欢迎访问《中国农学通报》,

中国农学通报 ›› 2012, Vol. 28 ›› Issue (36): 135-141.

所属专题: 玉米

• 农学 农业基础科学 • 上一篇    下一篇

松辽平原玉米带高产土壤钾素状况研究

丁岚 赵兰坡 张志丹 姜亦梅   

  • 收稿日期:2012-01-04 修回日期:2012-03-31 出版日期:2012-12-25 发布日期:2012-12-25
  • 基金资助:

    纤毛虫表膜内表面与射出体、皮层颗粒、色素颗粒的形态学研究

The Research of the Potassium Condition for High Yield Soil of the Corn Belt of the Songliao Plain

  • Received:2012-01-04 Revised:2012-03-31 Online:2012-12-25 Published:2012-12-25

摘要:

为了弄清松辽平原玉米带的基本钾素状况,改良中低产土壤,提高粮食产量,选取位于吉林省梨树县胜利乡、泉眼岭、万发乡、公主岭市永发乡的不同剖面土壤作为供试土壤。通过测定其全钾、速效钾及缓效钾的含量,了解供试土壤的含钾状况及供钾潜力;并采用等温吸附试验和等温解吸试验测定土壤对钾素的吸附量和解吸率,以进一步掌握土壤的钾素状况。供试土壤的吸附特性以Freundlich等温吸附方程进行拟合。结果表明,松辽平原玉米带高产土壤钾素含量丰富,全钾与缓效钾含量较高,速效钾含量适中;高产土壤对钾的吸附强度明显大于其对照土壤,1/n最高为0.9575,最低为0.7341,说明高产土壤对K+的束缚力较弱,而对照土壤对K+的束缚力较强,不利于植物的吸收利用;高产土壤与对照土壤之间吸附钾的解吸率差异大,随着加入液中钾浓度的增加,两者间差异不断减小;当加入液含钾浓度大于0.56 g/L时,解吸率几近于相同。

关键词: 科学技术, 科学技术

Abstract:

In order to make clear the potassium condition of high yield soil of the corn belt of the Songliao plain, and improving food production. Selected different profile soil in located in Lishu County and Shengli Country, Quanyan Mountain of the Jilin Province, and Yongfa Township of Gongzhuling City as the tested soil. Determined by analyzing the content of total potassium, available potassium and slowly available potassium to realize potassium status and potential potassium status of the tested soil. The adsorption character of the tested soil was fitting to freundlich equation. High yield soil of the corn belt of the Songliao plain contained rich potassium; total potassium and slowly available potassium content were higher and available potassium content were moderate; the potassium adsorption strength of high yield soil significantly greater than its reference soil; 0.7341 ≤ 1/n ≤ 0.9575; the bound force to the potassium ion of high yield soil was weaker and be beneficial to plant absorption and utilization. The desorption rate to the adsorption potassium between high yield soil and contrast soil had greater differences. Following increased concentration of potassium in join liquid, the difference became smaller; when potassium concentration was more than 0.56 g/L, the desorption rate was close to the same.

中图分类号: