉 축적을 방지하기 위한 인산질 비료의 적정 시용을 권장하여야 한다.

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Effect of Rice Bran and Wood Charcoal on Soil Properties and Yield of Continuous Cropping of Red Pepper

  • Won, J.G.;Jang, K.S.;Hwang, J.E.;Kwon, O.H.;Jeon, S.G.;Park, S.G.;Park, K.C.;Suh, Y.J.
    • 한국유기농업학회지
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    • 제19권spc호
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    • pp.218-221
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    • 2011
  • To improve the soil properties of physical and microbial community rice bran and wood charcoal were applied in the continuously cultivated plastic film house soil. Soil physical properties were improved by application of rice bran and charcoal compared to chemical fertilizer application (control) by 8~14% in bulk density and 5~9% in soil porosity. Changes in the biological ratio indexes of fatty acids in the soils were detected depending on the inputted materials. Especially in application of rice bran including mixture with charcoal, much more fungi and less bacteria were detected and the ratio of fungi to bacteria was increased, suggesting the more organic carbon metabolically active in these treatments. The high ratio of aerobe to anaerobe suggested the better aerobic conditions were in the soil inputted wood charcoal. From these results, it is important and possible to select some materials for the organic pepper cultivation, which may improve the poor condition soil.

인삼 연작장해 유발토양과 억제토양의 화학성, 미생물상 및 뿌리썩음병 발생 특성 (Soil Chemical Properties, Microbial Community and Ginseng Root Rot in Suppressive and Conducive Soil Related Injury to Continuously Cropped Ginseng)

  • 이성우;이승호;서문원;장인복;권나영;허혜지
    • 한국약용작물학회지
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    • 제28권2호
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    • pp.142-151
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    • 2020
  • Background: Suppressive soil inhibits soil-borne diseases if pathogens are present, and ginseng does not show injury even if replanted in the same field. Methods and Results: Soil chemical properties and microbial community of soil were investigated in soil suppressive and conducive to ginseng root rot. Root rot disease in 2-year-old ginseng was tested by mixing conducive soil, with suppressive or sterilized suppressive soil. The root rot ratio in suppressive soil was 43.3% compared to 96.7% in conducive soil. Biological factors acted to inhibit the root rot because disease ratio was increased in the sterilized suppressive soil compared to that in non-suppressive soil. The suppressive soil had lower pH, nitrate nitrogen and sodium than the conducive soil. Dominat bacteria and fungi (more than 1.0%) were 3 and 17 species in conducive soil and 7 and 23 species in suppressive soil, respectively. The most predominant fungi were Pseudaleuria sp. HG936843 (28.70%) in conducive soil and Pseudogymnoascus roseus (7.52%) in suppressive soil. Conclusion: Microbial diversity was more abundant in the suppressive soil than in the conducive soil, and the proportion of pathogens (Nectriaceae sp.) causing root rot was significantly lower in the suppressive soil than in the conducive soil.

Halotolerant Plant Growth Promoting Bacteria Mediated Salinity Stress Amelioration in Plants

  • Shin, Wansik;Siddikee, Md. Ashaduzzaman;Joe, Manoharan Melvin;Benson, Abitha;Kim, Kiyoon;Selvakumar, Gopal;Kang, Yeongyeong;Jeon, Seonyoung;Samaddar, Sandipan;Chatterjee, Poulami;Walitang, Denver;Chanratana, Mak;Sa, Tongmin
    • 한국토양비료학회지
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    • 제49권4호
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    • pp.355-367
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    • 2016
  • Soil salinization refers to the buildup of salts in soil to a level toxic to plants. The major factors that contribute to soil salinity are the quality, the amount and the type of irrigation water used. The presented review discusses the different sources and causes of soil salinity. The effect of soil salinity on biological processes of plants is also discussed in detail. This is followed by a debate on the influence of salt on the nutrient uptake and growth of plants. Salinity decreases the soil osmotic potential and hinders water uptake by the plants. Soil salinity affects the plants K uptake, which plays a critical role in plant metabolism due to the high concentration of soluble sodium ($Na^+$) ions. Visual symptoms that appear in the plants as a result of salinity include stunted plant growth, marginal leaf necrosis and fruit distortions. Different strategies to ameliorate salt stress globally include breeding of salt tolerant cultivars, irrigation to leach excessive salt to improve soil physical and chemical properties. As part of an ecofriendly means to alleviate salt stress and an increasing considerable attention on this area, the review then focuses on the different plant growth promoting bacteria (PGPB) mediated mechanisms with a special emphasis on ACC deaminase producing bacteria. The various strategies adopted by PGPB to alleviate various stresses in plants include the production of different osmolytes, stress related phytohormones and production of molecules related to stress signaling such as bacterial 1-aminocyclopropane-1-carboxylate (ACC) derivatives. The use of PGPB with ACC deaminase producing trait could be effective in promoting plant growth in agricultural areas affected by different stresses including salt stress. Finally, the review ends with a discussion on the various PGPB activities and the potentiality of facultative halophilic/halotolerant PGPB in alleviating salt stress.

