JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2020, Vol. 44 ›› Issue (4): 102-110.doi: 10.3969/j.issn.1000-2006.201907014
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SHE Xinsong1(), GAN Zhuoting2(
), YAO Ting3, WANG Siqiang1, WANG Yong3
Received:
2019-07-11
Revised:
2019-09-15
Online:
2020-07-22
Published:
2020-08-13
Contact:
GAN Zhuoting
E-mail:sxs@hsu.edu.cn;ztgan73@126.com
CLC Number:
SHE Xinsong, GAN Zhuoting, YAO Ting, WANG Siqiang, WANG Yong. Bioconcentration and distribution of heavy metal elements in the soil⁃tea plant systems of An-tea producing areas[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2020, 44(4): 102-110.
Table 1
Basic information of sampling sites of the tea gardens"
采样带 sample belt | 地貌类型 topography | 海拔 /m elevation | 样带中心点坐标 latitude and longitude | 植茶年限 / a age of tea plant | 路距 / m distance from the road | 河距 / m distance from the river |
---|---|---|---|---|---|---|
Ln | 洲地flat land | 70 | 117°30’36.25″ E 29°41’18.63″ N | 100 | 5 | 12~15 |
Lm | 洲地flat land | 70 | 117°30’35.93″ E 29°41’18.54″ N | 100 | 10 | 7~10 |
Lf | 洲地flat land | 70 | 117°30’ 35.54″E 29°41’18.48 N | 100 | 15 | 2~5 |
Sh | 坡地slope land | 100 | 117°30’43.40″ E 29°41’ 07.33″N | 40 | — | — |
Sm | 坡地slope land | 90 | 117°30’ 42.11″E 29°41’03.33″ N | 40 | — | — |
Sl | 坡地slope land | 80 | 117°30’ 41.34″E 29°41’10.56″ N | 40 | — | — |
CK | 草地grassland | 70 | — | — | — | — |
Table 2
The average content of 8 heavy metal elements in soil?tea plant system"
元素element | 类型 item | 洲地flat land | 坡地slope land | 对照 CK | ||||||
---|---|---|---|---|---|---|---|---|---|---|
Ln | Lm | Lf | Sh | Sm | Sl | |||||
Cr | S | 56.69±17.68 abAB | 40.77±4.09 cB | 42.05±1.39 bcAB | 45.66±10.11 bcAB | 49.97±3.89 abcAB | 63.65±10.29 aA | 41.97±4.03 bcAB | ||
L | 2.02±0.38 bcAB | 1.57±0.23 cB | 1.80±0.24 bcAB | 5.34±2.31 aA | 2.09±1.90 bcAB | 2.68±2.16 bcAB | 4.3±1.35 abAB | |||
Cu | S | 17.31±3.47 abcAB | 16.22±2.18 bcABC | 18.16±1.86 abAB | 14.32±0.76 cdBC | 15.67±1.14 bcBC | 20.04±2.42 aA | 11.64±0.29 dC | ||
L | 8.16±2.54 abA | 4.64±1.84 bA | 8.97±0.68 aA | 6.64±1.97 abA | 7.34±3.55 abA | 5.17±1.78 bA | 5.32±0.64 bA | |||
Zn | S | 149.68±40.76 aA | 123.10±15.62abAB | 65.79±11.3 cdC | 83.47±19.4 cdBC | 78.71±12.82 cdBC | 94.27±18.2 cBC | 49.53±6.11 dC | ||
L | 14.03±2.55 cB | 11.94±1.29 cB | 24.93±5.08 bB | 17.53±5.57 bcB | 11.53±3.66 cB | 10.54±2.8 cB | 106.11±13.12 aA | |||
As | S | 17.41±4.94 cB | 16.55±2.5 cB | 17.43±0.90c B | 36.96±10.74 aA | 24.04±1.69 bcB | 26.93±2.82 bAB | 15.81±0.69 cB | ||
L | 0.06±0.02 aA | — | 0.65±1.11 aA | 0.55±0.3 aA | 0.16±0.13 aA | 0.24±0.08 aA | — | |||
Cd | S | 0.21±0.10 bB | 0.13±0.05 bB | 0.12±0.01 bB | 0.40±0.02 aA | 0.21±0.02 bB | 0.18±0.06 bB | 0.13±0 bB | ||
L | — | — | 0.01±0.01 aA | — | — | — | 0.29±0.26 bB | |||
