Niu Boyu, Kim Byeong Hwa
Department of Civil Engineering, Beihua University, No. 3999, Binjiang East Road, Jilin 132013, China.
Department of Civil Engineering, Kyungnam University, Changwon 51767, Korea.
Materials (Basel). 2022 Apr 28;15(9):3199. doi: 10.3390/ma15093199.
This paper introduces an innovative method for making cement-based composites from corn straw plants, and investigates the strength, thermal conductivity, and hydration characteristics of the composites. Corn straw is a natural, renewable, and breathable thermal insulation composite that contains cellular sealed pores. Corn straw contains a large amount of soluble cellulosic sugar, which hinders the hydration reaction of Portland cement and affects the use of corn straw as a building material. In this study, a 3 wt.% siliceous solution was used for surface treatment of corn straw particles to prevent cellulosic sugar from affecting the hydration performance of Portland cement. The composition of added cement-based composite materials with treated corn straw at the dosage of 11-20 wt.% was investigated. The test results showed that the corn straw cement-based composite (CSCC) had an optimal thermal conductivity of 0.102-0.112 (W/(m·K)) and a minimum compressive strength of above 1 MPa. The hydration performance of four typical CSCCs was examined using XRD, SEM, and EDS. The experimental results of this study may help to increase the comprehensive utilization of corn straw. The manufacturing method of the composite materials is simple, effective, and convenient for popularization and application, and it provides a new important technical measure to solve the problem of high energy consumption in rural houses.
本文介绍了一种利用玉米秸秆制备水泥基复合材料的创新方法,并研究了该复合材料的强度、导热系数和水化特性。玉米秸秆是一种天然、可再生且透气的保温复合材料,含有蜂窝状密封孔隙。玉米秸秆含有大量可溶性纤维素糖,这会阻碍硅酸盐水泥的水化反应,影响玉米秸秆作为建筑材料的使用。在本研究中,采用3 wt.%的硅质溶液对玉米秸秆颗粒进行表面处理,以防止纤维素糖影响硅酸盐水泥的水化性能。研究了添加经处理的玉米秸秆且用量为11-20 wt.%时的水泥基复合材料的组成。试验结果表明,玉米秸秆水泥基复合材料(CSCC)的最佳导热系数为0.102-0.112(W/(m·K)),最小抗压强度在1 MPa以上。利用XRD、SEM和EDS对四种典型CSCC的水化性能进行了研究。本研究的实验结果可能有助于提高玉米秸秆的综合利用率。该复合材料的制造方法简单、有效,便于推广应用,为解决农村房屋高能耗问题提供了一项新的重要技术措施。