郴州市典型土壤的发生特性及其在中国土壤系统分类的归属
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Typical soil genetic characteristics in Chenzhou City and their attributions to Chinese Soil Taxonomy
  • 作者:于康 ; 欧阳宁相 ; 张杨珠 ; 盛浩 ; 周清 ; 黄运湘 ; 罗兰芳 ; 袁红
  • 英文作者:YU Kang;OUYANG Ning-xiang;ZHANG Yang-zhu;SHENG Hao;ZHOU Qing;HUANG Yun-xiang;LUO Lan-fang;YUAN Hong;College of Resources and Environment,Hunan Agricultural University;
  • 关键词:典型土壤 ; 诊断层 ; 诊断特性 ; 中国土壤系统分类 ; 郴州市
  • 英文关键词:typical soil;;diagnostic horizon;;diagnostic characteristics;;Chinese Soil Taxonomy;;Chenzhou City
  • 中文刊名:NXDH
  • 英文刊名:Research of Agricultural Modernization
  • 机构:湖南农业大学资源环境学院;
  • 出版日期:2019-01-15
  • 出版单位:农业现代化研究
  • 年:2019
  • 期:v.40;No.230
  • 基金:国家科技基础性工作专项(2014FY110200);; 湖南省教育厅科学研究项目(16C0775)~~
  • 语种:中文;
  • 页:NXDH201901020
  • 页数:10
  • CN:01
  • ISSN:43-1132/S
  • 分类号:171-180
摘要
为了探明湖南省郴州市典型土壤在中国土壤系统分类中的归属,选取郴州市8个典型土壤剖面,通过查阅资料、野外调查取样和室内分析,参照《中国土壤系统分类检索(第三版)》和中国土壤系统分类土族和土系的划分标准,确定其诊断层、诊断特性及在中国土壤系统分类中的归属。结果表明:8个典型供试土壤剖面含有暗瘠表层、淡薄表层、黏化层、低活性富铁层、雏形层5个诊断层,铁质特性、铝质现象、准石质接触面、土壤水分状况(常湿润、湿润)、土壤温度状况(热性)5个诊断特性与现象;由此检索出富铁土、淋溶土、雏形土、新成土4个土纲;湿润富铁土、湿润淋溶土、常湿雏形土、湿润雏形土、正常新成土5个亚纲;黏化湿润富铁土、铝质湿润淋溶土、铁质湿润淋溶土、酸性常湿雏形土、铁质湿润雏形土、湿润正常新成土6个土类;普通黏化湿润富铁土、普通铝质湿润淋溶土、红色铁质湿润淋溶土、铁质酸性常湿雏形土、红色铁质湿润雏形土、普通铁质湿润雏形土、普通湿润正常新成土7个亚类;黏壤质硅质混合型酸性热性—普通铁质湿润雏形土等8个土族;建立了上洞系(43-CZ01)、五一系(43-CZ02)等8个土系。此研究实现了郴州市典型土壤在中国土壤系统分类中的归属,对中国土壤系统分类中的土壤水分状况提出建议;增添了郴州市多种类型土壤的基础属性信息,为土壤调查制图和农业生产指导等提供了依据。
        In the present study,eight typical upland soil profiles in Chenzhou City were selected to study the soil genetic characteristics and their attribution to Chinese Soil Taxonomy.After collecting the relevant soil information,field surveying and laboratory analyzing,the diagnostic horizon and characteristics of soils in Chenzhou City were determined and their attribution to Chinese Soil Taxonomy were identified on the base of "the keys to Chinese Soil Taxonomy(3 rd edition)" and "Chinese classification standards of soil family and soil series".Results showed that 5 diagnostic horizons,i.e.,umbric epipedon,ochric epipedon,argic horizon,LAC-ferric horizon and cambic horizon;and 5 diagnostic characteristics and evidences,i.e.,paralithic contact,ferric property,alic evidence,soil moisture regimes(perudic,udic) and soil temperature regimes(thermic) were found in the selected 8 soil profiles.These soils were consequently considered to belong to 4 orders,i.e.,Ferrosols,Argosols,Cambosols and Primosols,5 suborders,i.e.,Udic Ferrisols,Udic Argosols,Perudic Cambisols,Udic Cambisols and Orthic Primosols,6 groups including Agri-Udic Ferrosols,Ali-Udic Argosols,Ferri-Udic Argosols,Acidi-Perudic Cambosols,Ferri-Udic Cambosols and Udi-Orthic Primosols,7 subgroups containing Typic Argi-Udic Ferrosols,Typic Ali-Udic Argosols,Red Ferri-Udic Argosols,Typic Acidi-Perudic Cambosols,Red Ferri-Udic Cambosols,Typic Ferri-Udic Cambosols,Typic Udi-Orthic Primosols,and 8 soil families such asClayey loamy silica mixture acidic thermic-Typic Ferri-Udic Cambosols.Accordingly,8 soil series,such as Shangdong series(43-CZ01) and Wuyi series(43-CZ02),were established.This study ascertained the attribution of typical upland soils in Chenzhou City to Chinese Soil Taxonomy, and putted forward some suggestions on soil moisture status. Furthermore, it enriched the basic property information of various types of soils in Chenzhou City,which provided basis theories in soil investigation and mapping and agricultural production.
