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The Toxic Effect of Silver Nanoparticles on Nerve Cells: A Systematic Review and Meta-Analysis. 银纳米颗粒对神经细胞的毒性作用:一项系统综述和荟萃分析。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2021-01-01 DOI: 10.1007/398_2021_67
Atousa Janzadeh, Michael R Hamblin, Narges Janzadeh, Hossein Arzani, MahsaTashakori-Miyanroudi, Mahmoud Yousefifard, Fatemeh Ramezani

Despite the increasing use of silver nanoparticles in medical sciences, published studies on their interaction with nerve cells and evaluation of risks are dispersed. This systematic review and meta-analysis could be used to devise safety guidelines for the use of silver nanoparticles in industry and medicine to reduce adverse effects on the CNS.After extensive searches, the full text of 30 related studies was reviewed and data mining completed. Data were analyzed by calculating the mean of different ratios between treated and untreated groups. Linear regression between variables was evaluated by meta-regression. Subgroup analysis was also performed due to heterogeneity.Treatment with silver nanoparticles significantly reduced cell viability (SMD = -1.79%; 95% CI: -2.17 to -1.40; p < 0.0001). Concentration > 0.1 μg/mL could kill neurons, while lower concentration would not (SMD -0.258; 95% CI: -0.821 to 0.305; p = 369). In addition to the concentration, the coating, size of the nanoparticles, and cell type are also factors that influence SNP nerve cell toxicity. Measurement of apoptosis (SMD = 2.21; 95% CI: 1.62 to 2.80; p=0.001) and lactate dehydrogenase release rate (SMD = 0.9; 95% CI: 0.33 to 1.47; p < 0.0001) also confirmed the destructive effect of silver nanoparticles on nerve cells.

尽管银纳米粒子在医学科学中的应用越来越多,但已发表的关于其与神经细胞相互作用和风险评估的研究却很分散。该系统综述和荟萃分析可用于制定工业和医学中使用银纳米粒子的安全指南,以减少对中枢神经系统的不良影响。经过广泛的检索,回顾了30篇相关研究的全文,并完成了数据挖掘。通过计算治疗组和未治疗组之间不同比率的平均值来分析数据。变量间线性回归采用元回归评价。由于异质性,还进行了亚组分析。纳米银处理显著降低细胞活力(SMD = -1.79%;95% CI: -2.17 ~ -1.40;p 0.1 μg/mL可杀死神经元,较低浓度则无杀伤作用(SMD -0.258;95% CI: -0.821 ~ 0.305;p = 369)。除浓度外,涂层、纳米颗粒的大小和细胞类型也是影响SNP神经细胞毒性的因素。细胞凋亡测定(SMD = 2.21;95% CI: 1.62 ~ 2.80;p=0.001)和乳酸脱氢酶释放率(SMD = 0.9;95% CI: 0.33 ~ 1.47;p
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引用次数: 4
Sources of Antibiotic Resistant Bacteria (ARB) and Antibiotic Resistance Genes (ARGs) in the Soil: A Review of the Spreading Mechanism and Human Health Risks. 土壤中抗生素耐药菌(ARB)和抗生素耐药基因(ARGs)来源:传播机制和人类健康风险综述
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2021-01-01 DOI: 10.1007/398_2020_60
Brim Stevy Ondon, Shengnan Li, Qixing Zhou, Fengxiang Li

Soil is an essential part of our ecosystem and plays a crucial role as a nutrient source, provides habitat for plants and other organisms. Overuse of antibiotics has accelerated the development and dissemination of antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs). ARB and ARGs are recognized as emerging environmental contaminants causing soil pollution and serious risks to public health. ARB and ARGs are discharged into soils through several pathways. Application of manure in agriculture is one of the primary sources of ARB and ARGs dissemination in the soil. Different sources of contamination by ARB and ARGs were reviewed and analyzed as well as dissemination mechanisms in the soil. The effects of ARB and ARGs on soil bacterial community were evaluated. Furthermore, the impact of different sources of manure on soil microbial diversity as well as the effect of antibiotics on the development of ARB and ARGs in soils was analyzed. Human health risk assessments associated with the spreading of ARB and ARGs in soils were investigated. Finally, recommendations and mitigation strategies were proposed.

