• 제목/요약/키워드: Environmental-friendly agricultural soil

검색결과 95건 처리시간 0.026초

Transition Characteristics and Risk Assessment of Heavy Metal(loid)s in Barley (Hordeum vulgare L.) Grown at the Major Producing Districts in Korea

  • Kim, Da-Young;Kim, Won-Il;Yoo, Ji-Hyock;Kwon, Oh-Kyung;Cho, Il Kyu
    • 한국환경농학회지
    • /
    • 제40권1호
    • /
    • pp.60-66
    • /
    • 2021
  • BACKGROUND: The concern over heavy metal(loid)s in arable land and agricultural products increases for public health in recent years. This study aims to identify transition characteristics of heavy metal(loid)s and to assess dietary risk in barley grown at the major producing districts in Korea. METHODS AND RESULTS: The soil and barley samples were collected from 38 locations around the major producing districts at Jeollabuk-do in Korea for the propose of examining the concentrations of heavy metal(loid)s. The 34 barley samples were separately purchased on the market for the same survey. The average concentration and range of arsenic (As), cadmium (Cd) and lead (Pb) in barley grown at the major producing districts in Korea were 0.037 (0.016-0.094), 0.028 (0.004-0.083) and 0.137 (0.107-0.212) mg kg-1, respectively. Currently, the maximum allowable level for barley Pb is set at 0.2 mg kg-1 in Korea, and the monitoring results suggested that some samples exceeded the maximum allowable level and required appropriate farming management. Bio-concentration factor values by heavy metal(loid)s in barley were high at Cd, copper (Cu) and zinc (Zn), similar to other crops, while As and Pb were low, indicating low transferability. CONCLUSION: Human exposure to As, Cd and Pb through dietary intake of barley might not cause adverse health effects due to relatively low concentrations, although the Pb in some barley was detected higher than the maximum allowable level. Further study on uptake and accumulation mechanism of Pb by barley might be required to assess the human health risk associated with soil contamination.

벼 유기재배에 있어서 유기자재 시비방법에 따른 토양 및 수량 특성 변화 (Changes of the Soil Physic-Chemical Properties and Rice Productions with Methods Applied Organic Materials in Organic Culture)

  • 김현우;김병호;양승구;김홍재;손보균
    • 한국유기농업학회:학술대회논문집
    • /
    • 한국유기농학회 2009년도 하반기 학술대회
    • /
    • pp.285-285
    • /
    • 2009
  • 벼 유기재배에 있어서 녹비작물을 이용하여 화학비료를 대신하고 있으나 녹비를 이용하기 위해서는 월동 전에 파종하고 이듬해 벼 이앙 전에 토양에 환원을 해야 하는 번거로움이 있다. 따라서 벼 재배 직전에 유기자재를 이용하여 화학비료를 대신하고자 했을 경우 유기자재를 전층시비와 표층시비의 차이에 따른 토양중의 이화학적 특성과 벼의 수량특성의 변화를 구명하였다. 벼 유기재배시 토양양분공급용으로 이용되고 있는 유기자재 4종을 공시하여 유기자재의 질소 성분량(7kg/10a)을 기준으로 하여 이앙 20일전에 시비방법별로 전층시비와 표층시비 2처리로 구분하여 전량 기비시비하고 경운한 다음 동진1호를 시험품종으로 하여 2년 연속 시비처리와 벼를 재배하면서 일어나는 토양의 이화학적 특성과 벼 생육 및 특성의 변화를 시기별로 조사하였다. 시험 전 토양의 화학성은 표층시비구의 염류농도, 가리와 석회의 함량이 다소 높아서 염류농도가 전층 시비구 보다 높은 조건의 토양이었다. 유기자재별 무기화 정도는 전층시비보다 표층시비를 할 때 약 20~30일 정도 빨랐다. 토양 중의유기물 잔존함량은 시비방법간의 큰 차이는 없었으나 표층시비를 할 경우 후기로 갈수록 다소 증가되는 경향이었으나, 전질소 잔존함량은 감소되었다. 토양 액상과 공극율은 전층시비>표층시비였으며, 입단 형성력도 같은 경향이었다. 토양 효소활성은 PME의 활성은 유기자재를 전층처리하였을 때 촉진되었으며, $\beta$-Glucosidase의 활성은 전층보다 표층처리시 활성이 높았다. 시비방법에 따른 벼의 수량 특성은 시비방법별로는 표층시비를 할 경우 전층시비보다 4~7%의 높은 특성을 보였으며, 관행대비 1년차에는 3~9%의 낮았으나, 2년 연속처리를 할 경우 대조구와 비슷해 지는 경향이었다.

