• Title/Summary/Keyword: Sulfate Attack

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Service life of concrete culverts repaired with biological sulfate-resisting mortars

  • Hyun-Sub, Yoon;Keun-Hyeok, Yang;Nguyen, Van Tuan;Seung-Jun, Kwon
    • Computers and Concrete
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    • v.30 no.6
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    • pp.409-419
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    • 2022
  • The purpose of this study is to examine the effectiveness of biological repairing mortars on restoring the structural performance of a sewage culvert deteriorated by sulfate attack. The biological mortars were developed for protecting concrete structures exposed to sulfate attack based on the block membrane action of the bacterial glycocalyx. The diffusion coefficient of sulfate ions in the biological mortars was determined from the natural diffusion cell tests. The effect of sulfate-attack-induced concrete deterioration on the structural performance of culverts was examined by using the moment-curvature relationship predicted based on the nonlinear section lamina approach considering the sulfuric-acid-induced degradation of the structure. Typical analytical assessments showed that biological mortars were quite effective in increasing the sulfate-resistant service life of sewage culverts.

Sulfate Attack on the Cation Type Accompanying $SO_4^{2-}$ (황산이온과 결합하는 양이온의 종류에 따른 황산염침식)

  • Moon, Han-Young;Kim, Seong-Soo;Jung, Ho-Seop;Lee, Seung-Tae;Kim, Jong-Pil;Koh, Joon-Ho
    • Proceedings of the Korea Concrete Institute Conference
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    • 2006.05b
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    • pp.221-224
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    • 2006
  • This paper reports a study carried out to investigate sulfate attack caused by cation type(sodium, magnesium) accompanying $SO_4^{2-}$ ions in sulfate solutions. The sulfate attack of mortar specimens was evaluate using the visual appearance, compressive strength loss and expansion. In addition, at the end of 360 days, the products of sulfate attack and the mechanism of attack were investigated through x-ray diffraction.

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Sulfate Attack of Concrete and Its Evaluation Criteria (콘크리트의 황산염침식 및 평가 규준)

  • Lee, Seung-Tae;Kim, Seong-Soo;Kim, Jong-Pil
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.11a
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    • pp.911-914
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    • 2008
  • It has been recognized for a long time that sulfate ions in seawater and soils can cause severe damage to concrete structures. There have been numerous field and lab. studies on the distress caused to concrete structures generated by sulfate attack. All these investigations emphasize that in order to understand the deterioration of concrete due to sulfate attack. Until now, however, it has been difficult to define the precise nature of the mechanism of sulfate attack because of its complex behavior. Thus, this work dealt with the deterioration mechanism caused by sulfate attack and the evaluation criteria.

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A Study on the Sulfate Attack Resistance of Concrete Using EAF Slag as Fine Aggregate (전기로슬래그 잔골재를 사용한 콘크리트의 황산염침식 저항성에 관한 연구)

  • Park, Moon-Seok;Kim, Young-Su
    • Journal of the Korea Institute of Building Construction
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    • v.9 no.1
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    • pp.81-87
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    • 2009
  • The purpose of this study is to investigate the sulfate attack resistance of concrete using the EAF(electric arc furnace) Slag as fine aggregate. In order to figure out the effects of magnesium sulfate solution on the durability of concrete using the EAF Slag as fine aggregate, the experiments for the immerging test in the 10% magnesium sulfate solution was executed by selecting factors such as aging processes, replacement ratio(0, 10, 20, 30, 50%), and duration of immerging. The specimens were made with various EAF slag replacements for fine aggregates and with W/C ratio fixed 0.45. compressive strength and S.D.F(Sulfate Deterioration Factor), weight change, and SEM(Scanning Electron Microscope) were tested. From the test results, EAF slag aggregate treated with accelerated aging is better than treated with air aging. The compressive strength and resistance to the sulfate attack is slightly improved with an increase in the EAF slag aggregate treated with accelerated aging replacement for aggregate.

