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Cement based eco-grouting composite for pre-reinforcement of shallow underground excavation in vegetation protection area

机译:基于水泥的生态灌浆复合材料,用于预加固植被保护区浅地下挖掘

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摘要

The search for eco-friendly grouting materials with excellent workability performance to strike a balance between environmental protection and manipulability is a popular topic in underground engineering. This paper presented a practical and efficient strategy for producing a composite grouting material with microbial polysaccharide gum (CGMG) for pre-reinforcement of shallow underground excavation in a vegetation protection area. The CGMG grout is formulated based on excellent synergistic interactions among cement, water, xanthan gum and sodium aluminate, and an optimal weight proportion of 1, 1.5, 0.01 and 0.004 for cement, water, sodium aluminate and xanthan gum is proposed by orthogonal experimental design. The obtained CGMG shows a fluffy mass structure and high stability (bleeding rate less than 5%), satisfactory early compressive strength (1.5 MPa), and a pumping period of more than 30 min. In particular, the pot experiment results shows that the germination, root growth characteristics, root activity and chlorophyll content were similar in the study group (plant soil injected with CGMG as the growing media) and the control group (plant soil as the growing media) at different growing stages. Moreover, the effectiveness and eco-friendly characteristics of the CGMG were verified by a field grouting application for shallow tunnel excavation in a vegetation protection area. This work provides a new option for grouting in ecologically sensitive areas.
机译:寻找环保灌浆材料,具有出色的可加工性能,在环境保护和操作性之间取得平衡是地下工程中的一个流行的话题。本文介绍了一种具有微生物多糖胶(CGMG)的复合灌浆材料的实用有效的策略,用于预加强植被保护区的浅层地下挖掘。基于水泥,水,黄原胶和铝酸钠的优异协同相互作用配制CGMG灌浆,并且通过正交的实验设计提出了用于水泥,水,铝酸钠和黄原胶的最佳重量比例为1,1.5,0.01和0.004 。所获得的CGMG显示蓬松的质量结构和高稳定性(出血率小于5%),令人满意的早期压缩强度(1.5MPa),泵送时间超过30分钟。特别地,盆栽实验结果表明,研究组(注射CGMG的植物土壤作为生长介质的植物土壤)和对照组(植物土壤作为越来越多的培养基)的萌发,根生长特征,根系活性和叶绿素含量相似在不同的日益增长的阶段。此外,CGMG的有效性和生态友好特性通过用于植被保护区域的浅隧道挖掘来验证CGMG的验证。这项工作提供了在生态敏感区域灌浆的新选择。

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