Artigos de revistas sobre o tema "Bio-aggregate"
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Ferreira, Saulo Rocha, Rodolfo Giacomim Mendes de Andrade, Gabriele Melo de Andrade, Olga Maria Oliveira de Araújo, Ricardo Tadeu Lopes, Eduardo de Moraes Rego Fairbairn, Thiago Melo Grabois e Neven Ukrainczyk. "Bond Behavior of a Bio-Aggregate Embedded in Cement-Based Matrix". Materials 15, n.º 17 (5 de setembro de 2022): 6151. http://dx.doi.org/10.3390/ma15176151.
Texto completo da fonteZhu, Lixia, Mengmeng Cao, Chengchen Sang, Tingxuan Li, Yanjun Zhang, Yunxia Chang e Lili Li. "Trichoderma Bio-Fertilizer Decreased C Mineralization in Aggregates on the Southern North China Plain". Agriculture 12, n.º 7 (11 de julho de 2022): 1001. http://dx.doi.org/10.3390/agriculture12071001.
Texto completo da fonteHuang, Gang, Ariane Abou-Chakra, Sandrine Geoffroy e Joseph Absi. "A Multi-Scale Numerical Simulation on Thermal Conductivity of Bio-Based Construction Materials". Construction Materials 2, n.º 3 (4 de julho de 2022): 148–65. http://dx.doi.org/10.3390/constrmater2030011.
Texto completo da fonteAmantino, Guilherme Miguel, Nicole Pagan Hasparyk, Francieli Tiecher e Romildo Dias Toledo Filho. "Assessment of bio-aggregate concretes’ properties with rice residue". Journal of Building Engineering 52 (julho de 2022): 104348. http://dx.doi.org/10.1016/j.jobe.2022.104348.
Texto completo da fonteda Silva, Bruno Tiago Angelo, e Suelly Helena de Araújo Barroso. "The Application of Soy Biodiesel in Bituminous Priming of Soil-Aggregate Layers of Low Traffic Volume Roads in the State of Ceara, Brazil". Advanced Materials Research 875-877 (fevereiro de 2014): 115–25. http://dx.doi.org/10.4028/www.scientific.net/amr.875-877.115.
Texto completo da fonteYew, M. K., M. C. Yew, J. H. Beh, L. H. Saw, Y. L. Lee, J. H. Lim e C Y T. "Fire resistance of lightweight foam concrete by incorporating lightweight bio-based aggregate". IOP Conference Series: Earth and Environmental Science 920, n.º 1 (1 de novembro de 2021): 012009. http://dx.doi.org/10.1088/1755-1315/920/1/012009.
Texto completo da fontePeng, Yuanyuan, He Zhang, Jinshan Lian, Wen Zhang, Guihua Li e Jianfeng Zhang. "Combined Application of Organic Fertilizer with Microbial Inoculum Improved Aggregate Formation and Salt Leaching in a Secondary Salinized Soil". Plants 12, n.º 16 (15 de agosto de 2023): 2945. http://dx.doi.org/10.3390/plants12162945.
Texto completo da fonteKhushnood, Rao Arsalan, Zarar Ali Qureshi, Nafeesa Shaheen e Sikandar Ali. "Bio-mineralized self-healing recycled aggregate concrete for sustainable infrastructure". Science of The Total Environment 703 (fevereiro de 2020): 135007. http://dx.doi.org/10.1016/j.scitotenv.2019.135007.
Texto completo da fonteHariz, Samah, Fouad Ghomari e Brahim Touil. "Characterization of a bio-based concrete using virgin cork aggregate". Journal of Building Materials and Structures 9, n.º 2 (29 de dezembro de 2022): 141–49. http://dx.doi.org/10.34118/jbms.v9i2.2780.
Texto completo da fonteBellei, Poliana, Fernanda Magalhães, Manuel Pereira, Isabel Torres, Runar Solstad e Inês Flores-Colen. "Innovative Thermal Renders Incorporating Oyster Shells for Sustainable Insulation". Sustainability 15, n.º 22 (15 de novembro de 2023): 15952. http://dx.doi.org/10.3390/su152215952.