土壤是我们生态系统的重要组成部分,作为营养来源起着至关重要的作用,为植物和其他生物提供栖息地。抗生素的过度使用加速了抗生素耐药菌(ARB)和抗生素耐药基因(ARGs)的发展和传播。ARB和ARGs被认为是造成土壤污染和严重危害公众健康的新出现的环境污染物。ARB和ARGs通过几种途径排入土壤。农业施肥是土壤中ARB和ARGs传播的主要来源之一。综述和分析了ARB和ARGs的不同污染源及其在土壤中的传播机制。评价了ARB和ARGs对土壤细菌群落的影响。此外,还分析了不同肥料来源对土壤微生物多样性的影响以及抗生素对土壤中ARB和ARGs发育的影响。研究了与土壤中ARB和ARGs扩散相关的人类健康风险评估。最后,提出了建议和缓解战略。
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引用次数: 17
Effects of Carbamazepine in Bivalves: A Review. 卡马西平在双壳类动物中的作用综述。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2021-01-01 DOI: 10.1007/398_2020_51
Ângela Almeida, Valdemar I Esteves, Amadeu M V M Soares, Rosa Freitas

Carbamazepine (CBZ) is among the ten most frequent pharmaceuticals that occur in the aquatic systems, with known effects on inhabiting organisms, including bivalves. Bivalves are important species in coastal ecosystems, often exhibiting a dominant biomass within invertebrate communities. These organisms play a major role in the functioning of the ecosystem and particularly in food webs (as suspension-feeders) and represent a significant fraction of the fisheries resource. They also have strong interactions with the environment, water and sediment and are considered good bioindicator species. The present paper reviews the known literature on the impacts of CBZ in biological endpoints of marine bivalves exposed to environmentally and non-environmentally relevant concentrations, highlighting differences in terms of biological responses, associated with exposure period, concentrations tested, and species used. Overall, the literature available showed that CBZ induces individual and sub-individual effects in marine bivalves (adults and life stages) and the most common effect reported was the induction of oxidative stress.

卡马西平(CBZ)是水生系统中最常见的十种药物之一,已知对栖息生物(包括双壳类动物)有影响。双壳类动物是沿海生态系统中的重要物种,在无脊椎动物群落中往往占主导地位。这些生物在生态系统的功能中发挥着重要作用,特别是在食物网中(作为悬浮捕食者),并占渔业资源的很大一部分。它们还与环境、水和沉积物有很强的相互作用,被认为是良好的生物指示物种。本文综述了已知的关于CBZ对海洋双壳类生物终点的影响的文献,强调了暴露于环境和非环境相关浓度的生物反应方面的差异,与暴露期、测试浓度和使用的物种有关。总体而言,现有文献表明,CBZ可诱导海洋双壳类动物(成虫和生命阶段)的个体和亚个体效应,其中最常见的效应是诱导氧化应激。
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引用次数: 6
A Review on Prediction Models for Pesticide Use, Transmission, and Its Impacts. 农药使用、传播及其影响预测模型研究进展
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2021-01-01 DOI: 10.1007/398_2020_64
Edwin Prem Kumar Gilbert, Lydia Edwin

The lure of increased productivity and crop yield has caused the imprudent use of pesticides in great quantity that has unfavorably affected environmental health. Pesticides are chemicals intended for avoiding, eliminating, and mitigating any pests that affect the crop. Lack of awareness, improper management, and negligent disposal of pesticide containers have led to the permeation of pesticide residues into the food chain and other environmental pathways, leading to environmental degradation. Sufficient steps must be undertaken at various levels to monitor and ensure judicious use of pesticides. Development of prediction models for optimum use of pesticides, pesticide management, and their impact would be of great help in monitoring and controlling the ill effects of excessive use of pesticides. This paper aims to present an exhaustive review of the prediction models developed and modeling strategies used to optimize the use of pesticides.

