• 제목/요약/키워드: Acid soil amendment

검색결과 36건 처리시간 0.021초

친환경 토질개량제를 이용한 도로노반 건설공사에 관한 연구 (Construction of roadbed with environmental friendly soil amendment agent)

  • 고용국
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.417-421
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    • 2003
  • The purpose of this paper is to study on the construction of roadbed with environmental friendly soil amendment agent. The special amendment agent used in this study is mainly composed of inorganic metal salts such as sodium chloride, magnesium chloride, potassium chloride, calcium chloride,, thus is friendly to the environment, and has a function of soil-cement-agent solidification. Various components of this agent weaken the negative function of humic acid and decompose humic acid itself. Then, the calcium cation of the cement can now be made contact directly to the soil surface. The project of local road demonstration of roadbed construction with special soil treatment agent was peformed in Northeast Thailand on August 1999 by the sponsor of Highway Department of Thailand. A series of field experiments including unconfined compressive strength were carried out to investigate the physical and mechanical characteristics of solidified roadbed treated by this solidifying agent. The results of this research showed that the roadbed using poor soil could be efficiently constructed by treatment of this amendment agent.

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하수슬러지와 굴껍질의 혼합첨가에 의한 산성토양 교정효과 (A Study on Acid soil amendment by Addition of Sewage Treatment Sludge mixed Oyster Shell)

  • 문종익;최성문;성낙창;허목;김부길;김철
    • 유기물자원화
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    • 제9권2호
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    • pp.66-70
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    • 2001
  • 본 연구에서 밭토양은 부산시의 평균 pH인 인공 산성우(pH=5.34) 조건에서 실험되어졌다. 그리고 산성토양 중 화능을 확인하기 위해 토양산도, CEC(양이온 치환능력)와 K, Ca, Na와 같은 알칼리 금속에 대해 분석하였다. 굴껍질은 치환성 양이온을 다량 함유하고 있기 때문에 산성 토양 개선제로의 역할을 할 수 있을 것이고 하수슬러지의 토양 첨가는 슬러지 처분의 대체 방안으로 기대된다. 본 연구의 목적은 하수슬러지 및 굴껍질의 적정처리방법으로 산성토양에 주입시 그 개선효과를 검토하고자 하였다. 토양과 하수슬러지의 비율을 각각 10:0, 9:1, 8:2, 7:3으로 한 것과 토양 : 하수슬러지와 굴껍질 혼합물의 비율을 각각 9:1, 8:2, 7:3으로 한것을 대상토양에 첨가하였다. 실험 결과, 토양산도는 약간 감소하였고 CEC는 약간 증가하는 경향을 나타내었다. 알칼리 금속의 경우는 실험기간동안 지속적으로 감소되어져 토양산도, CEC와는 다른 농도경향을 나타내었다. 결과적으로 굴껍질이 혼합된 하수슬러지는 산성토양 개선제로서 역할을 할 수 있음을 확인하였다.

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식재기반 복원을 위한 유기질계 토양개량재의 효용성 (Effects of Soil Organic Amendment as Plant Growing Media Component for Restoration of Planting Ground)