Texto completo da fonteSassu, Mauro, Linda Giresini, Elisa Bonannini e Mario Puppio. "On the Use of Vibro-Compressed Units with Bio-Natural Aggregate". Buildings 6, n.º 3 (19 de setembro de 2016): 40. http://dx.doi.org/10.3390/buildings6030040.
Texto completo da fonteWu, Chun-Ran, Ya-Guang Zhu, Xiao-Tong Zhang e Shi-Cong Kou. "Improving the properties of recycled concrete aggregate with bio-deposition approach". Cement and Concrete Composites 94 (novembro de 2018): 248–54. http://dx.doi.org/10.1016/j.cemconcomp.2018.09.012.
Texto completo da fonteTomson, Phillip L., Liam M. Grover, Philip J. Lumley, Alastair J. Sloan, Anthony J. Smith e Paul R. Cooper. "Dissolution of bio-active dentine matrix components by mineral trioxide aggregate". Journal of Dentistry 35, n.º 8 (agosto de 2007): 636–42. http://dx.doi.org/10.1016/j.jdent.2007.04.008.
Texto completo da fonteAndrade, Gabriele Melo de, Rodolfo Giacomim Mendes de Andrade, Olga Maria Oliveira de Araujo, Ricardo Tadeu Lopes, Túlio Caetano Guimaraes e Saulo Rocha Ferreira. "Macauba (Acrocomia aculeata) endocarp as a coarse aggregate for bio-concretes". Construction and Building Materials 451 (novembro de 2024): 138667. http://dx.doi.org/10.1016/j.conbuildmat.2024.138667.
Texto completo da fonteAnantharaman, Surendra B., Daniel Messmer, Amin Sadeghpour, Stefan Salentinig, Frank Nüesch e Jakob Heier. "Excitonic channels from bio-inspired templated supramolecular assembly of J-aggregate nanowires". Nanoscale 11, n.º 14 (2019): 6929–38. http://dx.doi.org/10.1039/c8nr10357g.
Texto completo da fonteBrouard, Yoann, Naima Belayachi, Dashnor Hoxha, Stéphane Méo e Wajih Abdallah. "Hygrothermal Behavior of Clay - Sunflower (Helianthus annuus) and Rape Straw (Brassica napus) Plaster Bio-Composites for Building Insulation". Advanced Engineering Forum 21 (março de 2017): 242–48. http://dx.doi.org/10.4028/www.scientific.net/aef.21.242.
Texto completo da fonteYilmaz, Erdem, e Mehmet Sönmez. "The role of organic/bio–fertilizer amendment on aggregate stability and organic carbon content in different aggregate scales". Soil and Tillage Research 168 (maio de 2017): 118–24. http://dx.doi.org/10.1016/j.still.2017.01.003.
Texto completo da fonteLiu, Mengdi, Jun Xia, Chee Seong Chin e Zuowei Liu. "Improving the properties of recycled aggregate pervious pavement blocks through bio-mineralization". Construction and Building Materials 262 (novembro de 2020): 120065. http://dx.doi.org/10.1016/j.conbuildmat.2020.120065.
Texto completo da fonteZhang, Chuyan, Yingyun Qiao e Qiang Song. "Practice of Improving Saline–Alkali Soil with Bio-Humic Acid". Processes 12, n.º 6 (18 de junho de 2024): 1250. http://dx.doi.org/10.3390/pr12061250.
Texto completo da fonteZúniga, Arlen, Rute Eires e Raphaele Malheiro. "New Lime-Based Hybrid Composite of Sugarcane Bagasse and Hemp as Aggregates". Resources 12, n.º 5 (27 de abril de 2023): 55. http://dx.doi.org/10.3390/resources12050055.
