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关于利用贝类废物生产工程生物炭及其在水产养殖废水中应用的最新综述。

A state-of-the-art review on producing engineered biochar from shellfish waste and its application in aquaculture wastewater treatment.

机构信息

Henan Province Engineering Research Center for Biomass Value-added Products, School of Forestry, Henan Agricultural University, Zhengzhou, 450002, Henan, China; Higher Institution Centre of Excellence (HICoE), Institute of Tropical Aquaculture and Fisheries (AKUATROP), Universiti Malaysia Terengganu, Kuala Nerus, 21030, Terengganu, Malaysia.

Higher Institution Centre of Excellence (HICoE), Institute of Tropical Aquaculture and Fisheries (AKUATROP), Universiti Malaysia Terengganu, Kuala Nerus, 21030, Terengganu, Malaysia; STU-UMT Joint Shellfish Research Laboratory, Shantou University, Shantou, 515063, Guangdong, China; Centre for Chemical Biology, Universiti Sains Malaysia, Minden, 11900, Penang, Malaysia.

出版信息

Chemosphere. 2022 Feb;288(Pt 2):132559. doi: 10.1016/j.chemosphere.2021.132559. Epub 2021 Oct 13.

Abstract

Global production of shellfish aquaculture is steadily increasing owing to the growing market demands for shellfish. The intensification of shellfish aquaculture to maximize production rate has led to increased generation of aquaculture waste streams, particularly the effluents and shellfish wastes. If not effectively managed, these wastes could pose serious threats to human health and the ecosystem while compromising the overall sustainability of the industry. The present work comprehensively reviews the source, composition, and environmental implications of shellfish wastes and aquaculture wastewater. Moreover, recent advancements in the valorization of shellfish wastes into value-added biochar via emerging thermochemical and modification techniques are scrutinized. The utilization of the produced biochar in removing emerging pollutants from aquaculture wastewater is also discussed. It was revealed that shellfish waste-derived biochar exhibits relatively higher adsorption capacities (300-1500 mg/g) compared to lignocellulose biochar (<200 mg/g). The shellfish waste-derived biochar can be effectively employed for the removal of various contaminants such as antibiotics, heavy metals, and excessive nutrients from aquaculture wastewater. Finally, future research priorities and challenges faced to improve the sustainability of the shellfish aquaculture industry to effectively support global food security are elaborated. This review envisages that future studies should focus on the biorefinery concept to extract more useful compounds (e.g., carotenoid, chitin) from shellfish wastes for promoting environmental-friendly aquaculture.

摘要

由于贝类水产品市场需求不断增长,贝类水产养殖的全球产量稳步上升。为了最大限度地提高产量,贝类水产养殖不断集约化,导致水产养殖废水的产生量不断增加,特别是养殖废水和贝类废弃物。如果这些废物得不到有效管理,它们可能会对人类健康和生态系统造成严重威胁,同时危及整个行业的可持续性。本工作全面综述了贝类废物和水产养殖废水的来源、组成和环境影响。此外,还详细研究了利用新兴的热化学和改性技术将贝类废物增值为生物炭的最新进展。还讨论了所制备的生物炭在去除水产养殖废水中新兴污染物方面的应用。结果表明,与木质纤维素生物炭(<200mg/g)相比,贝类废物衍生的生物炭具有相对较高的吸附能力(300-1500mg/g)。贝类废物衍生的生物炭可有效地用于去除水产养殖废水中的各种污染物,如抗生素、重金属和过量营养物。最后,阐述了为提高贝类水产养殖业的可持续性以有效支持全球粮食安全而面临的未来研究重点和挑战。本综述预计,未来的研究应侧重于生物炼制概念,以从贝类废物中提取更多有用的化合物(例如类胡萝卜素、壳聚糖),从而促进环保型水产养殖。

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