Pb | S | 24.83±8.29 bcBC | 21.6±5.53 cBC | 20.74±1.54 cC | 42.58±5.81 aA | 32.42±2.06 bAB | 24.69±3.37bcBC | 22.63±1.27 cBC | ||
L | 0.49±0.09 aA | 0.08±0.08 bA | 0.10±0.10 bA | 0.14±0.10 abA | 0.14±0.24 abA | 0.13±0.12 bA | 0.32±0.42 abA | |||
Ni | S | 12.6±4.03 bA | 17.19±2.28 abA | 18.37±0.55 aA | 12.1±0.65 bA | 15.61±2.58 abA | 14.97±5.00 abA | 14.99±2.44 abA | ||
L | 4.36±0.63 bcABC | 4.43±1.2 bcABC | 7.51±3.01 aA | 3.29±1.29 cdBC | 3.52±1.46 cdBC | 6.55±1.29 abAB | 1.15±0.62 dC | |||
Hg | S | 0.20±0.11 aA | 0.21±0.26 aA | 0.22±0.09 aA | 0.07±0.01 aA | 0.13±0.05 aA | 0.08±0.02 aA | 0.07±0.03 aA | ||
L | 0.01±0.00 bA | 0.01±0.00 bA | 0.07±0.06 aA | 0.06±0.02 abA | 0.01±0.00 bA | 0.02±0.01 bA | 0.03±0.01 bA |
Table 3
One?way ANOVA to test the effect of topography on heavy metal elements"
项目item | Cr | Cu | Zn | As | Cd | Pb | Ni | Hg |
---|---|---|---|---|---|---|---|---|
土壤soil | 0.426 5 | 0.775 7 | 0.338 1 | P<0.05 | 0.214 0 | 0.111 6 | 0.426 2 | P<0.01 |
新叶young leaf | 0.696 6 | 0.583 8 | 0.117 2 | 0.053 5 | 0.373 9 | 0.315 1 | 0.250 6 | 0.999 9 |
老叶aging leaf | 0.140 7 | 0.730 7 | 0.995 4 | 0.950 0 | 0.116 1 | 0.764 9 | 0.851 2 | 0.806 2 |
Bf | 0.373 9 | 0.840 9 | 0.754 2 | 0.814 9 | 0.467 6 | 0.378 9 | 0.753 2 | 0.351 1 |
Table 4
One?way ANOVA to test the effect of elevation on heavy metal elements"
项目item | Cr | Cu | Zn | As | Cd | Pb | Ni | Hg |
---|---|---|---|---|---|---|---|---|
土壤 soil | 0.095 6 | P<0.05 | 0.552 7 | 0.108 6 | P<0.01 | P<0.01 | 0.427 0 | 0.130 1 |
新叶 young leaf | 0.370 4 | 0.367 7 | 0.443 8 | 0.279 0 | — | — | 0.446 2 | P<0.01 |
老叶aging leaf | 0.232 4 | 0.588 0 | P<0.05 | 0.144 0 | — | — | 0.062 0 | 0.085 5 |
Bf | 0.146 6 | 0.317 4 | 0.347 5 | 0.210 0 | 0.872 2 | 0.915 9 | 0.235 7 | P<0.05 |
Table5
One?way ANOVA to test the effect of distance away from road elevation on heavy metal elements"
项目item | Cr | Cu | Zn | As | Cd | Pb | Ni | Hg |
---|---|---|---|---|---|---|---|---|
土壤soil | 0.200 4 | 0.674 6 | 0.019 5 | 0.930 4 | 0.267 0 | P<0.05 | 0.084 1 | 0.992 8 |
新叶young leaf | 0.473 7 | 0.070 2 | 0.060 3 | — | — | 0.486 2 | P<0.05 | — |
老叶aging leaf | 0.825 3 | 0.321 2 | 0.057 2 | 0.441 3 | 0.720 9 | 0.211 1 | 0.809 5 | 0.255 1 |
Bf | 0.590 4 | 0.253 6 | P<0.01 | 0.442 1 | 0.743 1 | P<0.05 | 0.422 5 | 0.322 9 |
1 | GRANATO D, PRADO⁃SILVA L D, ALVARENGA V O, et al. Characterization of binary and ternary mixtures of green, white and black tea extracts by electrospray ionization mass spectrometry and modeling of their in vitro antibacterial activity[J]. LWT⁃Food Science and Technology, 2016, 65: 414-420. DOI:10.1016/j.lwt.2015.08.037. |
2 | CABRERA C, GIMÉNEZ R, LÓPEZ M C. Determination of tea components with antioxidant activity[J]. Journal of Agricultural and Food Chemistry, 2003, 51(15): 4427-4435. DOI:10.1021/jf0300801. |