  • 주진희;인다영;김원태;윤용한;최은영
    • 한국환경과학회지
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    • 제24권11호
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    • pp.1363-1370
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    • 2015
  • This study was aimed to determine effects of soil organic amendment as plant growing media component on restoration of planting ground. The changes of soil physical and chemical properties and germination and growth of kentucky bluegrass (Poa pratensis L.) were investigated. For treatments, soil was excavated at depth of 0-50 cm (referred as $S_1$) and at depth of 50-100 cm (referred as $S_2$). Then the half amount of $S_1$ soil was mixed with the soil organic amendment (coir dust 40% (v/v), bottom ash 25%, leaf mold 25%, vermiculite 5%, carbonized rice hull 5%) at a rate of 6% (v/v) (referred as $S_1CC$) and also the half amount of $S_2$ soil was mixed with the soil organic amendment at a rate of 6% (v/v) (referred as $S_2CC$) on pot in a 16 cm diameter and 14 cm height. The experiment was replicated 3 times with 3 pots per replication in randomized block design, and 100 seeds were planted per pot. In results, there was no significant difference in soil pH among the treatments with a slight decrease in soil hydraulic conductivity. However, in the $S_1CC$ treatment, positive increases in soil chemical properties, including electrical conductivity, organic matter, phosphoric acid, total nitrogen, exchangeable cation, and cation exchange capacity. Also, the germination rate, plant height, and number of leaves were higher in the $S_1CC$ treatment than those in other treatments. These results suggest that the addition of organic amendment to the soil at depth of 0-50 cm might be proper for restoring planting ground.

토양검정에 의한 유기자원 시비처방이 감자의 생육 및 양분이용효율에 미치는 영향 (Influence of Fertilization Treatment using Organic Amendment based on Soil Testing on Plant Growth and Nutrient Use Efficiency in Potato)

  • 임진수;이방현;강승희;이태근
    • 한국작물학회지
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    • 제65권4호
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    • pp.436-446
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    • 2020
  • 토양검정에 의한 유기자원 시비처방 효과를 구명하기 위하여 감자를 대상으로 포장시험을 실시하였으며, 유기자원 시비량은 유기자원의 질소, 인산, 칼륨 성분함량에 무기화율을 적용하여 결정한 결과를 요약하면 다음과 같다. 1. 질소 및 칼리의 이용효율은 화학비료와 유기자원처리의 차이가 없었으며, 인산의 이용효율은 0.1% 수준에서 유기자원구에서 높았다. 2. 감자 수확 후 토양화학성은 전기전도도, 질소 및 인산 함량이 유기자원구에서 높았다. 3. 감자 잎·줄기의 무기성분 중 질소 함량은 화학비료구에서 가장 높았고, 무처리구에서 가장 낮았다. 인산 및 칼륨 함량은 무처리구에서 가장 높았다. 인산은 화학비료구와 유기자원구의 차이가 없었고, 칼륨은 화학비료구에서 함량이 더 높았다. 4. 뿌리의 무기성분 함량도 잎·줄기에서와 같은 경향을 보였지만 건물중에 있어서는 수량이 많았던 유기자원구에서 가장 높았다. 5. 화학비료구와 유기자원구간 초장, 경수, 경경 및 엽색도는 차이가 없었지만 무처리구보다 높았다. 6. 괴경수량, 상서수량은 유기자원구에서 화학비료구보다 높은 경향이었으며 무처리구보다 높았다. 7. 지상부생체중과 T/R율은 유기자원구>화학비료구>무처리구 순이었다. 8. 초장은 경수, 경경, 괴경중, 상서중, 지상부생체중, T/R율 및 감자의 건물함량과 양(+)의 상관관계가 인정되었으며, 괴경중은 초장, 경수 및 경경과 양(+)의 상관관계가 인정되었다. 괴경중이 높을수록 상서중도 높았고, 지상부생체중이 높을수록 수량도 높은 양(+)의 상관관계가 인정되어 수량을 키우기 위해서는 지상부도 적정 이상으로 키우는 양분공급이 필요하다. 9. 이상의 결과를 볼때 본 연구에서 유기자원으로 처방한 시비방법은 화학비료대비 적정한 유기자원 처방법으로 활용가능하며, 후작물 재배에도 유리할 것으로 판단된다.