在提高生产力和作物产量的诱惑下,不谨慎地大量使用农药,对环境健康造成不利影响。农药是用来避免、消除和减轻影响作物的任何害虫的化学物质。农药容器缺乏意识、管理不当、处置疏忽,导致农药残留渗透到食物链和其他环境途径,导致环境退化。必须在各级采取充分步骤,监测和确保农药的合理使用。建立农药最佳使用、农药管理及其影响的预测模型,对监测和控制农药过度使用的不良影响具有重要意义。本文的目的是提出一个详尽的回顾预测模型和建模策略,用于优化农药的使用。
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引用次数: 2
Fluorotelomer Alcohols' Toxicology Correlates with Oxidative Stress and Metabolism. 氟端粒醇的毒性与氧化应激和代谢相关。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2021-01-01 DOI: 10.1007/398_2020_57
Yujuan Yang, Kuiyu Meng, Min Chen, Shuyu Xie, Dongmei Chen

Fluorotelomer alcohols (FTOHs) are widely used as industrial raw materials due to their unique hydrophobic and oleophobic properties. However, because of accidental exposure to products containing FTOHs or with the widespread use of FTOHs, they tend to contaminate the water and the soil. There are reports demonstrating that FTOHs can cause various harmful effects in animals and humans (for example, neurotoxicity, hepatotoxicity, nephrotoxicity, immunotoxicity, endocrine-disrupting activity, and developmental and reproductive toxicities). Oxidative stress is related to a variety of toxic effects induced by FTOHs. To date, few reviews have addressed the relationship between the toxicity of FTOHs and oxidative stress. This article summarises research demonstrating that the toxicity induced by FTOHs correlates with oxidative stress and metabolism. Furthermore, during the metabolic process of FTOHs, a number of cytochrome P450 enzymes (CYP450) are involved and many metabolites are produced by these enzymes, which can induce oxidative stress. This is also reviewed.

氟调聚物醇(FTOHs)由于其独特的疏水疏油特性而被广泛用作工业原料。然而,由于意外暴露于含有FTOHs的产品或随着FTOHs的广泛使用,它们往往污染水和土壤。有报告表明,FTOHs可对动物和人类造成各种有害影响(例如,神经毒性、肝毒性、肾毒性、免疫毒性、内分泌干扰活性以及发育和生殖毒性)。氧化应激与FTOHs引起的多种毒性作用有关。迄今为止,关于FTOHs毒性与氧化应激之间关系的综述很少。本文综述了FTOHs诱导的毒性与氧化应激和代谢有关的研究。此外,FTOHs在代谢过程中涉及多种细胞色素P450酶(CYP450),这些酶产生多种代谢物,可诱导氧化应激。对此也进行了回顾。
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引用次数: 1
Interaction of Copper-Based Nanoparticles to Soil, Terrestrial, and Aquatic Systems: Critical Review of the State of the Science and Future Perspectives. 铜基纳米颗粒与土壤、陆地和水生系统的相互作用:对科学现状和未来前景的评述。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2020-01-01 DOI: 10.1007/398_2019_34
Vishnu Rajput, Tatiana Minkina, Bilal Ahmed, Svetlana Sushkova, Ritu Singh, Mikhail Soldatov, Bertrand Laratte, Alexey Fedorenko, Saglara Mandzhieva, Eliza Blicharska, Javed Musarrat, Quaiser Saquib, Jolanta Flieger, Andrey Gorovtsov