3 | 王峰, 陈玉真, 单睿阳, 等. 茶园土壤与茶叶中镍含量及健康风险评价研究[J]. 茶叶学报, 2019, 60(1):14-20. |
WANG F, CHEN Y Z, SHAN R Y, et al. Nickel in soil and safety of tea⁃drinking[J]. Acta Tea Sinica, 2019, 60(1): 14-20. DOI: 10.3969/j.issn.1007-4872.2019.01.004. | |
4 | CHEN H Y, TENG Y G, LU S J, et al. Contamination features and health risk of soil heavy metals in China[J]. Science of the Total Environment, 2015, 512-513: 143-153. DOI:10.1016/j.scitotenv.2015.01.025. |
5 | DE OLIVERIA L M, DAS S, SILVA E B, et al. Metal concentrations in traditional and herbal teas and their potential risks to human health[J]. Science of the Total Environment, 2018, 633: 649-657. DOI:10.1016/j.scitote nv.2018.03.215. |
6 | LV H P, LIN Z, TAN J F, et al. Contents of fluoride, lead, copper, chromium, arsenic and cadmium in Chinese Pu⁃erh tea[J]. Food Research International, 2013, 53(2): 938-944. DOI:10.1016/j.foodres.2012.06.014. |
7 | JIN C W, ZHENG S J, HE Y F, et al. Lead contamination in tea garden soils and factors affecting its bioavailability[J]. Chemosphere, 2005, 59(8): 1151-1159. DOI:10.1016/j. chemosphere.2004.11.058. |
8 | BEIER E E, MAHER J R, SHEU T J, et al. Heavy metal lead exposure, osteoporotic⁃like phenotype in an animal model, and depression of Wnt signaling[J]. Environmental Health Perspectives, 2013, 121(1): 97-104. DOI:10.1289/ehp.1205374. |
9 | TEPANOSYAN G, SAHAKYAN L, BELYAEVA O, et al. Continuous impact of mining activities on soil heavy metals levels and human health[J]. Science of the Total Environment, 2018, 639:900-909. DOI:10.1016/j.scitote nv.2018.05.211. |
10 | 林跃胜. 皖南茶园土壤重金属形态分布特征及其生物有效性研究[D]. 芜湖:安徽师范大学, 2013. LIN Y S. The speciation and bioavailability of heavy metals in tea garden soils from south Anhui, China[D]. Wuhu: Anhui Normal University, 2013. |
11 | 詹三良. 安茶探源[J]. 茶业通报, 2017,39(1): 36-37. |
ZHAN S L. Exploring the origin of An⁃tea [J]. Journal of Tea Business, 2017, 39(1): 36-37. DOI:10.16015/j.cnki.jteabusiness.2017.0012. | |
12 | 耿其明. 传统历史名茶安茶工艺与品质特征[J]. 安徽农学通报, 2014, 20(8): 169-170. |
GENG Q M. Technology and quality characteristics of traditional historic tea An⁃tea[J]. Anhui Agricultural Science Bulletin, 2014, 20(8): 169-170. DOI:10.16377/j.cnki.issn1007-7731.2014.08.052. | |
13 | 韩艾利, 李立祥, 徐小倩. 安茶品质与化学成分分析[J]. 茶业通报, 2016, 38(2): 79-83. |
HAN A L, LI L X, XU X Q. Quality and chemical composition analysis of An⁃tea [J]. Journal of Tea Business, 2016, 38(2): 79-83. DOI:10.3969/j.issn.1006-5768.2016.02.009. | |
14 | 黄建琴, 王烨军. 安茶品质及其化学成分研究[J]. 中国茶叶加工, 2009 (2): 29-31. |
HUANG J Q,WANG Y J.Research on the quality and chemical composition of An⁃tea[J]. China Tea Processing, 2009 (2): 29-31. DOI:10.15905/j.cnki.33-1157/ts.2009.02.004. | |
15 | 宁井铭, 张春泉, 张正竹. 儿茶素和茶黄素在安茶加工、陈化过程中的变化[J]. 安徽农业大学学报,2016,43(2): 165-169. |
