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FIELD APPLICATION IN MAIZE CULTIVATION OF COMPOST AND COMPOST SOURCED SOLUBLE AND INSOLUBLE ALKALINE HYDROLYZATES

机译:现场应用在玉米秸秆和玉米秸秆可溶性和不溶性碱性水解产物的玉米栽培中

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Utilization of compost as substitutes of mineral fertilizers is a current agricultural practice which environmental vantages have been largely demonstrated. In previous studies it was demonstrated that upgraded substances could be obtained by alkaline hydrolysis of composts. These substances consisting in a soluble and an insoluble fraction exhibited good performance as organic fertilizers. The fertilizing effect of these substances has been assessed on horticultural species, grown in pot and greenhouse cultivations. This study reports the application of two composts (a green compost and a mixed compost) and their soluble and insoluble hydrolyzates in a field cultivation of maize. Each material was applied on three random plots and the results, expressed as soil properties, height and weights of the plants and weight of the ears and kernels, were compared with those obtained on non amended plots and mineral fertilized plots. The best results were obtained in the plots fertilized with the mineral fertilizer, the mixed compost and the soluble hydrolyzates of the composts. The minor performance of the green compost was likely due to its relatively low nitrogen content. The insoluble hydrolyzates, although allowing a significantly minor plant growth, gave the same results in term of dry weight of kernel per plant than the mineral fertilized control. Therefore, their application in maize cultivation can be recommended with an economical vantage since they are by-products of the preparation of the soluble fractions which can find alternative industrial applications such as biosurfactants.
机译:将堆肥用作矿物肥料的替代品是当前的农业实践,已经充分证明了其环境优势。在以前的研究中,已证明可以通过对堆肥进行碱水解来获得提质物质。这些由可溶和不可溶部分组成的物质表现出良好的有机肥料性能。已经评估了这些物质对盆栽和温室栽培的园艺物种的施肥效果。这项研究报告了两种堆肥(绿色堆肥和混合堆肥)及其可溶性和不溶性水解产物在玉米田间栽培中的应用。将每种材料应用于三个随机样地,并将结果表示为土壤性质,植物的高度和重量以及果穗和果仁的重量,与未修改样地和矿物施肥样地获得的结果进行比较。在用矿物肥料,混合堆肥和堆肥的可溶性水解物施肥的地块中,可获得最佳结果。绿色堆肥的次要性能可能是由于其相对较低的氮含量。尽管不溶的水解产物虽然使植物的生长显着减少,但在每株籽粒的干重方面却获得了与矿物施肥对照相同的结果。因此,由于它们是可溶级分制备的副产物,可找到替代的工业应用,例如生物表面活性剂,因此可推荐在经济上推广其在玉米栽培中的应用。

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