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Visual soil evaluation: A summary of some applications and potential developments for agriculture

机译:视觉土壤评价:一些申请和农业潜在发展的摘要

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Visual soil evaluation techniques have gained popularity and are increasingly used in agriculture and soil science for research, consultancy and teaching purposes. We describe recent applications, developments, opportunities and limitations, mainly of the Visual Evaluation of Soil Structure (for topsoil (VESS) and for subsoil (SubVESS)), and of the Visual Soil Assessment (VSA). Data are taken from experiments on compaction and from assessments made in farmer's fields in the UK, Brazil and New Zealand. The methods are widely used to detect compaction and are well-suited for monitoring changes in compaction status, particularly in relation to weather extremes. VESS proved useful in distinguishing grazing vs wheel compaction in the UK and Brazil by permitting detection of layers at different depths within the topsoil zone. The depths of compact layers are important for scoring management decisions for soil improvement. However the use of scores as limiting thresholds in different soil types needs the support of further soil measurements and/or additional visual assessments of soil and crop. VSA and VESS were also used to estimate the risk of significant soil emissions of nitrous oxide where compaction damage was present and rates of mineral N fertiliser were high. Visual assessments also have the potential to assess the risk of surface water runoff and nutrient loss. The potential role of soil colour was shown for the further development of visual evaluation techniques for a soil carbon storage index. Visual soil evaluation techniques also provide a useful visual aid for improving soil awareness in groups of stakeholders, helping the exchange of knowledge and ideas for innovation in agriculture. (C) 2016 Elsevier B.V. All rights reserved.
机译:视觉土壤评价技术越来越受欢迎,越来越多地用于农业和土壤科学研究,咨询和教学目的。我们描述了最近的应用,发展,机遇和局限,主要是对土壤结构的视觉评估(表对尸体(饲料)和遗留(亚贫易))和视觉土壤评估(VSA)的视觉评估。数据是从互补的实验和英国,巴西和新西兰的农民领域的评估。该方法广泛用于检测压实,非常适合监测压实状态的变化,特别是与极端气象相关。通过允许在表土区内的不同深度检测层,在英国和巴西中区分英国和巴西的放牧与滚轮压实有用。紧凑层的深度对于评分管理决策来说是对土壤改进的评分。然而,使用分数作为不同土壤类型的限制阈值需要对土壤和作物的进一步土壤测量和/或额外的视觉评估需要支持。 VSA和VAS也用于估计存在压实损伤的氧化氮的显着土壤排放的风险,并且矿物N肥的率高。视觉评估还有可能评估表面水径流和营养损失的风险。土壤颜色的潜在作用显示用于土壤碳储存指数的视觉评估技术的进一步发展。视觉土壤评估技术还提供了改善利益攸关方群体的土壤意识的有用视觉辅助,帮助交流农业创新的知识和思想。 (c)2016年Elsevier B.v.保留所有权利。

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