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Building on Sub-Arctic Soil: Geopolymerization of Muskeg to a Densified Load-Bearing Composite

机译:在亚北极土壤上建造:Muskeg地聚为致密的承重复合材料

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摘要

The marshy water-saturated soil typical of the sub-Arctic represents a considerable impediment to the construction of roads, thereby greatly hindering human habitation and geological excavation. Muskeg, the native water-laden topsoil characteristic of the North American sub-Arctic, represents a particularly vexing challenge for road construction. Muskeg must either be entirely excavated, or for direct construction on muskeg, a mix of partial excavation and gradual compaction with the strategic placement of filling materials must be performed. Here, we demonstrate a novel and entirely reversible geopolymerization method for reinforcing muskeg with wood fibers derived from native vegetation with the addition of inorganic silicate precursors and without the addition of extraneous metal precursors. A continuous siloxane network is formed that links together the muskeg, wood fibers, and added silicates yielding a load-bearing and low-subsidence composite. The geopolymerization approach developed here, based on catalyzed formation of a siloxane network with further incorporation of cellulose, allows for an increase of density as well as compressive strength while reducing the compressibility of the composite.
机译:亚北极地区典型的沼泽湿润的土壤严重阻碍了道路的建设,从而极大地阻碍了人类的居住和地质发掘。马斯克(Muskeg)是北美次北极地区原生的含水层表土,对道路建设提出了特别艰巨的挑战。马斯克必须全部开挖,或者直接在麝香树上施工,必须进行部分开挖和逐渐压实以及战略性填充材料的混合。在这里,我们展示了一种新颖且完全可逆的地聚方法,该方法通过使用天然硅酸盐衍生的木纤维在添加无机硅酸盐前体且不添加外部金属前体的情况下增强麝香。形成了连续的硅氧烷网络,该网络将麝香,木纤维和添加的硅酸盐连接在一起,从而形成了承重和低沉降的复合材料。在此基础上开发的地聚方法基于催化形成硅氧烷网络并进一步掺入纤维素,从而提高了密度和抗压强度,同时降低了复合材料的可压缩性。

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