引文
[1]龚子同,张甘霖,陈志诚,等.土壤发生与系统分类[M].北京:科学出版社,2007.Gong Z T,Zhang G L,Chen Z C,et al.Pedogenesis and Soil Taxonomy[M].Beijing:Science Press,2007.
    [2]龚子同.中国土壤系统分类的建立和发展[J].土壤学报,1995,32(S1):1-11.Gong Z T.Establishment and development of Soil System Classification in China[J].Acta Pedologica Sinica,1995,32(S1):1-11.
    [3]中国科学院南京土壤研究所土壤系统分类课题组,中国土壤系统分类课题研究协作组.中国土壤系统分类检索(修订方案)[M].北京:中国农业科技出版社,1995.Coordinated by Institute of Soil Science,Chinese Academy of Sciences.Chinese Soil Taxonomy(Revised Proposal)[M].Beijingi:China Agriculture Scientech Press,1995.
    [4]Food and Agriculture Organization of the United Nations.World Reference Base for Soil Resources 2014[M].Rome:FAOpublications,2015.
    [5]Soil Survey Staff in USDA.Key to Soil Taxonomy(12th edition)[M].Washington:United States Government Printing Office,2014.
    [6]陈健飞.福建省土壤分类参比与土壤系统分类检索[J].地球信息科学,2002(1):66-70.Chen J F.Study on soil classification correlation and keys to Soil Taxonomical Classification of Fujian Province[J].GeoInformation Science,2002(1):66-70.
    [7]王晓旭,麻万诸,章明奎.浙江省典型土壤的发生学性质与系统分类研究[J].土壤通报,2013,44(5):1025-1034.Wang X X,Ma W Z,Zhang M K.Genetic characteristics and Taxonomic Classification of the representative soils in Zhejiang Province[J].Chinese Journal of Soil Science,2013,44(5):1025-1034.
    [8]黄佳鸣,麻万诸,章明奎.闽北地区水耕人为土的发生与系统分类研究[J].土壤通报,2013,44(4):769-775.Huang J M,Ma W Z,Zhang M K.Occurrence and Systematic Classification of hydroponic anthropogenic soil in Northern Fujian[J].Chinese Journal of Soil Science,2013,44(4):769-775.
    [9]谈晔,李新平,李文斌,等.陕西省烟叶主产区土壤系统分类研究[J].水土保持通报,2014,34(1):316-320.Tan Y,Li X P,Li W B,et al.Soil Taxonomy in main tobaccoplanting areas of Shaanxi Province[J].Bulletin of Soil and Water Conservation,2014,34(1):316-320.
    [10]李建维,张锦源,陈一民,等.吉林西部典型风砂土的土系分类研究及归属初探[J].土壤与作物,2016,5(1):30-35.Li J W,Zhang J Y,Chen Y M,et al.Preliminary study on classification of typical aeolian sandy soil in the western Jilin Province of China[J].Soils and Crops,2016,5(1):30-35.
    [11]杜蒙,贾树海,丁青坡,等.内蒙古温带半湿润地区典型土壤系统分类及参比[J].内蒙古农业大学学报(自然科学版),2017,38(3):24-29.Du M,Jia S H,Ding Q P,et al.Soil Taxonomy and correlation of in semihumid temperate district of Inner Mongolia[J].Journal of Inner Mongolia Agricultural University(Natural Science Edition),2017,38(3):24-29.
    [12]安红艳,龙怀玉,张认连,等.冀北山地5个土壤发生学分类代表性剖面在系统分类中的归属研究[J].河北农业大学学报,2012,35(4):25-32.An H Y,Long H Y,Zhang R L,et al.The belonging of 5representative genetic soil profiles in the north of Hebei in Chineses Soil Taxonomy[J].Journal of Agricultural University of Hebei,2012,35(4):25-32.
    [13]庄云,武小净,李德成,等.鄂西典型烟区代表性烟田土壤系统分类研究[J].土壤,2015,47(1):183-187.Zhuang Y,Wu X J,Li D C,et al.Soil Taxonomy of typical tobacco fields in west Hubei[J].Soil,2015,47(1):183-187.
    [14]王海燕,庞奖励,黄春长,等.丹江中游河谷黄土母质发育土壤的诊断特征及其系统分类研究[J].土壤通报,2016,47(6):1281-1285.Wang H Y,Pang J L,Huang C C,et al.Diagnostic characteristics of soil developed from loess and its Taxonomic Classification in the middle Danjiang river valley[J].Chinese Journal of Soil Science.2016,47(6):1281-1285.