Evaluate Changes in Soil Chemical Properties Following FGD-Gypsum Application

  • Lee, Yong-Bok;Bigham, Jerry M.;Kim, Pil-Joo
    • 한국환경농학회지
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    • 제26권4호
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    • pp.294-299
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    • 2007
  • Natural gypsum has been used as a soil amendment in the United States. However, flue gas desulfurization (FGD)-gypsum has not traditionally been used for agricultural purpose although it has potential benefit as a soil amendment. To expand use of FGD-gypsum for agricultural purpose, the effect of FGD-gypsum on soil chemical properties was investigated in the field scales. Application rates for this study were 0 (control), 1.1, and 2.2 Mg ha-1 of FGD-gypsum. After two year application, the soil samples were taken to 110 cm depth and sub-sampled at 10 cm intervals. The heavy metal contents in FGD-gypsum were lower than ceiling levels allowed by regulations for land-applied biosolids. Soil pH was not largely affected by FGD-gypsum application. Although degree of calcium (Ca) saturation in surface horizons increases only slightly with respect to the control, there is a clear decrease in exchangeable aluminum (Al). FGD-gypsum clearly increases the soil electrical conductivity (EC) with increasing application rate. Water-soluble Ca and sulfate is increased with FGD-gypsum application and these ions moved to a depth of at least 80 cm after only 2 years. We conclude that surface application of FGD-gypsum can mitigate toxicity of Al and deficiency of Ca in subsoil of acid soil.

추출방법에 따른 금속광산 주변의 토양오염 특성 (Soil Pollution Characteristics of Metallic Mine Area according to Extraction Methods)

  • 양중석;이주영;박영태;백기태;최재영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제15권3호
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    • pp.1-6
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    • 2010
  • This study investigated the change of metal contamination levels according to amendment of enforcement regulation of the Soil Environmental Conservation Act in Korea. As an analytical result of 87 samples in abandoned metallic mine area, the extracted amount of As, Pb and Cu with aqua regia was 4.3~29.6 times higher than that with hydrochloric acid extraction and the number of samples, which contamination levels were found to exceed soil contamination standards, was also increased. On the other hand, in case of Cd, Zn, and Ni, the number of samples, which contamination levels were found to exceed soil contamination standards, was decreased or similar. These results can be used as a preliminary material in comparison between the soil pollution data accumulated previously and the data obtained by the revised standard method for the examination of soil pollution.

Study for Phytostabilization using Soil Amendment and Aster koraiensis Nakai in Heavy Metal Contaminated Soil of Abandoned Metal Mine

  • Jung, Mun-Ho;Lee, Sang-Hwan;Ji, Won-Hyun;Park, Mi-Jeong;Jung, Kang-Ho
    • 한국토양비료학회지
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    • 제49권5호
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    • pp.627-634
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    • 2016
  • The objectives of this study were to select optimal soil amendments through analysis of heavy metal availability in soil and uptake to Aster koraiensis Nakai for forest rehabilitation of heavy metal contaminated soil of abandoned metal mine. A. koraiensis was cultivated for 6 months at contaminated soil with several soil treatments (bottom ash 1 and 2%, fly ash 1 and 2%, waste lime+oyster 1 and 2%, Acid mine drainage sludge (AMDS) 10 and 20%, compost 3.4%, non-contaminated natural forest soil, and control). The analysis results of heavy metal concentrations in the soil by Mehlich-3 mehthod, growth and heavy metal concentrations of A. koraiensis showed that waste oyster+lime 1% and compost were more effective than the other amendments for phytostabilization. However, it is needed comprehensive review of factors such as on-site condition, slope covering to reduce soil erosion and vegetation introduction from surround forest for revegetation to apply forest rehabilitation.