Texto completo da fonteStevulova, Nadezda, e Jozef Junak. "Green Building Materials Based on Waste Filler and Binder". Civil and Environmental Engineering 17, n.º 2 (1 de dezembro de 2021): 542–48. http://dx.doi.org/10.2478/cee-2021-0055.
Texto completo da fonteAlmohareb, Rahaf A., Reem M. Barakat, Fahda N. Algahtani, Mshael Ahmed Almohaimel, Denah Alaraj e Norah Alotaibi. "Effect of bioceramic intracanal medication on the dentinal bond strength of bioceramic cements: an ex-vivo study". PeerJ 12 (25 de julho de 2024): e17826. http://dx.doi.org/10.7717/peerj.17826.
Texto completo da fonteCollison, Robert, e Mark Grismer. "Upscaling the Zeolite-Anammox Process: Treatment of Anaerobic Digester Filtrate". Water 10, n.º 11 (1 de novembro de 2018): 1553. http://dx.doi.org/10.3390/w10111553.
Texto completo da fonteDjuraeva, Nigora. "COMPARATIVE ANALYSIS OF CLINICAL EFFICIENCY OF THE DRUG “BIO-DENT” IN BIOLOGICAL METHODS OF TREATMENT OF PULPITES BY THE METHOD OF INDIRECT COATING". UZBEK MEDICAL JOURNAL Special issue, n.º 1 (30 de março de 2021): 51–56. http://dx.doi.org/10.26739/2181-0664-2021-si-1-9.
Texto completo da fonteDjuraeva, Nigora. "COMPARATIVE ANALYSIS OF CLINICAL EFFICIENCY OF THE DRUG “BIO-DENT” IN BIOLOGICAL METHODS OF TREATMENT OF PULPITES BY THE METHOD OF INDIRECT COATING". UZBEK MEDICAL JOURNAL Special issue, n.º 1 (30 de março de 2021): 51–56. http://dx.doi.org/10.26739/2181-0664-2021-si-1-9.
Texto completo da fonteLiu, Ziyi, e Stephen R. Smith. "Cross-Linked Enzyme Aggregate (CLEA) Preparation from Waste Activated Sludge". Microorganisms 11, n.º 8 (27 de julho de 2023): 1902. http://dx.doi.org/10.3390/microorganisms11081902.
Texto completo da fonteMistri, Abhijit, Navdeep Dhami, Sriman Kumar Bhattacharyya, Sudhirkumar V. Barai, Abhijit Mukherjee e Wahidul K. Biswas. "Environmental implications of the use of bio-cement treated recycled aggregate in concrete". Resources, Conservation and Recycling 167 (abril de 2021): 105436. http://dx.doi.org/10.1016/j.resconrec.2021.105436.
Texto completo da fonteGhorbel, Elhem, Mariem Limaiem e George Wardeh. "Mechanical Performance of Bio-Based FRP-Confined Recycled Aggregate Concrete under Uniaxial Compression". Materials 14, n.º 7 (3 de abril de 2021): 1778. http://dx.doi.org/10.3390/ma14071778.
Texto completo da fonteLee, Won Jin, e Byung-Keun Oh. "Effective Elimination of Cu(II) in Marine Environment Using Recycled Aggregate Bio-Carrier". Journal of Korean Society of Water Science and Technology 24, n.º 5 (31 de outubro de 2016): 35–40. http://dx.doi.org/10.17640/kswst.2016.24.5.35.
Texto completo da fonteYew, Ming Kun, Jing Han Beh, Ming Chian Yew, Foo Wei Lee, Lip Huat Saw e Siong Kang Lim. "Performance of surface modification on bio-based aggregate for high strength lightweight concrete". Case Studies in Construction Materials 16 (junho de 2022): e00910. http://dx.doi.org/10.1016/j.cscm.2022.e00910.
Texto completo da fonteWilliams, Joseph, Mike Lawrence e Pete Walker. "A method for the assessment of the internal structure of bio-aggregate concretes". Construction and Building Materials 116 (julho de 2016): 45–51. http://dx.doi.org/10.1016/j.conbuildmat.2016.04.088.
