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首页> 外文期刊>Cement and Concrete Research >Formation of water-impermeable crust on sand surface using biocement
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Formation of water-impermeable crust on sand surface using biocement

机译:利用生物水泥在砂面形成不透水结壳

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This paper examines the feasibility of using calcium-based biocement to form an impermeable crust on top of a sand layer. The biocement used was a mixture of calcium salt, urea, and bacterial suspension, which hydrolyzed urea with production of carbonate and an increase of the pH level. Applying 0.6 g of Ca per cm~2 of sand surface, the permeability of the biocemented sand can be reduced from 10~(-4)m/s to 1.6-10~(-7)m/s (or 14 mm/day) due to formation of the crust on sand surface. The rupture modulus (maximum bending stress) of the crust was 35.9 MPa, which is comparable with that of limestone. The formation of a water-impermeable and high strength crust layer on sand surface could be useful for the construction of aquaculture ponds in sand, stabilization of the sand dunes, dust fixation in the desert areas, and sealing of the channels and reservoirs in sandy soil.
机译:本文研究了使用钙基生物水泥在砂层顶部形成不透水的地壳的可行性。所用的生物水泥是钙盐,尿素和细菌悬浮液的混合物,该细菌悬浮液水解尿素,产生碳酸盐并增加pH值。每cm〜2的砂面使用0.6 g Ca,生物胶结砂的渗透率可以从10〜(-4)m / s降低到1.6-10〜(-7)m / s(或14 mm /天) )是由于在沙子表面形成了结皮。地壳的断裂模量(最大弯曲应力)为35.9 MPa,与石灰石相当。在沙面形成不透水的高强度硬皮层,对于沙土中水产养殖场的建设,沙丘的稳定化,沙漠地区的灰尘固结以及沙土中河道和水库的封闭都可能有用。 。

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