Development of industrial waste management approaches for adaptation to circular economy strategy: the case of phosphogypsum-derived hydroxyapatite

IF 2.7 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Cemre Avşar, Suna Ertunç
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引用次数: 0

Abstract

Phosphogypsum (PG, CaSO4·2H2O), impure gypsum with phosphate residues, is a by-product of fertilizer industry. Due to calcium and phosphorus in its structure, PG can be evaluated for synthetic hydroxyapatite (HAp) production. This study provides a two-step reaction sequence for PG-derived synthetic HAp production. Synthesized HAp (s-HAp) particles were calcined at 900 °C for 4 h, followed by characterization studies with respect to commercial bone ash (CBA) sample to be evaluated as its substitute in bone china industry. Ca/P ratio (wt%) of the samples was investigated by microwave-assisted temperature-controlled acid digestion, followed by ICP-OES analysis. Crystallinity of the samples was analyzed by XRD, and morphological structure was investigated by SEM–EDS analyses. ICP–OES analyses revealed that s-HAp and CBA samples have similar Ca/P ratio, 2.0979 for s-HAp and 2.0917 for CBA samples, respectively. Low-intensity β-TCP phases in the XRD patterns of s-HAp samples revealed low crystalline structure. SEM images indicated a uniform distribution with spherical-like morphology in CBA samples, however, a layer-by-layer morphology and amorphous structure was observed in s-HAP samples. Structural and morphological differences indicate that PG-derived s-HAp samples require purification processes and reaction parameters should be further developed to increase yield. However, this study provides a high potential for a novel approach of an industrial scale valorization strategy for PG. Because the supply–demand cycle is price dependent, the availability of phosphorus in agriculture as a raw material has been a major concern for the usage of phosphate rock. Novel methods for substitute supplies of phosphorus in agricultural applications have been suggested. While HAp is a common ceramic material, its application as a substitute for phosphorus fertilizer is still in its infancy. PG has great potential as a raw material for the synthesis of hydroxyapatite and ammonium sulfate. Large-scale PG production in the phosphoric acid industry puts pressure on research to develop alternate methods for using PG aggregate resources in an economical and environmentally responsible way. The use of PG as a calcium and phosphorus precursor in the synthesis of HAp will result in an economical raw material and an effective waste management plan.

Abstract Image

开发适应循环经济战略的工业废物管理方法:磷石膏衍生羟基磷灰石案例
磷石膏(PG,CaSO4-2H2O)是含有磷酸盐残留物的不纯石膏,是化肥工业的副产品。由于其结构中含有钙和磷,磷石膏可用于合成羟基磷灰石(HAp)的生产。本研究提供了一种由 PG 衍生合成 HAp 的两步反应顺序。合成的 HAp(s-HAp)颗粒在 900 °C 煅烧 4 小时,然后与商业骨灰(CBA)样品进行表征研究,以评估其在骨瓷工业中的替代品。样品的钙/磷比率(重量百分比)是通过微波辅助温控酸消解进行研究的,然后进行了 ICP-OES 分析。样品的结晶度由 XRD 分析,形态结构由 SEM-EDS 分析。ICP-OES 分析表明,s-HAp 和 CBA 样品具有相似的 Ca/P 比,s-HAp 样品为 2.0979,CBA 样品为 2.0917。在 s-HAp 样品的 XRD 图谱中,低强度的 β-TCP 相显示了较低的结晶结构。扫描电镜图像显示,CBA 样品呈均匀分布的球状形貌,而 s-HAP 样品则呈逐层形貌和无定形结构。结构和形态差异表明,PG 衍生的 s-HAp 样品需要纯化过程,并应进一步开发反应参数以提高产量。不过,这项研究为工业规模的 PG 价值化战略提供了一种极具潜力的新方法。由于供需周期取决于价格,农业中磷作为原材料的供应一直是磷矿石使用的主要问题。有人提出了在农业应用中替代磷供应的新方法。虽然 HAp 是一种常见的陶瓷材料,但其作为磷肥替代品的应用仍处于起步阶段。PG 作为合成羟基磷灰石和硫酸铵的原料具有巨大潜力。磷酸工业中大规模的 PG 生产给研究工作带来了压力,要求开发其他方法,以经济和对环境负责的方式利用 PG 骨料资源。在合成 HAp 的过程中使用 PG 作为钙磷前体,将带来经济的原材料和有效的废物管理计划。
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来源期刊
CiteScore
5.30
自引率
16.10%
发文量
205
审稿时长
4.8 months
期刊介绍: The Journal of Material Cycles and Waste Management has a twofold focus: research in technical, political, and environmental problems of material cycles and waste management; and information that contributes to the development of an interdisciplinary science of material cycles and waste management. Its aim is to develop solutions and prescriptions for material cycles. The journal publishes original articles, reviews, and invited papers from a wide range of disciplines related to material cycles and waste management. The journal is published in cooperation with the Japan Society of Material Cycles and Waste Management (JSMCWM) and the Korea Society of Waste Management (KSWM).
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