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Effects of curing and stress conditions on hydromechanical, geotechnical and geochemical properties of cemented paste backfill

机译:养护条件和应力条件对水泥浆回填的水力,岩土和地球化学性质的影响

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Cemented paste backfill (CPB) is an emerging mine-backfill technique that allows environmentally hazardous tailings returning back to the underground openings or stopes, thereby maximizing the safety, efficiency and productivity of process/operation. CPB provides efficient ground support for mine structures and permits a fully excavation and extraction of ore bodies. It also decreases surface tailings storage requirements and thus, rehabilitation/reclamation costs after closure. This paper investigates the effects of curing and stress conditions on hydromechanical, geotechnical and geochemical properties of CPB. In this respect, a new laboratory apparatus (CUAPS: curing under applied pressure system) was used to mimic the in-situ CPB conditions to compare the performance of consolidated backfills with unconsolidated conventional moulds (i.e. undrained or drained). The results have shown that for a given backfill recipe, CUAPS-consolidated samples always present better strengths than those obtained from mould-unconsolidated samples i.e. the underestimation of backfill strength. A full evolution of geotechnical and geochemical properties of CPB was compared at three binder contents (3,4.5 and 7 wt.%) and curing times (7,14 and 28 days). The application of stress during curing was found to contribute positively to the CPB hardening process and hence, the strength and geotechnical properties as a result of the removal of water and binder hydration. Consequently, CUAPS-consolidated samples can be agreeably used to better assess in situ CPB behavior and to achieve an ideal CPB recipe in terms of safety and economy.
机译:水泥浆回填(CPB)是一种新兴的矿山回填技术,它可使对环境有害的尾矿返回地下开口或采场,从而最大程度地提高工艺/操作的安全性,效率和生产率。 CPB为矿山结构提供有效的地面支持,并允许对矿体进行充分的挖掘和提取。它还减少了表面尾矿的存储需求,从而降低了封闭后的修复/填海成本。本文研究了硫化和应力条件对CPB的水力,岩土和地球化学特性的影响。在这方面,使用了一种新的实验室设备(CUAPS:在施加压力的系统下固化)来模拟现场CPB条件,以比较固结的回填土与未固结的传统模具(即不排水或排水)的性能。结果表明,对于给定的回填配方,CUAPS固结的样品始终比从未固结的样品获得的强度更好,即回填强度的低估。在三种粘合剂含量(3.4.5和7 wt。%)和固化时间(7.14和28天)下,比较了CPB的岩土和地球化学性质的完整演变。发现在固化过程中施加应力对CPB硬化过程有积极贡献,因此,由于去除了水和粘合剂水合,从而提高了强度和岩土性能。因此,可以将CUAPS合并的样品用于更好地评估原位CPB行为,并在安全性和经济性方面达到理想的CPB配方。

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