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印度的主要茶叶产区土壤的主要化学性质
引用本文:T. KARAK,R. Kumar PAUL,R. Kumar BORUAH,I. SONAR,B. BORDOLOI,A. K. DUTTA,B. BORKOTOKY. 印度的主要茶叶产区土壤的主要化学性质[J]. 土壤圈, 2015, 25(2): 316-328
作者姓名:T. KARAK  R. Kumar PAUL  R. Kumar BORUAH  I. SONAR  B. BORDOLOI  A. K. DUTTA  B. BORKOTOKY
作者单位:Upper Assam Advisory Centre,Tea Research Association;Division of Statistical Genetics,Indian Agricultural Statistics Research Institute;Arunachal Advisory Centre,Tea Research Association,Directorate of Trade and Commerce,Government of Arunachal Pradesh
摘    要:Major chemical properties of tea-growing soils are of paramount importance for better management in a sustainable fashion.Therefore,this study was carried out to understand the major soil chemical properties of major tea(Camellia sinensis L.)-growing areas,Dibrugarh and Tinsukia districts,in the state of Assam,India.A total of 991 surface soil samples were collected from 15 large tea estates(TEs) for analysis of their major chemical properties.Soil pH ranged from 3.61 to 6.81.Total organic carbon and total nitrogen ranged from 2.4 to 47.3 and 0.24 to 3.60 g kg-1,respectively.All soils were sufficiently rich in plant-available potassium(as K2O),which ranged from 127.71 to 252.33 mg kg-1,exceeding the amount prescribed for optimum tea yield of > 100 mg kg-1.Plant-available sulfur among soil samples widely varied from 4 to 129 mg kg-1.Results of hierarchical clustering analysis for homogenous grouping of the 15 TEs based on soil chemical properties showed that the 15 TEs could be classified into three distinct groups which consisted of6,8 and 1 TEs,respectively.Based on the Kolmogorov-Smirnov(K-S) test,the best fitted theoretical probability distributions were found out for different soil chemical properties.It could be concluded that a balanced fertilizer application would be needed as a part of tea improvement program using soil chemical test.

关 键 词:organic carbon  plant-available potassium  plant-available sulfur  probability distribution  soil pH  tea estates  total nitrogen

Major soil chemical properties of the major tea-growing areas in India
T. KARAK,R. Kumar PAUL,R. Kumar BORUAH,I. SONAR,B. BORDOLOI,A. K. DUTTA and B. BORKOTOKY. Major soil chemical properties of the major tea-growing areas in India[J]. Pedosphere, 2015, 25(2): 316-328
Authors:T. KARAK  R. Kumar PAUL  R. Kumar BORUAH  I. SONAR  B. BORDOLOI  A. K. DUTTA  B. BORKOTOKY
Affiliation:1Upper Assam Advisory Centre, Tea Research Association, Dikom 786101 (India)2Division of Statistical Genetics, Indian Agricultural Statistics Research Institute, New Delhi 110012 (India)3 Arunachal Advisory Centre, Tea Research Association, Directorate of Trade and Commerce, Government of Arunachal Pradesh, Itanagar 791111 (India)
Abstract:Major chemical properties of tea-growing soils are of paramount importance for better management in a sustainable fashion. Therefore, this study was carried out to understand the major soil chemical properties of major tea (Camellia sinensis L.)-growing areas, Dibrugarh and Tinsukia districts, in the state of Assam, India. A total of 991 surface soil samples were collected from 15 large tea estates (TEs) for analysis of their major chemical properties. Soil pH ranged from 3.61 to 6.81. Total organic carbon and total nitrogen ranged from 2.4 to 47.3 and 0.24 to 3.60 g kg-1, respectively. All soils were sufficiently rich in plant-available potassium (as K2O), which ranged from 127.71 to 252.33 mg kg-1, exceeding the amount prescribed for optimum tea yield of > 100 mg kg-1. Plant-available sulfur among soil samples widely varied from 4 to 129 mg kg-1. Results of hierarchical clustering analysis for homogenous grouping of the 15 TEs based on soil chemical properties showed that the 15 TEs could be classified into three distinct groups which consisted of 6, 8 and 1 TEs, respectively. Based on the Kolmogorov-Smirnov (K-S) test, the best fitted theoretical probability distributions were found out for different soil chemical properties. It could be concluded that a balanced fertilizer application would be needed as a part of tea improvement program using soil chemical test.
Keywords:organic carbon   plant-available potassium   plant-available sulfur   probability distribution   soil pH   tea estates   total nitrogen
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