NING J M, ZHANG C Q, ZHANG Z Z. Changes of catechins and theaflavins in An⁃tea during processing and storage[J]. Journal of Anhui Agricultural University, 2016,43(2): 165-169. DOI:10.13610/j.cnki.1672-352x.20160311.013. | |
16 | 国家质量监督检验检疫总局. 关于批准对雷家店薄皮核桃等产品实施地理标志产品保护的公告[R].(2013-12-31)[2019-07-03].http://www.aqsiq.gov.cn/xxgk_13386/jlgg_12538/zjgg/2013/201401/t20140121_394699.htm. |
17 | 甘卓亭, 王思强, 章萍秋, 等. 皖南安茶产区典型茶园土壤重金属含量及空间分布[J]. 陕西师范大学学报(自然科学版), 2018, 46(4): 112-119. |
GAN Z T, WANG S Q, ZHANG P Q, et al. The content and spatial distribution of soil heavy metals in the typical tea gardens of An⁃tea production in southern Anhui Province[J]. Journal of Shannxi Normal University (Natural Science Edition), 2018, 46(4): 112-119. DOI: 10.15983/j.cnki.jsnu.2018.04.444. | |
18 | 孙雪娇, 常顺利, 张毓涛, 等. 矿区道路两则雪岭云杉叶片重金属富集效应[J]. 生态学报, 2018, 38(9): 3155-3164. |
SUN X J, CHANG S L, ZHANG Y T, et al. Accumulation of heavy metals in Picea schrenkiana leaves growing on roadsides in a mining area[J]. Acta Ecologica Sinica, 2018, 38(9): 3155-3164. DOI:10.5846/stxb201704100617. | |
19 | 秦玉燕, 时鹏涛, 王运儒, 等. 不同茶树品种硒、汞、砷富集特性研究[J]. 西南农业学报, 2017, 30(6): 1396-1401. |
QIN Y Y, SHI P T, WANG Y R, et al. Enrichment characteristics of selenium,mercury and arsenic in different tea varieties [J].Southwest China Journal of Agricultural Sciences, 2017, 30(6): 1396-1401. DOI:10.16213/j.cnki.scjas.2017.6.027. | |
20 | 时鹏涛, 秦玉燕, 陆仲烟, 等. 不同茶树品种中9种矿质元素的含量及富集特性[J]. 江苏农业科学, 2019, 47(10): 144-147. |
SHI P T, QIN Y Y, LU Z Y, et al. Study on enrichment characteristics of 9 kinds of mineral elements in different tea cultivars [J]. Jiangsu Agricultural Sciences, 2019, 47(10): 144-147. DOI:10.15889/j.issn.1002-1302.2019.10.032. | |
21 | 王峰, 单睿阳, 陈玉真, 等. 闽中某县茶园土壤-茶树-茶汤中镉含量及健康风险评价研究[J]. 茶叶科学, 2018, 38(5):537-546. |
WANG F, SHAN R Y, CHEN Y Z, et al. A case study of cadmium distribution in soil⁃tea plant⁃tea soup system in central Fujian Province and relative health risk assessment[J]. Journal of Tea Science, 2018, 38(5): 537-546. DOI:10.13305/j.cnki.jts.2018.05.011. | |
22 | 叶宏萌, 郑茂钟, 李国平, 等. 武夷岩茶主产区土壤及茶叶微量元素分布特征[J]. 森林与环境学报, 2016, 36(4) : 423-428. |
YE H M, ZHENG M Z, LI G P, et al. Distribution characteristics of trace elements in the soils and tea leaves in Wuyi Yantea provenance[J]. Journal of Forest and Environment, 2016, 36(4): 423-428. DOI:10.13324/j.cnki.jfcf.2016.04.007. | |
23 | 方凤满, 王翔, 林跃胜. 皖南典型茶园茶叶中金属元素富集规律及其健康风险研究[J]. 水土保持学报, 2015, 29(4): 229-235. |
FANG F M, WANG X, LIN Y S. Study on enrichment patterns and health risk of metal elements of tea in typical mountainous tea garden in south Anhui[J]. Journal of Soil and Water Conservation,2015, 29(4): 229-235. DOI:10.13870/j.cnki.stbcxb.2015.04.042. | |
