• 제목/요약/키워드: soil treatment

검색결과 3,289건 처리시간 0.029초

해안간척지 토양의 생물학적 토성 개량에 관한 연구 3 (Biological improvement of reclaimed tidal land soil (III))

  • 홍순우;하영칠;최영길
    • 미생물학회지
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    • 제7권1호
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    • pp.29-40
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    • 1969
  • Two kinds of organic materials, powders of Salicornia and Oryza sativa L. wre added as a source of organic matter to the suspensions of saline soils(soil : water = 1:3) to be 4 per cent of dried saline soil grams. And then, the samples were incubated at $28^{\circ}C$ to improve the decomposition of organic materials by soil microflora. Resutls of this experiment are summarized as followings : 1) The pH of soil suspension showed its highest value on the second or third week after the treatments, which were similar to those of the soil microflora. Results of this experiment are summarized as follwings : 1) The pH of soil suspension showed its highest value on the second ot third week after the treatments, which were similar to those of the soil microflora populations. 2) Salinity increased up to the second week and the highest value of it appeared in the samples which were treated with the powder of Salicornia. In general, the salinity of all samples decreased on the third week after the treatment. The fact was assumed the possibilities of desalination from saline soil by the microbial actions. 3) Soil microflora such as bacteria, actinomycetes and fungi, were determined its populations soil microflora is to act as decomposer in soil. Both of the bacteria and actinomycytes population showed in the third weak after the tratment. In general, 30-years old of saline soil contained microbial population much more than those of 5-year old of saline soil. Salicornia powder favored the increase of both the bacteria and fungal population, and Oryza sativa L. seemed to have been a great role in increase of actinomycetes. Especially, fungal population of the untreated soil suspension contained higher microbial populations more than those of the soils treated with both of the organic materials. 4) Sugar contents of soil suspesions decreased remarkably on the first week after the treatments. 5) The amount of nitrate had similar tendency to those of population changes of soil microflora. Total acidity decreased continuously and the amount of potassium showed its highest value on the third week treatment. However, the amount of phosphorus was determined to be insignificant.

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물리화학적 처리를 이용한 군부대 사격장 내 중금속 오염 토양의 정화 (Remediation of Heavy Metal-Contaminated Soil Within a Military Shooting Range through Physicochemical Treatment)

  • 이상우;이우춘;이상환;김순오
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권5호
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    • pp.9-19
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    • 2021
  • This study evaluated the feasibility of combined use of physical separation and soil washing to remediate heavy metals (Pb and Cu) contaminated soil in a military shooting range. The soils were classified into two types based on the level of heavy metal concentrations: a higher contaminated soil (HCS) with Pb and Cu concentrations of 6,243 mg/kg and 407 mg/kg, respectively, and a lower contaminated soil (LCS) with their concentrations of 1,658 mg/kg and 232 mg/kg. Pb level in both soils exceeded the regulatory limit (700 mg/kg), and its concentration generally increased with decreasing soil particle size. However, in some cases, Pb concentrations increased with increasing soil particle size, presumably due to the presence of residues of bullets in the soil matrix. As a pretreatment step, a shaking table was used for physical separation of soil to remove bullet residues while fractionating the contaminated soils into different sizes. The most effective separation and fractionation were achieved at vibration velocity of 296 rpm/min, the table slope of 7.0°, and the separating water flow rate of 23 L/min. The efficiency of ensuing soil washing process for LCS was maximized by using 0.5% HCl with the soil:washing solution mixing ratio of 1:3 for 1 hr treatment. On the contrary, HCS was most effectively remediated by using 1.0% HCl with the same soil:solution mixing ratio for 3 hr. This work demonstrated that the combined use of physical separation and soil washing could be a viable option to remediate soils highly contaminated with heavy metals.

잔류유분 함유 반출처리토 재활용을 위한 호밀 식재 식물상 토성회복 가능성 (Phyto-restoration Potential of Soil Properties using Secale cereale for Recycle of Soils with Residual TPHs (Total Petroleum Hydrocarbons) after Off-site Treatment)

