• Title/Summary/Keyword: 중화처리

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A Study on the Acid Drainage Neutralizing System for Ecological Vegetation on the Acid Drainage Slope (산성배수 비탈면의 생태적 녹화를 위한 산성배수 중화기법 연구)

  • Cho, Sung Rok;Shim, Sang Ryul;Kim, Jae Hwan
    • Journal of the Korean GEO-environmental Society
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    • v.20 no.1
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    • pp.27-33
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    • 2019
  • Research was initiated to find out acid drainage neutralizing techniques for ecological vegetative growth on the acid drainage slope. Four different acid drainage neutralizing techniques [no treatment, limestone layer treatment, phosphate treatment, and limestone layer + phosphate treatment] were treated on the acid drainage slope. There was a significant difference observed in treated acid neutralizing techniques for acidity, surface coverage rate, death rate and plant root status. Treated acid neutralizing techniques were effective for neutralizing acidity and vegetative growth in order of [first: limestone layer + phosphate treatment, second: phosphate treatment, third: limestone layer treatment and fourth: no treatment]. The limestone layer and the phosphate treatments were effective for neutralizing acidity and vegetative growth, respectively. However, the phosphate treatment was more effective compared to the limestone layer treatment on the acid drainage slope. We figured out that the phosphate treatment is more effective for neutralizing acidity and vegetative growth because of coating effect of sulfides.

The Assessment of pH Variation for Neutralized Acidic Areas using Lysimeters by Seasons (라이시미터를 이용한 중화처리된 산성화경사지의 계절별 pH 용탈특성 평가)

  • Oh, Seungjin;Oh, Minah;Park, Chan-O;Jung, Munho;Lee, Jai-Young
    • Journal of the Korean Geosynthetics Society
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    • v.14 no.4
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    • pp.79-86
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    • 2015
  • Korean territories has formed about 70% of mountainous areas that have acidified serious level to average pH 4-5. There are a number of abandoned metal mines about 1,000 in Korea. However, mine tailings and waste rock included heavy metals are exposed to long-term environment without prevention facility or treatment system. Thus, ongoing management and monitoring of soil environment are required. Most of abandoned mine scattered in forest areas of slopes. Soil erosion due to continuous rainfall in the slopy areas can cause the secondary pollution by the influence eutrophication of water system and the productivity loss of the plant. Therefore, this study would like to estimate pH leaching rate by artificial rainfall using waste neutralization-agent in lysimeter. Moreover, the potentially of secondary pollution related to precipitation is figured out through the experiments, and the optimal planting methods would examinate after neutralizing treatment in soil. Experiments composed three kinds of lysimeter; lysimeter 1 had filled only acidic soil, lysimeter 2 had neutralized soil, and lysimeter 3 had planting plants after neutralized soil. In the results, lysimeter 2 showed the lowest pH leaching, and there is not specific relativity with pH leaching of the seasonal characteristics.

Physicochemical Changes of Swine Manure by the Treatment of Acid and Alkali for Inactivation of Pathogenic Microorganisms (병원성미생물의 불활성화를 위한 산·알칼리처리가 양돈분뇨의 이화학적 성상에 미치는 영향)

  • Kim, Cho-Long;Kim, Soo-Ryang;Kim, Ha-Je;Jeon, Sang-Joon;Han, Ho;Kim, Dong-Kyun;Lee, Myung-Gyu
    • Journal of Animal Environmental Science
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    • v.18 no.3
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    • pp.229-234
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    • 2012
  • Disinfecting contaminated swine manure with FMD (Foot-and-Mouth Disease) and pathogenic viruses is very important for maintaining sanitized environment. However, very few research reported on this subject, especially post-disinfection to utilize the wastes as a renewable resource. This research is carried out to obtain basic information for chemical treatment in FMD SOP (Standard Operating Procedure, Korea) of contaminated swine manure. Using lime, sodium hydroxide, citric acid and hydrochloric acid, described in FMD SOP, the effects of chemical treatments on livestock manure were compared in this paper. Four combinations of alkali-acid treatments and four kinds of acid-alkali combinations were tested to find out the effective method. Total coliform bacteria in contaminated swine manure, $1.6{\times}10^4$ CFU/100 ml, decreased to the range of 1/1000~1/100 in all treatments. Some specific disinfectants increases BOD (Biochemical Oxygen Demand) and EC(Electric Conductivity), especially, alkaline treatments increases ammonia level than acid treatments. These findings suggest that the treatment methods should be considered as an important environmental factor in post-disinfection of contaminated animal manure with pathogenic microorganisms.