돈분 액비의 연용이 벼의 수량과 토양에 미치는 영향 (Changes in Soil Properties and Rice Production as Influenced by the Consecutive Application of Liquid Swine Manure in Paddy Field)

  • 류종원
    • 한국유기농업학회지
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    • 제24권2호
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    • pp.221-234
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    • 2016
  • 본 연구는 벼에 돈분액비와 화학비료를 연용하여 살포하였을 때 돈분액비가 벼의 수량과 미질 및 토양 화학성에 미치는 영향을 구명하고자 2012년부터 3년간 수행하였다. 시험은 강원도 철원군 농가 포장에서 오대벼를 공시하여 실시하였다. 시비는 돈분액비를 질소 검정시비량을 기준으로 하여 100%에 해당하는 양을 처리하였으며, 화학비료 처리구와 비교하였다. 돈분액비의 시용년수에 따른 벼의 분얼수 및 초장은 돈분액비 1년 시용구와 화학비료 사이에 유의한 차이를 나타내지 않았다. 돈분액비 3년 시용구의 분얼수는 화학비료 시용구보다 많았다. 쌀의 수량은 돈분액비 1년 시용구가 화학비료 대비 7% 감소하였다. 그러나 돈분액비 3년 연속 시용구에서 $495kg\;10a^{-1}$의 수량을 얻어 화학비료 대비 8% 증수하였다. 돈분액비로 벼를 3년 재배하였을 때 쌀의 단백질 함량은 7.01%로 대조구인 화학비료 시용구 보다 높은 수준이었다. 아밀로스 함량은 15.5~17.0%로 처리구별 유의성은 없었다. 식미치를 Toyo 식미계를 이용하여 조사한 결과 돈분액비 100% 처리구의 식미치가 65.3%로 화학비료 시용구보다 낮은 수준이었다. 쌀의 품위 특성에서 돈분액비 100% 처리구의 완전미 비율은 78.7%로 낮았으며, 불완전미의 비율을 높인 주 원인은 분상질립, 피해립의 비율이 높았기 때문이었다. 3년간 돈분 액비를 계속 사용한 결과, 화학비료 처리에 비해 토양 중 칼륨과 아연의 함량이 높았으나 다른 중금속 함량도 관행 화학비료 처리와 크게 다르지 않았다. 이상의 결과를 미루어 볼 때 돈분액비의 3년 시용시 돈분 액비의 연용이 쌀의 수량성에 나쁜 영향을 미치지는 않을 것으로 판단되지만 쌀의 단백질 함량이 증가하고 Toyo 식미치와 완전미 비율은 감소하는 결과를 얻었다. 돈분액비 3년 시용 후 토양의 칼륨 축적이 되므로 토양검정에 의한 액비 적량시용이 요구된다.

지반 조성과 관리방법에 따른 골프장 토양내 미생물 군집의 변화 (Changes of Microbial Community Associated with Construction Method and Maintenance Practise on Soil Profile in Golf Courses)

