...
首页> 外文期刊>Current Journal of Applied Science and Technology >FTIR Spectroscopy and Optical Density Characterization of Humic Substances Extracted from Reclaimed Alkali Soils under Different Tillage and Management Practices
【24h】

FTIR Spectroscopy and Optical Density Characterization of Humic Substances Extracted from Reclaimed Alkali Soils under Different Tillage and Management Practices

机译:不同耕作与管理实践下回收碱土土壤中提取的腐殖质的FTIR光谱和光密度表征

获取原文
   

获取外文期刊封面封底 >>

       

摘要

In the present investigation, different tillage and management practices interventions were assessed to note the changes in the composition of humic substances using Fourier transform infrared (FTIR) techniques, optical density (E_(4)/E_(6)) measurement and elemental composition of humic acid. One uncultivated and four reclaimed alkali surface (0-0.15 m) soil samples after adoption of four years different tillage and management practices were collected from Central Soil Salinity Research Institute, Karnal. Optical density (E_(4)/E_(6)) of fulvic acid was higher than that of humic acid. This was due to the more condensed and more matured nature of humic acid than fulvic acid. The trend of E_(4)/E_(6 )ratio was farmers practices in rice-fallow-wheat cropping system with puddled rice and conventional tillage wheat without crop residue addition (FP in R-F-W) > integrated crop and resource management in rice-wheat-mungbean cropping system (ICRM in R-W-M)> futuristic and diversified (CA) based system of maize-wheat-mungbean cropping system (FDCA in M-W-M) >U_(n)K> Conservation agriculture (CA) based system in rice-wheat-mungbean cropping system (CA in R-W-M). The highest stability was recorded in CA in R-W-M and the lowest in FP in R-F-W. Elemental composition of extracted humic acid revealed that carbon content in humic acid varied from 47.53% in uncultivated soils to 51.32% in ICRM in R-W-M. The nitrogen content in humic acid varied from 4.38% in FDCA in M-W-M to 4.89% in CA in R-W-M. Soils having the lowest C/N value was observed 10.03 in CA in R-W-M and the highest C/N ratio of value 11.72 was recorded in FDCA in M-W-M. Wave no.? (cm~(-1))andproposed functional group of extracted humic acid revealed that FTIR peak at 1507-1508 cm~(-1) in CA in R-W-M, aromatic -C=C- peak was absent in FDCA in M-W-M and in FP in R-F-W it was replaced by aliphatic C-H stretch.
机译:在目前的调查中,评估了不同的耕作和管理措施干预措施,记录使用傅里叶变换红外线(FTIR)技术,光密度(E_(4)/ E_(6))测量和元素组成的腐殖质物质组成的变化腐植酸。采用四年后,从中央土壤盐度研究所收集了一个未露天的和四个回收的碱表面(0-0.15米)土壤样品,从中央土壤盐度研究所,KARNAL。富乙酸的光密度(E_(4)/ E_(6))高于腐殖酸。这是由于腐殖酸更加浓缩和更成熟的性质而不是富富酸。 e_(4)/ e_(6)比的趋势是水稻休耕小麦种植系统中的农民实践,其中水稻和常规耕作小麦没有作物残留(Fp在RFW)>稻麦综合作物和资源管理-mungbean裁剪系统(RWM ICRM)>基于未来派和多样化(CA)的玉米 - 小麦 - Mungbean播种系统系统(MWM中的FDCA)> U_(n)k>稻米 - 小麦系统的保护农业(CA)系统 - Mungbean裁剪系统(RWM中的CA)。在R-W-M中的CA中记录了最高稳定性,R-F-W中的FP中最低。提取的腐殖酸的元素组成显示腐殖酸中的碳含量在官方在R-W-M中的ICRM中的未露天土壤中的47.53%变化至51.32%。腐殖酸中的氮含量在R-W-M中的C-W-M中的FDCA中的4.89%变化为4.89%。观察到具有最低C / N值的土壤10.03在R-W-M中的Ca中,在M-W-m中的FDCA中记录最高的值11.72的C / N比。波没有。? (CM〜(-1))提取的腐殖酸的官能团官能团显示,在RWM中的CA中的1507-1508cm〜(-1)中的FTIR峰,在MWM和FP中没有在FDCA中缺席芳族-C = C-峰在RFW中,它被脂族CH拉伸所取代。

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