首页> 外文会议>Joint international agricultural conference >CHARACTRIZATION OF SOIL CLAY MINERALS USING MID-INFRARED SPECTROSCOPY AND ITS APPLICATION IN SOIL IDENTIFICATION
【24h】

CHARACTRIZATION OF SOIL CLAY MINERALS USING MID-INFRARED SPECTROSCOPY AND ITS APPLICATION IN SOIL IDENTIFICATION

机译:使用中红外光谱法的土壤粘土矿物质的特征及其在土壤鉴定中的应用

获取原文

摘要

Soil identification depends on the determination of a series of soil agro-chemical properties, and is expensive and time consuming. Soil clay mineral is one of the most important components in soil, and the qualification of soil clay plays main role in soil identification. Chemical analysis of soil clay is time-consuming, while infrared spectroscopic method seems promising. In this research, characterization of three source clay minerals, i. e. illite, kaolin and montmorillonite, were made using three mid-infrared spectroscopic techniques (attenuated total reflectance (FTIR-ATR), transmittance spectroscopy, and photoacoustic spectroscopy (FTIR-PAS). For the FTIR transmittance spectra of the three source clays, there are three main absorption regions: 3000-3800 cm-1, 1300-1800 cm-1, and 500-1200 cm-1, and sharp differences can be found in each region; for the FTIR-ATR spectra of the three source clays, there are absorptions with minor difference in the region of 800-1200 cm-1; for the FTIR-PAS spectra of the three source clays, there are also three similar absorption regions as FTIR transmittance spectra, but more absorptions are found in the FTIR-PAS spectra comparing with FTIR transmittance absorptions. Comprehensively, FTIR-PAS spectroscopy shows more merits in the characterization of soil clays among the three infrared techniques. The FTIR-PAS was applied to charactrize three soil types, i. e, black soil from Hailun (north of China), yellow soil Changwu (west of China) and red soil from Qiyang (south of China); Hailun soil was characterized as montmorillonite type soil with medium calcium carbonate content, Changhu soil was characterized as montmorillonite/illite type soil with high calcium carbonate content, and Qiyang soil was characterized as kaolin type soil with low calcium carbonate content.
机译:土壤鉴定取决于一系列土壤农业化学性质的测定,昂贵且耗时。土壤粘土矿物是土壤中最重要的成分之一,土壤粘土的资格在土壤鉴定中起主要作用。土壤粘土的化学分析是耗时的,而红外光谱法似乎很有前途。在本研究中,表征三种来源粘土矿物质,I。 e。使用三种中红外光谱技术(减毒的总反射率(FTIR-ATR),透射光谱和光声光谱(FTIR-PAS)制造了伊利石。对于三种源粘土的FTIR透射谱法,存在三个主要吸收区:3000-3800cm-1,1300-1800cm-1和500-1200cm-1,每个区域都可以找到尖锐的差异;对于三个源粘土的FTIR-ATR光谱,在那里是具有在800〜1200 -1的区域微小的差别吸收;对于三个源粘土的FTIR-PAS光谱,也有三个相似的吸收区作为FTIR透射光谱,但是更多的吸收是在FTIR-PAS发现与FTIR透射率吸收相比的光谱。全面地,FTIR-PAS光谱表现出三种红外技术的土壤粘土的表征更有优点。FTIR-PAS应用于Charactzz三种土壤类型,即来自海伦的黑土(北作者:王莹,王莹,王莹,王莹,王莹,王海伦土的特征是含有中碳酸钙含量的Montmorillonite型土壤,常湖土壤以碳酸钙含量高的蒙脱石/伊尔硫酸型土壤为特征,​​齐阳土壤被称为高岭土型土壤碳酸钙含量低。

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