Neutralization Processes of Acid Mine Drainage (AMD) from the Abandoned Donghae Coal Mine (동해 폐탄광 일대 산성 광산폐수의 중화처리)

  • 김정엽;전효택;오대균
    • Journal of the Korean Society of Groundwater Environment
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    • v.2 no.1
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    • pp.38-47
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    • 1995
  • This study was carried out in order to provide basic information on neutralization processes of acid mine drainage (AMD) from the abandoned Donghae coal mine in the Samchuk coalfield. The contents of potentially toxic elements in stream water increase and the level of pH decreases during dry season. Hydrated lime is turned out to be the best neutralizer of the acid mine water from a technical and economic viewpoint. From the results of equilibrium calculation, Fe and Al could be precipitated as FeOOH, and Al(OH)$_3$, respectively, in the neutralization process. The sites of holding basins necessary to equalize quantity and quality of AMD are recommended by GIS analysis, and the capacities of holding basins are determined by hydrological calculation.

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Studies for Neutralization Teratment of Acid Mine Drainage from Abandoned Mine (폐광산으로부터 유출되는 산성광산배수 중화처리를 위한 반응조 실험 연구)

  • Kang, Han;Park, Seong-Min;Jang, Yun-Deug;Kim, Jeong-Jin
    • Economic and Environmental Geology
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    • v.41 no.1
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    • pp.33-45
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    • 2008
  • Two types of reactor were designed to neutralize acid mine drainage flow from closed mine. Limestone used as a neutralizer, which composed mainly of calcite with small amount of dolomite. In general, the effect of neutralization depended upon both the position of reaction and the amount of supply of neutralizer. It was observed that the neutralization was enhanced as the reaction with acid mine drainage occurred at the upper part of reactor with sufficient supply of neutralizer. When the reaction was sustained in upper part of the reactor, the neutralizer was not affected by precipitates and the reaction could last until all of neutralizer was consumed.

Study on the Application of Carbonized Rice Hull as an Environmentally Controlled Cultivation Media or Vegetable Crops;Effect of Acids for Neutralization of Carbonized Rice Hull on the Growth of Several Vegetable Crops (채소작물(菜蔬作物)의 시설재배(施設栽培) 상토재료(床土材料)로서 왕겨훈탄(燻炭)의 활용방안(活用方案)에 관(關)한 연구(硏究);산(酸) 종류(種類)에 따른 왕겨훈탄(燻炭)의 중화처리(中和處理) 채소작물(菜蔬作物)의 생장(生長)에 미치는 영향(影響))

  • Hong, Soon-Dal
    • Korean Journal of Environmental Agriculture
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    • v.12 no.3
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    • pp.247-254
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    • 1993
  • The growth responses of Chinese Cabbage, lettuce, and spinach were evaluated to investigate the feasibility of carbonized rice-hulls as a sanitary cultivation media instead of soil. The carbonized rice-hulls were pretreated with several inorganic acid such as nitric, sulfuric, hydrochloric, and phosphoric acid for neutralization. The neutralization of the carbonated material using nitric, sulfuric, and phosphoric acid did not alter the growth responses of these vegetables compared to those of control plants grown on the normal cultivation soil. Especially, the nitric acid pretreatment resulted in the better growth of these plants than the mixture of soil and compost. This is probably due to the additional supply of the nitrate-nitrogens. However the growth responses of lettuce and spinach on the carbonated materials neutralized with hydrochloric acid were different and appeared to be having symptom which is analogous to the chloride toxicity during the late stage of growing. Although no difference was observed in chemical composition, the contents of protein-nitrogen were higher in the plants grown on the carbonated material compared to those of plant grown on the mixture of soil and compost. Based on our preliminary results, the carbonized and neutralized rice-hulls are very useful bed material for the sanitary cultivation under the controlled environmental condition.

