Eyheraguibel B, Silvestre J, Morard P
Laboratoire Agronomie Environnement Ecotoxicologie, Ecole Nationale Supérieure d'Agronomie de Toulouse, Av. de l'Agrobiopôle, 31326 Castanet Tolosan Cedex, France.
Bioresour Technol. 2008 Jul;99(10):4206-12. doi: 10.1016/j.biortech.2007.08.082. Epub 2007 Oct 24.
A physico-chemical process has been developed to transform and enhance lignocellulosic waste in liquid humic extracts: humic-like substances (HLS). The aim of this study was to determine the effects of HLS on plant physiology in order to consider their agricultural use as organic fertilizers. The effects of HLS were evaluated on maize seed germination, and their impact on growth, development and mineral nutrition was studied on maize plants cultivated under hydroponic conditions. The experimental results showed that HLS do not increase the percentage and rate of germination but enhance the root elongation of seeds thus treated. Positive effects were also observed on the whole plant growth as well as on root, shoot and leaf biomass. These effects can be related to the high water and mineral consumption of plants undergoing this treatment. The high water efficiency indicated that such plants produce more biomass than non-treated plants for the same consumption of the nutrient solution. Furthermore, the use of HLS induced a flowering precocity and modified root development suggesting a possible interaction of HLS with developmental processes. Considering the beneficial effect of HLS on different stages of plant growth, their use may present various scientific and economic advantages. The physico-chemical transformation of sawdust is an interesting way of enhancing organic waste materials.
已开发出一种物理化学方法,用于将木质纤维素废物转化并增强为液体腐殖质提取物:类腐殖质物质(HLS)。本研究的目的是确定HLS对植物生理的影响,以便考虑将其作为有机肥料用于农业。评估了HLS对玉米种子萌发的影响,并研究了其对水培条件下种植的玉米植株生长、发育和矿质营养的影响。实验结果表明,HLS不会提高种子的发芽率和发芽速率,但会促进经其处理的种子的根伸长。在整株植物生长以及根、茎和叶生物量方面也观察到了积极影响。这些影响可能与接受该处理的植物对水和矿物质的高消耗量有关。高水分利用效率表明,对于相同的营养液消耗量,此类植物比未处理的植物产生更多的生物量。此外,使用HLS会导致开花早熟并改变根系发育,这表明HLS可能与发育过程存在相互作用。考虑到HLS对植物生长不同阶段的有益影响,其使用可能具有多种科学和经济优势。锯末的物理化学转化是增强有机废料的一种有趣方式。