Contamination characteristics and health risk assessment of heavy metals in soil and tea in the Jiaodong main tea producing area
CSTR:
Author:
Affiliation:

1.Haiyang Center for Disease Control and Prevention,Shandong Haiyang 265100,China;2.Shandong Agricultural And Engineering University, Shandong Zibo 255300,China;3.Yantai Center for Disease Control and Prevention, Shandong Yantai 264003,China;4.Shandong Agricultural University,Shandong Tai’an 271018,China;5.Shandong Provincial Marine Geological Survey Institute, Shandong Yantai 264004,China;6.Shandong Third Geological and Mineral Exploration Institute, Shandong Yantai 264004,China;7.Yantai Penglai District Center for Disease Control and Prevention, Shandong Yantai 265600,China

Clc Number:

R155

  • Article
  • | |
  • Metrics
  • |
  • Reference [44]
  • | | | |
  • Comments
    Abstract:

    Objective This study aimed to analyze the contamination characteristics of heavy metals in soil and tea leaves in the Jiaodong hilly tea-producing areas.Methods A total of 340 soil samples and 173 tea samples from 2015 to 2021 were collected from Haiyang, Shandong Province. The contents of Pb, Cd, total Hg, and total As were detected. The single-factor contamination index method, the Nemerow comprehensive contamination index method, and the Target Hazard Quotient were used to evaluate the contamination level according to the grading standard of agriculture product quality. Pearson correlation analysis and principal component analysis were used to analyze the relationship between heavy metals and their sources in soil and tea.Results The average contents of Pb, Cd, As, and Hg were 29.00, 0.107, 8.852, and 0.023 mg/kg, respectively, and Pb content was the highest in the study area soil. The average value of all heavy metal elements did not exceed the limit value in GB 15618—2018 [the standard for the control of soil pollution risk of agricultural land (Trial)], while the maximum values of Pb and Cd exceeded the national standard. The average values of As and Pb exceeded or reached the background values for soil in the eastern Shandong Province. The average and maximum values of heavy metal elements in tea did not exceed GB 2762—2017 (National standard for food safety-limit of pollutants in food and limit of Cr, Cd, Hg, As, and fluoride in tea). The average contents of Pb, Cd, Hg, and As in tea were 0.286, 0.041, 0.001, and 0.037 mg/kg, respectively. The detection rates of Pb, Cd, Hg, and As were 95.95%, 96.53%, 13.87%, and 30.64% in tea, respectively. The mean value of heavy metals in tea decreased in the order of Pb > Cd > As > Hg. The single factor pollution index of the four elements was less than 0.6, PPb (0.057 2) > PCd (0.041 7) > PAs (0.018 7) > PHg (0.005 3), and all values were at the safe level. The comprehensive pollution index of tea was 0.045 9, and the pollution level was classified as safe. Black tea had higher pollution levels than green tea. Pb and Cd had higher pollutant sharing rates.Conclusion The sources of Cd, Pb, Hg, and As in the soil may have a common origin. As and Pb in soil exhibited mixed sources, while Cd and Hg originate from industrial “three wastes” and agricultural production. The sources of Pb, Cd, Hg, and As in tea have little correlation with heavy metals in the soil. Dietary exposure to heavy metals in tea leaves in the Jiaodong hilly tea-producing areas is at a safe level.

    Reference
    [1] 吴芹瑶, 杨江帆, 林程, 等. 中国茶叶生产布局变迁研究[J]. 茶叶科学, 2022, 42(2): 290-300.WU Q Y, YANG J F, LIN C, et al. Research on the changes of China’s tea production layout[J]. Journal of Tea Science, 2022, 42(2): 290-300.
    [2] 夏魏, 刘志, 邵圣枝, 等. 茶叶与产地环境中稳定同位素和矿物元素特征及其相关性研究[J]. 核农学报, 2020, 34(3): 573-581.XIA W, LIU Z, SHAO S Z, et al. Feature of stable isotope and mineral element composition from tea and its environment with correlation analysis[J]. Journal of Nuclear Agricultural Sciences, 2020, 34(3): 573-581.
