<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE article PUBLIC "-//NLM//DTD JATS (Z39.96) Journal Publishing DTD v1.4 20241031//EN"
        "https://jats.nlm.nih.gov/publishing/1.4/JATS-journalpublishing1-4.dtd">
<article  article-type="research-article"        dtd-version="1.4">
            <front>

                <journal-meta>
                                    <journal-id></journal-id>
            <journal-title-group>
                                                                                    <journal-title>Enginoscope</journal-title>
            </journal-title-group>
                                        <issn pub-type="epub">3062-2360</issn>
                                                                                            <publisher>
                    <publisher-name>Erciyes Üniversitesi</publisher-name>
                </publisher>
                    </journal-meta>
                <article-meta>
                                        <article-id/>
                                                                <article-categories>
                                            <subj-group  xml:lang="en">
                                                            <subject>Construction Materials</subject>
                                                    </subj-group>
                                            <subj-group  xml:lang="tr">
                                                            <subject>Yapı Malzemeleri</subject>
                                                    </subj-group>
                                    </article-categories>
                                                                                                                                                        <title-group>
                                                                                                                        <article-title>Sürdürülebilir Geopolimer Harçların Yaşam Döngüsü ve Mekanik Özelliklerinin Değerlendirilmesi: Farklı Senaryolar Üzerine Bir Çalışma</article-title>
                                                                                                    </title-group>
            
                                                    <contrib-group content-type="authors">
                                                                        <contrib contrib-type="author">
                                                                <name>
                                    <surname>Örklemez</surname>
                                    <given-names>Ezgi</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                <name>
                                    <surname>Paka</surname>
                                    <given-names>Brial Asif Hayi</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                <name>
                                    <surname>Ceylan</surname>
                                    <given-names>Ahmet</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                <name>
                                    <surname>İlkentapar</surname>
                                    <given-names>Serhan</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                <name>
                                    <surname>Durak</surname>
                                    <given-names>Uğur</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                <name>
                                    <surname>Karahan</surname>
                                    <given-names>Okan</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                <name>
                                    <surname>Atiş</surname>
                                    <given-names>Cengiz</given-names>
                                </name>
                                                                    <aff>ERCİYES ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                                                </contrib-group>
                        
                                        <pub-date pub-type="pub" iso-8601-date="20250131">
                    <day>01</day>
                    <month>31</month>
                    <year>2025</year>
                </pub-date>
                                        <volume>1</volume>
                                        <issue>1</issue>
                                        <fpage>44</fpage>
