以污水处理厂再生二级污水为饲料的陆基水产养殖中生长的钝口鲈的土腥味/臭味生物累积性

IF 4.3 4区 环境科学与生态学 Q2 ENGINEERING, ENVIRONMENTAL Water Reuse Pub Date : 2024-07-01 DOI:10.2166/wrd.2024.127
Viet-Dung Pham, Ei Ogata, Hiroyuki Kato
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引用次数: 0

摘要

再生废水(RWW)已在全球使用了几个世纪,但在水产养殖中的应用却不那么广泛。针对回收废水产生的挥发性气味化合物(VOC)(如 2,4,6-三氯苯甲醚(TCA)、2-甲基异龙脑(MIB)和地奥司明(GSM))对鱼类质量的影响的研究十分有限。本研究旨在:(1) 评估将城市污水处理厂(WWTP)的二级出水回用于陆基直流系统中的海鲈养殖的可行性;(2) 评估所选挥发性有机化合物对鱼类质量的感官影响。结果表明,夏季 RWW 中温度和氨氮水平的升高会对鱼类生长产生负面影响,而秋季 RWW 不会。鱼类体内的重金属不会导致健康问题。鱼组织中的三氯乙酸、MIB 和 GSM 浓度分别为 4.7-5.7、0.3-40.5 和 1.1-1.9 毫克/千克。三氯乙酸是最令人担忧的气味物质,在 RWW 培养的鱼类中,三氯乙酸的相对气味强度高于 MIB 和 GSM,与季节变化无关。本研究首次报告了在污水处理厂使用 RWW 自建水产养殖系统的情况,建议在水产养殖中有效去除 VOC 和氨,以实现 RWW 的可持续使用。此外,该研究还强调了三氯乙酸作为一种人为指标对水生环境的影响,因为在发达城市,污水处理厂越来越普遍。
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Earthy/musty odour bioaccumulation in Plecoglossus altivelis grown in a land-based aquaculture fed by reclaimed secondary effluent in wastewater treatment plant
Reclaimed wastewater (RWW) has been used globally for centuries, though its application in aquaculture is less extensive. Limited study has addressed impacts of RWW-derived volatile odour compounds (VOCs), such as 2,4,6-trichloroanisole (TCA), 2-methylisoborneol (MIB), and geosmin (GSM), on fish quality. This study aims to (1) assess the feasibility of reusing secondary effluent from a municipal wastewater treatment plant (WWTP) for Plecoglossus altivelis aquaculture in a land-based flow-through system and (2) evaluate the sensory effects of selected VOCs on fish quality. Results showed that increased temperature and ammonia levels in summer RWW negatively affected fish growth, while autumn RWW did not. Heavy metals in fish did not cause health issues. TCA, MIB, and GSM concentrations in fish tissues were 4.7–5.7, 0.3–40.5, and 1.1–1.9 mg kg−1, respectively. TCA emerged as the most concerning odorant, with higher relative odour intensity than MIB and GSM in RWW-cultured fish, regardless of seasonal change. This study is the first to report on a self-constructed aquaculture system using RWW at a WWTP, recommending effective VOC and ammonia removal for sustainable RWW use in aquaculture. Additionally, the study highlighted TCA's impact as an anthropogenic indicator in aquatic environments amid increasing WWTP prevalence in developed cities.
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来源期刊
Water Reuse
Water Reuse Multiple-
CiteScore
6.20
自引率
8.90%
发文量
0
审稿时长
7 weeks
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