Microstructural Investigation on the Deterioration of Silica Fume Blended Cement Matrix Under Magnesium Sulfate Attack (황산마그네슘 침식을 받은 실리카 퓸 혼합 시멘트 경화체의 성능저하에 대한 미세구조적 관찰)

  • Lee, Seung-Tae
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.12 no.6
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    • pp.55-62
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    • 2008
  • This paper reports the effect of replacement levels of silica fume on the resistance to magnesium sulfate attack. Mortar specimens incorporating silica fume were exposed to 5% magnesium sulfate solution for 360 days at ambient temperature. The main variable was the replacement levels of silica fume(0, 5, 10 and 15% of cement by mass). The resistance of mortar specimens incorporating silica fume against magnesium sulfate attack was regularly monitored by measuring compressive strength and expansion. In addition, in order to investigate the reactants formed by magnesium sulfate attack, various instrumental analyses such as XRD, SEM and DSC were used. Results demonstrated that the formation of gypsum, thaumasite and brucite led to a significant deterioration due to magnesium sulfate attack in cement matrix incorporating silica fume.

Influence of Mineral Admixtures on the Resistance to Sulfuric Acid and Sulfate Attack in Concrete (콘크리트의 황산 및 황산염 침투 저항성에 미치는 광물질 혼화재의 영향)

  • Bae, Su-Ho;Park, Jae-Im;Lee, Kwang-Myong
    • Journal of the Korea Concrete Institute
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    • v.22 no.2
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    • pp.219-228
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    • 2010
  • It has been well known that concrete structures exposed to acid and sulfate environments such as sewer, sewage and wastewater, soil, groundwater, and seawater etc. show significant decrease in their durability due to chemical attack. Such deleterious acid and sulfate attacks lead to expansion and cracking in concrete, and thus, eventually result in damage to concrete matrix by forming expansive hydration products due to the reaction between portland cement hydration products and acid and sulfate ions. Objectives of this experimental research are to investigate the effect of mineral admixtures on the resistance to acid and sulfate attack in concrete and to suggest high-resistance concrete mix against acid and sulfate attack. For this purpose, concretes specimens with three types of cement (ordinary portland cement (OPC), binary blended cement (BBC), and ternary blended cement (TBC) composed of different types and proportions of admixtures) were prepared at water-biner ratios of 32% and 43%. The concrete specimens were immersed in fresh water, 5% sulfuric acid, 10% sodium sulfate, and 10% magnesium sulfate solutions for 28, 56, 91, 182, and 365 days, respectively. To evaluate the resistance to acid and sulfate for concrete specimens, visual appearance changes were observed and compressive strength ratios and mass change ratios were measured. It was observed from the test results that the resistance against sulfuric acid and sodium sulfate solutions of the concretes containing mineral admixtures were much better than that of OPC concrete, but in the case of magnesium sulfate solution the concretes containing mineral admixtures was less resistant than OPC concrete due to formation of magnesium silicate hydrate (M-S-H) which is non-cementitious.

Evaluation on the Sulfate Attack Resistance of Shotcrete with Aluminate Accelerator (알루미네이트계 급결제를 사용한 숏크리트의 황산염침식 저항성 평가)

  • Kim, Seoung-Su;Kim, Hong-Sam;Lee, Gyu-Phil;Kim, Dong-Gyou;Yoon, Ha-Young
    • Proceedings of the Korea Concrete Institute Conference
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    • 2005.11a
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    • pp.527-530
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    • 2005
  • Shotcrete have become a deterioration which is used in the underground such as groundwater and soil in sulfate ion. Sulfate attack on concrete structures in service is not widespread, and the amount of laboratory-based research seems. to be disproportionately large. In this study, immersion test using $Na_2SO_4$ solution($1,2,5\%$) was performed to evalute the resistance of shotcrete. From the results of the immersion test for 112 days of exposure. In order to understand the deterioration mechanism due to seawater attack, test using scanning electron microscopy(SEM) analysis and X-ray diffraction showed that the deterioration mechanism due to sulfate attack in shotcrete.

