http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
생물환원 철광물촉매에 의한 지하수 내 RDX 환원:군사격장 현장적용 실증결과
공효영,이광표,이종열,경대승,이우진,배범한,Gong, Hyo-young,Lee, Kwang-pyo,Lee, Jong-yeol,Kyung, Daeseung,Lee, Woojin,Bae, Bumhan 한국지하수토양환경학회 2015 지하수토양환경 Vol.20 No.6
This study investigates the in-situ implementation of bio-regenerated iron mineral catalyst to remove explosive compounds in ground water at a military shooting range in operation. A bio-regenerated iron mineral catalyst was synthesized using lepidocrocite (iron-bearing soil mineral), iron-reducing bacteria Shewanella putrefaciens CN32, and electron mediator (riboflavin) in the culture medium. This catalyst was then injected periodically in the ground to build a redox active zone acting like permeable reactive barrier through injection wells constructed at a live fire military shooting range. Ground water and core soils were sampled periodically for analysis of explosive compounds, mainly RDX and its metabolites, along with toxicity analysis and REDOX potential measurement. Results suggested that a redox active zone was formed in the subsurface in which contaminated ground water flows through. Concentration of RDX as well as toxicity (% inhibition) of ground water decreased in the downstream compared to those in the upstream while concentration of RDX reduction products increased in the downstream.
RUSLE 모델에 의한 군사격장 피탄지 토양유실량 평가: 토양 유실과 오염 화약물질 이동 상관성
공효영,이광표,이종열,김범준,이아름,배범한,김지연,Gong, Hyo-Young,Lee, Kwang-Pyo,Lee, Jong-Yeol,Kim, Bumjoon,Lee, Ahreum,Bae, Bumhan,Kim, Ji-Yeon 한국지하수토양환경학회 2012 지하수토양환경 Vol.17 No.6
The applicability and accuracy of Revised Universal Soil Loss Equation (RUSLE) model on the estimation of soil loss at impacted area of shooting range was tested to further the understanding of soil erosion at shooting ranges by using RUSLE. At a shooting range located in northern Kyunggi, the amount of soil loss was estimated by RUSLE model and compared with that estimated by Global Positioning System-Total Station survey. As results, the annual soil loss at a study site (202 m long by 79 m wide) was estimated to be 2,915 ton/ha/year by RUSLE and 3,058 ton/ha/year by GPS-TS survey, respectively. The error between two different estimations was less than 5%, however, information on site conditions should be collected more to adjust model coefficients accurately. At the study shooting range, sediments generated by rainfall was transported from the top to near the bottom of the sloping face through sheet erosion as well as rill erosion, forming a gully along the direction of the storm water flow. Coarser fractions of the sediments were redeposited in the limited area along the channel. Distribution characteristics of explosive compounds in soil before and after summer monsoon rainfall in the study area were compared with the erosion patterns. Soil sampling and analyses results showed that the dispersion of explosive compounds in surface soil was consistent with the characteristics of soil erosion and redeposition pattern of sediment movements after rainfalls.