In the past two decades, increased production and usage of metallic nanoparticles (NPs) have inevitably increased their discharge into the different compartments of the environment, which ultimately paved the way for their uptake and accumulation in various trophic levels of the food chain. Due to these issues, several questions have been raised on the usage of NPs in everyday life and have become a matter of public health concern. Among the metallic NPs, Cu-based NPs have gained popularity due to their cost-effectiveness and multifarious promising uses. Several studies in the past represented the phytotoxicity of Cu-based NPs on plants. However, comprehensive knowledge is still lacking. Additionally, the impact of Cu-based NPs on soil organisms such as agriculturally important microbes, fungi, mycorrhiza, nematode, and earthworms is poorly studied. This review article critically analyses the literature data to achieve a more comprehensive knowledge on the toxicological profile of Cu-based NPs and increase our understanding of the effects of Cu-based NPs on aquatic and terrestrial plants as well as on soil microbial communities. The underlying mechanism of biotransformation of Cu-based NPs and the process of their penetration into plants have also been discussed herein. Overall, this review could provide valuable information to design rules and regulations for the safe disposal of Cu-based NPs into a sustainable environment.

在过去的二十年中,金属纳米颗粒(NPs)的生产和使用的增加不可避免地增加了它们进入环境中不同区域的排放量,这最终为它们在食物链中不同营养水平的吸收和积累铺平了道路。由于这些问题,人们对日常生活中NPs的使用提出了一些问题,并已成为一个公共卫生问题。在金属NPs中,cu基NPs因其成本效益和多种有前景的用途而受到欢迎。过去的一些研究报道了铜基NPs对植物的毒性。然而,全面的知识仍然缺乏。此外,铜基NPs对土壤生物(如农业上重要的微生物、真菌、菌根、线虫和蚯蚓)的影响研究很少。本文对文献资料进行了批判性分析,以期更全面地了解铜基NPs的毒理学概况,并加深我们对铜基NPs对水生和陆生植物以及土壤微生物群落的影响的认识。本文还讨论了铜基NPs生物转化的潜在机制及其渗透到植物体内的过程。综上所述,该综述可为设计铜基核不扩散物的安全处置规则和法规提供有价值的信息。
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引用次数: 64
Occurrence, Fate and Fluxes of Plastics and Microplastics in Terrestrial and Freshwater Ecosystems. 塑料和微塑料在陆地和淡水生态系统中的发生、命运和通量。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2020-01-01 DOI: 10.1007/398_2019_40
Theresa Schell, Andreu Rico, Marco Vighi

Plastics and microplastics are nowadays ubiquitously found in the environment. This has raised concerns on possible adverse effects for human health and the environment. To date, extensive information exists on their occurrence in the marine environment. However, information on their different sources and their transport within and across different freshwater and terrestrial ecosystems is still limited. Therefore, we assessed the current knowledge regarding the industrial sources of plastics and microplastics, their environmental pathways and load rates and their occurrence and fate in different environmental compartments, thereby highlighting important data gaps which are needed to better describe their global environmental cycle and exposure. This study shows that the quantitative assessment of the contribution of the different major sources of plastics, microplastics and nanoplastics to aquatic and terrestrial ecosystems is challenged by some data limitations. While the presence of microplastics in wastewater and freshwater is relatively well studied, data on sediments and especially soil ecosystems are too limited. Moreover, the overall occurrence of large-sized plastics, the patterns of microplastic and nanoplastic formation from them, the presence and deposition of plastic particles from the atmosphere and the fluxes of all kinds of plastics from soils towards aquatic environments (e.g. by surface water runoff, soil infiltration) are still poorly understood. Finally, this study discusses several research areas that need urgent development in order to better understand the potential ecological risks of plastic pollution and provides some recommendations to better manage and control plastic and microplastic inputs into the environment.

