首页> 外文期刊>European Journal of Agronomy >Yield responses of arable crops to liming - An evaluation of relationships between yields and soil pH from a long-term liming experiment
【24h】

Yield responses of arable crops to liming - An evaluation of relationships between yields and soil pH from a long-term liming experiment

机译:从长期黎明实验中,植物作物对植物作物的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The management of optimal soil pH is fundamental to sustainable crop production. Understanding the lime requirement for arable crops has developed gradually over the last several decades. The aim of this study was to examine the yield-pH relationship for a range of arable crops to understand their response to liming, based on the Long-Term Liming experiments established in 1962 at Rothamsted Research, UK. The main treatments of four different rates of lime and, therefore, four distinctly different soil pH levels were maintained for 35 years at two sites (Rothamsted and Woburn). The pH ranged from 4.4 to 8.0. The lime response was tested on the following crops: spring barley, spring oats, spring beans, spring lupins, winter lupins, potatoes, linseed, winter oilseed rape, winter triticale and winter wheat. Relative yield (RY) was used for non-linear regression analysis to detect site, year and phosphorus (P) fertiliser effects on the relationship with pH. Liming had a highly significant positive effect on soil pH, but overall there was no consistent increase or decrease in soil extractable P (Olsen) or exchangeable K. There were significant site effects detected for RY for most crops which reflect differences in the two soil types. Spring oats and potatoes had very weak responses to lime within the pH range tested. For spring barley, winter triticale, winter wheat and winter oilseed rape significant effects of P fertiliser on the yield-pH relationship were found, although the nature of effects differed between crops and sites. Findings from the Long-Term Liming experiment are invaluable in improving the fundamental understanding on the yield-pH relationship for important arable crops and this has significant implications on selecting crops for rotations. The pH at 90% RY was calculated for selected crops and the beneficial effect of fertiliser P was detected in significantly reducing the critical pH value.
机译:最佳土壤pH值的管理是可持续作物生产的基础。了解耕作作物的石灰要求在过去几十年中逐渐发展起来。本研究的目的是检查一系列可耕作物的产量 - pH关系,以了解他们对黎明的反应,基于1962年在英国Rothamsted Research成立的长期黎明实验。因此,在两个地点(Rothamsted和Woburn),35年来维持四种不同的石灰率的主要处理。 pH值范围从4.4到8.0。在以下作物上测试了石灰反应:春麦大麦,春燕,春豆,春天羽扇衫,冬羽春,土豆,亚麻籽,冬季油菜,冬季小麦和冬小麦。相对产量(RY)用于非线性回归分析,以检测与pH值关系的现场,年份和磷(P)肥料作用。 Limining对土壤pH具有非常显着的阳性作用,但整体而言,土壤可提取的P(olsen)或可更换K的情况下没有一致的增加或减少。对于大多数土壤类型反映了两种土壤类型的差异的RY检测到显着的部位效果。春燕和土豆对测试的pH范围内对石灰的反应非常弱。对于春季大麦,冬季小麦,冬季小麦和冬季油脂强奸P肥料对产量-PH之间的重大影响,尽管农作物和地点之间的作用性质不同。长期黎明实验的结果在提高对重要耕作作物对产量-PH关系的基本理解方面非常有价值,这对选择扭转作物具有重大影响。为选定的作物计算了90%Ry的pH值,并且在显着降低临界pH值下检测到肥料P的有益效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号