Journal of East China Normal University(Natural Science) ›› 2024, Vol. 2024 ›› Issue (6): 114-123.doi: 10.3969/j.issn.1000-5641.2024.06.010
• Environmental Processes and Mechanisms • Previous Articles Next Articles
Yan LIU1,2, Rong QIU1,2, Xiaomu CAO1,2, Yuqing LIANG1, Xuelong CAO1, Defu HE1,2,*()
Received:
2024-08-02
Accepted:
2024-09-10
Online:
2024-11-25
Published:
2024-11-29
Contact:
Defu HE
E-mail:dfhe@des.ecnu.edu.cn
CLC Number:
Yan LIU, Rong QIU, Xiaomu CAO, Yuqing LIANG, Xuelong CAO, Defu HE. Microplastic pollution in soil mediated by organic fertilizers derived from kitchen waste treatment in Shanghai[J]. Journal of East China Normal University(Natural Science), 2024, 2024(6): 114-123.
1 | 王姣姣, 杨小明, 王力, 等.. 我国厨余垃圾管理现状及提高资源化利用水平的对策建议. 再生资源与循环经济, 2024, 7 (3): 7- 11. |
2 | 胡钢, 孙建亭, 刘思源, 等.. 厨余垃圾湿式与干式厌氧消化处理全链条碳排放比较分析. 环境生态学, 2024, 6 (5): 146- 150. |
3 | MU L, ZHANG L, ZHU K, et al.. Anaerobic co-digestion of sewage sludge, food waste and yard waste: Synergistic enhancement on process stability and biogas production. Science of the Total Environment, 2019, 704, 135429. |
4 | WANG P, QIAO Z, LI X, et al.. Functional characteristic of microbial communities in large-scale biotreatment systems of food waste. Science of the Total Environment, 2020, 746, 141086. |
5 | LIN X, WANG S, NI R, et al.. New insights on municipal solid waste (MSW) landfill plastisphere structure and function. Science of the Total Environment, 2023, 888, 163823. |
6 | SCHMALTZ E, MELVIN E C, DIANA Z, et al.. Plastic pollution solutions: Emerging technologies to prevent and collect marine plastic pollution. Environment International, 2020, 144, 106067. |
7 | 杨越, 陈玲, 薛澜.. 海洋垃圾和塑料污染防治迈向全球治理新阶段. 中华环境, 2023, (9): 30- 32. |
8 | 骆永明, 施华宏, 涂晨, 等.. 环境中微塑料研究进展与展望. 科学通报, 2021, 66, 1547- 1562. |
9 | ZHANG K, SHI H, PENG J, et al.. Microplastic pollution in China’s inland water systems: A review of findings, methods, characteristics, effects, and management. Science of the Total Environment, 2018, 630, 1641- 1653. |
10 | HE D, ZHANG Y, GAO W.. Micro(nano)plastic contaminations from soils to plants: Human food risk. Current Opinion in Food Science, 2021, 41, 116- 121. |
11 | CHEN Y, LI X, GAO W, et al.. Microfiber-loaded bacterial community in indoor fallout and air-conditioner filter dust. Science of the Total Environment, 2022, 856, 159211. |
12 | HU J, HE D, ZHANG X, et al.. National-scale distribution of micro(meso)plastics in farmland soils across China: Implications for environmental impacts. Journal of Hazardous Materials, 2022, 424, 127283. |
13 | LIANG Y, CAO X, MO A, et al.. Micro (nano) plastics in plant-derived food: Source, contamination pathways and human exposure risks. Trends in Analytical Chemistry, 2023, 165, 117138. |
14 | SU Y, ZHANG Z, WU D, et al.. Occurrence of microplastics in landfill systems and their fate with landfill age. Water Research, 2019, 164, 114968. |
15 | 林伟雄, 武纯.. 城市污泥中微塑料的研究现状. 广东化工, 2023, 50 (18): 59- 61. |
16 | YANG Z, FAN LÜ, ZHANG H, et al.. Is incineration the terminator of plastics and microplastics?. Journal of Hazardous Materials, 2020, 401, 123429. |
17 | LUO J, ZHANG Q, ZHA J, et al.. Potential influences of exogenous pollutants occurred in waste activated sludge on anaerobic digestion: A review. Journal of Hazardous Materials, 2020, 383, 121176. |
18 | LYU W, ZHOU W, LU S, et al.. Microplastic pollution in rice-fish co-culture system: A report of three farmland stations in Shanghai, China. Science of the Total Environment, 2019, 652, 1209- 1218. |
19 | 李子瑜, 李镇州, 窦玉婷, 等.. 异源物质对餐厨垃圾厌氧消化效能的影响及调控策略. 环境工程, 2023, 41 (6): 222- 232. |
20 | LUO T, DAI X, WEI W, et al.. Microplastics enhance the prevalence of antibiotic resistance genes in anaerobic sludge digestion by enriching antibiotic-resistant bacteria in surface biofilm and facilitating the vertical and horizontal gene transfer. Environmental Science Technology, 2023, 57 (39): 14611- 14621.. |