Texto completo da fonteSingh, L. P., Vishakha Bisht, M. S. Aswathy, Leena Chaurasia e Sanjay Gupta. "Studies on performance enhancement of recycled aggregate by incorporating bio and nano materials". Construction and Building Materials 181 (agosto de 2018): 217–26. http://dx.doi.org/10.1016/j.conbuildmat.2018.05.248.
Texto completo da fonteYong, Zi Cong, Ming Kun Yew, Xin Wei Sieng, Jing Han Beh, Ming Chian Yew e Foo Wei Lee. "Strength and Acoustics Properties of Lightweight Foamed Concrete Incorporating of Bio-Based Aggregate". IOP Conference Series: Earth and Environmental Science 1216, n.º 1 (1 de julho de 2023): 012014. http://dx.doi.org/10.1088/1755-1315/1216/1/012014.
Texto completo da fonteMohamad, Maheera, Khai Lin Chong, Muhammad Hafeez Abdul Nasir, Rahimi Abidin, Noor Hidayah Abu, Mohd Rizal Razalli, Che Azlan Taib, Yuhainis Mohd Yusoff e Vignes Chellamuthu. "Potential of Pressmud Waste from Sugar Industry in Brick Manufacturing for Green Business and Sustainability". PaperASIA 40, n.º 1(b) (10 de fevereiro de 2024): 25–30. http://dx.doi.org/10.59953/paperasia.v40i1(b).58.
Texto completo da fonteRus, Anika Zafiah M., Nur Munirah Abdullah, M. F. L. Abdullah e M. Izzul Faiz Idris. "Graphite/Bio-Based Epoxy Composites: The Mechanical Properties Interface". Applied Mechanics and Materials 799-800 (outubro de 2015): 115–19. http://dx.doi.org/10.4028/www.scientific.net/amm.799-800.115.
Texto completo da fonteLi, Xiao, Jun Li, Zhihui Zhao, Keyao Zhou, Xiumei Zhan, Ying Wang, Ning Liu, Xiaori Han e Xue Li. "Soil Organic Carbon and Humus Characteristics: Response and Evolution to Long-Term Direct/Carbonized Straw Return to Field". Agronomy 14, n.º 10 (17 de outubro de 2024): 2400. http://dx.doi.org/10.3390/agronomy14102400.
Texto completo da fontePIEGAY, Clément, Philippe GLé e Chems ANWAR. "Poroelasticity and acoustic properties of bio-based materials : from characterization to the understanding of mechanical dissipation effects". INTER-NOISE and NOISE-CON Congress and Conference Proceedings 270, n.º 2 (4 de outubro de 2024): 9653–63. http://dx.doi.org/10.3397/in_2024_4281.
Texto completo da fontePodolsky, Joseph H., Zahra Sotoodeh-Nia, Theodore Huisman, R. Christopher Williams e Eric W. Cochran. "Practical Approach to Mix Design with High Binder and Aggregate Replacement in Iowa using Fractionation". Transportation Research Record: Journal of the Transportation Research Board 2673, n.º 10 (27 de maio de 2019): 571–78. http://dx.doi.org/10.1177/0361198119834303.
Texto completo da fonteStevulova, N., e A. Estokova. "Changes in thermal stability of lignocelluloses waste aggregates long-term incorporated in composite". IOP Conference Series: Earth and Environmental Science 900, n.º 1 (1 de novembro de 2021): 012042. http://dx.doi.org/10.1088/1755-1315/900/1/012042.
Texto completo da fonteNeufurth, Meik, Shunfeng Wang, Heinz C. Schröder, Bilal Al-Nawas, Xiaohong Wang e Werner E. G. Müller. "3D bioprinting of tissue units with mesenchymal stem cells, retaining their proliferative and differentiating potential, in polyphosphate-containing bio-ink". Biofabrication 14, n.º 1 (31 de dezembro de 2021): 015016. http://dx.doi.org/10.1088/1758-5090/ac3f29.
