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首页> 外文期刊>Moscow University Soil Science Bulletin >Effect of Moisture Deficiency and Increased Salt Content on Silicon State of Some Soils of European Part of Russia and Central China
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Effect of Moisture Deficiency and Increased Salt Content on Silicon State of Some Soils of European Part of Russia and Central China

机译:水分缺乏的影响及盐含量增加对俄罗斯中部欧洲部分土壤硅状态

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摘要

Soluble forms of silicon affect a number of physical, chemical, and biological soil properties. Optimization of silicon nutrition enhances plant tolerance to biotic and abiotic stresses. Current climate change and anthropogenic impacts can alter the soil silicon state. Model laboratory experiments conducted with upper horizons of sod-podzolic soil, gray forest soil under different plant associations, chernozem, paddy soil, and red subtropical soil showed that insufficient soil moistening led to a reduction in soil monosilicic acid by 15 to 36% and simultaneous increases in polysilicic acid by 9 to 45%. Soil cultivation resulted in a decrease in plant-available soil silicon. An increase in NaCl concentration in the soil caused an increase in both monomers and polymers of silicic acid by 6 to 79%. The mobile equilibrium and lability of the numerical values of the parameters of the silicon state of the soil–plant system are revealed. These factors should be taken into account when implementing the 4R-STRATEGY for optimizing mineral nutrition in agricultural crops.
机译:可溶性形式的硅会影响许多物理,化学和生物土壤性质。硅营养的优化增强了对生物和非生物应激的植物耐受性。目前的气候变化和人为影响可以改变土壤硅状态。模型实验室实验室,不同植物关联,Chernozem,水稻土和红色亚热带土壤,灰林土壤,灰林土壤,灰色林土和红色亚热带土壤的实验实验表明,土壤润湿不足导致土壤单硅酸减少15至36%,同时多晶酸增加9至45%。土壤栽培导致植物可用土壤硅含量减少。土壤中NaCl浓度的增加导致硅酸的单体和聚合物的增加6至79%。揭示了土厂系统的硅状态参数的数值的移动平衡和宽度。在执行农业作物中优化矿物营养的4R战略时,应考虑这些因素。

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