您的位置:山东大学 -> 科技期刊社 -> 《山东大学学报(工学版)》

山东大学学报 (工学版) ›› 2021, Vol. 51 ›› Issue (3): 119-128.doi: 10.6040/j.issn.1672-3961.0.2021.001

• 化学与环境 • 上一篇    

济南市食品中短、中链氯化石蜡的污染特征及摄入风险评估

方昕鑫1(),张仕文1,朱雨婷1,姜威3,张肇元2,*(),赵楠1   

  1. 1. 山东大学环境研究院,山东 青岛 266237
    2. 天津市生态环境监测中心,天津 300191
    3. 山东大学深圳研究院,广东 深圳 518057
  • 收稿日期:2021-01-04 出版日期:2021-06-20 发布日期:2021-06-24
  • 通讯作者: 张肇元 E-mail:892330811@qq.com;zzyzhangzhaoyuan@sina.com
  • 作者简介:方昕鑫(1994—),女,陕西西安人,硕士研究生,主要研究方向为持久性有机污染物的分析检测. E-mail: 892330811@qq.com
  • 基金资助:
    深圳市基础研发计划资助项目(JCYJ20180301171357901);NSFC-山东省联合基金重点资助项目(U2006214)

Pollution characteristics and intake risk assessment of short and medium-chain chlorinated paraffins in foods in Jinan

Xinxin FANG1(),Shiwen ZHANG1,Yuting ZHU1,Wei JIANG3,Zhaoyuan ZHANG2,*(),Nan ZHAO1   

  1. 1. Environment Research Institute, Shandong University, Qingdao 266237, Shandong, China
    2. Ecological Environment Monitoring Center, Tianjin 300191, China
    3. Shenzhen Research Institute, Shandong University, Shenzhen 518057, Guangdong, China
  • Received:2021-01-04 Online:2021-06-20 Published:2021-06-24
  • Contact: Zhaoyuan ZHANG E-mail:892330811@qq.com;zzyzhangzhaoyuan@sina.com

摘要:

为了解济南市市场中短链氯化石蜡(C10-13, short-chain chlorinated paraffins, SCCPs) 与中链氯化石蜡(C14-17, medium-chain chlorinated paraffins, MCCPs)在食品中的分布现状与摄入风险,于2020年在济南市采集了82种不同类别食品样品,采用氯强化大气压化学电离源-四级杆飞行时间质谱检测方法分析。结果表明:食品样本中SCCPs湿重含量范围是5.3~2 483.2 ng/g;MCCPs湿重含量范围是4.6~605.1 ng/g;花生油SCCPs平均湿重含量最高,为2 115.5 ng/g;苦瓜SCCPs平均湿重含量最低,为5.7 ng/g;豆油MCCPs平均湿重含量最高,为605.5 ng/g;白菜MCCPs平均湿重含量最低,为6.2 ng/g;SCCPs的每日摄入量(estimated daily intake,EDI)在主食类食品中最高, 为2619.2 ng/(kg ·d),在水产类食品中最低,为17.7 ng/(kg ·d);MCCPs的EDI在主食类食品中最高,为2 117.6 ng/(kg ·d),在水产类食品中最低为12.1 ng/(kg ·d);济南市居民SCCPs、MCCPs的危害系数(hazard quotients,HQ)分别为0.022~0.067和0.017~0.047,HQ<1说明暴露风险较低。本研究为评估济南市人群暴露于CPs的风险提供了参考数据。

关键词: 短链氯化石蜡, 中链氯化石蜡, 含量, 同族体分布, 膳食暴露, 健康风险

Abstract:

To explore the distribution status and intake risk of short-chain chlorinated paraffins (C10-13, SCCPs) and medium-chain chlorinated paraffins (C14-17, MCCPs) in food in Jinan city, 82 kinds of food were collected in Jinan in 2020 and analyzed by chlorine enhanced atmospheric pressure chemical ionization source- four-stage pole time-of-flight mass spectrometry. The results showed that the concentration of wet weight of SCCPs in food samples ranged from 5.3 to 2 483.2 ng/g, MCCPs ranged from 4.6 to 605.1 ng/g. The concentration of wet weight of SCCPs in Peanut oil was the highest, which was 2 115.5 ng/g. The concentration of wet weight of SCCPs in balsam pear was the lowest, which was 5.7 ng/g. The concentration of wet weight of MCCPs in soybean oil was the highest, which was 605.5 ng/g. The concentration of wet weight of MCCPs in Chinese cabbage was the lowest, which was 6.2 ng/g. The estimated daily intake (EDI) of SCCPs was the highest in staple foods, which was 2 619.2 ng/(kg ·d) and the lowest in aquatic foods, which was 17.7 ng/(kg ·d). The EDI of MCCPs was the highest in staple foods, which was 2 117.6 ng/(kg ·d), and the lowest in aquatic foods, which was 12.1 ng/(kg ·d). The hazard quotients (HQ) of SCCPs、MCCPs was 0.041 and 0.032, respectively. The purpose of this study was to provide reference data for the assessment of the risk of exposure to CPs among the population in Jinan.

Key words: short-chain chlorinated paraffins, medium-chain chlorinated paraffins, concentration, congeners distribution, dietary exposure, health risk

中图分类号: 

  • X828

表1

食品样品中SCCPs、MCCPs的平均含量"

食品种类 食品名称 水的质量分数/% 脂肪的质量分数/% SCCPs MCCPs
湿重含量/(ng·g-1) 脂重含量/(ng·g-1) 湿重含量/(ng·g-1) 脂重含量/(ng·g-1)
肉类 牛肉 65.1 14.0 140.4 1 002.7 110.8 791.5
羊肉 77.6 0.8 82.2 548.1 103.6 690.8
猪血 84.0 0.4 84.1 910.2 24.7 267.7
鸭肉 69.0 19.7 244.4 1 525.5 143.4 895.1
鱼豆腐 72.7 1.9 70.3 417.8 84.0 498.9
鸭血 91.7 0.2 30.7 1 535.5 22.7 1 136.7
猪肝 72.8 4.5 147.8 3 284.1 101.5 2 256.6
猪心 78.2 5.3 62.8 484.2 57.4 443.2
虾滑 77.8 2.1 39.6 1 885.8 48.5 2 307.6
猪肾 71.7 8.1 135.4 1 671.4 89.8 1 108.4
鸡肉丸 74.4 2.2 26.2 1 190.2 32.6 1 479.9
猪肉 72.1 4.0 196.7 4 860.8 166.7 4 120.9
鸡心 74.4 11.8 41.8 354.3 33.8 286.8
鸡胗 78.9 3.0 94.2 3 140.0 95.8 3 194.7
鸡肉 73.9 1.3 128.2 1 064.8 112.8 936.9
水产 花蛤蜊 83.7 0.7 57.1 6 812.4 40.9 4 883.8
生蚝 83.5 1.5 23.6 1 599.2 26.9 1 821.0
鲅鱼 71.2 5.3 186.1 3 541.5 123.3 2 346.7
鲈鱼 76.0 3.4 156.4 4 659.8 82.4 2 454.9
青虾 88.0 0.2 31.4 1 571.0 32.5 1 623.0
黄花鱼 77.2 2.5 111.4 4 457.6 82.4 3 295.5
带鱼 76.2 1.4 120.1 8 561.5 94.5 6 733.9
鲳鱼 79.3 6.5 97.9 1 505.4 83.6 1 286.3
黑鱼 75.6 2.7 169.1 6 321.9 127.5 4 769.7
鲶鱼 70.0 15.7 314.1 1 997.3 107.1 681.3
鲤鱼 77.0 11.9 91.6 772.3 114.8 967.9
鲫鱼 80.3 2.7 61.9 2 294.1 66.4 2 461.0
鲢鱼 80.4 0.2 99.6 2 767.6 77.6 2 156.5
蛋类 鹌鹑蛋 11.1 70.2 638.5 250.5 2 277.3
鸡蛋 11.0 610.2 549.7 586.6 528.5
乳类 酸奶 2.7 420.7 1 558.3 290.7 1 076.6
牛奶 3.8 566.5 1 490.8 364.8 959.9
奶粉 0.7 20.2 731.5 3 621.1 313.7 1 553.0
芝士 54.9 25.0 328.4 1 313.7 155.5 622.1
豆制品 豆腐 91.6 3.1 33.9 1 093.7 37.6 1 213.7
腐竹 4.2 21.5 764.4 3 555.2 429.7 1 998.5
豆浆 1.0 261.9 2 619.4 123.6 1 236.1
油豆皮 4.1 23 492.9 2 143.1 459.0 1 995.5
黄豆 18.7 15.7 266.8 1 699.0 197.3 1 257.0
食用油 花生油 100 2 115.5 2 115.5 547.3 547.3
葵花油 100 910.2 910.2 435.3 435.3
豆油 100 593.0 593.0 605.5 605.5
橄榄油 100 1 980.0 1 980.0 279.6 279.6
玉米油 100 639.4 639.4 158.0 158.0
主食 面粉 11.8 0.6 110.3 1 837.7 146.8 2 446.7
小米 9.9 3.5 88.0 251.5 87.1 248.7
大米 11.4 0.2 173.3 754.2 153.4 667.7
玉米面 11.5 0.7 199.9 855.8 74.8 320.1
水果 苹果 83.0 0.2 18.2 911.6 22.1 1 105.7
85.3 0.2 42.8 2 140.5 22.6 1 129.6
香蕉 82.5 0.1 40.7 4 865.1 22.2 2 657.5
西瓜 88.7 0.4 12.7 3 165.6 17.7 4 425.8
桃子 86.4 0.4 28.8 1 015.7 37.1 1 310.4
橘子 88.3 0.3 14.8 188.3 12.1 153.2
蔬菜 山药 76.0 0.2 30.0 1 313.3 41.1 1 796.3
蒜苔 85.7 0.1 27.5 2 745.3 20.7 2 071.6
南瓜 92.1 0.5 22.4 4 236.2 20.7 3 918.8
81.8 0.2 28.4 1 430.9 24.9 1 251.6
芸豆 90.7 1.3 17.9 1 378.5 20.1 1 549.4
丝瓜 95.7 0.2 9.0 4 478.0 10.9 5 434.5
蘑菇 94.0 0.1 13.5 1 350.5 11.0 1 102.2
油菜 96.5 0.5 17.6 2 618.5 7.7 1 146.5
黄瓜 96.1 0.2 5.9 296.2 8.6 428.3
西蓝花 87.4 0.6 22.8 3 796.0 21.3 3 553.5
西葫芦 94.6 0.2 10.1 5 060.8 9.4 4 696.3
辣椒 93.6 0.1 12.2 1 843.6 9.0 1 357.9
卷心菜 92.8 0.2 24.4 992.2 19.5 792.0
菜椒 93.9 0.3 12.0 4 010.5 12.4 4 120.9
番茄 94.0 0.2 13.5 710.3 11.9 624.5
菠菜 92.6 2.6 26.9 1 035.7 34.6 1 329.9
苦瓜 92.9 0.1 5.7 569.2 12.3 1 232.7
青萝卜 89.3 0.1 21.1 1 537.5 17.0 1 240.9
花菜 93.5 0.2 15.0 750.5 8.4 419.4
芹菜 95.1 0.1 9.4 1 117.1 9.2 1 096.8
白菜 95.3 0.2 13.5 3 673.8 6.2 1 682.4
豆角 91.5 0.2 16.6 832.3 13.5 673.3
圆葱 90.4 0.1 19.8 2 834.2 16.7 2 395.2
67.0 0.1 53.6 1 032.4 54.4 1 046.4
茄子 94.6 0.2 11.4 5 691.7 8.5 4 272.7
胡萝卜 88.7 0.0 18.4 1 084.0 31.0 1 827.4
土豆 77.9 0.2 33.4 1 668.0 58.8 2 940.5
地瓜 86.2 0.0 18.8 1 133.3 23.0 1 385.8