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Glycerol Separation from Biodiesel Byproduct (바이오디젤 부산물로부터 글리세롤의 분리)

  • Yang, Young-Mi;Kim, Kwang-Je;Lee, Yongtaek
    • Applied Chemistry for Engineering
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    • v.19 no.6
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    • pp.690-692
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    • 2008
  • Pure glycerol could be obtained from a biodiesel byproduct by separation processes including neutralization, precipitation, and distillation. The contents of distilled glycerol through the above separation processes were measured and the results were compared according to experimental conditions such as acid concentration and precipitation temperature. Neutralization processes were carried out in the concentration range of 5~37 wt% hydrochloric acid, 5~95 wt% sulfuric acid, and 5~85 wt% phosphoric acid, respectively. Precipitation temperatures in neutralization were controlled in the range of 293~333 K. Higher values of the distilled glycerol content were obtained due to the salt removal in the pretreatment case of neutralization with 10 wt% sulfuric acid and precipitation of 313 K with 85 wt% phosphoric acid, respectively. The variations of acid concentration and precipitation temperature in pretreatment steps affected to some extent glycerol recovery from the biodiesel byproduct.

Preparation of the Hydrolyzate Using Crab Byproduct after Water Extraction (게의 열수추출 부산물을 이용한 가수분해물의 제조)

  • KIM Young-Myoung;LEE Young-Chul;KOO Jae-Geun;KIM Dong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.23 no.2
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    • pp.77-86
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    • 1990
  • The residue after hot water extraction of blue crab, Portunus trituberculata, was hydrolyzed for utilizing the byproducts as seasonings. The acid(5N HCl) hydrolyzates were then neutralized with $Na_2CO_3$, 5N NaOH or 5N NaOH hydrolyzate, while the alkali hydrolyzates (5N NaOH) were also neutralized with 5N HCl or 5N HCl hydrolyzate. The total nitrogen and formol nitrogen contents increased, and the platability of the hydrolyzates was also enhanced by neutralization. The released amino acid contents from the neutralized hydrolyzates with $Na_2CO_3$, 5N NaOH and 5N NaOH hydrolyzate were $2,274mg\%,\;2,105.0mg\%$ and $2,683.5mg\%$, respectively. Amino acid contents from the neutralized hydrolyzates with 5N HCl and 5N HCl hydrolyzate were $1,352.5mg\%$ and $2,498.8mg\%$, respectively. In the decolorization of hydrolyzates using decolorization agent, powdered active carbon showed good decolorizing effect. Powdered active carbon decreased total nitrogen and formol nitrogen contents in direct relationship to the increase in its concentration. The effective concentration of active carbon used as decolorization agent showed as $1\~2\%$ of the crab hydrolyzate. Salt contents could be decreased at 37 brix by desalination method such as the evaporation of the hydrolyzate contents.

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Characterization and Two-Phase Neutralization of Acid Mine Drainage (두 단계 중화적정에 의한 산성 광산 유출수 중의 중금속 제거)

  • Jeong, Byeong-Ryong;Chung, Jong-Bae
    • Applied Biological Chemistry
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    • v.42 no.1
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    • pp.73-78
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    • 1999
  • Acid mine drainage (AMD) results from sulfuric acid produced by the oxidation of pyrite, and contains large amounts of toxic elements. In the neutralization of AMD, iron and aluminum hydroxides are the major precipitates and those two can be separated with two-phase neutralization. In this study, removal of toxic elements by the two phases of neutralization was investigated using an AMD collected from the abandoned antimony mine in Gachang, Taegu. Contents of As, Cd, Cu, Mn, Pb and Zn in the AMD were higher than the criteria of river water quality or permissible waste water discharge. In the first phase, the AMD was neutralized to several % (25, 50, 75, 100, and 125) of $Fe(OH)_3$ equivalence point with solid $Ca(OH)_2$. In the second phase, the supernatant of the first phase neutralization was titrated to pH 7.5. After neutralization of the AMD to 100% of the $Fe(OH)_3$, equivalence point, most of Fe and Pb were removed but levels of As, Cd, Cu, Ni, Mn, and Zn were not reduced in the supernatant solution. In the second phase neutralization, levels of those toxic elements in the supernatants dropped below the wastewater discharge or river water quality criteria. This result suggests that the precipitate formed in the first phase of the neutralization process may be disposed without any special cares. Thus the two-phase neutralization scheme can reduce the cost of disposing precipitates containing toxic metals in comparison with the monophase neutralization scheme.

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