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Influence of temperature on microbially induced calcium carbonate precipitation for soil treatment

机译:温度对微生物诱导的碳酸钙沉淀在土壤处理中的影响

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摘要

Microbially induced calcium carbonate precipitation (MICP) is a potential method for improvement of soil. A laboratory study was conducted to investigate the influence of temperatures for soil improvement by MICP. The ureolytic activity experiments, MICP experiments in aqueous solution and sand column using Sporosarcina pasteurii were conducted at different temperatures(10, 15, 20, 25 and 30°C). The results showed there were microbially induced CaCO3 precipitation at all the temperatures from 10 to 30°C. The results of ureolytic activity experiments showed that the bacterial had higher ureolytic activity at high temperatures within the early 20 hours, however, the ureolytic activity at higher temperatures decreased more quickly than at lower temperatures. The results of MICP experiments in aqueous solution and sand column were consistent with tests of ureolytic activity. Within 20 to 50 hours of the start of the test, more CaCO3 precipitation was precipitated at higher temperature, subsequently, the precipitation rate of all experiments decreased, and the higher the temperature, the faster the precipitation rate dropped. The final precipitation amount of CaCO3 in aqueous solution and sand column tests at 10 °C was 92% and 37% higher than that at 30 °C. The maximum unconfined compressive strength of MICP treated sand column at 10 °C was 135% higher than that at 30 °C. The final treatment effect of MICP at lower temperature was better than that at high temperature within the temperature range studied. The reason for better treatment effect at lower temperatures was due to the longer retention time of ureolytic activity of bacteria at lower temperatures.
机译:微生物诱导的碳酸钙沉淀(MICP)是改良土壤的一种潜在方法。进行了一项实验室研究,以研究温度对MICP改良土壤的影响。在不同温度(10、15、20、25和30°C)下,使用巴氏孢子虫进行了尿素水解活性实验,在水溶液和沙柱中的MICP实验。结果表明,在10至30°C的所有温度下,都有微生物引起的CaCO3沉淀。尿素分解活性实验的结果表明,细菌在高温下在20小时之内具有较高的尿素分解活性,但是,高温下的尿素分解活性比低温下的分解速度更快。在水溶液和砂柱中进行MICP实验的结果与尿素分解活性的测试结果一致。在测试开始的20至50个小时内,在较高的温度下沉淀出更多的CaCO3沉淀,随后,所有实验的沉淀速率降低,温度越高,沉淀速率下降得越快。在10°C的水溶液和砂柱测试中,CaCO3的最终沉淀量比30°C的最终沉淀量分别高92%和37%。经MICP处理的砂柱在10°C时的最大无侧限抗压强度比30°C时的无侧限最大抗压强度高135%。在所研究的温度范围内,较低温度下的MICP最终处理效果要好于高温下的最终处理效果。在较低温度下获得更好治疗效果的原因是由于较低温度下细菌的尿素分解活性的保留时间更长。

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  • 作者

    Jie Peng; Zhiming Liu;

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  • 年(卷),期 -1(14),6
  • 年度 -1
  • 页码 e0218396
  • 总页数 17
  • 原文格式 PDF
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