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Development of a Rigid Full-Contact Mold for Preparing Biobeams through Microbial-Induced Calcite Precipitation

机译:通过微生物诱导方解石沉淀制备生物束的刚性全接触模具的开发

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摘要

As a new environmentally friendly and sustainable technique for soil improvement, microbial-induced calcite precipitation (MICP) has been studied widely. A suitable sample preparation mold is the first step to prepare MICP treatment. The purpose of this study is to develop a rigid full-contact mold to prepare larger biobeam specimens for MICP treatments with an immersing method. Four different molds were developed, including a plastic beam rigid mold without a cover, a full-contact flexible mold, a rigid full-contact mold with geotextiles, and a rigid full-contact mold with filter paper. Beam-shaped specimens with different dimensions were treated with the four molds in the MICP process. A four-point bending test and a split tensile strength test were conducted to evaluate the flexural behavior of MICP-treated specimens from the four sample preparation molds. The results indicated that an MICP-treated sample prepared by the rigid full-contact mold with geotextiles can form the best beam shape and the most uniform calcite precipitation inside the sample. Additionally, the biobeam made by the rigid full-contact mold with geotextiles achieved the best mechanical properties. The flexural strength of the biobeam made by the rigid full-contact mold was 1,125 kPa at a failure flexural strain of 1.5 %, and the split tensile strength was 368 kPa with a failure tensile strain of 1.8 %.
机译:作为一种新型的环境友好型可持续土壤改良技术,微生物引起的方解石沉淀(MICP)已得到广泛研究。合适的样品制备模具是准备MICP处理的第一步。这项研究的目的是开发一种刚性的全接触模具,以浸没法制备用于MICP处理的较大生物束样品。开发了四种不同的模具,包括无盖的塑料梁刚性模具,全接触式柔性模具,带土工布的刚性全接触式模具和带滤纸的刚性全接触式模具。在MICP过程中,使用四个模具处理了不同尺寸的梁形样本。进行了四点弯曲测试和劈裂拉伸强度测试,以评估来自四个样品制备模具的经MICP处理的样品的弯曲行为。结果表明,采用刚性全接触模具与土工布制备的经MICP处理的样品可以在样品内部形成最佳的光束形状和最均匀的方解石沉淀。此外,由刚性全接触模具与土工布制成的生物束具有最佳的机械性能。在1.5%的破坏弯曲应变下,由刚性全接触模具制成的生物束的抗弯强度为1,125kPa,在1.8%的破坏拉伸应变下的分体拉伸强度为368kPa。

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