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椰糠和生物炭作为水培系统中生菜种植复合基质的适用性。

Suitability of coconut bran and biochar as a composite substrate for lettuce cultivation in aquaponic systems.

作者信息

Zhu Chen, Lin Zuo, Fen Wang, Jiajia Wang, Xiang Zhou, Kai Cui, Yu Zhang, Kelai Zhang, Yelin Jiang, Salin Krishna R

机构信息

Key Laboratory of Aquaculture and Stock Enhancement for Anhui Province, Fishery Research Institute, Anhui Academy of Agricultural Sciences, Hefei, 230031, China.

Aquaculture and Aquatic Resources Management, SERD, Asian Institute of Technology, Pathumthani, 12120, Thailand.

出版信息

Heliyon. 2024 Aug 5;10(15):e35515. doi: 10.1016/j.heliyon.2024.e35515. eCollection 2024 Aug 15.

Abstract

Growth substrates are essential for aquaponic systems and play an important role in vegetable growth and water quality. In this study, we explored an innovative combination of coconut bran and coconut shell biochar (CSB) as a composite growth substrate for lettuce cultivation in aquaponic systems. The study included the control (100 % coconut bran as the growth substrate) and treatment groups (T1-T5; containing 10 %, 20 %, 30 %, 40 %, and 50 % CSB as the growth substrate, respectively). The substrate properties; lettuce growth performance; and soil enzyme activity, nitrogen content, and abundance of microbial communities in the substrate were analyzed to determine the optimal substrate. Our findings indicated that CSB incorporation significantly altered the properties of the substrate, resulting in increased dry and bulk densities, pH, and water-holding capacity, and decreased electrical conductivity, water-absorption capacity, and porosity. Furthermore, the fresh weight of lettuce was notably increased in the treatment groups. The activities of fluorescein diacetate hydrolase, urease, nitrate reductase, and hydroxylamine reductase initially increased and further decreased, reaching the maximum in the T3 group. Conversely, the activity of nitrite reductase and contents of available nitrogen, nitrate-nitrogen, and ammonium-nitrogen in the substrates initially decreased and further increased, with the minimum values observed in the T3 group. The microbial sequencing results indicated that CSB incorporation significantly increased the microbial diversity and relative abundance of microorganisms associated with nitrogen transformation. Moreover, 30 % CSB incorporation exhibited the greatest effect on lettuce growth, with a 34.5 % and 31.6 % increase in fresh weight compared to the control during the growth and harvest periods, respectively. This study indicated the enormous potential of biochar in the research and development of green technologies for substrate amendment in aquaponic systems.

摘要

生长基质对水培系统至关重要,在蔬菜生长和水质方面发挥着重要作用。在本研究中,我们探索了椰糠和椰壳生物炭(CSB)的创新组合作为水培系统中生菜栽培的复合生长基质。该研究包括对照组(100%椰糠作为生长基质)和处理组(T1 - T5;分别含有10%、20%、30%、40%和50%的CSB作为生长基质)。分析了基质特性、生菜生长性能以及基质中的土壤酶活性、氮含量和微生物群落丰度,以确定最佳基质。我们的研究结果表明,添加CSB显著改变了基质的特性,导致干密度和容重、pH值和持水能力增加,而电导率、吸水能力和孔隙率降低。此外,处理组生菜的鲜重显著增加。荧光素二乙酸酯水解酶、脲酶、硝酸还原酶和羟胺还原酶的活性最初增加,随后下降,在T3组达到最大值。相反,基质中亚硝酸还原酶的活性以及有效氮、硝态氮和铵态氮的含量最初下降,随后增加,在T3组观察到最小值。微生物测序结果表明,添加CSB显著增加了与氮转化相关的微生物多样性和相对丰度。此外,添加30%的CSB对生菜生长的影响最大,在生长和收获期,与对照组相比,鲜重分别增加了34.5%和31.6%。本研究表明生物炭在水培系统基质改良绿色技术研发方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc22/11336761/3954f96063e0/gr1.jpg

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