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首页> 外文期刊>Journal of the Indian Society of Soil Science >Characterization and Classification of Rice and AssociatedNon-rice Soils of Assam
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Characterization and Classification of Rice and AssociatedNon-rice Soils of Assam

机译:assam稻米和稻米土壤的特征及分类

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Eight soil profiles, four each from mono-cropped rice (PI, P2, P3 and P4) and associated non-rice (NP1, NP2, NP3 and NP4) areas collected from Jorhat, Golaghat, Sivasagar and Dibrugarh districts, respectively in the Upper Brahmaputra valley of Assam were studied for pedogenic characterization. Several variations were observed in morphological, physical and chemical characteristics among rice and associated non-rice soils. Soil colour varied from dark gray (10YR 4/1) to brownish yellow (10YR 6/8) having dominant hue of 10YR and value ranging from 4 to 7 and chroma from 1 to 8. Yellow (10YR 6/8) to light red (2.5YR 6/8) mottles were observed in all horizons both in rice and non-rice profiles except the upper four horizons of NP4. The soil textural class varied from sandy clay loam to clay. Rice soils were dominantly clay loam to clay in texture while non-rice soils were relatively sandy clay loam to silty clay loam. The structures of soils were massive in surface horizons of rice soils and varied from weak to strong, fine to coarse and angular to subangular blocky in the sub-surface horizon of both rice and non-rice soils. Thin clay cutans were observed in sub-surface horizons of all profiles except NP4 while few to abundant Fe-Mn glaebules were found in sub-surface horizons except in NP3 and NP4. Sand, silt and clay contents varied from 11.3-49.0, 21.5-50.8 and 26.2-56.9% in rice and 23.3-65.4, 11.4-42.9 and 14.4-44.4% in non-rice soils, respectively. Organic carbon content in soil varied from 2.0-12.0 and 0.5-10.0 g kg"1 in rice and non-rice soils, respectively. Bulk density of soils increased with soil depth, Soil pH varied from 4.4-6.0 and EC was found to be low (0.11-0.20 dS m1). The CEC of soils varied from 7.5-14.1 cmol(p+)kg-' in rice and5.1-12.7 cmol(p+)kg"' in non-rice soils having dominance of exch. Ca2+ followed by Mg2+, Na+ and K+. The amount of exchange acidity ranged from 0.29-2.02 cmol(p+)kg"' in rice soils and from 0.18-1.49 cmol(p+)kg"' in non-rice soils. Base saturation of soils was low (32.3-57.5%). Soils were classified as Typic Epiaqualfs (PI), Aerie Epiaqualfs (NP1, P2, P3, NP3 and P4), Ultic Hapludalfs (NP2) and Typic Dystrudepts (NP4) at sub-group level.
机译:八种土壤曲线,四种来自Mono-roomped水稻(PI,P2,P3和P4)和相关的非稻米(NP1,NP2,NP3和NP4),分别在鞋面中收集了Jorhat,Golaghat,Sivasagar和Dibrugarh区收集的区域研究了Assam的Brahmaputra谷用于基础特征。在水稻和相关的非米土壤中的形态学,物理和化学特征中观察到几种变化。土壤颜色从深灰色(10YR 4/1)变化,棕黄色(10YR 6/8),其具有10YR的主导色调,值4至7的值,从1至8中的色度为0.黄色(10yr 6/8)到浅红色除了NP4的上部四个视野之外,在水稻和非稻曲线中观察到(2.5yr 6/8)斑点。土壤纹理阶层从沙质粘土壤土变为粘土。米土壤是粘土壤土的粘土壤土,而非米土壤含有相对含沙粘土壤土的粘土壤土。土壤的结构在水稻土的表面视野中,从弱到弱,粗糙和角度较好地变得粗糙,并且在稻米和非米土壤的亚表面地平线中的粗糙和角度。在除NP4之外的所有曲线的亚表面视野中观察到薄的粘土切片,而在NP3和NP4之外,在亚表面视野中发现少量少量Fe-Mn Glaebules。砂,淤泥和粘土含量不同于稻米的11.3-49.0,21.5-50.8和26.2-56.9%,分别在非稻土中的23.3-65.4,11.4-42.9%和14.4-44.4%。土壤中的有机碳含量分别从2.0-12.0和0.5-10.0g kg“1中的水稻和非稻瘟病。土壤的堆积密度随着土壤深度而增加,土壤pH值从4.4-6.0和EC变化低(0.11-0.20 ds m1)。土壤中的CEC在水稻中的7.5-14.1 cmol(p +)kg-'变化,非米土壤中具有exch的非米饭中的5.1-12.7 cmol(p +)kg“'。 CA2 +,后跟Mg2 +,Na +和K +。在水稻土壤中的0.29-2.02 cmol(p +)kg“'的交换酸度范围为0.29-2.02 cmol(p +)kg”',在非米土壤中为0.18-1.49 cmol(p +)kg“。土壤的基础饱和度低(32.3-57.5%)。土壤被归类为典型的Epiaqualfs(PI),Aerie Epiaqualfs(NP1,P2,P3,NP3和P4),Ultic Hapludalfs(NP2)和典型Dystrudepts(NP4),在亚组水平。

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