塑料和微塑料如今在环境中无处不在。这引起了人们对可能对人类健康和环境产生不利影响的关注。迄今为止,有大量关于它们在海洋环境中出现的资料。但是,关于它们的不同来源以及它们在不同淡水和陆地生态系统内部和之间的运输情况的资料仍然有限。因此,我们评估了目前关于塑料和微塑料工业来源的知识,它们的环境途径和负荷率,以及它们在不同环境隔间中的发生和命运,从而突出了更好地描述它们的全球环境循环和暴露所需的重要数据缺口。本研究表明,定量评估塑料、微塑料和纳米塑料的不同主要来源对水生和陆地生态系统的贡献受到一些数据限制的挑战。虽然对废水和淡水中微塑料的存在进行了相对充分的研究,但关于沉积物,特别是土壤生态系统的数据过于有限。此外,人们对大尺寸塑料的总体分布、微塑料和纳米塑料的形成模式、大气中塑料颗粒的存在和沉积以及各种塑料从土壤流向水生环境(例如通过地表水径流、土壤渗透)的通量仍然知之甚少。最后,本研究讨论了几个迫切需要发展的研究领域,以便更好地了解塑料污染的潜在生态风险,并为更好地管理和控制塑料和微塑料进入环境提供了一些建议。
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引用次数: 43
Herbicide Exposure and Toxicity to Aquatic Primary Producers. 除草剂暴露及其对水生初级生产者的毒性。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2020-01-01 DOI: 10.1007/398_2020_48
J Arie Vonk, Michiel H S Kraak

The aim of the present review was to give an overview of the current state of science concerning herbicide exposure and toxicity to aquatic primary producers. To this end we assessed the open literature, revealing the widespread presence of (mixtures of) herbicides, inevitably leading to the exposure of non-target primary producers. Yet, herbicide concentrations show strong temporal and spatial variations. Concerning herbicide toxicity, it was concluded that the most sensitive as well as the least sensitive species differed per herbicide and that the observed effect concentrations for some herbicides were rather independent from the exposure time. More extensive ecotoxicity testing is required, especially considering macrophytes and marine herbicide toxicity. Hence, it was concluded that the largest knowledge gap concerns the effects of sediment-associated herbicides on primary producers in the marine/estuarine environment. Generally, there is no actual risk of waterborne herbicides to aquatic primary producers. Still, median concentrations of atrazine and especially of diuron measured in China, the USA and Europe represented moderate risks for primary producers. Maximum concentrations due to misuse and accidents may even cause the exceedance of almost 60% of the effect concentrations plotted in SSDs. Using bioassays to determine the effect of contaminated water and sediment and to identify the herbicides of concern is a promising addition to chemical analysis, especially for the photosynthesis-inhibiting herbicides using photosynthesis as endpoint in the bioassays. This review concluded that to come to a reliable herbicide hazard and risk assessment, an extensive catch-up must be made concerning macrophytes, the marine environment and especially sediment as overlooked and understudied environmental compartments.

本综述的目的是概述有关除草剂暴露和对水生初级生产者的毒性的科学现状。为此,我们评估了公开文献,揭示了除草剂(混合物)的广泛存在,不可避免地导致非目标初级生产者的暴露。然而,除草剂浓度表现出强烈的时空变化。在除草剂毒性方面,不同除草剂的最敏感种和最不敏感种不同,某些除草剂的效应浓度与暴露时间无关。需要更广泛的生态毒性测试,特别是考虑到大型植物和海洋除草剂的毒性。因此,得出的结论是,最大的知识差距涉及与沉积物有关的除草剂对海洋/河口环境中初级生产者的影响。一般来说,水性除草剂对水生初级生产者没有实际的风险。尽管如此,在中国、美国和欧洲测量的阿特拉津,特别是迪乌伦的中位数浓度对初级生产者来说代表着中等风险。由于误用和意外造成的最大浓度甚至可能导致超过固态硬盘中所示影响浓度的近60%。利用生物测定法来确定受污染的水和沉积物的影响,以及识别受关注的除草剂是化学分析的一个有前途的补充,特别是在生物测定中以光合作用为终点的抑制光合作用的除草剂。本文认为,为了得出可靠的除草剂危害和风险评价,必须对大型植物、海洋环境,特别是沉积物等被忽视和研究不足的环境区域进行广泛的研究。
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引用次数: 21
Metal Toxicity and Resistance in Plants and Microorganisms in Terrestrial Ecosystems. 陆地生态系统中植物和微生物的金属毒性和抗性。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2020-01-01 DOI: 10.1007/398_2018_22
Ramya Narendrula-Kotha, Gabriel Theriault, Melanie Mehes-Smith, Kersey Kalubi, Kabwe Nkongolo

