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Reactive Transport in Cut-Off Walls and Implications for Wall Durability

机译:切断墙壁的反应运输和墙壁耐用性的影响

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Permeability is a key parameter for any containment system including cut-off walls but it tends to be regarded as a fixed property such as strength, sensitive principally to changes in the effective stress or chemical damage. Furthermore chemical attack, if it occurs, tends to be treated as a 'one-off phenomenon. However, a barrier material such as a cement-bentonite is actually chemically reactive system with a dynamic permeability. Flow through this reactor is controlled by the overall permeability of all the reaction zones that develop within it. High permeability reactive barriers (PRBs) are well recognized for the management of contaminated groundwater but low permeability barriers are less often considered as reactors and opportunities for barrier protection and maintenance therefore can be overlooked. This paper is focused on the permeation of water through cement-bentonite materials: much can be learned from this about the dynamic permeability of the reactive matrix that a cement-bentonite material represents.
机译:渗透性是任何容纳系统的关键参数,包括截止墙,但它往往被视为固定的属性,例如强度,主要敏感,以改变有效的应力或化学损伤。此外,如果发生化学攻击,往往被视为'一次性现象。然而,诸如水泥 - 膨润土的阻隔材料实际上是具有动态渗透性的化学反应性系统。通过该反应器的流动由在其内部产生的所有反应区的整体渗透率控制。高渗透性反应屏障(PRBS)得到很好的认可,用于管理污染的地下水,但低渗透屏障较少被认为是反应器,因此可以忽视屏障保护和维护的机会。本文专注于水通过水泥 - 膨润土材料的渗透性:可以从这局面可以从围绕水泥 - 膨润土材料代表的反应性基质的动态渗透性来了解。

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