Department of Civil and Environmental Engineering , University of California Davis , 2001 Ghausi Hall, One Shields Ave , Davis , California 95616 , United States.
School of Engineering , University of Edinburgh , Sanderson Building, Robert Stevenson Road, King's Buildings , Edinburgh , EH9 3FB , U.K.
Environ Sci Technol. 2020 Jan 21;54(2):677-686. doi: 10.1021/acs.est.9b05550. Epub 2020 Jan 8.
Cement production is among the most difficult industrial activities to decarbonize. Various measures have been proposed and explored to reduce its CO emissions. Among these measures, the substitution of portland cement (PC) clinker with alternative materials is arguably the most effective, and consequently is an area of high research and commercial interest. However, few studies have systematically quantified environmental impacts of alternative, i.e., non-PC, clinkers. Here, we quantify and compare environmental impacts arising from the production of binders derived from several of the most commonly investigated alternative cement systems. We show that binders derived from most of these alternative cements result in lower greenhouse gas (GHG) emissions as well as other indicators of environmental impacts relative to the PC binder. The extent of these reductions varies as a function of energy requirements for production, process-related emissions from clinker formation, and raw materials demand. While utilization of alternative cements can be environmentally beneficial, similar reductions in GHG emissions can be achieved through use of partial replacement of PC with mineral admixtures. In this work, we quantitatively demonstrate the potential for alternative binders to mitigate environmental burdens and highlight the need to consider trade-offs among environmental impact categories when assessing these products.
水泥生产是最难实现脱碳的工业活动之一。已经提出并探索了各种措施来减少其 CO 排放。在这些措施中,用替代材料替代波特兰水泥(PC)熟料可以说是最有效的,因此是研究和商业关注的热点领域。然而,很少有研究系统地量化替代(即非 PC)熟料的环境影响。在这里,我们量化并比较了源自几种最常用的替代水泥系统的粘合剂生产所产生的环境影响。我们表明,与 PC 粘合剂相比,源自这些替代水泥中的大多数水泥的粘合剂的温室气体(GHG)排放以及其他环境影响指标更低。这些减少的程度取决于生产的能源需求、熟料形成过程相关的排放以及原材料需求。虽然替代水泥的使用可能对环境有益,但通过使用矿物掺合料部分替代 PC 也可以实现类似的 GHG 减排。在这项工作中,我们定量地证明了替代粘合剂减轻环境负担的潜力,并强调在评估这些产品时需要考虑环境影响类别之间的权衡。