                                        <lpage>59</lpage>
                        
                        <history>
                                    <date date-type="received" iso-8601-date="20241216">
                        <day>12</day>
                        <month>16</month>
                        <year>2024</year>
                    </date>
                                                    <date date-type="accepted" iso-8601-date="20250107">
                        <day>01</day>
                        <month>07</month>
                        <year>2025</year>
                    </date>
                            </history>
                                        <permissions>
                    <copyright-statement>Copyright © 2025, Enginoscope</copyright-statement>
                    <copyright-year>2025</copyright-year>
                    <copyright-holder>Enginoscope</copyright-holder>
                </permissions>
            
                                                                                                <abstract><p>Uçucu kül esaslı geopolimer bağlayıcıların mekanik özellikleri inşaat ve yapı sektöründe  kullanımı  için  önem  arz  etmektedir.  Ayrıca  inşaat  ve  yapıda kullanılacak malzemelerin mekanik özelliklerinin yanı sıra iklim değişikliği ile mücadelede Avrupa Yeşil Mutabakatı’nda  (European Green Deal) yer alan çevresel hedefler  inşaat  sektörünü de  yakından  ilgilendirmektedir.  Bu  kapsamda bu çalışmada, bağlayıcı olarak F sınıfı uçucu kül kullanılarak üretilen geopolimer numunelerin mekanik özellikleri ve çevresel etkileri üzerinde diatomit ikamesinin etkisi araştırılmıştır. Karışımlarda, bağlayıcı malzeme ağırlıkça %1, %2, %3, %4 ve %5   oranlarında  diatomitile ikame  edilerek  geopolimer  harçlar  üretilmiştir. Geopolimer  numunelere  90°C&#039;de  24,  48  ve  72  saat  ısıl  kür  uygulanmıştır. Geopolimer numuneler üzerinde farklı kür sürelerinde eğilme ve basınç dayanımı deneyleri yapılmıştır. Ayrıca numunelerin mikro yapısını incelemek için diatomit ikameli  geopolimer  hamurların  FESEM  görüntüleri  incelenmiştir.  Elde  edilen sonuçlara göre %1, %2 ve %3oranlarındadiatomit içeren harçların eğilme ve basınç dayanımlarında artış olduğu görülmüştür. En yüksek mekanik dayanım sonucu %3 diatomit içeren harçlarda gözlenmiştir. FESEM görüntüleri sonucunda %3 diatomit ikamesi ile üretilen geopolimerin daha yoğun ve kompakt bir mikro yapı sunduğu belirlenmiştir. Ayrıca farklı senaryolara göre diatomit ikameli ve diatomit ikamesiz  geopolimer  harçların  olumlu  ve  olumsuz  çevresel  etkileri belirlenmiştir.  Sonuç  olarak  çevreci  üretilmek  istenen  geopolimer  harçlara çevresel çıktı olarak etki eden diatomit oranı, aktivatör oranı, aktivatör türü, kür süresi, kür sıcaklıkları ve hammaddeye ulaşım mesafesi gibi faktörlerin görece olumlu ve olumsuz sonuçları irdelenmiştir.</p></abstract>
                                                            
            
                                                            <kwd-group>
                                                    <kwd>Geopolimer</kwd>
                                                    <kwd>  Yaşam Döngüsü Değerlendirmesi</kwd>
                                                    <kwd>  Uçucu Kül</kwd>
                                                    <kwd>  Diatomit</kwd>
                                                    <kwd>  Sürdürülebilirlik</kwd>
                                            </kwd-group>
                            
                                                                                                                        </article-meta>
    </front>
    <back>
                            <ref-list>
                                    <ref id="ref1">
                        <label>1</label>
                        <mixed-citation publication-type="journal">[1] H. Liet al., “Sustainable resource opportunity for cane molasses: Use of cane molasses as a grinding aid in the production of Portland cement,” J. Clean. Prod., vol. 93, pp. 56–64, 2015.</mixed-citation>
                    </ref>
                                    <ref id="ref2">
                        <label>2</label>
                        <mixed-citation publication-type="journal">[2]D.  N.  Huntzinger  and  T.  D.  Eatmon,  “A  life-cycle   assessment   of   Portland   cement   manufacturing: comparing the traditional process with alternative technologies,” J.  Clean.  Prod.,  vol.  17,  no.  7,  pp.  668–675, 2009.</mixed-citation>
