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首页> 外文期刊>African Journal of Agricultural Research >Allometric relationships and carbon content for biomass-carbon estimation of East African Highland Bananas (Musa spp. AAA-EAHB) cv. Kibuzi, Nakitembe, Enyeru and Nakinyika
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Allometric relationships and carbon content for biomass-carbon estimation of East African Highland Bananas (Musa spp. AAA-EAHB) cv. Kibuzi, Nakitembe, Enyeru and Nakinyika

机译:东非高地香蕉(Musa spp。AAA-EAHB)生物量碳估算的异速关系和碳含量。 Kibuzi,Nakitembe,Enyeru和Nakinyika

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摘要

Globally, interests to increase carbon stocks have gained momentum in both woody and non-woody ecosystems. Despite efforts made to generate appropriate methods to estimate these stocks, most equations developed do not cater for intraspecific variabilities across e.g. species, regions or growth stages; especially in the case of bananas. Therefore, there is need to develop more robust equations to improve on the precision of biomass-carbon prediction especially at local scales to facilitate estimation of specific carbon stocks often lost in global assessments. This study aimed at developing cultivar-specific biomass estimation relationships and determining carbon content of EAHB cultivars at two growth stages. Plant data were collected purposively using destructive sampling techniques on farmers’ plots for 4 cultivars (Kibuzi, Nakitembe, Enyeru and Nakinyika) in two agro-ecological zones: the L. Victoria crescent and the South-western farmlands in the districts of Lwengo and Mbarara respectively. Results show that biomass differed across cultivars (P<0.001); hence four equations (Enyeru, Nakinyika, Kibuzi_Nakitembe and Generic) were developed following an exponential function, y=Aexp(ax), using diameter at breast height (DBH) as the predictor variable with an R2 range of 82-94%. EAHB mean carbon content varied significantly with growth stage (P<0.05) (47.6% for maiden plants before flowering and 48.8% for mature plants with a developed bunch). This study concludes that it is important to develop cultivar-specific equations for biomass-carbon estimation of EAHB cultivars to help assess their contribution to the carbon cycle especially in future studies.
机译:在全球范围内,在木质和非木质生态系统中,增加碳储量的兴趣都得到了增长。尽管做出了努力以产生适当的方法来估计这些种群,但大多数方程式并未满足跨物种的种内变异性。物种,地区或生长阶段;尤其是香蕉。因此,需要开发更鲁棒的方程式以提高生物量碳预测的精度,尤其是在局部尺度上,以便于估算通常在全球评估中丢失的特定碳储量。这项研究旨在发展特定品种的生物量估计关系,并确定两个生长阶段的EAHB品种的碳含量。目的是使用破坏性抽样技术,有目的地在两个农业生态区(L. Victoria Crescent和Lwengo和Mbarara区的西南农业区)的4个栽培种(Kibuzi,Nakitembe,Enyeru和Nakinyika)的农民地块上收集植物数据。分别。结果表明,不同品种的生物量不同(P <0.001);因此,以下四个方程式(Enyeru,Nakinyika,Kibuzi_Nakitembe和Generic)遵循指数函数y = Aexp(ax),使用乳房高度(DBH)的直径作为预测变量,R2范围为82-94%。 EAHB的平均碳含量随生长期而显着变化(P <0.05)(开花前的未婚植物为47.6%,成熟的一束成熟植物为48.8%)。这项研究得出的结论是,开发特定于EAHB品种生物量碳的品种方程式非常重要,以帮助评估其对碳循环的贡献,尤其是在未来的研究中。

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