Shen Jiacong, Zheng Xiafei, Liu Minhai, Xu Kui, He Lin, Lin Zhihua
Ninghai Institute of Mariculture Breeding and Seed Industry, Zhejiang Wanli University, Ningbo, China.
Hubei Key Laboratory of Edible Wild Plants Conservation and Utilization, Hubei Engineering Research Center of Special Wild Vegetables Breeding and Comprehensive Utilization Technology, College of Life Sciences, Hubei Normal University, Huangshi, China.
Front Microbiol. 2024 Mar 13;15:1371855. doi: 10.3389/fmicb.2024.1371855. eCollection 2024.
Mariculture wastewater poses environmental challenges due to pollution and eutrophication. Targeted cultivation of diatoms in wastewater can help alleviate these issues while generating beneficial algae biomass, however reliable operating methods are lacking. We proposed a novel method for treating mariculture wastewater that employed UV-C irradiation and nutrient regulation to achieve targeted diatom cultivation. This study first examined growth of four diatom species (, , , and ) in mariculture wastewater. and demonstrated better adaptability compared to and . Additionally, the growth and nutrient utilization of were studied under varying concentrations of silicate, phosphate, ammonium, and trace elements in wastewater. Optimal growth was observed at 500 μmol/L silicate, 0.6 mg/L phosphate, and 4 mg/L ammonium. Ammonium proved to be a more effective nitrogen source than urea and nitrate in promoting growth at this low level. Surprisingly, trace element supplementation did not significantly impact growth. Finally, this study utilized UV-C irradiation as a pre-treatment method for wastewater prior to nutrient adjustment, significantly enhancing the growth of . Overall, this study provides guidance on regulating key nutrients and pre-treatment method to optimize diatom biomass production from mariculture wastewater. This approach not only addresses environmental challenges associated with mariculture but also contributes to sustainable aquaculture practices through the recovery of valuable aquatic resources.
海水养殖废水由于污染和富营养化而带来环境挑战。在废水中有针对性地培养硅藻有助于缓解这些问题,同时产生有益的藻类生物质,但缺乏可靠的操作方法。我们提出了一种处理海水养殖废水的新方法,该方法采用紫外线-C照射和营养调节来实现硅藻的定向培养。本研究首先考察了四种硅藻(、、和)在海水养殖废水中的生长情况。与和相比,和表现出更好的适应性。此外,还研究了在废水中不同浓度的硅酸盐、磷酸盐、铵和微量元素条件下的生长和营养利用情况。在500μmol/L硅酸盐、0.6mg/L磷酸盐和4mg/L铵的条件下观察到最佳生长。在这种低水平下,铵被证明是比尿素和硝酸盐更有效的促进生长的氮源。令人惊讶的是,补充微量元素对生长没有显著影响。最后,本研究将紫外线-C照射作为营养调节前的废水预处理方法,显著促进了的生长。总体而言,本研究为调节关键营养素和预处理方法以优化海水养殖废水中硅藻生物质的生产提供了指导。这种方法不仅解决了与海水养殖相关的环境挑战,还通过回收有价值的水产资源为可持续水产养殖实践做出了贡献。