                    </ref>
                                    <ref id="ref3">
                        <label>3</label>
                        <mixed-citation publication-type="journal">[3]C.  L.  Sabine et  al., “The Oceanic Sink for Anthropogenic CO2,” Science  (80-.  ).,  vol.  305,  no.  July,  pp.  5–12, 2004.</mixed-citation>
                    </ref>
                                    <ref id="ref4">
                        <label>4</label>
                        <mixed-citation publication-type="journal">[4]P.  S.  Deb,  P.  K.  Sarker,  and  S.  Barbhuiya,  “Effects  of  nano-silica  on  the  strength  development  of geopolymer cured at room temperature,” Constr. Build. Mater., vol. 101, pp. 675–683, 2015.</mixed-citation>
                    </ref>
                                    <ref id="ref5">
                        <label>5</label>
                        <mixed-citation publication-type="journal">[5]S. Saha and C. Rajasekaran, “Enhancement of the properties  of  fly  ash  based  geopolymer  paste  by incorporating ground granulated blast furnace slag,” Constr.  Build.  Mater.,  vol.  146,  pp.  615–620,  Aug. 2017.</mixed-citation>
                    </ref>
                                    <ref id="ref6">
                        <label>6</label>
                        <mixed-citation publication-type="journal">[6]İ. İ. Atabey, O. Karahan, C. Bilim, and C. D. Atiş, “The influence of activator type and quantity on  the transport properties of class F fly ash geopolymer,” Constr. Build. Mater., vol. 264, 2020.</mixed-citation>
                    </ref>
                                    <ref id="ref7">
                        <label>7</label>
                        <mixed-citation publication-type="journal">[7]A.  Awad et  al., “Experimental investigation of mechanical properties of geopolymer mortars produced with metakaolin, red mud and glass powder Ashraf,” Comput. Concr., vol. 27, no. 6, p. 597, Jun. 2021.</mixed-citation>
                    </ref>
                                    <ref id="ref8">
                        <label>8</label>
                        <mixed-citation publication-type="journal">[8]Y.  G.  Adewuyi,  “Recent  Advances  in  Fly-Ash-Based   Geopolymers:   Potential   on   the   Utilization   for Sustainable Environmental Remediation,” ACS Omega, vol. 6, no. 24, pp. 15532–15542, 2021.</mixed-citation>
                    </ref>
                                    <ref id="ref9">
                        <label>9</label>
                        <mixed-citation publication-type="journal">[9]S.   Adjei, S.  Elkatatny,  and  K.  Ayranci,  “Effect  of  Elevated  Temperature  on  the  Microstructure  of Metakaolin-Based Geopolymer,” ACS Omega, vol. 7, no. 12, pp. 10268–10276, 2022.</mixed-citation>
                    </ref>
                                    <ref id="ref10">
                        <label>10</label>
                        <mixed-citation publication-type="journal">[10]A. Sathonsaowaphak, P. Chindaprasirt, and K. Pimraksa, “Workability and strength oflignite  bottom  ash geopolymer mortar,” J. Hazard. Mater., vol. 168, no. 1, pp. 44–50, 2009.</mixed-citation>
                    </ref>
                                    <ref id="ref11">
                        <label>11</label>
                        <mixed-citation publication-type="journal">[11]K. Somna, C. Jaturapitakkul, P. Kajitvichyanukul, and P. Chindaprasirt, “NaOH-activated  ground  fly  ash geopolymer cured at ambient temperature,” Fuel, vol. 90, no. 6, pp. 2118–2124, 2011.</mixed-citation>
                    </ref>
                                    <ref id="ref12">
                        <label>12</label>
                        <mixed-citation publication-type="journal">[12]F.  Pacheco-Torgal,  J.  Castro-Gomes, and S. Jalali, “Alkali-activated  binders:  A  review.  Part  2.  About materials and binders manufacture,” Constr. Build. Mater., vol. 22, no. 7, pp. 1315–1322, Jul. 2008.</mixed-citation>
                    </ref>
                                    <ref id="ref13">
                        <label>13</label>
                        <mixed-citation publication-type="journal">[13]A. Palomo, M. W. Grutzeck, and M. T. Blanco, “Alkali-activated fly ashes: A cement for the future,” Cem. Concr. Res., vol. 29, no. 8, pp. 1323–1329, Aug. 1999.</mixed-citation>
