Journal of Jilin University(Earth Science Edition) ›› 2021, Vol. 51 ›› Issue (3): 877-886.doi: 10.13278/j.cnki.jjuese.20200073

Previous Articles     Next Articles

Geochemical Evaluation Method of Soil Quality in Yimeng Mountain Area

Kang Pengyu1, Liu Chuanpeng1,2,3, Liang Cheng1, Feng Aiping1, Liu Tong1, Zong Chuanpan1   

  1. 1. The 7th Institute of Geology & Mineral Exploration of Shangdong Province, Linyi 276006, Shandong, China;
    2. Key Laboratory of Metallogenic Mechanism and Exploration of Diamonds in Shandong Province, Linyi 276006, Shandong, China;
    3. Academician Workstation of Diamond Metallogenic Mechanism and Exploration in Shandong Province, Linyi 276006, Shandong, China
  • Received:2020-03-30 Online:2021-05-26 Published:2021-06-07
  • Supported by:
    Supported by the Project of Shandong Provincial Bureau of Geology&Mineral Resources (KY201802) and the Project of Department of Natural Resources of Shandong Province ((2019) No.42)

Abstract: In order to establish an soil quality evaluation method with special geological background in Yimeng Mountain area of Linyi City, Shandong Province, a total of 1 029 soil samples were collected in the southwest of Yinan County, and 29 indexes of N, P, K, B, Mn, Mo, Se, I, Ge, F, Zn, Cu, Co, V, As, Cr, Cd, Hg, Pb, Ni, organic matter, pH, Sr, Na, Ca, Si, Mg, Tl, Ti were analyzed. Based on the analysis and test results, the evaluation system composed of soil nutrient index and environmental index was established. The geochemical evaluation and research of spatial distribution of soil quality in this area were conducted. The results showed that most of the soil quality in the whole area are good and medium (the soil environment is clean, the soil nutrient is rich or medium), the soil fertility in the middle of the study area is good (w(N)>0.10%,w(P)>0.06%,w(K)>2.50%), the fertility in the mountainous areas in the southwest and northeast of the study area is poor (w(N)<0.075%), thus the overall soil quality grade is low. The content of N, B and organic matter in about 80% of the soil of the whole region is not enough to meet the needs of conventional agricultural production. However,the soil environmental quality level in the area is generally good, and the distribution of heavy metals is controlled by the geological background.

Key words: soil quality, geochemical evaluation, Yimeng Mountain area

CLC Number: 

