...
首页> 外文期刊>Australian Journal of Soil Research >Effect of partial removal of adsorbed humus on kinetics of potassium and silica release by tartaric acid from clay-humus complex from two dissimilar soil profiles
【24h】

Effect of partial removal of adsorbed humus on kinetics of potassium and silica release by tartaric acid from clay-humus complex from two dissimilar soil profiles

机译:去除腐殖质对两种不同土壤剖面的粘土-腐殖质复合物中酒石酸释放钾和二氧化硅的动力学的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of this investigation is to study how adsorbed humus on clay minerals affects kinetics of dissolution of clay mineral by an organic acid in terms of K and Si release. Clay-humus complexes were isolated from soil samples collected from different depths of 2 soil profiles from an Inceptisol of North India under long-term rice-wheat and maize-wheat cropping systems. Clay-humus complexes were subjected to repeat extraction with 100mg/L of tartaric acid solutions before and after removal of humus with 30% hydrogen peroxide and the resultant release of potassium and silica was measured. Before removal of humus, K release followed Elovich kinetics for the maize-wheat cropping system.For the rice-wheat cropping system, except surface soil, which followed Elovich kinetics, other subsurface soils followed the power form of kinetic equations. But when humus was partially removed, K release increased exponentially, therelease rate increasing with time. This indicated that for humus-depleted clay, initial release triggered further release of K. Silica was released at a constant rate. The dissolution reaction was incongruent, i.e. the amount of constituents released in solution was not proportional to their mole fraction present in the mineral. X-ray diffraction analysis showed that micaceous mineral was partially dissolved and vermiculite was completely dissolved when humus was partially removed from clay before extraction. This observation indicates that humus adsorbed on clay plays an important role in preventing clay dissolution by organic acids.
机译:这项研究的目的是研究吸附在腐殖质上的腐殖质如何影响有机酸在钾和硅释放方面对粘土矿物的溶解动力学。在长期的稻麦,玉米和小麦种植系统下,从印度北部Inceptisol的2种土壤剖面的不同深度采集的土壤样品中分离出粘土-腐殖质复合物。在用30%过氧化氢除去腐殖质之前和之后,用100mg / L的酒石酸溶液对粘土-腐殖质复合物进行重复萃取,并测量由此产生的钾和二氧化硅的释放。在去除腐殖质之前,玉米-小麦种植系统的钾释放遵循Elovich动力学。对于水稻-小麦种植系统,除表层土壤遵循Elovich动力学外,其他地下土壤遵循动力学方程的幂形式。但是当腐殖质被部分清除时,钾的释放量呈指数增长,释放速率随时间增加。这表明对于腐殖质贫化的粘土,最初的释放触发了钾的进一步释放。二氧化硅以恒定的速率释放。溶解反应不一致,即溶液中释放的成分数量与矿物中存在的摩尔分数不成比例。 X射线衍射分析表明,提取前从粘土中部分去除腐殖质后,云母矿物被部分溶解,ver石被完全溶解。该观察结果表明,吸附在粘土上的腐殖质在防止粘土被有机酸溶解中起重要作用。

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