Mengyu Zhu, Qingliang Yu, S.R. van der Laan, Yuxuan Chen
{"title":"Dipotassium hydrogen phosphate activated Al-rich steel slag: The role of layered double hydroxides and aluminum hydrate gel","authors":"Mengyu Zhu, Qingliang Yu, S.R. van der Laan, Yuxuan Chen","doi":"10.1016/j.cemconres.2025.107783","DOIUrl":null,"url":null,"abstract":"Due to absence of C-S-H gel, chemically activated mixed Al-rich steel slag often shows low early-age strength. This work proposes a novel method to accelerate the hydration of Al-rich steel slag by dipotassium hydrogen phosphate (DHP) activation. Results reveal that DHP significantly promotes the formation of layered double hydroxides (LDHs) by increasing pH of the pore solution and supplying phosphate ions as the interlayer anion. Ca-Al-LDHs competes with the <span><span style=\"\"></span><span data-mathml='<math xmlns=\"http://www.w3.org/1998/Math/MathML\"><msup is=\"true\"><mi is=\"true\">Ca</mi><mrow is=\"true\"><mn is=\"true\">2</mn><mo is=\"true\">+</mo></mrow></msup></math>' role=\"presentation\" style=\"font-size: 90%; display: inline-block; position: relative;\" tabindex=\"0\"><svg aria-hidden=\"true\" focusable=\"false\" height=\"2.548ex\" role=\"img\" style=\"vertical-align: -0.235ex;\" viewbox=\"0 -995.6 2227.4 1096.9\" width=\"5.173ex\" xmlns:xlink=\"http://www.w3.org/1999/xlink\"><g fill=\"currentColor\" stroke=\"currentColor\" stroke-width=\"0\" transform=\"matrix(1 0 0 -1 0 0)\"><g is=\"true\"><g is=\"true\"><use xlink:href=\"#MJMAIN-43\"></use><use x=\"722\" xlink:href=\"#MJMAIN-61\" y=\"0\"></use></g><g is=\"true\" transform=\"translate(1223,432)\"><g is=\"true\"><use transform=\"scale(0.707)\" xlink:href=\"#MJMAIN-32\"></use></g><g is=\"true\" transform=\"translate(353,0)\"><use transform=\"scale(0.707)\" xlink:href=\"#MJMAIN-2B\"></use></g></g></g></g></svg><span role=\"presentation\"><math xmlns=\"http://www.w3.org/1998/Math/MathML\"><msup is=\"true\"><mi is=\"true\">Ca</mi><mrow is=\"true\"><mn is=\"true\">2</mn><mo is=\"true\">+</mo></mrow></msup></math></span></span><script type=\"math/mml\"><math><msup is=\"true\"><mi is=\"true\">Ca</mi><mrow is=\"true\"><mn is=\"true\">2</mn><mo is=\"true\">+</mo></mrow></msup></math></script></span> used to form metastable C<sub>2</sub>AH<sub>8,</sub> thereby releasing additional <span><span style=\"\"></span><span data-mathml='<math xmlns=\"http://www.w3.org/1998/Math/MathML\"><mi is=\"true\">Al</mi><msubsup is=\"true\"><mfenced close=\")\" open=\"(\" is=\"true\"><mi is=\"true\">OH</mi></mfenced><mn is=\"true\">4</mn><mo is=\"true\">&#x2212;</mo></msubsup></math>' role=\"presentation\" style=\"font-size: 90%; display: inline-block; position: relative;\" tabindex=\"0\"><svg aria-hidden=\"true\" focusable=\"false\" height=\"3.009ex\" role=\"img\" style=\"vertical-align: -0.812ex;\" viewbox=\"0 -945.9 4154.1 1295.7\" width=\"9.648ex\" xmlns:xlink=\"http://www.w3.org/1999/xlink\"><g fill=\"currentColor\" stroke=\"currentColor\" stroke-width=\"0\" transform=\"matrix(1 0 0 -1 0 0)\"><g is=\"true\"><use xlink:href=\"#MJMAIN-41\"></use><use x=\"750\" xlink:href=\"#MJMAIN-6C\" y=\"0\"></use></g><g is=\"true\" transform=\"translate(1195,0)\"><g is=\"true\"><use x=\"0\" xlink:href=\"#MJMAIN-28\" y=\"0\"></use><g is=\"true\" transform=\"translate(389,0)\"><use xlink:href=\"#MJMAIN-4F\"></use><use x=\"778\" xlink:href=\"#MJMAIN-48\" y=\"0\"></use></g><use