  • P57
[1] 土地质量地球化学评价规范:DZ/T 2095-2016[S].北京:地质出版社,2016:26-27. Code for Geochemical Evaluation of Land Quality:DZ/T 2095-2016[S]. Beijing: Geological Publishing House, 2016:26-27.
[2] 朱永恒,濮励杰,赵春雨.土地质量的概念及其评价指标体系研究[J].国土与自然资源研究,2005(2):31-33. Zhu Yongheng, Pu Lijie, Zhao Chunyu. Study on the Concept of Land Quality and Its Evaluation Index System[J].Land and Natural Resources Research,2005(2):31-33.
[3] 路婕,李玲,吴克宁,等.基于农用地分等和土壤环境质量评价的耕地综合质量评价[J].农业工程学报,2011,27(2):323-329. Lu Jie, Li Ling, Wu Kening, et al. Comprehensive Quality Assessment of Cultivated Land Based on Farmland Classification and Soil Environmental Quality Assessment[J].Journal of Agricultural Engineering,2011,27(2):323-329.
[4] 温晓华.省级、市县级、乡镇级土地质量地球化学评估方法及典型地区成果分析[J].上海地质,2013(4):71-76. Wen Xiaohua. Geochemical Evaluation Method of Land Quality at Provincial, City, County and Township Level and Analysis of Typical Regional Results[J]. Geology of Shanghai, 2013(4): 71-76.
[5] 孙淑梅,张连志,闫东.吉林省德惠-农安地区土地质量地球化学评估[J].现代地质,2008,22(6):998-1002. Sun Shumei, Zhang Lianzhi, Yan Dong. Experimental Study on Method and Technique of Land Quality Geochemical Assessment [J]. Modern Geology,2008,22(6):998-1002.
[6] 于成广,杨忠芳,杨晓波,等.土地质量地球化学评估方法研究与应用:以盘锦市为例[J].现代地质,2012,26(5):873-878. Yu Chengguang, Yang Zhongfang, Yang Xiaobo, et al. Study and Application of Geochemical Assessment Methods for Land Quality: A Case Study of Panjin City[J]. Modern Geology,2012,26(5):873-878.
[7] 任家强,汪景宽,杨晓波,等.辽河中下游平原土地质量地球化学评价及空间分布研究[J].沈阳农业大学学报,2011,37(4):208-211. Ren Jiaqiang, Wang Jingkuan, Yang Xiaobo, et al. Geochemical Evaluation and Spatial Distribution of Land Quality in the Middle and Lower Reaches of the Liaohe River[J]. Journal of Shenyang Agricultural University,2011,37(4):208-211.
[8] 陶春军,贾十军,梁红霞,等.安徽省滁州地区土地质量地球化学评估研究[J].地质调查与研究,2014(1): 61-67. Tao Chunjun, Jia Shijun, Liang Hongxia, et al. Geochemical Assessment of Land Quality in Chuzhou Area, Anhui Province[J].Geological Survey and Research,2014(1):61-67.
[9] 刘军保,黄春雷,岑静,等.土地质量地球化学评估方法研究:以慈溪市为例[J].火山地质与矿产,2010(1):50-59. Liu Junbao, Huang Chunlei, Cen Jing, et al. Study on Geochemical Assessment Method of Land Quality: Cixi City as an Example[J].Volcanic Geology and Mineral Resources,2010(1):50-59.
[10] 杨忠芳,余涛,侯青叶,等.海南岛农田土壤Se的地球化学特征[J].现代地质,2012,26(5):837-849. Yang Zhongfang, Yu Tao, Hou Qingye, et al. Geochemical Characteristics of Se in Farmland Soil of Hainan Island[J].Modern Geology,2012,26(5):837-849.
[11] 高宇,杨忠芳,张玲燕,等.运用地球化学调查数据研究银川盆地土壤环境污染程度[J].现代地质,2012,26(5):972-974. Gao Yu, Yang Zhongfang, Zhang Lingyan, et al. Using Geochemical Survey Data to Study Soil Environmental Pollution Degree in Yinchuan Basin[J]. Modern Geology,2012,26(5):972-974.
[12] 庞绪贵,宋娟娟,代杰瑞,等.日照市土壤地球化学元素分布规律及成因探讨[J].山东国土资源,2018,34(4):44-50. Pang Xugui, Song Juanjuan, Dai Jierui, et al. Distribution and Genesis of Soil Geochemical Elements in Rizhao City[J].Shandong Land and Resources,2018, 34(4):44-50.
[13] 邱成贵.山东省成武县土壤地球化学特征及土地质量现状[J].山东国土资源,2016,32(9):38-45. Qiu Chenggui. Soil Geochemical Characteristics and Land Quality Status in Chengwu County, Shandong Province[J].Shandong Land Resources,2016,32(9):38-45.
[14] 王增辉,王存龙,赵西强,等.山东省黄河下游流域土地质量地球化学评估及方法研究[J].物探与化探,2013,37(4):743-748. Wang Zenghui, Wang Cunlong, Zhao Xiqiang, et al. Geochemical Assessment and Method Study of Land Quality in the Lower Yellow River Basin of Shandong Province[J].Geophysical and Geochemical Exploration,2013,37(4):743-748.
