iron ore tailing
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Author(s):  
Juan Gabriel Bastidas-Martínez ◽  
Jose Camapum de Carvalho ◽  
Leda Lucena Cristhiane ◽  
Márcio Muniz de Farias ◽  
Hugo Alexander Rondón-Quintana

Carbon Trends ◽  
2021 ◽  
Vol 5 ◽  
pp. 100098
Author(s):  
Glauber Zerbini Costal ◽  
Claudio Ernani Martins Oliveira ◽  
Evandro Augusto de Morais ◽  
Carlos Augusto de Souza Oliveira ◽  
Edelma Eleto da Silva ◽  
...  

Author(s):  
Jaciara Lana-Costa ◽  
Mariela Mattos da Silva ◽  
Auxiliadora Oliveira Martins ◽  
Julia Cristina Guarnier ◽  
Romário de Oliveira Silva Junior ◽  
...  

Author(s):  
Hassan Mamghaderi ◽  
Shadi Aghababaei ◽  
Mahdi Gharabaghi ◽  
Mohammad Noaparast ◽  
Boris Albijanic ◽  
...  

2021 ◽  
Vol 2021 ◽  
pp. 1-9
Author(s):  
Daiqiang Deng ◽  
Guodong Cao ◽  
Youxuan Zhang

The strength of the filling body is largely affected by the properties of the binder, mineral composition, fineness, and slurry concentration of tailing. In this paper, the rheological test was conducted to determine the slurry concentration of iron ore tailing containing gypsum. Then, the samples made from slurry and three binders, Portland cement, filling plant binder, and Huazhong binder, were tested, respectively. The effects of curing time, binder-tailing ratio by mass (b/t), and slurry concentration on compression strength were investigated. The sample made from Huazhong binder and iron ore tailing presented the largest compression strength.


Materials ◽  
2021 ◽  
Vol 14 (8) ◽  
pp. 1829
Author(s):  
Gang Ling ◽  
Zhonghe Shui ◽  
Xu Gao ◽  
Tao Sun ◽  
Rui Yu ◽  
...  

In this research, iron ore tailing (IOT) is utilized as the cementitious material to develop an eco-friendly ultra-high performance concrete (UHPC). The UHPC mix is obtained according to the modified Andreasen and Andersen (MAA) packing model, and the applied dosage of IOT is 10%, 20%, and 30% (by weight), respectively. The calculated packing density of different mixtures is consistent with each other. Afterwards, the fresh and hardened performance of UHPC mixtures with IOT are evaluated. The results demonstrate that the workability of designed UHPC mixtures is increased with the incorporation of IOT. The heat flow at an early age of designed UHPC with IOT is attenuated, the compressive strength and auto shrinkage at an early age are consequently reduced. The addition of IOT promotes the development of long-term compressive strength and optimization of the pore structure, thus the durability of designed UHPC is still guaranteed. In addition, the ecological estimate results show that the utilization of IOT for the UHPC design can reduce the carbon emission significantly.


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