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Spent Coffee Grounds in the Production of Lightweight Clay Ceramic Aggregates in View of Urban and Agricultural Sustainable Development

机译:在城市和农业可持续发展方面,在轻量级粘土陶瓷骨料生产中花了咖啡场

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摘要

This paper presents an innovative application for spent coffee grounds (SCGs) used as filler for the formulation of lightweight clay ceramic aggregates (LWA). LWA can be used for urban and agricultural purposes as a sustainable solution. Spent coffee grounds were tested as a pore forming agent partially acting as a replacement for red clay in material formulation before firing. Substitutions of 10, 15, and 20 wt.% of red clay were tested. The properties of lightweight aggregates with 15 wt.% of SCGs were improved using a specifically tailored fertilizer glass due to its low pH and conductivity within the soil tolerance range. Packaging glassy sand, cattle-bone flour ash, and potassium carbonate were mixed and melted in order to obtain this glass, which when added to the clayey batch functionalized the aggregates by phosphorus and potassium nutrients. The results (in particular, porosity and bulk density) show that the lightweight aggregates obtained have interesting properties for possible uses both in urban (e.g., green roofs as a drainage layer) and agricultural purposes. Moreover, pH and conductivity are in line with the Italian Standard regarding soil amendment (D.lgs. 75/2010). In addition, several leaching tests were performed in a solution containing 2 vol.% citric acid (C6H8O7) to evaluate the release capacity not only of nutrients (P and K) but also to check the presence and release of heavy metals, such as lead (Pb), that may come from the glassy precursor. The results obtained showed that nutrients are efficiently released in 21 days (P = 87.73% and K = 25.74% of released percentage) and Pb release is under the standard threshold of 30 ppm.
机译:本文介绍了用作填料的废咖啡渣(SCG)的创新应用,用于配制轻质粘土陶瓷聚集体(LWA)。 LWA可用于城市和农业用途作为可持续解决方案。将咖啡渣作为孔形成剂被测试为部分作用作为在烧制前的材料配方中的红色粘土的替代品。 10,15和20重量%的取代。测试红粘土的%。具有15重量%的轻质聚集体的性质。由于其在土壤耐受范围内的低pH和电导率,使用特异性定制的肥料玻璃改善了SCG的%。混合并熔化包装玻璃状砂,牛骨粉灰和碳酸钾,以获得该玻璃,该玻璃加入Clayey批量通过磷和钾营养素官能化。结果(特别是孔隙率和堆积密度)表明,所获得的轻质聚集体具有有趣的特性,可以在城市(例如,绿色屋顶作为排水层)和农业目的中使用。此外,pH和电导率符合关于土壤修正案的意大利标准(D.LGS。75/2010)。此外,在含有2体积Vol.%柠檬酸(C6H8O7)的溶液中进行几种浸出试验,不仅评估营养物(P和K)的释放能力,而且还要检查重金属的存在和释放,例如铅(PB),可能来自玻璃状前体。得到的结果表明,在21天内有效地释放营养物(P = 87.73%,k = 25.74%的释放百分比),Pb释放是在30ppm的标准阈值下。

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