Comparison of Peat–Perlite-based and Peat–Biochar-based Substrates with Varying Rates of Calcium Silicate on Growth and Cannabinoid Production of Cannabis sativa ‘BaOx’

IF 1.5 3区 农林科学 Q2 HORTICULTURE Hortscience Pub Date : 2023-10-01 DOI:10.21273/hortsci17324-23
Patrick Veazie, M. Seth Balance, Brian E. Whipker, Ka Yeon Jeong
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Abstract

Growers have been searching for alternative horticultural growing media components because of their desire to use sustainable resources. Biochar is a carbon-based material that has been evaluated for use as an alternative aggregate in peat-based soilless substrates. Additionally, silicon (Si) has been examined as a beneficial element to promote plant growth and plant quality in a variety of crops. However, there has been limited research regarding the interaction of biochar as an aggregate and Si in soilless substrates. This study aimed to determine the impact of Si and biochar on plant growth and nutrient uptake for greenhouse-cultivated hemp ( Cannabis sativa L.). Hemp plants were grown in one of 12 different substrate blends: with two rates of calcium silicate (CaSiO 3 ), two aggregate types of biochar (medium or coarse) or perlite, and aggregate percentages of 85% peat + 15% aggregate and 70% peat + 30% aggregate. The cannabinoid concentration, plant height, diameter, or total plant biomass were similar across all substrate blends after 12 weeks of growth. Additionally, the use of CaSiO 3 as a Si substrate amendment increased Si foliar concentrations, and the addition of biochar to peat-based mixes did not limit the Si availability for plant uptake. However, Si substrate amendments did not impact plant height, diameter, or total plant biomass. This suggests that the biochar tested during this study is suitable in peat-based substrates for C. sativa ‘BaOx’ production at rates up to 30% (by volume) in peat-based substrates with CaSiO 3 amendments.
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不同硅酸钙用量的泥炭-珍珠岩基和泥炭-生物炭基材对大麻BaOx生长和大麻素产量的影响
种植者一直在寻找替代园艺生长介质组件,因为他们希望使用可持续资源。生物炭是一种碳基材料,已被评估用作泥炭基无土基质的替代聚集体。此外,硅(Si)已被证明是促进多种作物生长和植物品质的有益元素。然而,关于作为集合体的生物炭与无土基质中硅的相互作用的研究有限。本研究旨在确定硅和生物炭对温室栽培大麻(Cannabis sativa L.)植株生长和养分吸收的影响。大麻植物生长在12种不同基质混合物中的一种:两种硅酸钙(CaSiO 3),两种集合体类型的生物炭(中等或粗)或珍珠岩,集合体百分比为85%泥炭+ 15%集合体和70%泥炭+ 30%集合体。生长12周后,所有基质混合物的大麻素浓度、植物高度、直径或植物总生物量相似。此外,使用CaSiO 3作为Si基质改进剂增加了Si叶面浓度,并且在泥炭基混合物中添加生物炭并不限制植物吸收Si的有效性。然而,硅基质的修改对植物的高度、直径或总生物量没有影响。这表明,在本研究中测试的生物炭适用于在含CaSiO - 3修正的泥炭基基质中以高达30%(体积)的速率生产苜蓿' BaOx '。
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来源期刊
Hortscience
Hortscience 农林科学-园艺
CiteScore
3.00
自引率
10.50%
发文量
224
审稿时长
3 months
期刊介绍: HortScience publishes horticultural information of interest to a broad array of horticulturists. Its goals are to apprise horticultural scientists and others interested in horticulture of scientific and industry developments and of significant research, education, or extension findings or methods.
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