Bromine contamination and risk management in terrestrial and aquatic ecosystems

被引:12
作者
Leri, Alessandra C. [1 ]
Hettithanthri, Oshadi [1 ]
Bolan, Shiv [2 ,3 ,4 ,5 ]
Zhang, Tao [6 ]
Unrine, Jason [7 ,8 ]
Myneni, Satish [9 ]
Nachman, Danielle R. [10 ]
Tran, Huu Tuan [11 ,12 ]
Phillips, Ankur J. [13 ]
Hou, Deyi [14 ]
Wang, Yidong [14 ]
Vithanage, Meththika [2 ,3 ,15 ]
Padhye, Lokesh P. [16 ]
Zad, Tahereh Jasemi [16 ]
Heitz, Anna [17 ]
Siddique, Kadambot H. M. [3 ,4 ]
Wang, Hailong [18 ,19 ]
Rinklebe, Jorg [20 ]
Kirkham, M. B. [21 ]
Bolan, Nanthi [3 ,4 ,5 ]
机构
[1] Marymount Manhattan Coll, Dept Nat Sci, 221 E 71st St, New York, NY 10021 USA
[2] Univ Sri Jayewardenepura, Fac Appl Sci, Ecosphere Resilience Res Ctr, Nugegoda 10250, Sri Lanka
[3] Univ Western Australia, UWA Sch Agr & Environm, Perth, WA 6009, Australia
[4] Univ Western Australia, UWA Inst Agr, Perth, WA 6009, Australia
[5] Natl Res Network, Hlth Environm & Lives HEAL, Canberra, Australia
[6] China Agr Univ, Coll Resources & Environm Sci, Beijing Key Lab Farmland Soil Pollut Prevent Contr, Beijing 100193, Peoples R China
[7] Univ Kentucky, Dept Plant & Soil Sci, Lexington, KY 40546 USA
[8] Univ Kentucky, Kentucky Water Res Inst, Lexington, KY 40506 USA
[9] Princeton Univ, Dept Geosci, Princeton, NJ 08544 USA
[10] Johns Hopkins Univ, Appl Phys Lab, Laurel, MD USA
[11] Van Lang Univ, Sci & Technol Adv Inst, Lab Ecol & Environm Management, Ho Chi Minh City, Vietnam
[12] Van Lang Univ, Fac Appl Technol, Sch Technol, Ho Chi Minh City, Vietnam
[13] Govind Ballabh Pant Univ Agr & Technol, Coll Basic Sci & Humanities, Dept Microbiol, Pantnagar 263145, Uttarakhand, India
[14] Tsinghua Univ, Sch Environm, Beijing 100084, Peoples R China
[15] Univ Petr & Energy Studies, Sustainabil Cluster, Dehra Dun, India
[16] Univ Auckland, Fac Engn, Dept Civil & Environm Engn, Auckland 1010, New Zealand
[17] Curtin Univ, Curtin Water Qual Res Ctr, Dept Chem, GPO Box U1987, Perth, WA 6845, Australia
[18] Foshan Univ, Biochar Engn Technol Res Ctr Guangdong Prov, Sch Environm & Chem Engn, Foshan 528000, Guangdong, Peoples R China
[19] Zhejiang A&F Univ, Key Lab Soil Contaminat Bioremediat Zhejiang Prov, Hangzhou 311300, Zhejiang, Peoples R China
[20] Univ Wuppertal, Inst Fdn Engn Water & Waste Management, Sch Architecture & Civil Engn, Lab Soil & Groundwater Management, Pauluskirchstr 7, D-42285 Wuppertal, Germany
[21] Kansas State Univ, Throckmorton Plant Sci Ctr, Dept Agron, Manhattan, KS 66506 USA
关键词
Bromine; Mining; Fossil fuel; Disinfection; Human toxicity; Remediation; DISINFECTION BY-PRODUCTS; DIPHENYL ETHERS PBDES; NEUTRON-ACTIVATION ANALYSIS; DISSOLVED ORGANIC-MATTER; TRITICUM-AESTIVUM L; DRINKING-WATER; FLAME RETARDANTS; METHYL-BROMIDE; PLANT UPTAKE; HALOACETIC ACIDS;
D O I
10.1016/j.jhazmat.2024.133881
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Bromine (Br) is widely distributed through the lithosphere and hydrosphere, and its chemistry in the environment is affected by natural processes and anthropogenic activities. While the chemistry of Br in the atmosphere has been comprehensively explored, there has never been an overview of the chemistry of Br in soil and aquatic systems. This review synthesizes current knowledge on the sources, geochemistry, health and environmental threats, remediation approaches, and regulatory guidelines pertaining to Br pollution in terrestrial and aquatic environments. Volcanic eruptions, geothermal streams, and seawater are the major natural sources of Br. In soils and sediments, Br undergoes natural cycling between organic and inorganic forms, with bromination reactions occurring both abiotically and through microbial activity. For organisms, Br is a non-essential element; it is passively taken up by plant roots in the form of the Br- anion. Elevated Br- levels can limit plant growth on coastal soils of arid and semi-arid environments. Br is used in the chemical industry to manufacture pesticides, flame retardants, pharmaceuticals, and other products. Anthropogenic sources of organobromine contaminants in the environment are primarily wastewater treatment, fumigants, and flame retardants. When aqueous Br- reacts with oxidants in water treatment plants, it can generate brominated disinfection by-products (DBPs), and exposure to DBPs is linked to adverse human health effects including increased cancer risk. Br- can be removed from aquatic systems using adsorbents, and amelioration of soils containing excess Br- can be achieved by leaching, adding various amendments, or phytoremediation. Developing cost-effective methods for Br- removal from wastewater would help address the problem of toxic brominated DBPs. Other anthropogenic organobromines, such as polybrominated diphenyl ether (PBDE) flame retardants, are persistent, toxic, and bioaccumulative, posing a challenge in environmental remediation. Future research directives for managing Br pollution sustainably in various environmental settings are suggested here.
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页数:24
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