    [3] 朱鹏飞, 于春娣, 唐娟, 等. 茶鲜叶中金属元素含量影响因素研究[J]. 食品研究与开发, 2021, 42(21): 1-7.ZHU P F, YU C D, TANG J, et al. Factors influencing the contents of metal elements in tea leaves[J]. Food Research and Development, 2021, 42(21): 1-7.
    [4] 张洋婷, 郗艳丽, 于海涛, 等. 不同品种茶叶及茶水中的重金属含量分析[J]. 吉林医药学院学报, 2015, 36(6): 425-428.ZHANG Y T, XI Y L, YU H T, et al. Analysis of the heavy metal contents in different teas and tea water[J]. Journal of Jilin Medical College, 2015, 36(6): 425-428.
    [5] 徐瑞, 刘守龙, 刘志宇, 等. 不同地区茶叶中微量元素的测定[J]. 大理大学学报, 2013, 12(10): 47-49.XU R, LIU S L, LIU Z Y, et al. The determination of trace elements in three kinds of tea from different places[J]. Journal of Dali University, 2013, 12(10): 47-49.
    [6] 陈世金, 蔡群兴, 赵辉, 等. 常见茶叶中14种元素含量分析及重金属风险评价[J]. 化学通报, 2021, 84(6): 591-595.CHEN S J, CAI Q X, ZHAO H, et al. The content analysis of 14 elements and risk evaluation of heavy metals in common teas[J]. Chemistry, 2021, 84(6): 591-595.
    [7] 中华人民共和国环境保护部和国土资源部. 全国土壤污染状况调查公报[R], 2014. http://www.mep.gov.cn/gkml/hbb/qt/201404/t20140417_270670. htm.Ministry of Environmental Protection and the Ministry of Land. National survey bulletin soil pollution, China[R]. 2014. http://www.mep.gov.cn/gkml/hbb/qt/201404/t20140417_270670. htm.
    [8] YOUNG J L, CAI L. Implications for prenatal cadmium exposure and adverse health outcomes in adulthood[J]. Toxicology and Applied Pharmacology, 2020, 403: 115161.
    [9] SUN Y W, LONG J H, ZHAO J X, et al. Epidemiology, clinical presentation, treatment, and follow-up of chronic mercury poisoning in China: A retrospective analysis[J]. BMC Pharmacology and Toxicology, 2021, 22(1): 1-9.
    [10] KHAIRUL I, WANG Q Q, JIANG Y H, et al. Metabolism, toxicity and anticancer activities of arsenic compounds[J]. Oncotarget, 2017, 8(14): 23905-23926.
    [11] 赵佐平, 付静, 岳思羽, 等. 陕南茶园茶叶品质分析及重金属含量现状评估[J]. 农业工程学报, 2020, 36(16): 201-211.ZHAO Z P, FU J, YUE S Y, et al. Analysis of tea quality and assessment of heavy metal content status in tea plantations of southern Shaanxi Province, China[J]. Transactions of the Chinese Society of Agricultural Engineering, 2020, 36(16): 201-211.
    [12] 曹秀荣, 董照锋, 赵宇, 等. 商洛茶叶中重金属含量测定及其健康风险评估[J]. 内蒙古农业大学学报(自然科学版), 2022, 43(2): 50-54.CAO X R, DONG Z F, ZHAO Y, et al. Determination of heavy metals in Shangluo tea and its health risk assessment[J]. Journal of Inner Mongolia Agricultural University (Natural Science Edition), 2022, 43(2): 50-54.
    [13] 肖粤新, 陈彪, 彭志刚, 等. 茶叶与土壤重金属相关性分析及评价——以汨罗市范家园茶场为例[J]. 湖南农业科学, 2021, 432(9): 49-52.XIAO Y X, CHEN B, PENG Z G, et al. Correlation analysis and evaluation of heavy metals in tea and in soil-A case study of Fanjiayuan tea farm in Miluo[J]. Hunan Agricultural Sciences, 2021, 432(9): 49-52.
    [14] 庞磊. 在北方闻秋香品绿茶[N]. 烟台日报, 2022-10-05.PANG L. Smell autumn fragrance and green tea in the north[N]. Daily Yantai, 2022-10-05.