  • PDF

경남지역 논토양 지형과 화학성의 관계 (Topographical Chemical Properties of Paddy Soils in Gyeongnam Province)

  • 이영한;손연규;이성태;허재영;김민근;김은석;송원두;장용선;전원태;옥용식
    • 한국토양비료학회지
    • /
    • 제45권2호
    • /
    • pp.143-148
    • /
    • 2012
  • 경남지역 논토양의 양분관리를 위한 기초자료를 제공하기 위해 260 지점의 화학성분 변동을 1999년부터 2011년까지 4년 주기로 분석하였다. 논토양 pH, 유기물 함량, 유효인산 함량, 유효규산 함량, 치환성 칼슘 및 마그네슘 함량은 1999년에 비해 2011년에 유의적으로 증가하였다. 유기물 함량의 초과비율은 1999년 40.0%, 2003년 30.4%, 2007년 48.5%, 2011년 50.8%로 증가하였다. 유효인산 함량의 초과비율은 1999년 55.0%, 2003년 57.7%, 2007년 52.7%, 2011년 63.5%로 2배 이상 과잉 집적되었다. 유기물 함량은 홍적대지에서 가장 높았고 유효인산 함량은 산록경사지에서 가장 높았다. 논토양의 통계분석과 주성분 분석을 통하여 경남지역 논토양의 유효인산 함량은 지형별 화학특성을 구별할 수 있는 중요인자로 판단되었다.

Estimation of N Mineralization Potential and N Mineralization Rate of Organic Amendments in Upland Soil

  • Shin, Jae-Hoon;Lee, Sang-Min;Lee, Byun-Woo
    • 한국토양비료학회지
    • /
    • 제48권6호
    • /
    • pp.751-760
    • /
    • 2015
  • Management of renewable organic resources is important in attaining the sustainability of agricultural production. However, nutrient management with organic resources is more complex than fertilization with chemical fertilizer because the composition of the organic input or the environmental condition will influence organic matter decomposition and nutrient release. One of the most effective methods for estimating nutrient release from organic amendment is the use of N mineralization models. The present study aimed at parameterizing N mineralization models for a number of organic amendments being used as a nutrient source for crop production. Laboratory incubation experiment was conducted in aerobic condition. N mineralization was investigated for nineteen organic amendments in sandy soil and clay soil at $20^{\circ}C$, $25^{\circ}C$, and $30^{\circ}C$. N mineralization was facilitated at higher temperature condition. Negative correlation was observed between mineralized N and C:N ratio of organic amendments. N mineralization process was slower in clay soil than in sandy soil and this was mainly due to the delayed nitrification. The single and the double exponential models were used to estimate N mineralization of the organic amendments. N mineralization potential $N_p$ and mineralization rate k were estimated in different temperature and soil conditions. Estimated $N_p$ ranged from 28.8 to 228.1 and k from 0.0066 to 0.6932. The double exponential model showed better prediction of N mineralization compared with the single exponential model, particularly for organic amendments with high C:N ratio. It is expected that the model parameters estimated based on the incubation experiment could be used to design nutrient management planning in environment-friendly agriculture.

환경친화적 토양개량제의 농경지 중 잔류농약 경감효과 (Reduction Effects of Residual Pesticides using the Eco-friendly Soil Amendments in Agricultural Soil)

  • 이효섭;홍수명;김택겸;권혜영;김단비;문병철;문준관
    • 농약과학회지
    • /
    • 제20권4호
    • /
    • pp.312-318
    • /
    • 2016
  • 토양 중 잔류농약 관리방안을 위해서 8종의 토양개량제(패화석, 생석회, 석회고토, 규산질비료, 부엽토, 유박, 상토, 왕겨숯)를 이용하여 토양 중 잔류농약 경감효과를 조사하였다. 실험방법은 토양에 0.1 mg/kg 수준으로 농약을 첨가한 후 토양개량제를 토양무게의 2% 수준으로 처리하고 7일 동안 상온보관 후 잔류농약 경감효과를 확인하였다. 잔류량 분석은 QuEChERS 전처리법과 HPLC-MS/MS를 이용하였고, 추가적으로 pH에 따른 토양 중 잔류농약 경감효과를 확인하기 위해 0, 1, 3, 7일의 pH를 측정하였다. 이에 따라, 2% 생석회를 투입한 토양에서는 boscalid, dimethomorph 및 tricyclazole을 제외한 azoxystrobin 등 7종의 농약이 95% 이상 경감되는 효과를 나타냈다. 또한 토양개량제 투입에 따른 토양 pH는 생석회를 첨가한 토양에서 pH 12.8 수준으로 가장 높은 증가를 나타냈다.