Effect of Chemical Amendments on Soil Biological Quality in Heavy Metal Contaminated Agricultural Field

  • Kim, Yoo Chul;Hong, Young Kyu;Oh, Se Jin;Oh, Seung Min;Ji, Won Hyun;Yang, Jae E.;Kim, Sung Chul
    • 한국토양비료학회지
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    • 제48권2호
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    • pp.146-152
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    • 2015
  • Heavy metal pollution has been a critical problem in agricultural field near at the abandoned metal mines and chemical amendments are applied for remediation purpose. However, biological activity can be changed depending on chemical amendments affecting crop productivity. Main purpose of this research was to evaluate biological parameters after applying chemical amendments in heavy metal polluted agricultural field. Result showed that soil respiration (SR) and microbial biomass carbon (MBC) were changed after chemical amendments were applied. Among three different amendments, lime stone (LS), steel slag (SS), and acid mine drainage sludge(AMDS), AMDS had an effect to increase SR in paddy soil. Comparing to control ($93.98-170.33mg\;kg^{-1}day^{-1}$), average of 30% increased SR was observed. In terms of MBC, SS had an increased effect in paddy soil. However, no significant difference of SR and MBC was observed in upland soil after chemical amendment application. Overall, SR can be used as an indicator of heavy metal remediation in paddy soil.

IBA Treatment of Poplar Cuttings and Soil Composition Amendment for Improved Adaptability and Survival

  • Cho, Wonwoo;Chandra, Romika;Lee, Wi-young;Kang, Hoduck
    • Journal of Forest and Environmental Science
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    • 제36권4호
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    • pp.259-266
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    • 2020
  • Poplar trees from the Salicaceae family over the years have been utilized for various reasons which include prevention of deforestation as well as phytoremediation. This study aims to determine the optimal pre-treatment and soil conditions required for propagation of poplar cuttings for increased initial adaptability and survival rate. Five poplar clones (Hanan, 110, 107, DN-34, 52-225) were selected for IBA, soil composition treatments on propagation. IBA pre-treatment of cuttings were utilized 0, 10, and 100 mg l-1 concentrations. Soil compositions were amended with TKS-2+perlite 2:1 (v:v) and sandy clay loam mixed with artificial soil. According to the greenhouse results 10 mg l-1 of IBA showed a significant increase in plant height whereas 100 mg l-1 inhibited plant growth except in clone 110. Soil composition severely affected root growth and hence overall growth of the clones. Sandy clay loam soil had poor to stunted growth compared to TKS-2+perlite.

Determining Heavy Metal (loid) Stabilization Materials and Optimum Mixing Ratio: Aqueous Batch test

  • Oh, Seung Min;Oh, Se Jin;Kim, Sung Chul;Lee, Sang Hwan;Ok, Yong Sik;Yang, Jae E.
    • 한국토양비료학회지
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    • 제47권6호
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    • pp.540-546
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    • 2014
  • Acid mine drainage sludge (AMDS) has been classified as mine waste and generally deposited in land. For this reason, studies have been conducted to examine the possibility of recycling AMDS as an amendment for heavy metal stabilization in soil. The main objective of this study was to evaluate heavy metal stabilization efficiency of AMDS comparing with the widely used lime stone. Also, optimum mixing ratio was evaluated for enhancing heavy metal stabilization. AMDS and limestone were mixed at the ratio of 0:100, 25:75, 50:50, 75:25, and 100:0 with five different heavy metal solutions ($100mg\;L^{-1}$ of $NaAsO_2$, $CdCl_2$, $CuCl_2$, $Pb(NO_3)_2$, and $ZnSO_4{\cdot}7H_2O$). The amendments were added at a rate of 3% (w/v). In order to determine the stabilization kinetics, samples were collected at different reaction time of 0, 1, 2, 4, 8, 16, 32, 64, 128, 256, 512, 1024 minutes. The heavy metal stabilization by AMDS was faster and higher than those of limestone for all examined heavy metals. While limestone showed only 20% of arsenic (As) stabilization after 1,024 minutes, 96% of As was stabilized within 1 minute by AMDS. The highest effect on the stabilization of heavy metal (loid) was observed, when the two amendments were mixed at a ratio of 1:1. These results indicated that AMDS can be effectively used for heavy metal stabilization in soil, especially for As, and the optimum mixing ratio of AMDS and lime was 1:1 at a rate of 3% (w/v).