    [15] 于剑峰, 汤世凯, 李金鹏, 等. 山东烟台南部海岸带地区土壤重金属来源、空间分布及潜在风险评价[J]. 山东国土资源, 2019, 35(9): 41-47.YU J F, TANG S K, LI J P, et al. Assessment of sources spatial distribution and ecological risk of heavy metals in soils in the southern coastal zone of Yantai city in Shandong Province[J]. Shangdong Land and Resources, 2019, 35(9): 41-47.
    [16] 国家食品安全风险评估中心. 2016年国家食品污染物和有害因素风险监测工作手册[M]. 北京: 国家食品安全风险评估中心, 2016.National Center for Food Safety Risk Assessment. Manual of national food contamination and harmful factors risk monitoring in 2016[M]. Beijing: National Center for Food Safety Risk Assessment, 2016.
    [17] 范丽霞, 张丙春, 陈璐, 等. 我国金银花主产区花和土壤重金属污染特征及风险评价[J]. 核农学报, 2021, 35(10): 2341-2351.FAN L X, ZHANG B C, CHEN L, et al. Pollution characteristics and risk assessment of heavy metals in honeysuckle and soil from the main producing area in China[J]. Journal of Nuclear Agricultural Sciences, 2021, 35(10): 2341-2351.
    [18] 滑小赞, 程滨, 赵瑞芬,等. 太原市城郊菜地土壤和蔬菜重金属含量特征及健康风险评价[J]. 山西农业科学, 2019, 47(1): 82-87.HUA X Z, CHENG B, ZHAO R F, et al. Concentration characteristic and health risk assessment of heavy metal in vegetable soils and vegetables in suburbs of Taiyuan city[J]. Journal of Shanxi Agricultural Sciences, 2019, 47(1): 82-87.
    [19] 中华人民共和国农业部. 农、畜、水产品污染监测技术规范: NY/T 398—2000[S]. 北京: 中国标准出版社, 2000.Ministry of Agriculture of the People’s Republic of China. Procedural regulations regarding monitoring of pollutants in the produces of agriculture, animal husbandry and fishery: NY/T 398—2000[S]. Beijing: Standards Press of China, 2000.
    [20] 董峰光, 王桂强, 宫春波, 等. 2012—2017年烟台市市售禽畜肉中重金属和β-受体激动剂污染状况及危险性评估[J]. 职业与健康, 2018, 34(6): 764-768.DONG F G, WANG G Q, GONG C B, et al. Pollution status and risk assessment of heavy metals and β-receptor agonist in commercially available livestock and poultry meat in Yantai City from 2012-2017[J]. Occupation and Health, 2018, 34(6): 764-768.
    [21] 顾效源, 孔祥淮, 王伟, 等. 山东丁字湾表层沉积物重金属分布及污染评价[J]. 海洋地质前沿, 2019, 35(3): 13-21.GU X Y, KONG X H, WANG W, et al. Distribution and environment assessment of heavy metals in the sediments of Dingzi bay, Shandong province[J]. Marine Geology Frontiers, 2019, 35(3): 13-21.
    [22] US EPA. Risk-based concentration table[R]. Washington DC: United States Environmental Protection Agency, 2000.
    [23] 成娟, 何智宏, 郭明玲, 等. 甘肃省核桃果仁铅、镉含量及膳食暴露评估[J]. 农产品质量与安全, 2019, 101(5): 61-65.CHENG J, HE Z H, GUO M L, et al. Walnut kernel content of lead, cadmium and dietary exposure assessment of Gansu province[J]. Quality and Safety of Agro-Products, 2019, 101(5): 61-65.
    [24] 杨荞安, 张泽东, 李朝婵, 等. 贵州无籽刺梨果实与种植基地土壤重金属污染评价[J]. 生态毒理学报, 2020, 15(4): 288-298.YANG Q A, ZHANG Z D, LI C C, et al. Evaluation on heavy metals pollution of soil and the Rosa sterilis fruit in plantation bases of Guizhou province[J]. Asian Journal of Ecotoxicology, 2020, 15(4): 288-298.
