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Decomposition of roots and shoots of perennial grasses and annual barley—separately or in two residue mixes

机译:多年生草和一年生大麦的根和芽的分解-单独或在两种残留混合物中分解

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摘要

Little is known about the decomposition rates of shoot and root residues of perennial grasses. This knowledge is important to estimate the carbon sequestration potential of the grasses. An incubation experiment was carried out in a sandy clay loam with shoot and root residues of three native perennial grasses (Wallaby grass, Stipa sp. and Kangaroo grass) and the annual grass barley either separately or in mixtures of two residues. Respiration rate was measured over 18 days, and microbial C and available N were measured on days 0 and 18. Decomposition was lower for roots than for shoots and lower for residues of perennial grasses than for barley. Cumulative respiration was positively correlated with water-soluble C in the residues but not with residue C/N. In the mixtures, the measured cumulative respiration was higher than the expected value in five of the nine mixes usually where the differences in cumulative respiration between the individual residues were relatively small. Lower than expected cumulative respiration were found in two of the mixtures in which barley shoots (high cumulative respiration) were mixed with residues with low cumulative respiration. There was a negative correlation between the change in microbial biomass C concentration from day 0 to day 18 and cumulative respiration on day 18. In the amended soils, the available N concentration decreased from day 0 to day 18. It is concluded that the low decomposition rate of perennial grasses residues should favour C sequestration, but that mixing residues of similar decomposition rate may accelerate their decomposition.
机译:对于多年生草的芽和根残基的分解速率知之甚少。该知识对于估算草的碳固存潜力很重要。在沙质壤土中进行了一个孵化实验,其中分别含有三种原生多年生草(Wallaby草,Stipa sp。和袋鼠草)和一年生大麦的枝条和根部残留物,或者是两种残留物的混合物。在18天的时间内测量呼吸速率,在第0天和18天测量微生物C和有效氮。根的分解度低于芽,而多年生草的残留量则比大麦低。累积呼吸与残留物中的水溶性C呈正相关,但与残留C / N不相关。在这些混合物中,通常在九个混合物中,五个测量的累积呼吸量高于预期值,其中单个残渣之间的累积呼吸量差异相对较小。在其中大麦芽(高累积呼吸)与低累积呼吸残留物混合的两种混合物中发现低于预期的累积呼吸。从第0天到第18天微生物量碳浓度的变化与第18天的累积呼吸量之间呈负相关。在改良土壤中,有效氮浓度从第0天到第18天下降。结论是低分解多年生禾草残渣的分解速率应有利于固碳,但混合分解速率相似的残渣可加速其分解。

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