Mininni Carlo, Grassi Francesco, Traversa Andreina, Cocozza Claudio, Parente Angelo, Miano Teodoro, Santamaria Pietro
Istituto di Scienze delle Produzioni Alimentari (ISPA), Consiglio Nazionale delle Ricerche (CNR), Via Amendola 122/O, 70126, Bari, Italy.
Dipartimento di Scienze Agro-Ambientali e Territoriali, University of Bari 'Aldo Moro', Via Amendola 165/A, 70126, Bari, Italy.
J Sci Food Agric. 2015 Aug 15;95(10):2041-6. doi: 10.1002/jsfa.6917. Epub 2014 Oct 14.
Peat is the main component of growing media but is also a non-renewable resource; therefore European policy strongly encourages the use of peat alternatives such as compost. Posidonia is a Mediterranean seagrass that produces very conspicuous onshore deposits that can be composted. In this study, a commercial green compost and a Posidonia residue-based compost were tested in order to assess their potential use as substitutes or complements to peat.
All macro and micro-element concentrations of the substrates were positively and significantly related to the percentage of composts in the growing media. Plant grown on peat showed higher content of P, Ca, K, Na, Cu, Mn, Zn and Fe, and a slightly higher biomass production in comparison to compost-based growing media. In contrast, plants grown on compost-based substrates showed lower uptake of Cd and Cr than peat.
The results indicate that both composts can be used as a complement to the peat for substrate preparation, especially at a rate of 30%. The Posidonia-based compost showed better productive results in comparison to the green one. Basil grown on the two compost-based media showed reduced absorption level of potentially toxic metals in comparison to peat.
泥炭是种植介质的主要成分,但也是不可再生资源;因此,欧洲政策大力鼓励使用泥炭替代品,如堆肥。波喜荡草是一种地中海海草,会产生非常明显的陆岸沉积物,这些沉积物可以制成堆肥。在本研究中,对一种商业绿色堆肥和一种基于波喜荡草残渣的堆肥进行了测试,以评估它们作为泥炭替代品或补充物的潜在用途。
种植介质中堆肥的百分比与基质中所有宏量和微量元素浓度呈正相关且显著相关。与基于堆肥的种植介质相比,在泥炭上生长的植物显示出更高的磷、钙、钾、钠、铜、锰、锌和铁含量,以及略高的生物量产量。相反,在基于堆肥的基质上生长的植物对镉和铬的吸收低于泥炭。
结果表明,两种堆肥都可以用作泥炭的补充物来制备基质,特别是以30%的比例。与绿色堆肥相比,基于波喜荡草的堆肥显示出更好的生产效果。与泥炭相比,在两种基于堆肥的介质上生长的罗勒对潜在有毒金属的吸收水平降低。