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Urease active bioslurry: a novel soil improvement approach based on microbially induced carbonate precipitation

机译:脲酶活性生物泥浆:一种基于微生物诱导的碳酸盐沉淀的新型土壤改良方法

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This paper presents a novel approach for soil stabilization by microbially induced carbonate precipitation (MICP) using a new urease active catalyzer, named herein as "bioslurry". The bioslurry, which was produced from the reaction between bacterial culture and 400 mmol/L of CaCl2 and urea, is pre-formed urease active crystals consisting of CaCO3 plus imbedded urease active bacterial cells. By mixing the bioslurry with sand, more than 95% of the bioslurry was retained in the soil matrix as a result of the mechanical trapping mechanism, leading to high resistance to flushing with a low-salinity solution. The retained urease activity of bioslurry was uniformly distributed along the sand matrix, resulting in a rather uniform CaCO3 precipitation. Through repeated treatments with a cementation solution, the unconfined compressive strength of bioslurry treated sand was significantly improved due to the effective CaCO3 precipitation at the contact points of soil grains. Scanning electron microscopy analysis carried out on the bioslurry treated sand revealed that the induced large rhombohedral CaCO3 crystals were localized around the bioslurry spherical fine crystals. The overall outcome of this work is that soil biocementation using the new bioslurry approach is controllable, reproducible, and homogeneous.
机译:本文提出了一种使用新型脲酶活性催化剂通过微生物诱导的碳酸盐沉淀(MICP)来稳定土壤的新方法,在本文中将其称为“生物浆”。由细菌培养物与400 mmol / L CaCl2和尿素之间的反应产生的生物浆是预先形成的尿素酶活性晶体,由CaCO3加嵌入的尿素酶活性细菌细胞组成。通过将生物泥浆与沙子混合,由于机械捕集机制,超过95%的生物泥浆被保留在土壤基质中,从而导致了对低盐溶液冲洗的高抵抗力。生物泥浆保留的脲酶活性沿砂基质均匀分布,导致相当均匀的CaCO3沉淀。通过用胶结剂溶液反复处理,由于在土壤颗粒接触点处有效的CaCO3沉淀,显着改善了生物泥处理过的砂的无侧限抗压强度。在经过生物泥浆处理的沙子上进行的扫描电子显微镜分析表明,诱导的大菱形CaCO3晶体位于生物泥浆球形细晶周围。这项工作的总体结果是,使用新的生物泥浆方法进行土壤生物固井是可控的,可重复的和均质的。

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