在玫瑰切花无土栽培中使用有机废物作为生长介质的可能性

IF 1.3 4区 农林科学 Q2 MATERIALS SCIENCE, PAPER & WOOD
B. Altun
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引用次数: 0

摘要

研究了使用榛子壳(HS)、核桃壳(WS)、榛子皮(HzS)和废蘑菇堆肥(SMC)等有机废弃物作为无土基质栽培切花玫瑰的生长介质的可能性。考察了切花日期(天)、花茎长度(厘米)、花茎直径(毫米)、花朵长度(厘米)、花朵直径(厘米)、花朵颜色、叶片上下颜色和产量(朵)等参数。此外,还分析了实验开始和结束阶段从生长培养基中提取的样本。种植 38 天后,从 HzS +P 培养基上切下第一朵花朵。SMC 培养基的产量最高(20.6 朵花/株)。从对照培养基上切下的花最长(63.89 ± 0.947 厘米),茎花最粗(5.86 ± 0.136 毫米)。结果表明,培养基也会影响花朵和叶片的颜色。根据所获得的结果,在无土基质培养切花玫瑰的过程中,建议使用 SMC 和 HzS+ 珍珠岩培养基替代椰糠培养基。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Possibilities of using organic wastes as a growing medium in soilless culture for cut flower rose
The possibilities of using organic wastes, such as hazelnut shells (HS), walnut shells (WS), hazelnut skins (HzS), and spent mushroom compost (SMC), as growth medium in cut flower rose cultivation in soilless substrate culture were investigated. The parameters, such as the date of cutting the flower (day), flower stem length (cm), flower stem diameter (mm), flower length (cm), flower diameter (cm), flower color, color of the top and bottom of the leaf, and yield (piece), were examined. In addition, samples taken from the growth medium at the beginning and ending stages of the experiment were analyzed. The first flowers were cut from the HzS +P medium 38 days after planting. The highest yield value (20.6 flower/plant) was obtained from SMC medium. The longest flowers (63.89 ± 0.947 cm) and the thickest stem flowers (5.86 ± 0.136 mm) were cut from the control medium. It was determined that the media also affected the flower and leaf colors. According to the results obtained, SMC and HzS+perlite mediums can be recommended as an alternative to cocopeat in the production of cut roses in soilless substrate culture.
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来源期刊
Bioresources
Bioresources 工程技术-材料科学:纸与木材
CiteScore
2.90
自引率
13.30%
发文量
397
审稿时长
2.3 months
期刊介绍: The purpose of BioResources is to promote scientific discourse and to foster scientific developments related to sustainable manufacture involving lignocellulosic or woody biomass resources, including wood and agricultural residues. BioResources will focus on advances in science and technology. Emphasis will be placed on bioproducts, bioenergy, papermaking technology, wood products, new manufacturing materials, composite structures, and chemicals derived from lignocellulosic biomass.
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