  • 박지은;배범한;주완호;배세달;배은주
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권3호
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    • pp.25-32
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    • 2014
  • The amount of TPH contaminated soil treated at off-site remediation facilities is ever increasing. For the recycle of the treated-soil on farmlands, it is necessary to restore biological and physico-chemical soil characteristics and to remove residual TPH in the soil by an economic polishing treatment method such as phytoremediation. In this study, a series of experiments was performed to select suitable plant species and to devise a proper planting method for the phyto-restoration of TPH-treated soil. Rye (Secale cereale) was selected as test species through a germination test, among 5 other plants. Five 7-day-old rye seedlings were planted in a plastic pot, 20 cm in height and 15 cm in diameter. The pot was filled with TPH-treated soil (residual TPH of 1,118 mg/kg) up to 15 cm, and upper 5 cm was filled with horticulture soil to prevent TPH toxic effects and to act as root growth zone. The planted pot was cultivated in a greenhouse for 38 days along with the control that rye planted in a normal soil and the blank with no plants. After 38 days, the above-ground biomass of rye in the TPH-treated soil was 30.6% less than that in the control, however, the photosynthetic activity of the leaf remained equal on both treatments. Soil DHA (dehydrogenase activity) increased 186 times in the rye treatment compared to 10.8 times in the blank. The gross TPH removal (%) in the planted soil and the blank soil was 34.5% and 18.4%, respectively, resulting in 16.1% increase of net TPH removal. Promotion of microbial activity by root exudate, increase in soil permeability and air ventilation as well as direct uptake and degradation by planted rye may have contributed to the higher TPH removal rate. Therefore, planting rye on the TPH-treated soil with the root growth zone method showed both the potential of restoring biological soil properties and the possibility of residual TPH removal that may allow the recycle of the treated soil to farmlands.

잎갈나무조림지의 벌목지와 비벌목지의 토양호흡에 관한 연구 (A Study on the Soil Respiration in Cutting and Uncutting Areas of Larix leptolepis Plantation)

  • 이규진;문형태
    • 생명과학회지
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    • 제20권9호
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    • pp.1353-1357
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    • 2010
  • 공주 근교의 일본잎갈나무 조림지에서 벌목이 이루어지지 않은 비벌목지를 대조구, 벌목이 이루어진 벌목지를 처리구로 설정하여 토양호흡과 호흡에 영향을 주는 토양온도, 토양수분을 2008년 5월부터 12월까지 2주 간격으로 측정하였다. 조사기간 동안 대조구와 처리구의 평균 토양온도는 각각 $23.3{\pm}0.5^{\circ}C$, $25.9{\pm}3.1^{\circ}C$으로 처리구에서 높았으며, 토양수분은 각각 $27.76{\pm}7.12%$, $24.55{\pm}5.12%$으로 처리구에서 낮게 나타났다. 토양호흡량은 봄부터 하절기로 이행함에 따라 증가한 후 동절기에 이르기까지 감소하는 경향을 보였으며, 토양호흡과 토양온도와는 높은 상관관계($R^2$=0.8747)가 있었으나, 토양수분과는 유의성이 높지 않았다($R^2$=0.4437). 토양호흡량은 대조구와 처리구에서 모두 8월에 가장 높았으며, 이때 대조구와 처리구의 평균 토양호흡량은 각각 $0.82{\pm}0.13$, $1.32{\pm}0.10$ $CO_2g{\cdot}m^{-2}{\cdot}hr^{-1}$으로 나타났다. 대조구와 처리구에서 5월부터 12월까지 측정된 전체 호흡량은 각각 2,419.2, 3,610.8 $CO_2g{\cdot}m^{-2}$으로 대조구에 비해 처리구에서 49.3% 높은 것으로 나타났다. 본 연구의 결과 인위적인 삼림의 벌목은 토양 호흡량을 증가시켜 대기 중의 이산화탄소를 증가시킬 것으로 판단된다.

Effect of Long Term Fertilization on Soil Carbon and Nitrogen Pools in Paddy Soil

  • Lee, Chang Hoon;Jung, Ki Youl;Kang, Seong Soo;Kim, Myung Sook;Kim, Yoo Hak;Kim, Pil Joo
    • 한국토양비료학회지
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    • 제46권3호
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    • pp.216-222
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    • 2013
  • Fertilizer management has the potential to promote the storage of carbon and nitrogen in agricultural soils and thus may contribute to crop sustainability and mitigation of global warming. In this study, the effects of fertilizer practices [no fertilizer (Control), chemical fertilizer (NPK), Compost, and chemical fertilizer plus compost] on soil total carbon (TC) and total nitrogen (TN) contents in inner soil profiles of paddy soil at 0-60 cm depth were examined by using long-term field experimental site at $42^{nd}$ years after installation. TC and TN concentrations of the treatments which included N input (NPK, Compost, NPK+Compost) in plow layer (0-15 cm) ranged from 19.0 to 26.4 g $kg^{-1}$ and 2.15 to 2.53 g $kg^{-1}$, respectively. Compared with control treatment, SOC (soil organic C) and TN concentrations were increased by 24.1 and 31.0%, 57.6 and 49.7%, and 72.2 and 54.5% for NPK, Compost, and NPK+Compost, respectively. However, long term fertilization significantly influenced TC concentration and pools to 30 cm depth. TC and TN pools for NPK, Compost, NPK+Compost in 0-30 cm depth ranged from 44.8 to 56.8 Mg $ha^{-1}$ and 5.78 to 6.49 Mg $ha^{-1}$, respectively. TC and TN pools were greater by 10.5 and 21.4%, 30.3 and 29.6%, and 39.9 and 36.3% in N input treatments (NPK, Compost, NPK+Compost) than in control treatment. These resulted from the formation and stability of aggregate in paddy soil with continuous mono rice cultivation. Therefore, fertilization practice could contribute to the storage of C and N in paddy soil, especially, organic amendments with chemical fertilizers may be alternative practices to sequester carbon and nitrogen in agricultural soil.