[15] 王增辉,谢颂诗,王红晋,等.山东省巨野县土壤B和Mo地球化学特征及有效态的周期变化[J].山东国土资源,2016,32(4):52-56. Wang Zenghui, Xie Songshi, Wang Hongjin, et al. Geochemical Characteristics of Soil B and Mo in Juye County, Shandong Province and Periodic Changes of Available State[J].Shandong Land and Resources,2016, 32(4):52-56.
[16] 单承恒,王政,史长浩. 基于综合等级划分方法的土地质量地球化学评价:以吉林省乌拉街镇为例[J].吉林大学学报(地球科学版),2019,49(3):817-829. Shan Chengheng, Wang Zheng, Shi Changhao. Geochemical Assessment of Land Quality Based on Comprehensive Grading Method:A Case Study of Wulajie Town in Jilin Province[J]. Journal of Jilin University (Earth Science Edition),2019,49(3):817-829.
[17] 李玉超, 王诚煜, 于成广.辽宁丹东地区土壤Se元素地球化学特征及其影响因素[J].吉林大学学报(地球科学版), 2020, 50(6):1766-1775. Li Yuchao, Wang Chengyu, Yu Chengguang. Geochemical Characteristics and Influencing Factors of Selenium in Soil from Dandong Area, Liaoning Province[J]. Journal of Jilin University (Earth Science Edition), 2020, 50(6):1766-1775.
[18] 杨思宇, 江海洋, 曹艳玲, 等. 山东菏泽定陶地区土壤元素地球化学特征[J]. 世界地质, 2019, 38(3):867-878. Yang Siyu, Jiang Haiyang, Cao Yanling, et al. Soil Geochemistry in Dingtao Area of Heze, Shandong[J]. Global Geology, 2019, 38(3):867-878.
[1] Zhang Guishan, Qiu Hongxin, Wen Hanjie, Peng Ren, Meng Qiankun. Geochemical Characteristics and Geological Significance of Cobalt in Cobalt-Rich Sulfide of Hongge V-Ti Magnetite Ore Field, Panxi [J]. Journal of Jilin University(Earth Science Edition), 2021, 51(6): 1740-1752.
[2] Shi Jizhong, Niu Yazhuo, Xu Wei, Song Bo, Wang Baowen. Geochemical Characteristics and Sedimentary Environment of Carboniferous Baishan Formation Carbonate in Shibanquanxi of Yingen-Ejin Banner Basin [J]. Journal of Jilin University(Earth Science Edition), 2021, 51(3): 680-693.
[3] Dong Juan, Li Chenglu. Thermoelectric Characteristics of Pyrite from Yongxin Gold Deposit, Xing'an Great Range and Its Indicative Significance [J]. Journal of Jilin University(Earth Science Edition), 2021, 51(1): 95-106.
[4] Dong Jinkun, Yang Mei, Wu Zhiyuan, Qin Shan, Wang Yuwei. Systematic Mineralogy Data Characteristics and Database Construction [J]. Journal of Jilin University(Earth Science Edition), 2019, 49(3): 727-736.
[5] Yuan Hongqi, Wang Lei, Yu Yinghua, Zhang Dongjie, Xu Fengming, Liu Haitao. Review of Sedimentary Grain Size Analysis Methods [J]. Journal of Jilin University(Earth Science Edition), 2019, 49(2): 380-393.
[6] Zhang Yan, Han Runsheng, Wei Pingtang, Qiu Wenlong. Fluid Inclusion Features and Physicochemical Conditions of the Kuangshanchang Pb-Zn Deposit, Huize, Yunnan Province [J]. Journal of Jilin University(Earth Science Edition), 2017, 47(3): 719-733.
[7] Liu Lihong, Du Xiaodi, Xu Shouli, Wen Huaguo. Characteristics and Formation of the Cambrian Dolomite in Middle-South Sichuan Basin, China [J]. Journal of Jilin University(Earth Science Edition), 2017, 47(3): 775-784.
[8] Hao Libo,Wu Chao,Sun Liji,Jiang Yanming,Zhao Yuyan,Lu Jilong,Li Jie. Re-Os Isotope Characteristics of Hongqiling Cu-Ni Sulfide Deposit in Jilin Province and Its Significance [J]. Journal of Jilin University(Earth Science Edition), 2014, 44(2): 507-517.
[9] Jiang Xiping, Wu Fenghuang, Jiang Yu, Xiu Liancun. Hyper-Spectral Mineral Abundance Inversion Based on FastICA Algorithm [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(5): 1681-1686.