지상원격측정 센서를 이용한 벼의 생체량 및 질소 영양 평가
강성수(Seong-Soo Kang),공효영(Hyo-Young Gong),정현철(Hyun-Cheol Jung),김이현(Yi-Hyun Kim),홍석영(Suk-Young Hong),홍순달(Soon-Dal Hong) 한국토양비료학회 2010 한국토양비료학회지 Vol.43 No.6
지상원격측정 센서 반사율 지표는 비파괴적으로 실시간으로 빠르게 생육 중 작물의 생체량, 질소 스트레스정도를 예측할 수 있는 도구로 연구되고 있다. 본 연구의 목적은 질소 시비량 수준별로 재배된 벼 (Oryza sativa L.)의 질소흡수량, 생체량 및 수량과 지상원격측정센서 반사율 지표들의 상호관계로부터 효율적인 반사율 지표를 선발하고 반사율 지표를 통한 벼 생육 중 질소시비수준을 평가하고자 하였다. 질소시비수준 0, 70,100, 130 kg N ha<SUP>-1</SUP>별로 처리된 시험구의 캐노피 반사율을 여러 종류의 수동형과 능동형 지상원격측정 센서로 각 생육시기별로 측정하였고 생체량과 질소흡수량 및 수량을 조사하여 상호관계를 분석하였다. 수동형 센서보다는 능동형 센서가 생육시기별 벼의 지상부 건물중, 수량, 질소농도 및 질소흡수량과 더 밀접한 상관을 나타냈으며 생육 후반으로 갈수록 상관계수 크기는 낮아지는 경향이었으나 유의성은 P<0.01 수준이 계속 유지되었다. 가장 밀접한 관계를 보인 반사율 지표는 Crop Circle-active 센서로 측정한 NIR/Red, NIR/Amber 지표였다. 특히 이삭거름 시비시기인 7월 중순의 Crop Circle 센서로 측정한 NIR/Red, NIR/Amber 지표는 건물중, 엽면적 지수와 상관계수 0.92 이상의 고도로 유의성 있는 정의 상관관계 (P<0.01)를 보였다. NIR/Red와 NIR/Amber 지표로 계산한 충족지수의 시비수준에 대한 회귀에서 회귀곡선은 충족지수 변동의 91%와 92%를 각각 설명하였다. 따라서 7월 중순~8월 초에 측정한 반사율지표의 충족지수는 실시간에 비파괴적으로 시비수준을 예측하여 위치별로 변량적인 질소시비량을 결정할 수 있는 방법으로 활용 가능할 것으로 판단되었다. Ground-based remote sensing can be used as one of the non-destructive, fast, and real-time diagnostic tools for quantifying yield, biomass, and nitrogen (N) stress during growing season. This study was conducted to assess biomass and nitrogen (N) status of paddy rice (Oryza sativa L.) plants under N stress using passive and active ground-based remote sensors. Nitrogen application rates were 0, 70, 100, and 130 kg N ha<SUP>-1</SUP>. At each growth stage, reflectance indices measured with active sensor showed higher correlation with DW, N uptake and N concentration than those with the passive sensor. NIR/Red and NIR/Amber indices measured with Crop Circle active sensors generally had a better correlation with dry weight (DW), N uptake and N content than vegetation indices from Crop Circle passive sensor and NDVIs from active sensors. Especially NIR/Red and NIR/amber ratios at the panicle initiation stage were most closely correlated with DW, N content, and N uptake. Rice grain yield, DW, N content and N uptake at harvest were highly positively correlated with canopy reflectance indices measured with active sensors at all sampling dates. N application rate explains about 91~92% of the variability in the SI calculated from NIR/Red or NIR/Amber indices measured with Crop Circle active sensors on 12 July. Therefore, the in-season sufficiency index (SI) by NIR/Red or NIR/Amber index from Crop Circle active sensors can be used for determination of N application rate.
라이시미터에서 지하수위에 따른 보리, 밀, 조의 수분이용효율 특성
김범기(Beom-Ki Kim),공효영(Hyo-Young Gong),심재식(Jae-Sig Shim),홍순달(Soon-Dal Hong) 한국토양비료학회 2010 한국토양비료학회지 Vol.43 No.3
This experiment was conducted to evaluate water use efficiency of barley, wheat, and millet as a substitution crop for rice of fallow paddy field. Dry weight (DW), evapotranspiration, and transpiration of crop grown on the lysimeters controlled with 5 levels of groundwater table (GWT), 0, 25, 50, 75, and 100 cm were evaluated for optimum GWT and water use efficiency. All the lysimeters randomized with four replication arrangements were filled up sandy loam and were adjusted to the constant bulk density treated with twice water infiltration from bottom side to upper side of lysimeter. DW of barley, wheat, and millet in the plot of 0cm GWT that is saturated soil showed 34.9%, 44.7%, and 37.1% of that in the plot of 100 cm GWT, respectively showing a serious obstacle in crop growth. Evapotranspiration ratios calculated by evapotranspiration volume (mL) per DW were 166~605 mL for barley, 136~481 mL for wheat, and 81~418 mL for millet showing the order of barley > wheat > millet. Evapotranspiration ratio was increased with decrease of groundwater table that is the condition of moisture saturation. Estimation of GWT for maximum DW of wheat was 76 cm, and those of barley and millet were 100 cm below. The volumetric moisture content of lysimeter soil with cropping was markedly decreased as increase of crop growth because moisture supplying capability by capillary rise of water was less than amount of moisture required by crop.