                    </ref>
                                    <ref id="ref14">
                        <label>14</label>
                        <mixed-citation publication-type="journal">[14]J. C. Swanepoel and C. A. Strydom, “Utilisation of fly ash in a geopolymeric material,” Appl. Geochemistry, vol. 17, no. 8, pp. 1143–1148, Aug. 2002.</mixed-citation>
                    </ref>
                                    <ref id="ref15">
                        <label>15</label>
                        <mixed-citation publication-type="journal">[15]V. F. F. Barbosa, K. J. D. MacKenzie, and C. Thaumaturgo, “Synthesis and characterisation of materials based on inorganic polymers of alumina and silica: Sodium polysialate polymers,” Int. J. Inorg. Mater., vol. 2, no. 4, pp. 309–317, 2000.</mixed-citation>
                    </ref>
                                    <ref id="ref16">
                        <label>16</label>
                        <mixed-citation publication-type="journal">[16]A. R. Brough, M. Holloway, J. Sykes, and A. Atkinson, “Sodium silicate-based alkali-activated slag mortars: Part II. The retarding effect of additions of sodium chloride or malic acid,” Cem. Concr. Res., vol. 30, no. 9, pp. 1375–1379, Sep. 2000.</mixed-citation>
                    </ref>
                                    <ref id="ref17">
                        <label>17</label>
                        <mixed-citation publication-type="journal">[17]A.   Fahmi,   A.   B.   amini,   Y.   Marabi,   S.   R.   Zavaragh,   and   A.   Majnouni-Toutakhane,  “Effect  of  Curing Temperature on the Mechanical Strength of Alkali Activated Laterite Geopolymeric Samples,” J. Eng. Res., pp. 1–25, 2021.</mixed-citation>
                    </ref>
                                    <ref id="ref18">
                        <label>18</label>
                        <mixed-citation publication-type="journal">[18]T. Bakharev, “Geopolymeric materials prepared using Class F fly ash and elevated temperature curing,” Cem. Concr. Res., vol. 35, no. 6, pp. 1224–1232, Jun. 2005.</mixed-citation>
                    </ref>
                                    <ref id="ref19">
                        <label>19</label>
                        <mixed-citation publication-type="journal">[19]D. Panias, I. P. Giannopoulou, and T. Perraki, “Effect of synthesis parameters on the mechanical properties of fly ash-based geopolymers,” Colloids Surfaces A Physicochem. Eng. Asp., vol. 301, no. 1–3, pp. 246–254, 2007.</mixed-citation>
                    </ref>
                                    <ref id="ref20">
                        <label>20</label>
                        <mixed-citation publication-type="journal">[20]P. Chindaprasirt, T. Chareerat, and V. Sirivivatnanon, “Workability and strength of coarse high calcium fly ash geopolymer,” Cem. Concr. Compos., vol. 29, no. 3, pp. 224–229, 2007.</mixed-citation>
                    </ref>
                                    <ref id="ref21">
                        <label>21</label>
                        <mixed-citation publication-type="journal">[21]O. A. A. Ali, “Mechanical Properties of Fly Ash Based Geopolymer Mortar Activated By Alkali and Cement Simultaneously,” Erciyes Universty,Graduate School of Natural and Applied Sciences, 2017.</mixed-citation>
                    </ref>
                                    <ref id="ref22">
                        <label>22</label>
                        <mixed-citation publication-type="journal">[22]F.  Puertas,  S.  Martínez-Ramírez,  S.  Alonso,  and  T.  Vázquez,  “Alkali-activated  fly  ash/slag  cements. Strength behaviour and hydration products,” Cem. Concr. Res., vol. 30, no. 10, pp. 1625–1632, 2000.</mixed-citation>
                    </ref>
                                    <ref id="ref23">
                        <label>23</label>
                        <mixed-citation publication-type="journal">[23]Z. Sun and A. Vollpracht, “Isothermal calorimetry and in-situ  XRD  study  of  the  NaOH  activated  fly  ash, metakaolin and slag,” Cem. Concr. Res., vol. 103, no. September 2017, pp. 110–122, 2018.</mixed-citation>
                    </ref>
                                    <ref id="ref24">
                        <label>24</label>
                        <mixed-citation publication-type="journal">[24]B.  Galzerano et  al., “Design of sustainable porous materials  based  on  3D-structured  silica  exoskeletons  , Diatomite : Chemico-physical and functional properties,” Mater. Des., vol. 145, pp. 196–204, 2018.</mixed-citation>