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Durability Evaluation of concrete using fly ash (플라이애시 혼입 콘크리트의 내구성 평가)

  • 조명석;송영철;류금성;고경택;김성욱;이장화
    • Proceedings of the Korea Concrete Institute Conference
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    • 2002.05a
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    • pp.755-760
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    • 2002
  • The concrete structures in marine environment has been used type V cement(sulfate-resisting Portland cement), but according to the study results reported recently, the question has been raised for effect of the resistance to salt attack of the concrete using type V cement. It is increased the demands on the use of mineral admixtures such as fly ash, ground granulated blast-furnace slag instead of type V cement in order to improve the durability of concrete structures. Therefore, this study focused on the durability evaluation of concrete containing fly ash under marine environment, and the tests such as salt attack, carbonation, sulfate attack, and freezing-thawing were performed. Test results showed t]hat the resistance to salt attack, sulfate attack and freezing-thawing was improved, and the carbonation was in some disadvantage compared with normal concrete. Nevertheless, the durability of fly ash concrete would be maintained during the service life of structures.

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Magnesium Sulfate Attack and Deterioration Mode of Metakaolin Blended Cement Matrix (메타카올린 혼합 시멘트 경화체의 황산마그네슘 침식 및 성능저하 모드)

  • Lee, Seung-Tae
    • Journal of the Korea Concrete Institute
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    • v.21 no.1
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    • pp.21-27
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    • 2009
  • In this study, experimental findings on the resistance to magnesium sulfate attack of portland cement mortar and paste specimens incorporating metakaolin (MK) are presented. Specimens with four replacement levels of metakaolin (0, 5, 10 and 15% of cement by mass) were exposed to solutions with concentrations of 0.424% and 4.24% as $MgSO_4$ at ambient temperature. The resistance of mortar specimens was evaluated through visual examination and linear expansion measurements. Additionally, in order to identify the products formed by magnesium sulfate attack, microstructural analyses such as XRD, DSC and SEM/EDS were also performed on the paste samples incorporating metakaolin. Results confirmed that mortar specimens with a high replacement level of metakaolin exhibited lower resistance to a higher concentration of magnesium sulfate solution. It was found that the negative effect of metakaolin on the magnesium sulfate attack is partially attributed to the formation of gypsum and thaumasite. Conclusively, it is necessary to pay a special attention when using metakaolin in concrete structures, particularly under highly concentrated magnesium sulfate environment.

Sulfate Attack Resistance and Microstructural Observations of Cement Matrix Exposed to a Low Temperature Condition (저온환경에 노출된 시멘트 경화체의 황산염침식 저항성 및 미세구조적 조사)

  • Lee, Seung-Tae
    • Journal of the Korea Concrete Institute
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    • v.21 no.5
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    • pp.611-617
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    • 2009
  • This paper reports an experimental study on the damage mechanism and resistance of Type I portland cement mortar and paste samples exposed to 5% sodium sulfate solution with different solution temperatures; namely, $4^{\circ}C$, $10^{\circ}C$ and $20^{\circ}C$. The resistance of mortar samples was evaluated using expansion, compressive strength and flexural strength measurements. Some microstructural observations such as x-ray diffraction, differential scanning calorimetry and scanning electron microscopy were also introduced to elucidate reactants formed by sulfate attack, especially in a low temperature condition. From the results, it was found that the degree of damage in the mortar samples was significantly associated with the temperature of sulfate solution. Low temperature of the sulfate solution led to the formation of thaumasite in mortar and paste samples, and subsequently a poor resistance to sulfate attack. Thus, it is noted that when concrete structures are exposed to sulfate media in the condition of a cold region or whether, special care should be taken.