• Title/Summary/Keyword: ash analysis

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A Study on the Manufacturing of Energetically-Modified Reject Fly Ash and the Characteristics of Mortar

  • Jeong, Jae Hyun;Chu, Yong Sik;Yi, Chong Ku;Seo, Sung Kwan;Kwon, Duk Young
    • Journal of the Korean Ceramic Society
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    • v.53 no.2
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    • pp.234-240
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    • 2016
  • Energetically-modified material using reject fly ash (RFA), generated from thermal power plants, was manufactured to investigate the effect of the material on the physical and chemical characteristics of cement mortar. In order to modify reject fly ash, a vibration mill was used. Particle size, grain shape, and crystal structure of the ash were analyzed. Then, the compressive strength of the mortar using energetically-modified reject fly ash (ERFA) was measured. Microstructure and X-ray diffraction (XRD) patterns were also used in the analysis. As the replacement rate of ERFA increased, the value of the compressive strength tended to decrease. However, it was found that the compressive strength values of 7 and 28 days-cured specimens were higher than those of conventional ordinary Portland cement (OPC) mortar with 10 % replacement rate condition.

Utilization of Fly Ash as a Source of Mineral Fertilizers -I. Mineralogical Characteristics (Fly ash 비료화(肥料化) 연구(硏究) -I. Fly ash의 광물학적(鑛物學的) 특성(特性))

  • Shin, Jae-Sung;Seong, Ki-Seog;Kim, Maun-Soo
    • Korean Journal of Soil Science and Fertilizer
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    • v.20 no.4
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    • pp.309-314
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    • 1987
  • This study was conducted to examine mineralogical aspects on anthractite and bituminous coal-fired power-plant ashes as a source of mineral fertilizer. Fly ashes contain dominant amounts of silica and alumina and considerable quantitites of potassium and boron. However, potassium and silica present in unavailable forms for plant growth. X-ray, DTA, and IR analysis of ash particles indicated the formation of new mineral, mullite with shape of which were spherical in the surface morphologies of SEM. Detailed SEM investigation showed the presence of imbedded blocky shape silicate material.

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Breakage Index and Changes in Permeability of Bottom Ash for Use as Fill Material (성토재로의 활용을 위한 Bottom Ash의 파쇄지수 산정 및 투수계수 변화)

  • Kim, Donggeun;Son, Younghwan;Park, Jaesung;Bong, Taeho
    • Journal of The Korean Society of Agricultural Engineers
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    • v.57 no.6
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    • pp.107-115
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    • 2015
  • The objective of the this study is to find the breakage index and changes in permeability of Bottom ash from thermoelectric power plants in Korea. Bottom ash was crushed by compaction according to compaction energy from 0 to $1661.4\;kN/m^2$. The particle size distribution was estimated by sieve analysis. The various breakage indexes were used for analyzing the change in particle size distribution and effect of compaction energy. In the result, breakage indexes were increased as compaction energy and initial upper 4.75 mm diameter ratio, but values and tendencies of breakage indexes appeared in different as calculation method of breakage indexes. The coefficient of permeability was decreased with particle breakage, but decreasing ratio of permeability was very small. Bottom ash has a higher permeability than the weathered soil and it is considered high usability as a permeable materials.

Analysis of Coal Fly Ash (석탄회의 분석)

  • 이효진;김동원;이기강;김유택;홍성창;이시진
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.3 no.2
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    • pp.185-201
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    • 1993
  • The objectives of this study are to identify the physical, chemical and microstructural properties of coal fly ash and to increase the industrial use of coal fly ash. Experimental results show that 3 major constituents of coal fly ash are $SiO_2$, $Al_2O_3$ and coal fly ash includes the crystalline of Quartz and Mullite. Coal fly ash are classified into 7 groups based on the type of microstructure. Cenosphere is divided into floater and dry separated cenosphere which are consist mainly of $SiO_2$ and $Al_2O_3$. Cenosphere segregations are formed by adsorption and neck growth of the smaller sized cenosphere particles on the condition of the high temperature and air pressure.