질소비료의 심층시비에 의한 논과 밭 토양의 암모니아 배출 억제 효과 (Reducing the Effect of Ammonia Emissions from Paddy and Upland Soil with Deep Placement of Nitrogen Fertilizers)

  • 홍성창;김민욱;김진호
    • 한국환경농학회지
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    • 제41권4호
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    • pp.230-235
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    • 2022
  • BACKGROUND: Ammonia gas emitted from nitrogen fertilizers applied in agricultural land is an environmental pollutant that catalyzes the formation of fine particulate matter (PM2.5). A significant portion (12-18%) of nitrogen fertilizer input for crop cultivation is emitted to the atmosphere as ammonia gas, a loss form of nitrogen fertilizer in agricultural land. The widely practiced method for fertilizer use in agricultural fields involves spraying the fertilizers on the surface of farmlands and mixing those with the soils through such means as rotary work. To test the potential reduction of ammonia emission by nitrogen fertilizers from the soil surface, we have added N, P, and K at 2 g each to the glass greenhouse soil, and the ammonia emission was analyzed. METHODS AND RESULTS: The treatment consisted of non-fertilization, surface spray (conventional fertilization), and soil depth spray at 10, 15, 20, 25, and 30 cm. Ammonia was collected using a self-manufactured vertical wind tunnel chamber, and it was quantified by the indophenol-blue method. As a result of analyzing ammonia emission after fertilizer treatments by soil depth, ammonia was emitted by the surface spray treatment immediately after spraying the fertilizer in the paddy soil, with no ammonia emission occurring at a soil depth of 10 cm to 30 cm. In the upland soil, ammonia was emitted by the surface spray treatment after 2 days of treatment, and there was no ammonia emission at a soil depth of 15 cm to 30 cm. Lettuce and Chinese cabbage treated with fertilizer at depths of 20 cm and 30 cm showed increases of fresh weight and nutrient and potassium contents. CONCLUSION(S): In conclusion, rather than the current fertilization method of spraying and mixing the fertilizers on the soil surface, deep placement of the nitrogen fertilizer in the soil at 10 cm or more in paddy fields and 15 cm or more in upland fields was considered as a better fertilization method to reduce ammonia emission.

Low Temperature Thermal Desorption (LTTD) Treatment of Contaminated Soil

  • Alistair Montgomery;Joo, Wan-Ho;Shin, Won-Sik
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 추계학술발표회
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    • pp.44-52
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    • 2002
  • Low temperature thermal desorption (LTTD) has become one of the cornerstone technologies used for the treatment of contaminated soils and sediments in the United States. LTTD technology was first used in the mid-1980s for soil treatment on sites managed under the Comprehensive Environmental Respones, Compensation and Liability Act (CERCLA) or Superfund. Implementation was facilitated by CERCLA regulations that require only that spplicable regulations shall be met thus avoiding the need for protracted and expensive permit applications for thermal treatment equipment. The initial equipment designs used typically came from technology transfer sources. Asphalt manufacturing plants were converted to direct-fired LTTD systems, and conventional calciners were adapted for use as indirect-fired LTTD systems. Other innovative designs included hot sand recycle technology (initially developed for synfuels production from tar sand and oil shale), recycle sweep gas, travelling belts and batch-charged vacuum chambers, among others. These systems were used to treat soil contaminated with total petroleum hydrocarbons (TPH), polycyclic aromatic hydrocarbons (PAHs), pesticides, polychlorinated biphenyls (PCBs) and dioxin with varying degrees of success. Ultimately, performance and cost considerations established the suite of systems that are used for LTTD soil treatment applications today. This paper briefly reviews the develpoment of LTTD systems and summarizes the design, performance and cost characteristics of the equipment in use today. Designs reviewed include continuous feed direct-fired and indirect-fired equipment, batch feed systems and in-situ equipment. Performance is compared in terms of before-and-after contaminant levels in the soil and permissible emissions levels in the stack gas vented to the atmosphere. The review of air emissions standards includes a review of regulations in the U.S. and the European Union (EU). Key cost centers for the mobilization and operation of LTTD equipment are identified and compared for the different types of LTTD systems in use today. A work chart is provided for the selection of the optmum LTTD system for site-specific applications. LTTD technology continues to be a cornerstone technology for soil treatment in the U.S. and elsewhere. Examples of leading-edge LTTD technologies developed in the U.S. that are now being delivered locally in global projects are described.