图1

SCCPs、MCCPs在各类食品中的湿重含量分布"

图2

SCCPs和MCCPs在各类食品中的同族体分布"

表2

SCCPs与MCCPs的暴露风险评估"

食品类别 平均 2~7岁 8~12岁 13~19岁 20~50岁 51~65岁 >65岁
EDISCCPs 4 128.3 6 697.8 3 722.0 2 717.6 3 104.3 2 351.0 2 328.7 2 335.1 2 304.3 2 264.3 2 201.9
EDIMCCPs 3 230.2 4 711.5 2 830.4 2 125.8 2 340.7 1 860.6 1 838.5 1 843.1 1 812.8 1 773.1 1 726.4
HQSCCPs 0.041 0.067 0.037 0.027 0.031 0.024 0.023 0.023 0.023 0.023 0.022
HQMCCPs 0.032 0.047 0.028 0.021 0.023 0.019 0.018 0.018 0.018 0.018 0.017

图3

各年龄段人群对不同类食品样品SCCPs与MCCPs的EDI"

1 BRITH Martin , DE BOER Jacob , ROHWER Egmomt R , et al. Short-, medium-, and long-chain chlorinated paraffins in South African indoor dust and cat hair[J]. Chemosphere, 2020, 238, 124643.
doi: 10.1016/j.chemosphere.2019.124643
2 BAYEN S , OBBARD J P , THOMAS G O . Chlorinated paraffins: a review of analysis and environmental occurrence[J]. Environment International, 2006, 32 (7): 915- 929.
doi: 10.1016/j.envint.2006.05.009
3 VAN MOURIK L M , GAUS C , LEONARDS P E G , et al. Chlorinated paraffins in the environment: a review on their production, fate, levels and trends between 2010 and 2015[J]. Chemosphere, 2016, 155 (7): 415- 428.
4 LIU Yu , LUO Xiaojun , ZENG Yanghong , et al. Trophic magnification of short-and medium-chain chlorinated paraffins in terrestrial food webs and their bioamplification in insects and amphibians during metamorphosis[J]. Environmental Science & Technology, 2020, 54 (18): 11282- 11291.
5 LI Huijian , BU Duo , GAO Yan , et al. Long-range atmospheric transport and alpine condensation of short-chain chlorinated paraffins on the southeastern Tibetan Plateau[J]. Journal of Environmental Sciences, 2020, 99, 275- 280.
6 WANG Wenjing , WANG Jun , NIE Huayue , et al. Occurrence, trophic magnification and potential risk of short-chain chlorinated paraffins in coral reef fish from the Nansha Islands, South China Sea[J]. Science of the Total Environment, 2020, 140084.
7 PAN Xiaohui , ZHEN Xiaomei , TIAN Chongguo , et al. Distributions, transports and fates of short- and medium-chain chlorinated paraffins in a typical river-estuary system[J]. Science of the total environment, 2020, 751, 141769.
8 WU Yang , GAO Shutao , JI Bingjing , et al. Occurrence of short- and medium-chain chlorinated paraffins in soils and sediments from Dongguan city, South China[J]. Environmental Pollution, 2020, 114181.
9 MA Xindong , ZHANG Haijun , ZHOU Hongqiang , et al. Occurrence and gas/particle partitioning of short-and medium-chain chlorinated paraffins in the atmosphere of Fildes Peninsula of Antarctica[J]. Atmospheric Environment, 2014, 90, 10- 15.
doi: 10.1016/j.atmosenv.2014.03.021