    [25] 邢仕歌, 雍 炜, 李永亮, 等. 2020年北京市售食用菌中重金属含量及健康风险分析[J]. 食品安全质量检测学报, 2021, 12(16): 6661-6666.XING S G, YONG W, LI Y L, et al. Heavy metals content and human health risks of edible mushrooms sold in Beijing[J]. Journal of Food Safety and Quality, 2021, 12(16): 6661-6666.
    [26] BENNETT D H, KASTENBERG W E, MCKONE T E. A multimedia, multiple pathway risk assessment of atrazine: The impact of age differentiated exposure including joint uncertainty and variability[J]. Reliability Engineering & System Safety, 1999, 63(2): 185-198.
    [27] 李艳霞, 李含芬, 赵磊, 等. 消费者日常茶叶饮用习惯对健康的影响[J]. 农学学报, 2017, 7(2): 91-95.LI Y X, LI H F, ZHAO L, et al. Effects of consumers’ daily tea drinking habits on health[J]. Journal of Agriculture, 2017, 7(2): 91-95.
    [28] 朴建华, 霍军生. 中国居民营养与健康状况监测报告-之二-2010—2013年居民体质与营养状况[M]. 北京: 人民卫生出版社, 2019.PIAO J H, HUO J S. Monitoring report on nutrition and health status of Chinese residents - Part 2- Physical and nutritional status of residents from 2010 to 2013[M]. Beijing: People’s Medical Publishing House, 2019.
    [29] 王慧, 毛伟峰, 蒋定国, 等. 中国居民水产品中四种常见重金属暴露评估[J]. 中国食品卫生杂志, 2019, 31(5): 470-475.WANG H, MAO W F, JIANG D G, et al. Risk assessment of specific heavy metals exposure to aquatic products in China[J]. Chinese Journal of Food Hygiene, 2019, 31(5): 470-475.
    [30] 马宁, 王慧, 毛伟峰, 等. 水产品重金属风险分级模型建立及应用[J]. 中国食品卫生杂志, 2020, 32(3): 294-300.MA N, WANG H, MAO W F, et al. Establishment and application of health risk ranking model for heavy metals in aquatic products[J]. Chinese Journal of Food Hygiene, 2020, 32(3): 294-300.
    [31] 郑茂钟, 汤秀梅, 叶宏萌. 行道树对武夷山公路边茶园重金属污染的防护效果[J]. 生态与农村环境学报, 2018, 34(4): 371-379.ZHENG M Z, TANG X M, YE H M. Protective effects of roadside tree lines on heavy metals pollution to roadside tea gardens in Wuyishan[J]. Journal of Ecology and Rural Environment, 2018, 34(4): 371-379.
    [32] 高健翁, 龚晶晶, 杨剑洲, 等. 海南岛琼中黎母山—湾岭地区土壤重金属元素分布特征及生态风险评价[J]. 地质通报, 2021, 40(5): 807-816.GAO J W, GONG J J, YANG J Z, et al. Spatial distribution and ecological risk assessment of heavy metal pollution in the soil of Limu Mountain-Wanling Town, Qiongzhong, Hainan province[J]. Geological Bulletin of China, 2021, 40(5): 807-816.
    [33] 鲍玉花, 马秀花, 闫世芳, 等. 马铃薯及耕地土壤重金属含量的测定及健康风险评价[J]. 食品安全质量检测学报, 2021, 12(23): 9150-9157.BAO Y H, MA X H, YAN S F, et al. Detection and health risk assessment of heavy mental in potato and cultivated soil[J]. Journal of Food Safety & Quality, 2021, 12(23): 9150-9157.
    [34] WHO. Second workshop on reliable evaluation of low-level contamination of food[R]. Rome: WHO, 1995.
    [35] 张萌, 张银烽, 赵晓慧, 等. 云南省水生蔬菜中5种典型重金属含量特征及健康风险评估[J]. 食品安全质量检测学报, 2022, 13(11): 3710-3718.ZHANG M, ZHANG Y F, ZHAO X H, et al. Content characteristics and health risk assessment of 5 kinds of typical heavy metals in aquatic vegetables of Yunnan province[J]. Journal of Food Safety & Quality, 2022, 13(11): 3710-3718.