    [15]夏建国,邓良基,张丽萍,等.四川土壤系统分类初步研究[J].四川农业大学学报,2002(2):117-122.Xia J G,Deng L J,Zhang L P,et al.Study on Soil Taxonomy in Sichuan[J].Journal of Sichuan Agricultural University,2002(2):117-122.
    [16]庄云,武小净,李德成,等.重庆典型烟区代表性烟田土壤系统分类研究[J].土壤,2013,45(6):1142-1146.Zhuang Y,Wu X J,Li D C,et al.Soil Taxonomy of typical tobacco fields in Chongqing[J].Soil,2013,45(6):1142-1146.
    [17]章明奎,姚玉才,邱志腾,等.贵州省第四纪红黏土发育土壤的性状及其系统分类研究[J].江西农业学报,2018,30(8):42-48.Zhang M K,Yao Y C,Qiu Z T,et al.Characteristics and Genealogical Classification of soils developed from quaternary red clay in Guizhou[J].Acta Agriculturae Jiangxi.2018,30(8):42-48.
    [18]陈振威,黄玉溢.广西百色右江河谷土壤形成特性及其系统分类[J].安徽农业科学,2012,40(23):11668-11671.Chen Z W,Huang Y Y.Formation characteristics and taxonomy of soils in basic Youjiang river valley in Guangxi[J].Journal of Anhui Agricultural Sciences,2012,40(23):11668-11671.
    [19]张骏达,孙向阳,刘艳,等.海南省儋州市砖红壤在中国土壤系统分类的归属研究[J].广东农业科学,2015,42(10):46-52.Zhang J D,Sun X Y,Liu Y,et al.Attribution of laterite of Danzhou,Hainan Province in Chinese Soil Taxonomy[J].Guangdong Agricultural Sciences,2015,42(10):46-52.
    [20]欧阳宁相,张杨珠,盛浩,等.湘东地区板岩红壤在中国土壤系统分类中的归属[J].湖南农业科学,2017(4):68-74.Ouyang N X,Zhang Y Z,Shen H,et al.The attribution of the stale red soil in Chinese Soil Taxonomy in eastern Hunan[J].Hunan Agricultural Sciences,2017(4):68-74.
    [21]张甘霖,王秋兵,张凤荣,等.中国土壤系统分类土族和土系划分标准[J].土壤学报,2013,50(4):826-834.Zhang G L,Wang Q B,Zhang F R,et al.Criteria for establishment of soil family and soil series in Chinese Soil Taxonomy[J].Acta Pedologica Sinica,2013,50(4):826-834.
    [22]罗贞礼.可持续发展背景下区域农业结构调整研究--以南方丘陵山区郴州市为例[D].长沙:湖南农业大学,2004.Luo Z L.Study on regional agricultural structure adjustment under the background of sustainable development:A case study of Chenzhou City in the hilly area of south China[D].Changsha:Hunan Agricultural University,2004.
    [23]湖南农业厅.湖南土壤[M].北京:农业出版社,1989.Hunan Agriculture Department.Hunan Soils[M].Beijing:Agriculture Press,1989.
    [24]湖南农业厅.湖南土种志[M].北京:农业出版社,1987.Hunan Agriculture Department.Hunan Soil Species[M].Beijing:Agriculture Press,1989.
    [25]张甘霖,李德成.野外土壤描述与采样手册[M].北京:科学出版社,2016.Zhang G L,Li D C.Manual of Soil Description and Sampling[M].Beijing:Science Press,2016.
    [26]张甘霖,龚子同.土壤调查实验室分析方法[M].北京:科学出版社,2012.Zhang G L,Gong Z T.Soil Survey Laboratory Methods[M].Beijing:Science Press,2012.
    [27]董宇博,陆晓辉,王济.贵州省土壤温度状况估算[J].地球与环境,2016,44(2):243-247.Dong Y B,Lu X H,Wang J.Prediction of soil temperatures in Guizhou Province,China[J].Earth and Environment,2016,44(2):243-247.
    [28]中国科学院南京土壤研究所土壤系统分类课题组,中国土壤系统分类课题研究协作组.中国土壤系统分类检索(第三版)[M].合肥:中国科学技术大学出版社,2001.Coordinated by Institute of Soil Science,Chinese Academy of Sciences.Chinese Soil Taxonomy(3th edition)[M].Hefei:The University of Science and Technology of China Press,2001.
    [29]郭琳娜,何中俊,龙兴智,等.玉龙雪山土壤发生特性及其系统分类研究[J].广西农业科学,2009,40(9):1177-1183.Guo L N,He Z J,Long X Z,et al.Genetic characteristics and taxonomy of soil in the Yulong snow mountain[J].Guangxi Agricultural Sciences,2009,40(9):1177-1183.
    [30]王薇,黄景,银秋玲.广西大明山垂直带土壤理化性质及其系统分类[J].浙江农业科学,2016,57(9):1548-1554.Wang W,Huang J,Yin Q L.Soil physical and chemical properties and systematic classification of vertical belt in Daming mountain,Guangxi[J].Journal of Zhejiang Agricultural Sciences,2016,57(9):1548-1554.