[10] Han Shijiong,Sun Jinggui,Xing Shuwen,Zhang Zengjie,Chai Peng,Yang Fan,Qiu Dianming. Genetic Types, Metallogenic Epoch and Geodynamic Settings of Endogenetic Gold Deposits in the Continental Margin,Northeast China [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(3): 716-733.
[11] Yu Jie-jiang, Hu Da-qian,Zhang Jia-hui. Genetic Chariciterics of the Illite from the Upper Paleozoic Group in Heilongjiang Province and Its Geological Significance [J]. Journal of Jilin University(Earth Science Edition), 2012, 42(6): 1817-1824.
[12] SONG Dan, HUANG Fei, CHEN Lin, LI Guang-lu, LIN Jia-lei, LI Jian-yuan, DONG Yu, CHENG Qiu-ming, WANG Yong-qan. Microstructure of Sheet and Flake Pyrite Crystals in Hydrothermal Conditions [J]. J4, 2012, 42(4): 1084-1089.
[13] JIA Da-cheng, TANG Shuo, PEI Yao, GAO Wen, SONG Yun-hong, GUO Wei, ZHANG Chuan-le. Prospecting Significance and Geochemical Characteristics of the Pyrites in Jincang Mineralized Belt|Yanbian, Jilin Province [J]. J4, 2012, 42(4): 1069-1075.
[14] WANG Yu-ji, XU Shuang-ying, ZHAO Yi-xin, JIANG Yin-shan. Photocatalytic Properties of TiO2/Tourmaline Composite [J]. J4, 2012, 42(2): 514-518.
[15] HU Da-qian, LIU Yue, HONG Yan, XIE Xiao-ting. Research on Coexisting Clay Minerals in the Upper Paleozoic Argillaceous Rocks in Northeast China [J]. J4, 2011, 41(5): 1458-1465.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] LIU Hang-jun,LIU Zhi-hong,FENG Yong-jiu, REN Yan-guang, LI Chun-bai. Structural Characteristics and Deformation Sequence of the Urxun Sag in Hailaer Basin, China[J]. J4, 2006, 36(02): 215 -0220 .
[2] YANG Jun-peng, HU Ke, LIU Yu-ying. The Stable Carbon Isotopic Characteristics of Carbonates in Salini alkani Soil in the West Jilin Province[J]. J4, 2006, 36(02): 245 -0249 .
[3] LIU Zhao-shun, SHANG Jin-cheng, XU Wen-liang, JIN Ke. Analysis of Coordinated Development Between Resourceful County Economy and Ecoenvironment in Eastern Jilin Province[J]. J4, 2006, 36(02): 265 -0269 .
[4] LIU Jin-hui, SUN Zhan-xue, SHI Wei-jun. The Discussions on Some Problems of Sandstone Type Uranium Ore by Using Uranium Isotopes[J]. J4, 2006, 36(04): 516 -520 .
[5] TANG Jie, L Chuan, LI Zhao-yang, WANG Chen-ye, ZHANG Jing-cheng,LI Hai-yi. Evaluation of Eco-Environmental Quality Based on Coupling of Gray-Clustering and 3S Method-A Case Study on Da’an, Jilin Province[J]. J4, 2008, 38(6): 1037 -1043 .
[6] SHU Long-cang, LI Wei. Analysis on the Stochastic Characteristic of the Hydrauic Conductivity of Bottom Stratum, Beitang Reservoir, Tianjin City[J]. J4, 2007, 37(2): 216 -0220 .
[7] WANG Jin-sheng,TENG Yan-guo,WU Dong-jie. Numerical Simulation Model of Immobile Water and Non-Equilibrium Sorption on the Solute Transport-MIENESOR[J]. J4, 2007, 37(2): 266 -270 .
[8] SU Xiao-si, LIN Xue-yu, DONG Wei-hong, WAN Yu-yu. Application of Inverse Geochemical Modeling in the Correction of Groundwater 14C Dating:advances and Thoughts[J]. J4, 2007, 37(2): 271 -277 .
[9] LI Xue-ping, TANG Hui-ming. Application of GIS[CD*2]Based Grouped Data Logistic Model in Evaluation of Slope Stability[J]. J4, 2005, 35(03): 361 -0365 .
[10] YANG Chun-mei, LI Hong-qi,LU Da-wei,ZHANG Fang-li,GAO Yuan,SHAO Ying-chao. The Relationship Between Rock Resistivity and Water Saturation in WaterDriveOil and OilDriveWater Process[J]. J4, 2005, 35(05): 667 -671 .