x=\"1918\" xlink:href=\"#MJMAIN-29\" y=\"0\"></use></g><g is=\"true\" transform=\"translate(2308,477)\"><use transform=\"scale(0.707)\" xlink:href=\"#MJMAIN-2212\"></use></g><g is=\"true\" transform=\"translate(2308,-287)\"><use transform=\"scale(0.707)\" xlink:href=\"#MJMAIN-34\"></use></g></g></g></svg><span role=\"presentation\"><math xmlns=\"http://www.w3.org/1998/Math/MathML\"><mi is=\"true\">Al</mi><msubsup is=\"true\"><mfenced close=\")\" is=\"true\" open=\"(\"><mi is=\"true\">OH</mi></mfenced><mn is=\"true\">4</mn><mo is=\"true\">−</mo></msubsup></math></span></span><script type=\"math/mml\"><math><mi is=\"true\">Al</mi><msubsup is=\"true\"><mfenced close=\")\" open=\"(\" is=\"true\"><mi is=\"true\">OH</mi></mfenced><mn is=\"true\">4</mn><mo is=\"true\">−</mo></msubsup></math></script></span>, which is further accompanied by the increased formation of AH<sub>3</sub> gel. Consequently, DHP-activated steel slag develops a denser microstructure dominated by highly-crystalized LDHs and amorphous AH<sub>3</sub> gel and achieving impressive compressive strength (40 MPa at 28 days). Overall, this study provides a unique activation method for enhancing the early hydraulic activity of steel slag by in-situ formation of LDHs and AH<sub>3</sub> gel, contributing to the unique way to utilize steel-making byproducts.","PeriodicalId":266,"journal":{"name":"Cement and Concrete Research","volume":"204 1","pages":""},"PeriodicalIF":10.9000,"publicationDate":"2025-01-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Cement and Concrete Research","FirstCategoryId":"5","ListUrlMain":"https://doi.org/10.1016/j.cemconres.2025.107783","RegionNum":1,"RegionCategory":"工程技术","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"CONSTRUCTION & BUILDING TECHNOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Due to absence of C-S-H gel, chemically activated mixed Al-rich steel slag often shows low early-age strength. This work proposes a novel method to accelerate the hydration of Al-rich steel slag by dipotassium hydrogen phosphate (DHP) activation. Results reveal that DHP significantly promotes the formation of layered double hydroxides (LDHs) by increasing pH of the pore solution and supplying phosphate ions as the interlayer anion. Ca-Al-LDHs competes with the used to form metastable C2AH8, thereby releasing additional , which is further accompanied by the increased formation of AH3 gel. Consequently, DHP-activated steel slag develops a denser microstructure dominated by highly-crystalized LDHs and amorphous AH3 gel and achieving impressive compressive strength (40 MPa at 28 days). Overall, this study provides a unique activation method for enhancing the early hydraulic activity of steel slag by in-situ formation of LDHs and AH3 gel, contributing to the unique way to utilize steel-making byproducts.
期刊介绍:
Cement and Concrete Research is dedicated to publishing top-notch research on the materials science and engineering of cement, cement composites, mortars, concrete, and related materials incorporating cement or other mineral binders. The journal prioritizes reporting significant findings in research on the properties and performance of cementitious materials. It also covers novel experimental techniques, the latest analytical and modeling methods, examination and diagnosis of actual cement and concrete structures, and the exploration of potential improvements in materials.