10 VAN MOURIK L M , LEONARDS P E G , GAUS C , et al. Recent developments in capabilities for analysing chlorinated paraffins in environmental matrices: a review[J]. Chemosphere, 2015, 136, 259- 272.
doi: 10.1016/j.chemosphere.2015.05.045
11 HUANG Huiting , GAO Lirong , ZHENG Minghui , et al. Dietary exposure to short- and medium-chain chlorinated paraffins in meat and meat products from 20 provinces of China[J]. Environmental Pollution, 2016, 233, 439.
12 LEE Sumin , CHOO Gyojin , EKPE Okon Dominic , et al. Short-chain chlorinated paraffins in various foods from republic of Korea: Levels, congener patterns, and human dietary exposure[J]. Environmental Pollution, 2020, 114520.
13 GAO Wei , CAO Dandan , LV Kun , et al. Elimination of short-chain chlorinated paraffins in diet after Chinese traditional cooking-a cooking case study[J]. Environment International, 2019, 122, 340- 345.
doi: 10.1016/j.envint.2018.11.025
14 ⅡNOFukuya, TAKASUGATakumi, SENTHILK-UMARKurunthachalam, 等. Risk assessment of short-chain chlorinated paraffins in Japan based on the first market basket study and species sensitivity distributions[J]. Environmental Science & Technology, 2005, 39 (3): 859- 866.
15 CUI Lili , GAO Lirong , ZHENG Minghui , et al. Bioaccessibility of short chain chlorinated paraffins in meat and seafood[J]. Science of the Total Environment, 2019, 668, 996- 1003.
doi: 10.1016/j.scitotenv.2019.03.043
16 GENG Ningbo , ZHANG Haijun , ZHANG Baoqin , et al. Effects of short-chain chlorinated paraffins exposure on the viability and metabolism of human hepatoma HepG2 cells[J]. Environmental Science & Technology, 2015, 49 (5): 3076.
17 DING Lei , LUO Nana , LIU Yi , et al. Short and medium-chain chlorinated paraffins in serum from residents aged from 50 to 84 in Jinan, China: occurrence, composition and association with hematologic parameters[J]. Science of the Total Environment, 2020, 137998.
18 WANG Runhua , GAO Lirong , ZHENG Minghui , et al. Characterization of short- and medium-chain chlorinated paraffins in cereals and legumes from 19 Chinese provinces[J]. Chemosphere, 2019, 226, 282- 289.
doi: 10.1016/j.chemosphere.2019.03.148
19 GAO Wei , BAI Lu , KE Runhui , et al. Distributions and congener group profiles of short-chain and medium-chain chlorinated paraffins in cooking oils in Chinese markets[J]. Journal of Agricultural and Food Chemistry, 2020, 68 (29): 7601- 7608.
doi: 10.1021/acs.jafc.0c02328
20 ZENG Yanhong , HUANG Chenchen , LUO Xiaojun , et al. Polychlorinated biphenyls and chlorinated paraffins in home-produced eggs from an e-waste polluted area in South China: occurrence and human dietary exposure[J]. Environment International, 2018, 116, 52- 59.
doi: 10.1016/j.envint.2018.04.006
