在肥力较低的热带稀树草原土壤上施用磷、氮和硫肥料时,需要额外补充锌,以确保植树造林的树木健康生长

IF 1.2 4区 农林科学 Q4 SOIL SCIENCE Soil Research Pub Date : 2024-01-08 DOI:10.1071/sr23128
Stan J. Rance, David M. Cameron, Emlyn R. Williams, Carl R. Gosper
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引用次数: 0

摘要

背景全球热带稀树草原土壤的特点是土壤养分有限,这是热带地区建立高产植树造林和增加经济机会的几个制约因素之一。施肥是克服土壤养分限制、最大限度地促进树木生长和健康的一种方法,但需要结合土壤特性对养分含量、组成、施肥量和施肥方法进行研究。目的确定肥料的最佳含量、比例和施用方法,以最大限度地提高低肥力热带稀树草原土壤上种植园用材树种 Pinus caribaea 的生长和健康水平。方法在澳大利亚达尔文附近的三种土壤上进行因子田间试验,测试施用磷(P)、氮(N)和硫(S)后的生长反应。此外,实验还测试了锌 (Zn)、铜 (Cu) 和钾 (K) 的施用量以及土壤特性的小规模变化对树木表现的影响。主要结果记录了树木对磷、氮和硫的积极生长反应,但也出现了不健康的树木,尤其是在表现较好的处理中。针对健康不良潜在原因的第二阶段实验证实了锌的限制作用。密集的空间土壤取样表明,阳离子交换能力和成分在短距离内存在巨大差异。结论为促进种植园树木的生长,除氮、磷和硫(特别是锌)外,还需要添加微量元素,并考虑应用机制。意义阳离子交换能力和成分的小范围变化表明,最佳施肥量会因空间而异,而且通过重复的分散样本进行土壤取样以确定地点特征会更加准确。
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Fertilisation with P, N and S requires additional Zn for healthy plantation tree growth on low fertility savanna soils
Context

Soil nutrient limitations characterise savanna soils globally and are one of several constraints to establishing productive tree plantations and enhancing economic opportunities in tropical regions. Fertilisation offers an approach to overcome soil nutrient limitations to maximise tree growth and health, but requires research on nutrient contents, composition, rates and methods of delivery in the context of soil characteristics.

Aims

To determine the optimal contents, rates and methods of application of fertiliser to maximise the growth and health of the plantation timber species Pinus caribaea on low fertility savanna soils.

Methods

Factorial field experiments tested growth responses to applications of phosphorus (P), nitrogen (N) and sulfur (S) on three soils near Darwin, Australia. Further experiments tested effects of zinc (Zn), copper (Cu) and potassium (K) application and small-scale variation in soil characteristics on tree performance.

Key results

Positive growth responses to P, N and S were recorded, yet unhealthy trees developed, particularly in better-performing treatments. Second phase experiments addressing potential causes of ill health confirmed Zn limitations. Intense spatial soil sampling demonstrated substantial variation in cation exchange capacity and composition over short distances.

Conclusions

Nutrient additions to enhance plantation tree growth will need to encompass minor and trace elements in addition to N, P and S, specifically Zn, and consider the mechanism of application.

Implications

Small-scale variability in cation exchange capacity and composition indicates that optimal fertilisation rates will vary spatially, and that soil sampling for site characterisation would be more accurate with replicated dispersed samples.

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来源期刊
Soil Research
Soil Research SOIL SCIENCE-
CiteScore
3.20
自引率
6.20%
发文量
35
审稿时长
4.5 months
期刊介绍: Soil Research (formerly known as Australian Journal of Soil Research) is an international journal that aims to rapidly publish high-quality, novel research about fundamental and applied aspects of soil science. As well as publishing in traditional aspects of soil biology, soil physics and soil chemistry across terrestrial ecosystems, the journal welcomes manuscripts dealing with wider interactions of soils with the environment. Soil Research is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
期刊最新文献
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