                    </ref>
                                    <ref id="ref25">
                        <label>25</label>
                        <mixed-citation publication-type="journal">[25]C. Bagci, G. P. Kutyla, and W. M. Kriven, “Fully reacted high strength geopolymer made with diatomite as a fumed silica alternative,” Ceram. Int., vol. 43, no. 17, pp. 14784–14790, 2017.</mixed-citation>
                    </ref>
                                    <ref id="ref26">
                        <label>26</label>
                        <mixed-citation publication-type="journal">[26]T.  Sinsiri,  T.  Phoo-ngernkham, N. Ratchasima, and V. Sata, “The effects of replacement fly ash with diatomite in geopolymer mortar,” Comput. Concr., vol. 9, no. 6, pp. 427–439, 2012.</mixed-citation>
                    </ref>
                                    <ref id="ref27">
                        <label>27</label>
                        <mixed-citation publication-type="journal">[27]M. Sciences, T. Phoo-ngernkham, P. Chindaprasirt, V. Sata, and T. Sinsiri, “High calcium fly ash geopolymer containing diatomite as additive,” Indian J. Eng. Mater. Sci., vol. 20, no. August, pp. 310–318, 2013.</mixed-citation>
                    </ref>
                                    <ref id="ref28">
                        <label>28</label>
                        <mixed-citation publication-type="journal">[28]P.  Posi,  S. Lertnimoolchai,  V.  Sata,  and  T.  Phoo-ngernkham, “Investigation of Properties of Lightweight Concrete with Calcined Diatomite Aggregate,” vol. 18, pp. 1429–1435, 2014.</mixed-citation>
                    </ref>
                                    <ref id="ref29">
                        <label>29</label>
                        <mixed-citation publication-type="journal">[29]Y. C. Ersan, S. Gulcimen, T. N. Imis, O. Saygin, and N. Uzal, “Life cycle assessment  of  lightweight  concrete containing recycled plastics and fly ash,” Eur. J. Environ. Civ. Eng., vol. 26, no. 7, pp. 2722–2735, 2022.</mixed-citation>
                    </ref>
                                    <ref id="ref30">
                        <label>30</label>
                        <mixed-citation publication-type="journal">[30]A. Josa, A. Aguado, A. Cardim, and E. Byars, “Comparative analysis of the life cycle impact assessment of available cement inventories in the EU,” Cem. Concr. Res., vol. 37, no. 5, pp. 781–788, 2007.</mixed-citation>
                    </ref>
                                    <ref id="ref31">
                        <label>31</label>
                        <mixed-citation publication-type="journal">[31]ISO-14040, Environmental  management–life  cycle  assessment-Principles  and  framework.  International Organization for Standardization, 2006.</mixed-citation>
                    </ref>
                                    <ref id="ref32">
                        <label>32</label>
                        <mixed-citation publication-type="journal">[32]P. S. Matheu, K. Ellis, and B. Varela, “Comparing the environmental impacts of alkali activated mortar and traditional portland cement mortar using life cycle assessment,” IOP Conf. Ser. Mater. Sci. Eng., vol. 96, no. 1, 2015.</mixed-citation>
                    </ref>
                                    <ref id="ref33">
                        <label>33</label>
                        <mixed-citation publication-type="journal">[33]L. Nguyen, A. J. Moseson, Y. Farnam, and S. Spatari, “Effects of composition and transportation logistics on environmental, energy and cost metrics for the production of alternative cementitious binders.,” J. Clean. Prod., vol. 185, pp. 628–645, 2018.</mixed-citation>
                    </ref>
                                    <ref id="ref34">
                        <label>34</label>
                        <mixed-citation publication-type="journal">[34]R. Robayo-Salazar, J. Mejía-Arcila, R. Mejía de Gutiérrez, and E. Martínez, “Life cycle assessment (LCA) of an  alkali-activated  binary  concrete  based  on  natural  volcanic  pozzolan:  A  comparative  analysis  to  OPC concrete,” Constr. Build. Mater., vol. 176, pp. 103–111, Jul. 2018.</mixed-citation>
                    </ref>
                                    <ref id="ref35">
                        <label>35</label>