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Carbonation Behavior of Fly Ash with Circulating Fluidized Bed Combustion (CFBC)

  • Bae, Soon Jong;Lee, Ki Gang
    • Journal of the Korean Ceramic Society
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    • v.52 no.2
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    • pp.154-158
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    • 2015
  • This paper investigates the reaction rates of $CO_2$ that stores carbonation through comparing the carbonation behavior between $Ca(OH)_2$ and fly ash with circulating fluidized bed combustion (CFBC) containing a large amount of free CaO. Because fly ash with CFBC contains abundant free CaO, it cannot be used as a raw material for concrete admixtures; hence, its usage is limited. Thus, it has been buried until now. In order to consider its reuse, we conduct carbonation reactions and investigate its rates. X-ray diffraction (XRD), thermogravimetric/differential thermal analysis (TG/DTA), and X-ray fluorescence (XRF) are conducted for the physical and chemical analyses of the raw materials. Furthermore, we use a PH meter and thermometer to verify the carbonization rates. We set the content of the fly ash of CFBC, $Ca(OH)_2$, $CO_2$ flow rate, and water to 100 ~ 400 g, 30 ~ 120 g, 700 cc/min, and 300 ~ 1200 g, respectively, based on the content of the free CaO determined through the TG/DTA analyses. As a result, the carbonization rate of the fly ash with CFBC is the same as that of $Ca(OH)_2$, and it tends to increase linearly. Based on these results, we investigate the carbonization behavior as a function of the free CaO content contained in the raw material.

Characterization of Unburned Carbon Particles from Fly Ash Using SEM (비산회로부터 회수한 미연탄소분의 전자현미경을 이용한 특성분석)

  • Ahn, Yang-Kyu;Kil, Dae-Sup
    • Analytical Science and Technology
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    • v.15 no.6
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    • pp.567-573
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    • 2002
  • The most important and largest commercial outlet of fly ash in Korea is a replacement material of Portland cement in concrete industry. The high level of unburned carbon in ash brings about some malfunctions in concrete. Therefore, fly ash is refined to improve the quality as a concrete additive. In this process, a lot of the residual carbon is produced, and discarded now. In the present study, to find out a valuable outlet of the enriched carbon samples, the basic morphology of residual carbon in fly ash from Boryung power plant was investigated. The unburned carbon characterization included shape, size measurement, and chemical analysis was examined using scanning electron microscope (SEM) and energy dispersive X-ray spectrometer (EDX).

Decision of Optimized Mix Design for Lightweight Foamed Concrete Using Bottom Ash by Statistical Procedure (통계적 방법에 의한 바텀애쉬를 사용한 경량기포 콘크리트의 최적배합 결정)

  • Kim, Jin-Man;Kwak, Eun-Gu;Cho, Sung-Hyun;Kang, Cheol
    • Journal of the Korea Concrete Institute
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    • v.21 no.1
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    • pp.3-11
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    • 2009
  • The increased demand and consumption of coal has intensified problems associated with disposal of solid waste generated in utilization of coal. Major utilization of coal by-products has been in construction-related applications. Since fly ash accounts for the part of the production of utility waste, the majority of scientific investigations have focused on its utilization in a multitude of use, while little attention has been directed to the use of bottom ash. As a consequence of this neglect, a large amount of bottom ash has been stockpiled. However, the need to obtain safe and economical solution for its proper utilization has been more urgent. The study presented herein is designed to ascertain the performance characteristics of bottom ash, as autoclaved lightweight foamed concrete product. The laboratory test results indicated that tobermorite was generated when bottom ash was used as materials for hydro-thermal reaction. According to the analysis of variance, at the fresh state, water ratio affects on flow and slurry density of autoclaved lightweight foamed concrete, but foam ratio influences on slurry density, while, at the hardened state, foam ratio affects on the density of dry and the compressive strength but doesn't affect on flexural and tensile strength. In the results of response surface analysis, to obtain target performance, the most suitable mix condition for lightweight foamed concrete using bottom ash was water ratio of 70$\sim$80% and foaming ratio of 90$\sim$100%.