24 | 张清海, 龙章波, 林绍霞, 等. 贵州名优茶产区土壤- 茶叶中重金属污染及迁移[J]. 环境科学与技术, 2012, 35(61): 85-88. |
ZHANG Q H, LONG Z B, LIN S X, et al. Research of pollution and enrichment of heavy metal in soil and tea in typical tea producing areas of Guizhou Province[J]. Environmental Science & Technology, 2012, 35(61): 85-88. DOI:10.3969/j.issn.1003-6504.2012.06I.021. | |
25 | 廖素兰, 翁器林, 林维晟, 等. 武夷山公路边茶园重金属分布及风险评价[J].江苏农业科学, 2018, 46(23):338-344. |
LIAO S L, WENG Q L, LIN W C, et al. Spatial variation and risk assessment of heavy metals in tea garden of Wuyishan roadside [J]. Jiangsu Agricultural Sciences, 2018, 46(23):338-344. DOI:10.15889/j.issn.1002-1302.2018.23.084. | |
26 | 杨峥, 刘艳菊, 朱明淏. 植物叶表尘及重金属对城市大气颗粒物污染的指示与评估[J].环境科学学报, 2018, 38(7): 2782-2795. |
YANG Z, LIU Y J, ZHU M H. Indication and assessment of urban airborne particulate pollution using plant leaf surface dust and associated metals[J]. Acta Scientiae Circumstantiae, 2018, 38(7): 2782-2795. DOI:10.13671/j.hjkxxb.2018.0011. | |
27 | 张 庆,魏树和,代惠萍,等.硒对茶树镉毒害的缓解作用研究[J].南京林业大学学报(自然科学版),2020,44(1):200-204. |
ZHANG Q,WEI S H,DAI H P,et al.The alleviating effects of selenium on cadmium⁃induced toxicity in tea leaves[J].J Nanjing For Univ(Nat Sci Ed),2020,44(1):200-204.DOI:10.3969/j.issn.1000-2006.201902006. | |
28 | KABATA⁃PENDIAS A Soil⁃plant transfer of trace elements⁃an environmental issue [J]. Geoderma, 2004, 122(2-4): 143-149. DOI:10.1016/j.geoderma.2004.01.004. |
29 | 李天杰. 土壤地理学[M]. 北京:高等教育出版社, 2004. |
LI T J. Soil Geography [M]. Beijing: Higher Education Press, 2004. | |
30 | 方凤满, 林跃胜, 魏晓飞. 土壤-茶树系统中重金属污染研究进展[J]. 安徽师范大学学报(自然科学版), 2013, 36(3): 288-292. |
FANG F M, LIN Y S, WEI X F. Research progress in heavy metal pollution in system of soil⁃tea plantation[J]. Journal of Anhui Normal University (Natural Science), 2013, 36(3): 288-292. DOI:10.3969/j.issn.1001-2443.2013.03.019. | |
31 | XING S H, CHEN C R, ZHANG H, et al. Genotype and slope position control on the availability of soil soluble organic nitrogen in tea plantations [J]. Biogeochemistry, 2011, 103(1-3): 245 -261. DOI:10.1007/s10533-010-9460-3. |
32 | 万佳蓉, 聂明, 邹芹, 等. 土壤重金属沿山地森林海拔梯度的分布特征[J]. 光谱学与光谱分析, 2011, 31(12): 3371-3374. |
WAN J R, NIE M, ZOU Q, et al. Distribution characteristics of heavy metals along an elevation gradient of montane forest[J]. Spectroscopy and Spectral Analysis, 2011, 31(12): 3371-3374. DOI:10.3964/j.issn.1000-0593(2011)12-3371-04. | |
33 | 孙丽, 濮励杰, 朱明, 等. 太湖西山碧螺春茶园重金属含量分布与评价[J].生态与农村环境学报, 2008, 24 (2):88-91. |
SUN L, PU L J, ZHU M, et al. Distribution and evaluation of heavy distribution and evaluation of heavy metal contents in the soil of biluochun tea plantations in Xishan,Taihu Lake[J] Journal of Ecology and Rural Environment, 2008, 24 (2):88-91. DOI: 10.3969/j.issn.1673-4831.2008.02.020. |
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