基于摇篮到摇篮范式的均质固体废物砂浆生态有效可持续风险评价模型

Nigme Cadenas, Carmen Luisa Vásquez Stanescu, M. Gómez-Caicedo, Mercedes Gaitán-Ángulo, Carlos Yesid Briñez Torres
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引用次数: 0

摘要

不可再生的自然资源在砌体砂浆中的无限制使用和固体废物的迅速增加导致了环境的恶化。联合国的一个优先事项是促进增长而不损害新一代照顾自己的能力;为此,各国制定了17项可持续发展目标。目前的工作是由于需要提出一种模型,以便在设计阶段根据从摇篮到摇篮的范例,对建筑部门使用的砂浆的某些成分的均质固体废物和全部或部分替代品进行评价。其目标是通过在砂浆制造中建立循环系统,包括改善生物和环境健康的材料,只包括安全健康的材料,可以重复使用,保证不影响生物和环境的健康,并有助于可持续发展。方法基于实证主义认识论的潮流,投影文献研究首先分析科学出版物,这些出版物建议使用固体废物只是为了验证其流变性能,而忽略了这种材料的包含如何影响生物和环境;这与公开发表的关于构成上述材料的化学物质的研究结果形成对比。结果设计了生态效应模型,并在选定案例废弃物对生物健康和环境的潜在风险识别中得到了验证;建议避免回收引起关注的物料;为人类和地球提供改进的砂浆设计,最大限度地减少自然资源的使用,提高建筑领域的生产力;并通过不断的发展和改进来实现这一愿景。生态有效模型有助于从设计阶段开始做正确的事情,促进当代和后代的机会、多样性和丰富性增长。
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Eco-effective Sustainable Risk Assessment Model for homogeneous solid waste mortars based on the Cradle to Cradle paradigm
Introduction The unrestricted use of non-renewable natural resources in masonry mortars and the rapid increase in solid waste contribute to the deterioration of the environment. It is a priority for the United Nations to promote growth without compromising the ability of new generations to attend to their own; for this purpose, 17 Sustainable Development Goals for all countries have been formulated. The present work arises from the need to propose a model to evaluate, in the design phase, homogeneous solid waste and total or partial substitutes for some of the components of the mortars used in the construction sector, based on the Cradle to Cradle paradigm, which has the objective of including improved materials for the health of living beings and the environment by establishing a circular system in the manufacture of mortars including only safe and healthy materials that can be reused with a guarantee of not affecting the health of living beings and the environment and contributing to sustainability. Methods Based on the positivist epistemological current, projective documentary research begins by analyzing scientific publications that recommend the use of solid waste only to verify its rheological properties, ignoring how the inclusion of this material can affect living beings and the environment; it is contrasted with the results of published public access research regarding the chemical substances that make up said material. Results The eco-effective model is designed and its application is validated in identifying potential risks to the health of living beings and the environment in the waste of the selected cases; recommending the avoidance of recycling those materials that cause concern; contributing improved mortar designs for living beings and the planet, which minimize the use of natural resources and increase productivity in the field of construction; and implementing this vision through continuous development and improvement. Conclusions The eco-effective model facilitates doing the right things from the design stage, promoting growth with opportunities, diversity, and abundance for the present generation as well as future generations.
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