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Shear Strength Parameters of Improved Peat by Chemical Stabilizer

机译:化学稳定剂改良泥炭的抗剪强度参数

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The present research aimed to discuss the applicability of cationic grouts in geotechnical engineering. The effects of several cationic stabilizers such as monovalent (sodium silicate), divalent (calcium oxide and calcium chloride), and trivalent (aluminum hydroxide) were investigated on shear strength improvement of tropical peat samples. The unconfined compressive strength (UCS) tests were performed after the time frame of 7, 21, and 30 days as curing time, respectively. Apart from the physicochemical characteristics of the stabilized peat, scanning electron microscopy and energy-dispersive X-ray spectroscopy tests were also carried out to study the ongoing microstructural changes. It is to be noted that the shear strength values for peat samples rose to 8, 6, 6, and 4 % of sodium silicate, calcium oxide, calcium chloride, and aluminum hydroxide, respectively. The highest observed UCS outcome is the one taken from the calcium oxide where the UCS of treated peat after 30-day curing time increased to 76 kPa. The strength changes resulted from the various cationic stabilizers can best be explained via the consideration within the mineralogical composition as well as those physico-chemical changes happening in the peat.
机译:本研究旨在讨论阳离子灌浆在岩土工程中的适用性。研究了几种阳离子稳定剂如一价(硅酸钠),二价(氧化钙和氯化钙)和三价(氢氧化铝)对热带泥炭样品抗剪强度的影响。分别在7天,21天和30天作为固化时间后进行无侧限抗压强度(UCS)测试。除了稳定泥炭的物理化学特性外,还进行了扫描电子显微镜和能量色散X射线光谱测试,以研究正在进行的微观结构变化。应当注意,泥炭样品的剪切强度值分别上升到硅酸钠,氧化钙,氯化钙和氢氧化铝的8%,6%,6%和4%。观察到的UCS最高结果是从氧化钙中提取的结果,其中经过30天的固化时间后,处理过的泥炭的UCS增加到76 kPa。各种阳离子稳定剂引起的强度变化最好通过矿物学组成以及泥炭中发生的那些物理化学变化的考虑来解释。

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