...
首页> 外文期刊>Chemosphere >Phosphorous extractability and ryegrass availability from bio-waste composts in a calcareous soil
【24h】

Phosphorous extractability and ryegrass availability from bio-waste composts in a calcareous soil

机译:石灰质土壤中生物废物堆肥的磷可萃取性和黑麦草可用性

获取原文
获取原文并翻译 | 示例

摘要

In this work four stable bio-waste composts (C1, C2, C3, C4) were selected on the basis of their increasing water soluble P (H2O-P). The P speciation was assessed via sequential chemical extraction (SCE) on the same products. Moreover, the plant-available P was assessed via apparent recovery fraction approach (ARF) in a pot test on ryegrass over 21 weeks at 15 mg P kg(-1) of soil. An inorganic P source (P-chem) was added as a reference at the same P rate in addition to a non-fertilized control (Control). SCE showed that the sparingly soluble P (HCl-P) was the most important fraction in all composts: C1 (HCl 65% > NaHCO3 17% = NaOH 17% > H2O 1%); C2: (HCl 51% > NaOH 23% > NaHCO3 18% > H2O 7%); C3: (HCl 58% > NaOH 21% > NaHCO3 12% > H2O 9%); C4: (HCl 39% > NaOH 23% > NaHCO3 22% > H2O 16%). The plant test showed that the different treatments had a different ARF (%) at the first harvest: P-chem (14.7)> C4 (14.4)> C3 (14.1)> C2 (3.4)>C1 (3.1), compared to the cumulated ARF (%) of the six harvests: C4 (50.1)> C3 (35.0)> C1 (21.1)> C2 (18.3)> P-chem (17.4). Data showed a good correlation of H2O-P vs. plant ARF at the first harvest and a good correlation of labile P (H2O-P + NaHCO3-P) vs. total plant ARF over 21 weeks. The free and labile P forms from SCE can be a valuable tool in the assessment of fast and middle term plant-available P from stable bio-waste composts in calcareous soils. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,根据其增加的水溶性P(H2O-P)选择了四种稳定的生物废物堆肥(C1,C2,C3,C4)。通过对相同产品进行顺序化学萃取(SCE)评估了P的形态。此外,通过表观恢复分数法(ARF)在15 mg P kg(-1)的土壤上对黑麦草进行了21周的盆栽试验中评估了植物有效磷。除了未受精对照(对照)外,还以相同的P速率添加了无机P源(P-chem)作为参考。 SCE表明,难溶的P(HCl-P)是所有堆肥中最重要的部分:C1(HCl 65%> NaHCO3 17%= NaOH 17%> H2O 1%); C2:(HCl 51%> NaOH 23%> NaHCO3 18%> H2O 7%); C3:(HCl 58%> NaOH 21%> NaHCO3 12%> H2O 9%); C4:(HCl 39%> NaOH 23%> NaHCO 3 22%> H 2 O 16%)。植物试验表明,不同的处理在第一次收获时具有不同的ARF(%):与相比,P-chem(14.7)> C4(14.4)> C3(14.1)> C2(3.4)> C1(3.1)。六个收获的累积ARF(%):C4(50.1)> C3(35.0)> C1(21.1)> C2(18.3)> P-chem(17.4)。数据显示,在首次收获时,H2O-P与植物ARF的相关性很好,并且在21周内不稳定的P(H2O-P + NaHCO3-P)与总植物ARF的相关性很好。来自SCE的游离态和不稳定态P形式可以作为评估钙质土壤中稳定的生物废物堆肥中速生和中期植物有效P的有价值的工具。 (C)2017 Elsevier Ltd.保留所有权利。

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