首页> 外文期刊>Soil Research >Effects of sugar cane bagasse biochar and spent mushroom compost on phosphorus fractionation in calcareous soils
【24h】

Effects of sugar cane bagasse biochar and spent mushroom compost on phosphorus fractionation in calcareous soils

机译:甘蔗Bagasse Biochar和Chent蘑菇堆肥对钙质土壤磷分馏的影响

获取原文
获取原文并翻译 | 示例
       

摘要

In the present study we investigated the effects of using sugar cane bagasse biochar and spent mushroom compost (SMC) on different fractions of phosphorus and plant availability in three calcareous soils with a loam, clay loam and sandy loam texture. The incubation experiment was performed using a completely randomised design, with five treatments (B-1 and B-2 (15 and 30 t biochar ha(-1) respectively), SMC1 and SMC2 (20 and 40 t SMC ha(-1) respectively) and C (control)) and three incubation periods (14, 60 and 120 days) over three replicates. The different P fractions evaluated in the soil were Olsen P, dicalcium phosphate (Ca-2-P), octacalcium phosphate (Ca-8-P), aluminium phosphate (Al-P), iron phosphate, occluded phosphate and apatite. Application of SMC at both levels increased Olsen P, whereas biochar application was less effective. SMC2 increased Olsen P by 473%, 227% and 89% in clay loam, loam and sandy loam soils respectively. In addition, for all soils and all incubation times, SMC1 and SMC2 significantly increased Ca-2-P compared with C, which had an increasing trend with time, but biochar only increased Ca-2-P significantly in sandy loam soil. SMC2 also increased Ca-8-P and Al-P at 120 days. In conclusion, application of SMC can enhance plant-available P and affect P fractions and distribution, with the degree of the increase being soil specific. In contrast, the effects of biochar on P availability, fractions and distribution need more time to become apparent.
机译:在本研究中,我们调查了使用甘蔗泡沫生物炭和废蘑菇堆肥(SMC)在三个钙质土壤中使用糖和植物可用性的影响,其中包含壤土,粘土壤土和砂质壤土纹理。使用完全随机的设计进行培养实验,其中5种处理(B-1和B-2(15和30和30 T Biochar Ha(-1)),SMC1和SMC2(20和40 T SMC HA(-1)分别为C(对照))和三次孵育期(14,60和120天),超过三次重复。在土壤中评价的不同P级分是醇酸P,磷酸二钙(Ca-2-P),磷酸二十六醛(Ca-8-P),磷酸铝(Al-P),铁磷酸盐,闭塞磷酸盐和磷灰石。 SMC在两级的应用增加olsen p,而Biochar应用效果较低。 SMC2分别在粘土壤土,壤土和沙质壤土土壤中增加了473%,227%和89%。此外,对于所有土壤和所有培养时间,SMC1和SMC2与C显着增加,与C的趋势越来越大,但BioChar仅在沙质壤土土壤中显着增加了CA-2-P。 SMC2还在120天内增加Ca-8-P和Al-P.总之,SMC的应用可以增强植物可用的P并影响P级分和分布,增加土壤特异性。相比之下,生物炭对P获取性,分数和分布的影响需要更多的时间变得明显。

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