                        <mixed-citation publication-type="journal">[35]A.   Passuello et   al.,  “Evaluation  of  the  potential  improvement  in  the  environmental  footprint  of geopolymers using waste-derived activators,” J. Clean. Prod., vol. 166, pp. 680–689, 2017.</mixed-citation>
                    </ref>
                                    <ref id="ref36">
                        <label>36</label>
                        <mixed-citation publication-type="journal">[36]B.  C.  McLellan,  R.  P.  Williams,  J. Lay, A. Van Riessen, and G. D. Corder, “Costs and carbon emissions for geopolymer pastes in comparison to ordinary portland cement,” J.  Clean.  Prod.,  vol.  19,  no.  9–10,  pp. 1080–1090, 2011.</mixed-citation>
                    </ref>
                                    <ref id="ref37">
                        <label>37</label>
                        <mixed-citation publication-type="journal">[37]TS EN 196-1, “Method of testing cement, Part 1.Determinationof strength.” Turkish Standards Institution, Ankara, 2009.</mixed-citation>
                    </ref>
                                    <ref id="ref38">
                        <label>38</label>
                        <mixed-citation publication-type="journal">[38]TSE, “TS EN ISO 14044 standardı, Çevre yo netimi-Hayat boyu deg erlendirme-Gerekler ve kılavuz,” 2007.</mixed-citation>
                    </ref>
                                    <ref id="ref39">
                        <label>39</label>
                        <mixed-citation publication-type="journal">[39]C. D. Atiş, E. B. Görür, O. Karahan, C. Bilim, S. Ilkentapar, and E. Luga, “Very high strength (120MPa) class F  fly  ash  geopolymer  mortar  activated  at  different  NaOH  amount,  heat  curing  temperature  and  heat curing duration,” Constr. Build. Mater., vol. 96, pp. 673–678, Oct. 2015.</mixed-citation>
                    </ref>
                                    <ref id="ref40">
                        <label>40</label>
                        <mixed-citation publication-type="journal">[40]G. Görhan and G. Kürklü, “The influence of the NaOH solution on the properties of the fly ash-based geopolymer mortar cured at different temperatures,” Compos. Part B Eng., vol. 58, pp. 371–377, 2014.</mixed-citation>
                    </ref>
                                    <ref id="ref41">
                        <label>41</label>
                        <mixed-citation publication-type="journal">[41]Messina,   Ferone,   F.   Colangelo,   Roviello,   and   Cioffi,  “Alkali  activated  waste  fly  ash  as  sustainable composite:   Influence   ofcuring   and   pozzolanic   admixtures   on   the   early-age   physico-mechanical properties and residual strength after exposure at elevated temperature,” Compos.  Part  B  Eng.,  vol.  132, pp. 161–169, Jan. 2018.</mixed-citation>
                    </ref>
                                    <ref id="ref42">
                        <label>42</label>
                        <mixed-citation publication-type="journal">[42]U. Durak, O. Karahan, B. Uzal, S. İlkentapar, and C. D. Atiş, “Influence of nano SiO2 and nano CaCO3 particles  on  strength,  workability,  and  microstructural  properties  of  fly  ash-based geopolymer,” Struct. Concr., vol. 22, no. S1, pp. E352–E367, Jan. 2021.</mixed-citation>
                    </ref>
                                    <ref id="ref43">
                        <label>43</label>
                        <mixed-citation publication-type="journal">[43]J. E. Oh, P. J. M. Monteiro, S. S. Jun, S. Choi, and S. M. Clark, “The evolution of strength and crystalline phases  for  alkali-activated  ground  blast  furnace  slag  and  fly  ash-based geopolymers,” Cem.  Concr.  Res., vol. 40, no. 2, pp. 189–196, 2010.</mixed-citation>
                    </ref>
                                    <ref id="ref44">
                        <label>44</label>
                        <mixed-citation publication-type="journal">[44]E. D. Rodríguez, S. A. Bernal, J. L. Provis, J. Paya, J. M. Monzo, and M. V. Borrachero, “Effect of nanosilica-based  activators  on  the  performance  of  an  alkali-activated fly ash binder,” Cem.  Concr.  Compos.,  vol.  35, no. 1, pp. 1–11, 2013.</mixed-citation>
                    </ref>
                                    <ref id="ref45">
                        <label>45</label>