    [36] 于奎峰, 刘楠. 2016年-2020年临沂市茶叶中重金属含量调查分析[J]. 中国卫生检验杂志, 2021, 31(22): 2811-2813.YU K F, LIU N. Investigation and analysis of heavy metal contents in tea in Linyi city from 2016 to 2020[J]. Chinese Journal of Health Laboratory Technology, 2021, 31(22): 2811-2813.
    [37] 付鹏钰, 李杉, 杨丽, 等. 河南省茶叶中重金属污染和农药残留状况调查分析[J]. 河南预防医学杂志, 2018, 29(9): 651-653.FU P Y, LI S, YANG L, et al. Heavy metals contamination and pesticide residue in tea in Henan[J]. Henan Journal of Preventive Medicine, 2018, 29(9): 651-653.
    [38] 冷崇姣, 杨针, 彭术, 等. 重庆地产茶叶中重金属含量现状分析与评价[J]. 保健医学研究与实践, 2019, 16(4): 10-14.LENG C J, YANG Z, PENG S, et al. Study on heavy metal content in tea samples from Chongqing[J]. Health Medicine Research and Practice, 2019, 16(4): 10-14.
    [39] 何建军. 黑麦在汞镉污染土壤中的生理特性及对汞镉吸收规律研究[J]. 西安: 长安大学, 2009.HE J J. Study on physiological characteristics of rye in mercury and cadmium contaminated soil and its absorption law of mercury and cadmium[J]. Xi’an: Changan University, 2009.
    [40] 张双银, 吴琳娜, 张广映, 等. 都柳江上游沿岸喀斯特地区土壤重金属污染及健康风险分析[J]. 环境科学学报, 2022, 42(7): 421-433.ZHANG S Y, WU L N, ZHANG G Y, et al. Soil heavy metal pollution analysis and health risk assessment in Karst areas along the upper reaches of the Du Liujiang River[J]. Acta Scientiae Circumstantiae, 2022, 42(7): 421-433.
    [41] 周蓓蓓, 郭江, 陈晓鹏, 等. 基于UNMIX模型的安徽大矾山废弃矿区土壤重金属源解析[J]. 农业工程学报, 2021, 37(24): 240-248.ZHOU B B, GUO J, CHEN X P, et al. Source apportionment of soil heavy metals in abandoned mining areas in Dafan Mountain of Anhui Province based on the UNMIX model[J]. Transactions of the Chinese Society of Agricultural Engineering, 2021, 37(24): 240-248.
    [42] 王存龙, 曾宪东, 刘华峰, 等. 烟台市土壤环境质量现状及重金属元素分布迁移规律[J]. 中国地质, 2015, 42(1): 317-330.WANG C L, ZENG X D, LIU H F, et al. The present situation of soil environmental quality and the distribution and migration regularity of heavy metals in soil of Yantai[J]. Geology in China, 2015, 42(1): 317-330.
    [43] 胡留杰, 周正科. 茶叶中重金属的含量现状及其控制对策[J]. 南方农业, 2010, 5(4): 89-92.HU L J, ZHOU Z K. Present situation of heavy metal content in tea and its control countermeasures[J]. South China Agriculture, 2010, 5(4): 89-92.
    [44] 蒋陈凯, 黄亚辉, 李丹, 等. 土壤元素的测定及其对茶叶浸出液元素的影响[J]. 食品安全质量检测学报, 2015, 6(4): 1250-1256.JIANG C K, HUANG Y H, LI D, et al. Determination of elements in soil and effects on elements in leaching liquid of tea leaves[J]. Journal of Food Safety & Quality, 2015, 6(4): 1250-1256.
    Related
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

GAO Rihong, GAO Yunxiao, DONG Fengguang, SUI Yurong, YU Xuechun, YU Jianfeng, YUAN Wenxing, YAN Xige. Contamination characteristics and health risk assessment of heavy metals in soil and tea in the Jiaodong main tea producing area[J].中国食品卫生杂志,2023,35(8):1174-1182.

Copy
Share
Article Metrics
  • Abstract:439
  • PDF: 986
  • HTML: 331
  • Cited by: 0
History
  • Received:September 09,2022
  • Online: December 13,2023
Article QR Code