High Temperature Properties of Fire Protection Materials Using Fly Ash and Meta-Kaolin (Fly Ash 및 Meta-Kaolin을 활용한 내화성 마감재의 고온특성)

  • Song, Hun;Chu, Yong-Sik;Lee, Jong-Kyu;Do, Jeong-Yun
    • Journal of the Korean Ceramic Society
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    • v.47 no.3
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    • pp.223-231
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    • 2010
  • The serious issue of tall building is to ensure the fire-resistance of high strength concrete. The fire resistant finishing method is necessarily essential in order to satisfy the fire resistance time of 3 h required by the law. The fire resistant finishing method is installed by applying a fire resistant material as a method of shotcrete or a fire resistant board to high strength concrete surface. This method can reduce the temperature increase of the reinforcement embedded in high strength concrete at high temperature due to the installation thickness control. This study is interested in identifying the effectiveness of inorganic alumino-silicate compounds including the inorganic admixture such as fly ash and meta-kaolin as the fire resistant finishing materials through the analysis of fire resistance and components properties at high temperature. The study results show that the fire resistant finishing material composed of fly ash and meta-kaolin has the thermal stability of the slight decrease of compressive strength at high temperature. These thermal stability is caused by the ceramic binding capacity induced by alkali activation reaction by the reason of the thermal analysis result not showing the decomposition of calcium hydrate. Inorganic compounds composed of fly ash and meta-kaolin is evaluated to be very effective as the fire resistance material for finishing to protect the concrete substrate by the reason of those simplicity in both application and manufacture. The additional study about the adhesion in the interface with concrete substrate is necessary for the purpose of the practical application.

Physical and Chemical Analysis of Epimedii Herba by the Packaging Methods and Storage Periods (포장방법 및 보관기간에 따른 음양곽의 이화학적 분석)

  • Seo, Chang-Seob;Kim, Jung-Hoon;Lee, Sullim;Kim, Seong-Sil;Kim, Sun-Min;Shin, Hyeun-Kyoo
    • Korean Journal of Pharmacognosy
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    • v.50 no.4
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    • pp.312-317
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    • 2019
  • In order to obtain basic data on the shelf life of Epimedii Herba (EH), a physicochemical characteristics including weight loss rate, loss on drying, ash, acid-insoluble ash, and quantitative determination were evaluated to compare the data by packaging methods including general (G), general + silica gel (GS), alumium (AL), and alumium + silica gel (ALS) packaging and storage periods (0-66 months). All physicochemical analyzes were conducted using the method of "The Korean Pharmacopoeia (KP) 9th edition". As a result, weight loss rate (%), loss on drying (%), ash (%), acid-insoluble ash (%) of EH according to the packaging methods and storage periods were -0.27-4.73%, 3.06-9.35%, 5.48-7.37%, and 0.45-0.99, respectively. In the quantitative analysis of icariin, the marker compound of EH using high-performance liquid chromatography, the initial content was 0.44% at 0 month in all packaging methods. After that, the result of analyzing the content of icariin every 6 months was detected 0.44-1.18%. All of the above results satisfied the acceptance criteria for loss on drying, ash, acid-insoluble ash, and quantification contained in the KP. This study can be used as a basic data for establishing the packaging method and shelf life of EH.

Evaluation for Contents of Contaminants and Leaching Characteristics of Bottom Ash (바텀애쉬의 유해물질 함량 측정 및 용출특성 평가연구)

  • Koh, Taehoon;Lee, Sungjin;Shin, Minho;Kim, Byongsuk;Lee, Jeakeun;Lee, Taeyoon
    • Journal of the Korean GEO-environmental Society
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    • v.11 no.6
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    • pp.77-83
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    • 2010
  • In this study, we tried to determine any detrimental effects on water quality when bottom ash obtained from a coal-fired power plant intended to be used as a fill material in construction sites. Physical-chemical properties of bottom ash were determined using proximate analysis, elemental analysis, XRD, and XRF. Classification of bottom ash as a waste material and soil contamination due to the use of bottom ash were performed by Korea waste standard leaching test and soil toxicity test, respectively. Results of leaching tests were compared to the regulations for water quality and groundwater quality and no harmful effects on water quality were found. Most of heavy metals in leachate were below detection limits but trace amount of $Cr^{6+}$ was found. However, concentration of $Cr^{6+}$ was below the regulation criteria. Column leaching tests indicated that concentrations of Pb and Zn were slightly higher than regulations but below regulations within 1 PVE, but concentrations of sulfate were 10 times higher than regulation and thus, the required time to reach regulation was almost 8 PVE.