21 | LIU S, SU C, LU Y, et al.. Effects of microplastics on the properties of different types of sewage sludge and strategies to overcome the inhibition: A review. Science of the Total Environment, 2023, 902, 166033. |
22 | JACHIMOWICZ P, JO Y, CYDZIK-KWIATKOWSKA A.. Polyethylene microplastics increase extracellular polymeric substances production in aerobic granular sludge. Science of the Total Environment, 2022, 851, 158208. |
23 | LI L, SONG K, YEERKEN S, et al.. Effect evaluation of microplastics on activated sludge nitrification and denitrification. Science of the Total Environment, 2020, 707, 135953. |
24 | QIN R, SU C, LIU W, et al.. Effects of exposure to polyether sulfone microplastic on the nitrifying process and microbial community structure in aerobic granular sludge. Bioresource Technology, 2020, 302, 122827. |
25 | LE V G, NGUYEN M K, NGUYEN H L, et al.. A comprehensive review of micro-and nano-plastics in the atmosphere: Occurrence, fate, toxicity, and strategies for risk reduction. Science of the Total Environment, 2023, 904, 166649. |
26 | KYRIAKOUDES G, TURNER A.. Suspended and deposited microplastics in the coastal atmosphere of southwest England. Chemosphere, 2023, 343 (1): 40258. |
27 | LIU P, LIAO H, DENG Y, et al.. Microplastic pollution and its potential correlation with environmental factors in Daya Bay, South China Sea. Journal of Marine Science and Engineering, 2023, 11 (7): 1465. |
28 | JIE F, ZHOU Y, CHUN X, et al.. Investigation of microplastics distribution characteristics in Qinhuangdao sea area based on transmission path. Marine Environmental Science, 2023, 42 (1): 80- 88. |
29 | 孙香莹, 庄银, 王玉邦, 等.. 微塑料环境暴露与人体健康效应研究进展. 环境科学研究, 2023, 36 (5): 1020- 1031. |
30 | GÜZEL İZMIRLI Ş, GÖKKAYA A. Microplastic pollution and risk assessment in packaged teas in Türkiye [J]. Water, Air, & Soil Pollution, 2024, 235(7): 438. |
31 | FADARE O O, WAN B, ZHAO L, et al.. Microplastics from consumer plastic food containers: Are we consuming it?. Chemosphere, 2020, 253, 126787. |
32 | SOBHANI Z, LEI Y, TANG Y, et al.. Microplastics generated when opening plastic packaging. Scientific Reports, 2020, 10 (1): 4841. |
33 | LIN X, ZHANG S, YANG S, et al.. A landfill serves as a critical source of microplastic pollution and harbors diverse plastic biodegradation microbial species and enzymes: Study in large-scale landfills China. Journal of Hazardous Materials, 2023, 457, 131676. |
34 | EDO C, FERNANDEZ-PINAS F, ROSAL R.. Microplastics identification and quantification in the composted Organic Fraction of Municipal Solid Waste. Science of the Total Environment, 2022, 813, 151902. |
35 | 刘加强, 崔陆, 周子振, 等.. 土壤中微塑料: 类型、载体效应、迁移行为和潜在风险综述. 生态学报, 2024, 44 (9): 3586- 3599. |
36 | WEITHMANN N, MÖLLER J N, LÖDER M G J, et al.. Organic fertilizer as a vehicle for the entry of microplastic into the environment. Science Advances, 2018, 4 (4): eaap8060. |
37 | ZHANG J, LI Z, ZHOU X, et al.. Long-term application of organic compost is the primary contributor to microplastic pollution of soils in a wheat-maize rotation. Science of the Total Environment, 2023, 866, 161123. |
38 | 张文婷, 唐成瑞, 彭柏, 等.. 微塑料对土壤及植物的影响综述. 南方农业, 2024, 18 (4): 85- 87. |
39 | 曹霞飞, 雷燕, 肖剑.. 食品中微塑料的污染现状与健康风险. 现代食品, 2022, 28 (23): 20- 25. |
[1] | QI Ying-ying, BI Chun-juan, YU Zhong-jie,CHEN Zhen-lou, XU Shi-yuan, SUN Yue-di. Dynamic variations of nitrate contents in the asparagus greenhouse soils from Chongming Island [J]. Journal of East China Normal University(Natural Sc, 20120, 2012(6): 21-28. |
