Leibniz Institute for Vegetable and Ornamental Crops (IGZ) e.V., Grossbeeren, Germany.
PLoS One. 2023 Jul 31;18(7):e0289320. doi: 10.1371/journal.pone.0289320. eCollection 2023.
Peat is the most common used substrate in horticultural seedling production. To reduce peat in horticultural potted plant cultivation systems in general is an obstacle, even within the highly specialized horticultural industry. Next to soil-less cultivation systems as e.g. hydroponics, the horticultural industry is eagerly looking for suitable peat substitutes. The demands on these compounds are high, basically mimicking the physical properties of peat. A 100% replacement of peat for press-pots used in seedling production has not yet been found, and only mixes of peat and substrates exist. Several suitable peat substitutes with different properties are known, that usually are used as a share of a mixed peat-substitute substrate. A constrained mixture design was used to test substrates containing 50% v/v and 25% v/v peat and four peat substitutes (two composts and two wood fibers) for vegetable seedling production. By limiting the maximum quantities of each material to be added, there was no negative effect on the growth of Chinese cabbage (Brassica rapa subsp. pekinensis). This means a reduction in of peat to 25% v/v is possible without a change in substrate quality. The mixture design allowed a quick decision to be made regarding the most suitable peat-reduced mixtures. The surface response approach enabled the experimental results to be easily transferred to horticultural practices, additionally. This flexible and efficient method also allows the predictions to be used to meet specific crop management needs.
泥炭是园艺种苗生产中最常用的基质。在一般的园艺盆栽植物栽培系统中,减少泥炭的使用是一个障碍,即使在高度专业化的园艺行业也是如此。除了无土栽培系统,如水培,园艺行业也在急切地寻找合适的泥炭替代品。这些化合物的要求很高,基本上模仿了泥炭的物理性质。在种苗生产中,尚未找到 100%替代泥炭的压盆材料,仅存在泥炭和基质的混合物。已经知道几种具有不同特性的合适的泥炭替代品,通常作为混合泥炭-替代品基质的一部分使用。采用约束混合设计来测试含有 50% v/v 和 25% v/v 泥炭和四种泥炭替代品(两种堆肥和两种木纤维)的基质,用于蔬菜种苗生产。通过限制每种添加材料的最大数量,不会对白菜(Brassica rapa subsp. pekinensis)的生长产生负面影响。这意味着可以将泥炭减少到 25% v/v,而不会改变基质质量。混合设计允许快速决定最适合减少泥炭的混合物。表面响应方法还可以方便地将实验结果转化为园艺实践。这种灵活高效的方法还允许根据特定的作物管理需求进行预测。