실내조건에서 친환경농자재가 기생성 천적곤충에 미치는 영향 (Effects of Environment Friendly Agricultural Materials to Insect Parasitoids in the Laboratory)

  • 유용만;강은진;서미자;강명기;이희진;김다아;길미라;윤영남
    • 한국응용곤충학회지
    • /
    • 제45권2호
    • /
    • pp.227-234
    • /
    • 2006
  • 시설하우스의 주요 난방제 해충인 온실가루이, 진딧물 및 아메리카잎굴파리의 생물적 방제를 위해 사용되는 온실가루이좀벌, 콜레마니진디벌 및 굴파리좀벌 굴파리고치벌에 대한 친환경농자재 사용에 따른 영향을 조사하였다. 먼저 친환경농자재가 천적과 직접 접촉하였을 경우의 영향을 알아보기 위하여, 온실가루이좀벌의 머미에 분무하였을 경우, 61개 품목 중에서 살균성친환경농자재인 FEFAME (0.4%), 몰리브덴함유친환경농자재 G (2.7%)를 뿌린 경우에는 거의 우화하지 않았다. 또한, 성충에 미치는 잔효독성을 조사한 결과, 식물성추출물친환경농자재 J 와 몰리브덴함유친환경농자재인 EFAMMo C는 처리 후 48시간 후의 생존율이 0%였고, 미량요소함유친환경농자재인 EFAMME B (6.7%)., 식물성추출물친환경농자재인 EFAMPE H, 토양미생물친환경농자재인 EFAMSM H (13.3%), 살균성친찬경농자재인 FEFAM A와 D (20.0%) 등이 처리 48시간 후 생존율이 낮게 나타났다. 콜레마니진디벌의 경우 직접접촉에 대한 평가에서 머미에 분무하는 경우에는 대조구(물)조차도 22%의 낮은 우화율을 보이고 있으며, 성충에 대한 잔효효과의 경우에, 몰리브덴함유친환경농자재인 EFAMMo C는 처리 48시간 후 0%의 생존율을 나타내었고, 식물성추출물친환경농자재인 EFAMPE J (6.7%), EFAMPE F 와 EFAMPE H, 토양미생물친환경농자재인 EFAMSM H (13.3%)등이 20% 이하의 낮은 처리 후 48시간 후의 생존율을 나타내었다. 굴파리좀벌 굴파리고치벌의 경우에는 식물성추출물친환경농자재인 EFAMPE J가 처리 후 48시간 후 0%의 생존율를 나타내었고, 몰리브덴함유친환경농자재인 EFAMMo C가 53.3%로 낮은 처리 후 48시간 후의 생존율을 보였으며, 이외 친환경농자재에 대하여는 영향이 거의 없거나 낮은 것으로 나타나고 있다.

도시발생 슬러지를 이용한 환경친화적 인공배지 생산 (Production of Environment-friendly Artificial Media for Agriculture Using Urban Sludge)

  • 김선주;윤춘경;양용석
    • 한국농공학회지
    • /
    • 제40권2호
    • /
    • pp.102-111
    • /
    • 1998
  • Large amount of sludge have been generating in the process of water and wastewater treatment in urban area, and it has been making many environmental problems. Currently almost of sludge is landfilled, and since sludge is difficult to handle and dehydrate, the permeated water from the filled-in ground contaminate the surrounding soil and groundwater which may cause serious environmental and sociological problems. The organic component in sludge can be almost removed through the heat treatment process, and the final product is called artificial soil or artificial media according to the temperature control. To produce artificial media using sludge, chabazite and lime were used as an additive, and the mixture of sludge & additives was thermally treated in the firing kiln at about 800~1, 100。C for about fifteen minutes. The physical and chemical characteristics of the produced artificial media were analyzed, and it showed that it can be used as an artificial media for plant production or soil conditioner for farmland. The concentrations of the toxic heavy metals in the artificial media were lower than the soil quality standard for farmland. The characteristics of produced artificial media, using the mixture of sludge and additives through the heat treatment, is similar to the natural chabazite and soil. The analyzed result of the mineral composition of artificial media showed that it has a characteristics similar to natural stable soil, so the produced artificial media may be applied to farmland or water culture without causing adverse effect. Therefore this study showed that the above process can be a feasible alternative for sludge treatment.