[2] | Cuizhu MA, Wenjun ZHAO, Yufei CHEN, Huahong SHI. Advancements in bio-tracking and bio-imaging technologies for microplastics [J]. Journal of East China Normal University(Natural Science), 2024, 2024(6): 14-23. |
[3] | Dingye YANG, Jing YANG, Ruihe JIN, Fangfang DING, Yuxin ZHANG, Min LIU. Occurrence characteristics and risk assessment of halogenated flame retardants in soils of Hefei City [J]. Journal of East China Normal University(Natural Science), 2024, 2024(6): 161-177. |
[4] | Jing YANG, Yan WU, Yue LI, Xia LIU, Dingye YANG, Yuanyuan CHEN, Ruihe JIN, Ye LI, Min LIU. Occurrence characteristics and healthy risk assessment of hexabromocyclododecane in agricultural soils in Shanghai [J]. Journal of East China Normal University(Natural Science), 2024, 2024(6): 178-187. |
[5] | Jing YANG, Yan WU, Yue LI, Xinran LIU, Dingye YANG, Ruihe JIN, Fangfang DING, Ye LI, Min LIU. High-throughput screening of organic contaminants in farmland soils in Shanghai by comprehensive two-dimensional gas chromatography-time of flight mass spectrometry [J]. Journal of East China Normal University(Natural Science), 2024, 2024(6): 52-61. |
[6] | Mingyin GUAN, Xinran LIU, Min LIU, Jing YANG, Zeying XIE, Qingling ZHANG, Qian LI. Characterization of the distribution of antibiotics and their resistance genes in soil profiles of a typical site [J]. Journal of East China Normal University(Natural Science), 2024, 2024(6): 74-85. |
[7] | Xiaohan ZHANG, Huimin TIAN, Xuechu CHEN, Hualei YANG, Rui DING, Mingming ZHAO, Wenhui YOU. Vegetation growth characteristics and the blue carbon effect ofrestored salt marshes at different developmental agesin Hengsha, the Yangtze River Estuary [J]. Journal of East China Normal University(Natural Science), 2024, 2024(1): 113-121. |
[8] | Chunhua JIANG, Jinxu YI, Lixin ZHU, Kai LIU, Changxing ZONG, Daoji LI. Comparative study of the vertical distribution characteristics of microplastics and sampling methods for microplastics in the water column: A case study in the Jiulong River estuary [J]. Journal of East China Normal University(Natural Science), 2024, 2024(1): 79-89. |
[9] | Yan GAO, Rong WANG. Diversity pattern and driving factors for soil microbes in a peri-urban area [J]. Journal of East China Normal University(Natural Science), 2023, 2023(3): 20-32. |
[10] | Guilin WANG, Heyi GONG, Kankan SHANG, Liangjun DA. Effects of combined application of water-retaining agents and organic fertilizer on soil water-holding capacity in waste dumps in open pit coal mines [J]. Journal of East China Normal University(Natural Science), 2023, 2023(3): 64-70. |
[11] | Daoji LI, Xuri DONG. Research progress of microplastics and attached organisms in marine environment [J]. Journal of East China Normal University(Natural Science), 2022, 2022(3): 1-7. |
[12] | Jing HE, Qicheng ZHONG, Guilian ZHANG, Kaiyun WANG, Yueqi WU, Guishu HE, Dezhi LI, Nana PENG. Soil respiration and its components across different land use types in the Dongtan reclamation area of Chongming Island [J]. Journal of East China Normal University(Natural Science), 2022, 2022(3): 71-81. |
[13] | Xianya XU, Stefano BOERI, Yibo XU. Diversity of soil microbes in a vertical forest [J]. Journal of East China Normal University(Natural Science), 2022, 2022(3): 8-16. |
[14] | Chao FENG, Yuchen GAN, Xiao HE, Shaogang LEI, Wei CHENG, Jiu HUANG, Jin KOU. Bryophyte diversity of a grassland mining area and its relationship with soil physical and chemical properties [J]. Journal of East China Normal University(Natural Science), 2022, 2022(1): 76-84. |
[15] | Wenxiu SANG, Hualei YANG, Jianwu TANG. Response of soil greenhouse gas emissions to temperature and moisture across different land-use types [J]. Journal of East China Normal University(Natural Science), 2021, 2021(4): 109-120. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||