천일염 살포가 토양 화학성과 마늘(Allium sativum L.)의 무기성분 함량에 미치는 영향
김명숙,김유학,강성수,윤홍배,공효영,이상범,Kim, Myung-Sook,Kim, Yoo-Hak,Kang, Seong-Soo,Yun, Hong-Bae,Gong, Hyo-Young,Lee, Sang-Beom 한국유기농업학회 2012 韓國有機農業學會誌 Vol.20 No.2
Farming using natural salts for supply of nutrients to crops is increasing recently. It is necessary to evaluate the salt accumulation in soil and the effects on crop growth by treatment of natural salt. This study was conducted at the organic cultivation fields which garlics were planted. The treatments were no natural salts (control) and plots applied 100~600 $kg\;ha^{-1}$ with natural salts. Soil samples were taken from the 0 to 25 cm depth at 12 and 107 day (harvest time) after natural salts application. The results showed that electrical conductivity (EC), exchangeable Na (Exch.$-Na^+$) and Cl- were increased by application of natural salts. But, pH and exchangeable cations ($K^+$, $Ca^{2+}$ and $Mg^{2+}$) had not significantly differences among treatments. In 300 $kg\;ha^{-1}$ plots of natural salt, the level of EC, Exch.$-Na^+$ and $Cl^-$ in top soil (0-5 cm) was were increased more 0.3, 3.7, and 12.7 times than control plot, respectively. EC, Exch.$-Na^+$, and $Cl^-$ were highest in the top 5 cm of soil and decreased with depth at 12 days after natural salts application, but were decreased in the plower layer (0-15cm) at the harvest time because they were leached with natural rain. An increasing the application level of natural salt resulted in increasing of sodium adsorption ratio, exchangeable sodium percentage, and percentage of soil dispersion. The concentration of nutrient uptake such as total nitrogen (T-N), chloride (Cl) in garlic had significant difference between control and plots applied with natural salts The content of T-N of garlic in plots with natural salt application was lower than control plot, but Cl is higher than control plot. 천일염의 농업적 활용은 관행농업에서 뿐만 아니라 친환경농산물 생산을 위해 농업인들 사이에서 증가하는 추세이다. 그러나 다량의 천일염을 지속적으로 살포할 경우 토양에 염류가 집적될 소지가 크고, 이로 인해 작물의 생육장해가 초래될 수 있다. 따라서 본 연구는 천일염을 토양에 살포하였을 때의 토양 이화학성과 마늘의 무기성분 함량과 수량에 미치는 영향을 조사하고자 수행하였다. 천일염을 살포하는 양이 증가할수록 토양의 전기전도도, 치환성 나트륨, 염소이온, 황산이온은 표토에서 높아졌다. 그러나, 수확기에는 천일염의 성분이 강우에 의해 심토로 용탈되어 작물이 생육하는 근권에서는 전기전도도, 치환성 나트륨, 염소이온, 황산이온은 감소하였고, 염소이온은 다른 성분보다 더욱 빠르게 심토로 용탈되었다. 토양의 나트륨 흡착비, 치환성 나트륨 백분율, 토양 분산율은 천일염이 투입량이 증가할수록 높아지는 경향이었다. 천일염을 토양에 살포하였을 때 마늘의 무기성분 중에 질소, 칼슘, 마그네슘, 미량원소인 철, 망간, 아연 등의 함량은 줄어들었고, 바닷물에 많은 성분인 염소 성분의 흡수는 증가하였으나, 마늘의 수량에는 큰 영향을 미치지 못하였다.