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경사지(傾斜地) 농업기술(農業技術) 개량(改良)을 위한 효과적(效果的)인 토양보전공법(土壤保全工法) 개발(開發)에 관한 연구(硏究) (Development of the Better Soil Conservation Measures with Special References to Yam Hillside Farming)

  • 우보명
    • 한국산림과학회지
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    • 제54권1호
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    • pp.60-67
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    • 1981
  • 경사지(傾斜地)에서 얌(yam)증산(增産)을 위한 농업기술(農業技術) 체계(體系)를 확립(確立)하고 보다 효과적(效果的)인 토양보전(土壤保全) 공법(工法)을 개발(開發)하기 위한 시험연구(試驗硏究)가 자메이카국(國)의 트리로운리에 위치한 토양보전(土壤保全)센터에서 수행되고 있다. 이 시험장(試驗場)은 표고(標高) 약 820 m의 $20^{\circ}$ 경사지(傾斜地)에서 8개의 유수유토(流水流土) 시험구(試驗區)(4처리(處理) 2반복(反覆))와 기타의 시험시설(試驗施設)로서 구성되었다. 각(各) 시험구(試驗區)의 크기는 $40m^2$($2.7m{\times}15.8m$ 사면장(斜面長))이며 서북향(西北向)으로 향(向)한 경사지(傾斜地)였다. 시험(試驗) 제(第) 1차년도(次年度)(1980년(年) 4월(月)~1981년(年) 3월(月))중에 일강우량(日降雨量)과 유수유토량(流水流土量)(11회(回))을 측정분석(測定分析)하였다. 총(總) 강우량(降雨量)은 1,295mm이었으며 최대일(最大日) 강우량(降雨量)은 116.2mm이었다. 4처리중(處理中)에서 토양유실량(土壤流失量)은 제(第) 1처리구(處理區)에서 182 tons/ha, 제(第) 2처리구(處理區)에서 105 tons/ha, 제(第) 3처리구(處理區)에서 50 tons/ha, 그리고 제(第) 4처리구(處理區)에서 43 tons/ha으로 각각 조사(調査)되었다. 이 시험결과(試驗結果)에 의한 효과적(效果的)인 경사지(傾斜地) 얌(재배(栽培)) 방법(方法)은 Hillside ditch 또는 Grass buffer strip 처리(處理)에 Contour mounds farming 이라고 분석(分析)된다.

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Cu, Pb, As 복합 중금속오염 토양의 전기동력학적 정화에서 전해질의 영향 평가 (Evaluation of Processing Fluids on Electrokinetic remediation of Cu, Pb, As-contaminated soil)

  • 박근용;김도형;백기태
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권5호
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    • pp.1-7
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    • 2010
  • Electrokinetic technology was applied to remediate Cu, Pb and As-contaminated paddy soil. Removal of metal is highly dependent on the processing fluid during electrokinetic treatment. Tap water, NaOH, $HNO_3$, $Na_2EDTA$, and citric acid were evaluated as the processing fluids to enhance metal removal. Cu and Pb were transported toward cathode, however, it did not removed from soil section, while 56.6% of As was removed at a acidic condition. The strong acidic condition with nitric acid as a processing fluid enhanced the desoprtion of As from soil surface. However, longer operation time is needed to get the higher removal of Cu and Pb, and the acidification of soil after electrokinetic treatment should be solved.

Yield and Free Sugar Contents of Burdock (Arctium lappa L.) depending on Nitrogen Levels

  • Lee, Ye-Jin;Sung, Jwa-Kyung;Lee, Seul-Bi;Lim, Jung-Eun;Song, Yo-Sung;Lee, Deog-Bae
    • 한국토양비료학회지
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    • 제49권6호
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    • pp.677-681
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    • 2016
  • Excessive nitrogen fertilization influences crop yields and quality as well as environmental pollution. In this study, yields, nitrogen use efficiency and free sugar contents of burdock (Arctium lappa L.) were evaluated at different levels of nitrogen fertilization. Nitrogen fertilizer was applied at 5 levels (0, 50, 100, 150, 200%) based on the conventional fertilization ($N=230kg\;ha^{-1}$), and phosphate and potassium fertilizer were treated by conventional P and K fertilization ($P_2O_5-K_2O=140-210kg\;ha^{-1}$) in all plots. The root yields of burdock were the highest in N 100~150% treatment plots. Nitrogen use efficiency and nitrogen recovery decreased from over N 150% treatment. Nitrogen uptake of root was greater than that of shoot in N 50~200% treatments. Fructose contents in root were inversely proportional to the level of nitrogen fertilization. As considering nitrogen recovery and root quality, economical burdock yield was obtained in N $230kg\;ha^{-1}$.