21 DONG Shujun , ZHANG Su , LI Xiaomin , et al. Occurrence of short- and medium-chain chlorinated paraffins in raw dairy cow milk from five Chinese provinces[J]. Environment International, 2020, 136, 105466.
doi: 10.1016/j.envint.2020.105466
22 吴永宁, 赵云峰, 李敬光. 第五次中国总膳食研究[M]. 北京: 科学出版社, 2018: 66- 69.
23 ZHANG Haiyan , VESTERGREN Robin , WANG Thanh , et al. Geographical differences in dietary exposure to perfluoroalkyl acids between manufacturing and application regions in China[J]. Environmental Science & Technology, 2017, 51 (10): 5747- 5755.
24 HE Yu'na, MA Guansheng. Nutrient classification and body weight representative value of each age group[C]// Proceedings of the Chinese Society of Nutrition. Beijing, China: Chinese Nutrition Society Public Nutrition Branch Press, 2012: 23.
25 LIU Lihua , MA Wanli , LIU Liyan , et al. Occurrence, sources and human exposure assessment of SCCPs in indoor dust of northeast China[J]. Environmental Pollution, 2017, 225, 232- 243.
doi: 10.1016/j.envpol.2017.03.008
26 HAINES J A . International programme on chemical safety[J]. Lancet, 1996, 35 (9024): 408- 409.
27 LI Huijuan , BU Duo , GAO Yan , et al. Dietary exposure and risk assessment of short-chain chlorinated paraffins in supermarket fresh products in Jinan, China[J]. Chemosphere, 2020, 244, 125393.
doi: 10.1016/j.chemosphere.2019.125393
28 CHEN Hui , LAM James C W , ZHU Mingshan , et al. Combined effects of dust and dietary exposure of occupational workers and local residents to short-and medium-chainchlorinated paraffins in a mega E-waste recycling industrial park in South China[J]. Environmental Science & Technology, 2018, 52 (20): 11510- 11519.
[1] 骆艳华, 佘世杰, 曹卫国, 潘峰. 反应条件对磷酸铁粒度分布的影响[J]. 山东大学学报(工学版), 2015, 45(1): 82-87.
[2] 李晓静1,姚凯2*,李术才1,张超2. 黄泛区饱和粉土动强度特性试验研究[J]. 山东大学学报(工学版), 2011, 41(3): 78-81.
[3] 田彬,许斌,李和胜 . 氧含量测定方法及在人造金刚石用触媒质量控制中的应用[J]. 山东大学学报(工学版), 2008, 38(5): 117-120 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 张永花,王安玲,刘福平 . 低频非均匀电磁波在导电界面的反射相角[J]. 山东大学学报(工学版), 2006, 36(2): 22 -25 .
[2] 李 侃 . 嵌入式相贯线焊接控制系统开发与实现[J]. 山东大学学报(工学版), 2008, 38(4): 37 -41 .
[3] 余嘉元1 , 田金亭1 , 朱强忠2 . 计算智能在心理学中的应用[J]. 山东大学学报(工学版), 2009, 39(1): 1 -5 .
[4] 李梁,罗奇鸣,陈恩红. 对象级搜索中基于图的对象排序模型(英文)[J]. 山东大学学报(工学版), 2009, 39(1): 15 -21 .
[5] 陈瑞,李红伟,田靖. 磁极数对径向磁轴承承载力的影响[J]. 山东大学学报(工学版), 2018, 48(2): 81 -85 .
[6] 王波,王宁生 . 机电装配体拆卸序列的自动生成及组合优化[J]. 山东大学学报(工学版), 2006, 36(2): 52 -57 .
[7] 李可,刘常春,李同磊 . 一种改进的最大互信息医学图像配准算法[J]. 山东大学学报(工学版), 2006, 36(2): 107 -110 .
[8] 季涛,高旭,孙同景,薛永端,徐丙垠 . 铁路10 kV自闭/贯通线路故障行波特征分析[J]. 山东大学学报(工学版), 2006, 36(2): 111 -116 .
[9] 秦通,孙丰荣*,王丽梅,王庆浩,李新彩. 基于极大圆盘引导的形状插值实现三维表面重建[J]. 山东大学学报(工学版), 2010, 40(3): 1 -5 .
[10] 刘文亮,朱维红,陈涤,张泓泉. 基于雷达图像的运动目标形态检测及跟踪技术[J]. 山东大学学报(工学版), 2010, 40(3): 31 -36 .