  • PDF

Biological Potential of Bioorganic Fertilizer Fortified with Bacterial Antagonist for the Control of Tomato Bacterial Wilt and the Promotion of Crop Yields

  • Wu, Kai;Fang, Zhiying;Wang, Lili;Yuan, Saifei;Guo, Rong;Shen, Biao;Shen, Qirong
    • Journal of Microbiology and Biotechnology
    • /
    • 제26권10호
    • /
    • pp.1755-1764
    • /
    • 2016
  • The application of Bacillus sp. in the biological control of plant soilborne diseases has been shown to be an environmentally friendly alternative to the use of chemical fungicides. In this study, the effects of bioorganic fertilizer (BOF) fortified with Bacillus amyloliquefaciens SQY 162 on the suppression of tomato bacterial wilt were investigated in pot experiments. The disease incidence of tomato wilt after the application of BOF was 65.18% and 41.62% lower at 10 and 20 days after transplantation, respectively, than in the control condition. BOF also promoted the plant growth. The SQY 162 populations efficiently colonized the tomato rhizosphere, which directly suppressed the number of Ralstonia solanacearum in the tomato rhizosphere soil. In the presence of BOF, the activities of defense-related enzymes in tomato were lower than in the presence of the control treatment, but the expression levels of the defense-related genes of the plants in the salicylic acid and jasmonic acid pathways were enhanced. It was also found that strain SQY 162 could secrete antibiotic surfactin, but not volatile organic compounds, to suppress Ralstonia. The strain could also produce plant growth promotion compounds such as siderophores and indole-3-acetic acid. Thus, owing to its innate multiple-functional traits and its broad biocontrol activities, we found that this antagonistic strain isolated from the tobacco rhizosphere could establish itself successfully in the tomato rhizosphere to control soilborne diseases.

염내성 세균에 의한 보리의 염 스트레스 내성 촉진 (Enhancement of Salt Stress Tolerance of Hordeum vulgare. L by Salt-Tolerant Bacteria)

  • 이슬;;;송형근;조유성;이지훈
    • 한국환경농학회지
    • /
    • 제40권4호
    • /
    • pp.345-352
    • /
    • 2021
  • BACKGROUND: Salinity is one of the major limiting factors in agriculture that affect the growth and productivity of crops. It is economically difficult to artificially purify the soil affected by salt. Therefore, the use of plant growth-promoting bacteria (PGPB) in an effort to reduce stress caused by salt is emerging as a cost-effective and environment-friendly method. In this study, the purpose was to isolate the salt-tolerant bacteria from the rhizosphere soil and identify their ability to promote plant growth under salt stress condition. METHODS AND RESULTS: The isolates KST-1, KST-2, AST-3, and AST-4 that showed plant growth-promoting activity for barley in salt conditions were close to Bacillus cereus (KST-1, KST-2, and AST-4) and Bacillus thuringiensis (AST-3) and showed high salt tolerance up to 7% of additional NaCl to the media. When inoculated to barley, the strains had only minor effect on the length of the barley. However, the concentrations of chlorophyll in the barley leaves were found to be higher from the bacteria-inoculated pots than those from the uninoculated control. In particular, the chlorophyll concentration in Bacillus cereus AST-4 experiment was 5.45 times higher than that of the uninoculated control under the same experimental condition. CONCLUSION(S): The isolated salt-tolerant bacteria were found to influence on chlorophyll concentration of the barley. As represented by the strain AST-4, microbes may suggest a cost-effective and environmentally benign method to alleviate salt stress of crops cultivated in salt-accumulated soils such as reclaimed lands.

랜더링된 가축사체 잔류물 시용이 온실가스 및 고추 생육에 미치는 영향 (Effects of Application of Rendered Carcass Residue on Greenhouse Gases and Pepper Growth)

  • 박재혁;김동욱;강세원;조주식
    • 한국환경농학회지
    • /
    • 제42권4호
    • /
    • pp.457-464
    • /
    • 2023
  • The rendering residue generated by rendering disposal, an eco-friendly livestock carcass disposal method, is a useful agricultural resource. Methods for recycling this are being actively researched, and this study investigated the impact of applying rendered residue directly to soil on crop productivity and the agricultural environment. The chemical properties of the rendering residue were examined. The pH, OM, T-N, T-P, CaO, K2O, and MgO content values were 5.47%, 59.8%, 9.22%, 2.96%, 2.16%, 0.51% and 0.10%, respectively. Treatment conditions were divided into control, inorganic fertilizer, and rendering residue, and rendering residue corresponding to 50, 100, and 200% nitrogen content was applied based on the amount of inorganic fertilizer nitrogen input. Greenhouse gases and ammonia were collected during the cultivation period. Rendering residue increased both the yield and growth of peppers and was effective in improving nutrients such as pH and OM of the soil after harvest. However, compared to inorganic fertilizer treatment, it increased emissions of nitrous oxide and methane as well as ammonia. It is judged that the direct agricultural use of rendering residue is difficult, and a utilization method is needed.