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从固体和液体流中回收硼以供肥料应用。

Reclamation of boron from solid and liquid streams for fertilizer application.

机构信息

Chemical Engineering Department, Escola d'Enginyeria de Barcelona Est (EEBE), Universitat Politècnica de Catalunya (UPC)-BarcelonaTECH, C/ Eduard Maristany 10-14, Campus Diagonal-Besòs, 08930 Barcelona, Spain; Barcelona Research Center for Multiscale Science and Engineering, Campus Diagonal-Besòs, 08930 Barcelona, Spain.

Research Unit of Sustainable Chemistry, Faculty of Technology, University of Oulu, P.O. Box 3000, FI-90014, Oulu, Finland.

出版信息

J Environ Manage. 2024 Sep;367:122039. doi: 10.1016/j.jenvman.2024.122039. Epub 2024 Aug 1.

Abstract

Boron (B) is a crucial element for efficient plant growth and development; therefore, B-based fertilisers have been employed in agricultural applications. The need for B-based fertilisers for agricultural uses is continuously increasing as a result of the world's growing population. It is expected that the global market for B-based fertiliser will grow by around $6.3 billion by 2032; hence, demand for B sources will also increase. In addition to being used in fertiliser, B is also employed in the production of neodymium iron B (NdFeB) permanent magnets. The demand for NdFeB magnets is also continuously increasing. Hence, it is of the utmost importance to reclaim B from secondary resources due to the rising demand for B in a wide variety of applications. This review study addresses the recovery of B from various waste streams. The main focus is on the recovery of B from spent NdFeB magnets, borax sludge, and liquid streams such as brine water, seawater, sewage, industrial wastewater, and agricultural effluents. Different technologies for B recovery are discussed, such as sorption, solvent extraction, membrane processes, precipitation, and hydrometallurgical methods. Solvent extraction has been found to be a very effective approach for reclaiming B from spent NdFeB magnet waste and from liquid streams with high B concentration (>1-2 g/L). Further, the application of B-based fertiliser in agriculture application is reviewed. Challenges associated with B recovery from waste streams and future perspectives are also highlighted in this review.

摘要

硼(B)是植物生长和发育的关键元素;因此,B 基肥料已在农业应用中使用。由于世界人口的不断增长,对农业用 B 基肥料的需求不断增加。预计到 2032 年,全球 B 基肥料市场将增长约 63 亿美元;因此,对 B 源的需求也将增加。除了用于肥料外,B 还用于生产钕铁硼(NdFeB)永磁体。NdFeB 磁铁的需求也在不断增加。因此,由于 B 在各种应用中的需求不断增加,从二次资源中回收 B 至关重要。本综述研究探讨了从各种废物流中回收 B 的方法。主要重点是从用过的 NdFeB 磁铁、硼砂污泥以及盐水、海水、污水、工业废水和农业废水等液体流中回收 B。讨论了不同的 B 回收技术,例如吸附、溶剂萃取、膜过程、沉淀和湿法冶金方法。溶剂萃取已被发现是从用过的 NdFeB 磁铁废物和高 B 浓度(>1-2 g/L)的液体流中回收 B 的非常有效的方法。此外,还综述了 B 基肥料在农业应用中的应用。本文还强调了从废物流中回收 B 所面临的挑战和未来展望。

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