                        <mixed-citation publication-type="journal">[45]J. L. Provis and S. A. Bernal, “Geopolymers and Related Alkali-Activated Materials,” Annu. Rev. Mater. Res., vol. 44, no. 1, pp. 299–327, 2014.</mixed-citation>
                    </ref>
                                    <ref id="ref46">
                        <label>46</label>
                        <mixed-citation publication-type="journal">[46]P.  Duxson,  A.  Fernández-Jiménez,  J.  L.  Provis,  G.  C.  Lukey,  A.  Palomo,  and  J.  S.  J.  Van  Deventer, “Geopolymer technology: The current state of the art,” J. Mater. Sci., vol. 42, no. 9, pp. 2917–2933, 2007.</mixed-citation>
                    </ref>
                                    <ref id="ref47">
                        <label>47</label>
                        <mixed-citation publication-type="journal">[47]D. Khale and R. Chaudhary, “Mechanism of geopolymerization and factors influencing its development: A review,” J. Mater. Sci., vol. 42, no. 3, pp. 729–746, 2007.</mixed-citation>
                    </ref>
                                    <ref id="ref48">
                        <label>48</label>
                        <mixed-citation publication-type="journal">[48]A.  Kul et  al., “Characterization and life cycle assessment of geopolymer mortars with masonry units and recycled  concrete  aggregatesassorted from construction and demolition waste,” J.  Build.  Eng.,  vol.  78,  p. 107546, Nov. 2023.</mixed-citation>
                    </ref>
                                    <ref id="ref49">
                        <label>49</label>
                        <mixed-citation publication-type="journal">[49]Q. Munir, M. Abdulkareem, M. Horttanainen, and T. Kärki, “A comparative cradle-to-gate  life  cycle assessment   of   geopolymer   concrete   produced   from   industrial   side   streams   in   comparison   with traditional concrete,” Sci. Total Environ., vol. 865, p. 161230, Mar. 2023.</mixed-citation>
                    </ref>
                                    <ref id="ref50">
                        <label>50</label>
                        <mixed-citation publication-type="journal">[50]B. Gopalakrishna and P. Dinakar, “Life cycle assessment (LCA) and the influence of alkaline activator content on mechanical and microstructural properties of geopolymer mortar,” J. Eng. Res., Jan. 2024.</mixed-citation>
                    </ref>
                                    <ref id="ref51">
                        <label>51</label>
                        <mixed-citation publication-type="journal">[51]B. Kanagaraj, N. Anand, U. Johnson Alengaram, and R. Samuvel Raj, “Engineering properties, sustainability performance   and   life   cycle   assessment   of   high   strength   self-compacting    geopolymer   concrete composites,” Constr. Build. Mater., vol. 388, p. 131613, Jul. 2023.</mixed-citation>
                    </ref>
                                    <ref id="ref52">
                        <label>52</label>
                        <mixed-citation publication-type="journal">[52]R. Bajpai, K. Choudhary, A. Srivastava, K. S. Sangwan, and M. Singh, “Environmental impact assessment of fly ash and silica fume based geopolymer concrete,” J. Clean. Prod., vol. 254, p. 120147, 2020.</mixed-citation>
                    </ref>
                                    <ref id="ref53">
                        <label>53</label>
                        <mixed-citation publication-type="journal">[53]A.  Petek  Gursel,  E.  Masanet,  A.  Horvath,  and  A.  Stadel,  “Life-cycle   inventory   analysis   of   concrete production: A critical review,” Cem. Concr. Compos., vol. 51, pp. 38–48, Aug. 2014.</mixed-citation>
                    </ref>
                                    <ref id="ref54">
                        <label>54</label>
                        <mixed-citation publication-type="journal">[54]C. Li, J. Li, Q. Ren, Q. Zheng, and Z. Jiang, “Durability of concrete coupled with life cycle assessment: Review and perspective,” Cem. Concr. Compos., vol. 139, p. 105041, May 2023.</mixed-citation>
                    </ref>
                                    <ref id="ref55">
                        <label>55</label>
                        <mixed-citation publication-type="journal">[55]F. Schorcht, N. Kourti, B. M. Scalet, S. Roudier, and L. D. Sancho, BAT reference cement productie. 2013.</mixed-citation>
                    </ref>
                            </ref-list>
                    </back>
    </article>
