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New Zealand Pozzolans―An Ancient Answer to a Modern Dilemma

机译:新西兰火山灰-现代困境的古老答案

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The New Zealand cement industry has, thus far, been able to achieve reductions in CO_2 emissions in line with government expectations through process change and the wider use, and acceptance, of cement extenders.. However, a continued improvement is required to meet the nation's commitment under the Kyoto Protocol. Sitting astride the junction of the Pacific and Australian tectonic plates, for millions of years these islands have been the scene of major volcanic activity. The legacy of this volcanism and upheaval is a range of materials, widely distributed, possessing pozzolanic properties ideally suited to cementing applications. These materials could play an important part in assisting the country to meet its undertakings. The purpose of this paper is to review the past limited use of these natural pozzolan materials and, using modern internationally accepted methods, look at the performance of binders of varying composition. The materials examined include an amorphous silica of geothermal origin, a pumicite from the Bay of Plenty region and two diatomites from the central North Island. These materials were selected and prepared at two different fineness levels. Substitution levels between 5% and 40% were achieved. Further, they were interground with cement clinker to determine the efficacy of the two different blending methods. The paper will outline the results of this major investigation into the performance of New Zealand pozzolans. It will also give a guide as to the possible substitution levels to deliver adequate compressive strengths.
机译:迄今为止,新西兰的水泥行业已经能够通过改变工艺以及更广泛地使用和接受水泥填充剂来实现政府所期望的CO_2排放量的减少。但是,要满足该国的要求,还需要持续改进。 《京都议定书》之下的承诺。坐落在太平洋和澳大利亚构造板块的交界处,几百万年来,这些岛屿一直是主要火山活动的发生地。这种火山作用和动荡的遗产是各种材料,分布广泛,具有火山灰性质,非常适合固井应用。这些材料可以在协助该国实现其事业方面发挥重要作用。本文的目的是回顾过去这些天然火山灰材料的有限使用,并使用现代国际公认的方法,研究各种组成的粘合剂的性能。检查的材料包括地热来源的无定形二氧化硅,丰盛湾地区的浮岩和北岛中部的两种硅藻土。选择并制备了两种不同细度的这些材料。替代水平达到5%至40%。此外,将它们与水泥熟料一起研磨以确定两种不同掺合方法的功效。本文将概述对新西兰火山灰性能的主要调查结果。它还将指导您提供足够的抗压强度的可能替代水平。

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