  • 문경희;김기동;주영규
    • 아시안잔디학회지
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    • 제23권2호
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    • pp.219-228
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    • 2009
  • 골프장은 인공적으로 건설되어 지고 관리되므로 당연히 환경의 변화가 생성된 곳이므로 건설방식이나 관리 방법에 따라 코스 내 토양 미생물 군집 구조의 특이성이 있을 것이다. 현재 제주도에서는 농약 용탈 저감방안으로 골프코스 그린지반구조에 농약 흡착층을 설치하고 그 재료로 흡착성능이 우수한 입상 활성탄 1등급을 사용할 것을 환경 영향평가서에 명시하고 있다. 본 실험은 활성탄이 처리된 제주도 A, B 골프장을 대상으로 토양에서의 화학적 특성변화와 미생물 군락변화를 분석하였다. 2007년 4월, 6월, 8월 10월에 걸쳐서 총 박테리아 수, 총 곰팡이 수, 수분함량 및 토양 이화학성(pH, EC, NO3-,NH4+ 및 P2O5)의 변화를 그린과 페어웨이에서 깊이별(표토:0-15cm, 심토: 15-30cm)로 조사되었다. 그 결과, 활성탄의 시용이 수분 보유 능력, 토양산도, 전기전도도에 긍정적인 영향을 보였으나, GAC의 물질의 수착 능력에 의하여 유효 양분들을 많이 보유하는 데 도움이 될 것이라 예상하였으나, 본 실험에서는 가용성 질산과 암모늄, 및 인산의 농도를 높이는 효과는 없었다. 토양 미생물 실험에 있어서는 총 박테리아 및 총 곰팡이의 시기적 변화가 다양성을 보였다. 이러한 현상은 농약의 시용에 따라 직접적인 관련이 있을 것으로 예상되었으나, 총 곰팡이/총 박테리아 비(F/B ration) 는 활성탄을 혼합한 토양 심토(15-30cm)에서 일정한 수치를 유지하였다. 따라서, GAC 토양층의 설치 방법이나 시비와 시약 등이 미생물군집의 변화에 영향을 주며 이는 농약의 시용이 잔디관리에 큰 변수로 작용한다는 것을 시사한다.

Analysis of Soil Microbial Communities Formed by Different Upland Fields in Gyeongnam Province

  • Kim, Min Keun;Ok, Yong Sik;Heo, Jae-Young;Choi, Si-Lim;Lee, Sang-Dae;Shin, Hyun-Yul;Kim, Je-Hong;Kim, Hye Ran;Lee, Young Han
    • 한국토양비료학회지
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    • 제47권2호
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    • pp.100-106
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    • 2014
  • The present study investigated variations in soil microbial communities by fatty acid methyl ester (FAME) and the chemical properties at 24 sites of upland soils in Gyeongnam Province. The electrical conductivity of the soil under potato cultivation was significantly higher than those of the red pepper and soybean soils (p < 0.05). The gram-negative bacteria community in potato soil was significantly lower than those in the garlic and soybean soils (p < 0.05). The communities of actinomycetes and arbuscular mycorrhizal fungi in the red pepper soil were significantly higher than those in the potato soil (p < 0.05). In addition, the cy17:0 to 16:$1{\omega}7c$ ratio was significantly lower in red pepper, soybean, and garlic soils compared with potato soil, indicating that microbial stress decreased. Consequently, differences in soil microbial community were highly associated with cultivated crop species, and this might be resulted from the difference in soil chemical properties.

The changes of soil salinity in the Pinus densiflora forest after seawater spread using a fire-fight helicopter

  • Park, Jeong Soo;Koo, Kyu-Sang;Lee, Eun Ju
    • Journal of Ecology and Environment
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    • 제38권4호
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    • pp.443-450
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    • 2015
  • The east coast of the Korean Peninsula is susceptible to fires because of the low rainfall in winter and spring, and large forest fires have occurred in this area. Lack of fresh water to combat fires has hampered efforts to prevent widespread forest fires in this region. Seawater has not been used as a suppressant because of possible detrimental effects of salt. We investigated the mobility of saline water in the forest soil and their effect on the microbial activity. Using a fire-fighting helicopter, seawater was sprayed over three plots (50 × 100 m) located on the eastern slope of the Baekdu mountain range in South Korea in April, 2011. We sampled the soil in April 4, May 20, and August 5 to determine the amount of salt that remained in the soil. The electrical conductivity value of the soil decreased to <400 μS/cm over a 1-month period. Approximately, four months after the application of seawater, the electrical conductivity value and Na+ content in all treatment plots did not significantly differ to those of the control plot, and total microbial activity also recovered to that of the control. Our results indicate that the amount of rainfall, soil physical-chemical properties, and topological factors may be a critical factor determining the mobility of saline water in forest soil.