Texto completo da fonteCintura, Eleonora, Lina Nunes, Luisa Molari, Matteo Bettuzzi, Maria Pia Morigi, Rosa Brancaccio e Paulina Faria. "Hygroscopicity and Morphology of Bio-Based Boards—The Influence of the Formulation". Applied Sciences 14, n.º 2 (19 de janeiro de 2024): 873. http://dx.doi.org/10.3390/app14020873.
Texto completo da fonteAlfiansah, Yustian Rovi, Jens Harder, Matthew James Slater e Astrid Gärdes. "Addition of Molasses Ameliorates Water and Bio-Floc Quality in Shrimp Pond Water". Tropical Life Sciences Research 33, n.º 1 (31 de março de 2022): 121–41. http://dx.doi.org/10.21315/tlsr2022.33.1.8.
Texto completo da fonteAslam, Muhammad, Payam Shafigh e Mohd Zamin Jumaat. "Drying shrinkage behaviour of structural lightweight aggregate concrete containing blended oil palm bio-products". Journal of Cleaner Production 127 (julho de 2016): 183–94. http://dx.doi.org/10.1016/j.jclepro.2016.03.165.
Texto completo da fonteWilliams, Joseph, Mike Lawrence e Pete Walker. "The influence of constituents on the properties of the bio-aggregate composite hemp-lime". Construction and Building Materials 159 (janeiro de 2018): 9–17. http://dx.doi.org/10.1016/j.conbuildmat.2017.10.109.
Texto completo da fonteSerrano-González, Lorena, Daniel Merino-Maldonado, Manuel Ignacio Guerra-Romero, Julia María Morán-Del Pozo, Paulo Costa Lemos, Alice Santos Pereira, Paulina Faria, Julia García-González e Andrés Juan-Valdés. "Use of Mixed Microbial Cultures to Protect Recycled Concrete Surfaces: A Preliminary Study". Materials 14, n.º 21 (1 de novembro de 2021): 6545. http://dx.doi.org/10.3390/ma14216545.
Texto completo da fonteChakravarthy H G, Nahushananda, Karthik M. Seenappa, Sujay Raghavendra Naganna e Dayananda Pruthviraja. "Machine Learning Models for the Prediction of the Compressive Strength of Self-Compacting Concrete Incorporating Incinerated Bio-Medical Waste Ash". Sustainability 15, n.º 18 (12 de setembro de 2023): 13621. http://dx.doi.org/10.3390/su151813621.
Texto completo da fontePinto Dabés Guimarães, Ana Cláudia, Olivier Nouailletas, Céline Perlot e David Grégoire. "Granular Skeleton Optimisation and the Influence of the Cement Paste Content in Bio-Based Oyster Shell Mortar with 100% Aggregate Replacement". Sustainability 16, n.º 6 (10 de março de 2024): 2297. http://dx.doi.org/10.3390/su16062297.
Texto completo da fonteM.O. AL-Ashou, Wiaam, Nawal A. Al-Sabawi e Maha M. Yahya. "Comparison of push out bond strength of various root perforation repair materials". Mustansiria Dental Journal 18, n.º 2 (28 de dezembro de 2022): 346–58. http://dx.doi.org/10.32828/mdj.v18i2.980.
Texto completo da fonteABEDINI, HASSAN, SAEID MOVAHED e NABIOLLAH ABOLFATHI. "NUMERICAL SIMULATION OF PRESSURE-INDUCED CELL PRINTING". Journal of Mechanics in Medicine and Biology 15, n.º 05 (outubro de 2015): 1550065. http://dx.doi.org/10.1142/s0219519415500657.
Texto completo da fontePokorný, Jaroslav, Radek Ševčík, Jiří Šál, Lukáš Fiala, Lucie Zárybnická e Luboš Podolka. "Bio-based aggregate in the production of advanced thermal-insulating concrete with improved acoustic performance". Construction and Building Materials 358 (dezembro de 2022): 129436. http://dx.doi.org/10.1016/j.conbuildmat.2022.129436.
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