稻壳灰硅酸盐和硅酸盐活化煅烧粘土胶凝复合材料的表征-活化剂:氢氧化钠

Ludovic Ivan Ntom Nkotto, Gaëlle Dounbissi Kamgang, Lionel Pierre Nkengue, Judicaël Sandjong Kanda, Jordan Valdès Sontia Metekong
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摘要

水泥成本的不断增加及其产生的有害二氧化碳(CO2)促使发展参与者不断寻找污染环境更少、成本更低的粘合剂。因此,通过在低制造温度(<100°C)下生产不同的粘合剂(如用于制备地聚合物的硅酸盐),对农业资源的增值产生了兴趣。本研究以硅藻土工业硅酸盐和稻壳灰硅酸盐为原料,以氢氧化钠为活化剂,在浓度为12 m的条件下制备地聚合物,研制了硅藻土聚合物砂浆和硅藻土工业硅酸盐和稻壳灰硅酸盐土聚合物混凝土两种样品。砂和砾石分别作为细、粗骨料用于生产地聚合物混凝土。根据精制标准,它们占地聚合物混凝土质量的80%。所得孔隙率约为30%,即吸水率约为18%,表观比约为5%,容重约为1.7%。BGAC-RHA样品的力学值高于BGAC-I样品。地聚合物砂浆与混凝土的理化性能相似。
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Characterisation of cementitious composite materials based on calcined clay activated by silicate from rice husk ash and Ingessil silicate - activator: sodium hydroxide (NaOH)
The ever-increasing cost of cement and its production of harmful carbone dioxide (CO2) has led development actors to continuously search for less  environmentally polluting and low-cost binders. Hence the interest in the valorisation of agricultural resources through the production of different  binders such as silicate for the elaboration of geopolymers at low manufacturing temperatures (<100 °C). In this study, Ingessil industrial silicate and rice  husk ash silicate were used as pozzolan raw materials to prepare geopolymers with sodium hydroxide as activator at a concentration of 12 M. Two types  of samples were developed: geopolymer mortars based on Ingessil silicate and geopolymer concretes based on Ingessil industrial silicate and rice husk  ash silicate. Sand and gravel were used as fine and coarse aggregates for the production of geopolymer concretes. They were represented 80% of the  mass of the geopolymer concretes according to the standards of elaboration.The porosity values obtained were of the order of 30%, i.e. water absorption  values of about 18%, apparent specific weight of about 5% and bulk density of 1.7%. The mechanical values of BGAC-RHA samples are higher  than those of BGAC-I. The physico-chemical properties of geopolymer mortars and concretes were similar.   
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