Metals are major abiotic stressors of many organisms, but their toxicity in plants is not as studied as in microorganisms and animals. Likewise, research in plant responses to metal contamination is sketchy. Candidate genes associated with metal resistance in plants have been recently discovered and characterized. Some mechanisms of plant adaptation to metal stressors have been now decrypted. New knowledge on microbial reaction to metal contamination and the relationship between bacterial, archaeal, and fungal resistance to metals has broadened our understanding of metal homeostasis in living organisms. Recent reviews on metal toxicity and resistance mechanisms focused only on the role of transcriptomics, proteomics, metabolomics, and ionomics. This review is a critical analysis of key findings on physiological and genetic processes in plants and microorganisms in responses to soil metal contaminations.

金属是许多生物的主要非生物胁迫源,但其对植物的毒性研究不如对微生物和动物的毒性研究多。同样,对植物对金属污染反应的研究也很粗略。植物中与金属抗性相关的候选基因最近被发现和鉴定。植物对金属胁迫的一些适应机制现已被解密。微生物对金属污染的反应以及细菌、古细菌和真菌对金属的抗性之间的关系的新知识拓宽了我们对活生物体中金属稳态的理解。最近关于金属毒性和耐药机制的综述只集中在转录组学、蛋白质组学、代谢组学和离子组学的作用上。本文综述了植物和微生物对土壤金属污染反应的生理和遗传过程的关键发现。
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引用次数: 28
Phytoremediation of Heavy Metal-Contaminated Sites: Eco-environmental Concerns, Field Studies, Sustainability Issues, and Future Prospects. 重金属污染场地的植物修复:生态环境问题、实地研究、可持续性问题和未来展望。
IF 6 3区 环境科学与生态学 Q1 Medicine Pub Date : 2020-01-01 DOI: 10.1007/398_2019_24
Gaurav Saxena, Diane Purchase, Sikandar I Mulla, Ganesh Dattatraya Saratale, Ram Naresh Bharagava

Environmental contamination due to heavy metals (HMs) is of serious ecotoxicological concern worldwide because of their increasing use at industries. Due to non-biodegradable and persistent nature, HMs cause serious soil/water pollution and severe health hazards in living beings upon exposure. HMs can be genotoxic, carcinogenic, mutagenic, and teratogenic in nature even at low concentration. They may also act as endocrine disruptors and induce developmental as well as neurological disorders, and thus, their removal from our natural environment is crucial for the rehabilitation of contaminated sites. To cope with HM pollution, phytoremediation has emerged as a low-cost and eco-sustainable solution to conventional physicochemical cleanup methods that require high capital investment and labor alter soil properties and disturb soil microflora. Phytoremediation is a green technology wherein plants and associated microbes are used to remediate HM-contaminated sites to safeguard the environment and protect public health. Hence, in view of the above, the present paper aims to examine the feasibility of phytoremediation as a sustainable remediation technology for the management of metal-contaminated sites. Therefore, this paper provides an in-depth review on both the conventional and novel phytoremediation approaches; evaluates their efficacy to remove toxic metals from our natural environment; explores current scientific progresses, field experiences, and sustainability issues; and revises world over trends in phytoremediation research for its wider recognition and public acceptance as a sustainable remediation technology for the management of contaminated sites in the twenty-first century.

由于重金属在工业中的使用日益增加,环境污染已成为全球范围内严重的生态毒理学问题。由于其不可生物降解和持久性,接触后会造成严重的土壤/水体污染和严重的生物健康危害。即使在低浓度下,HMs也具有遗传毒性、致癌性、诱变性和致畸性。它们还可能作为内分泌干扰物,诱发发育和神经紊乱,因此,将它们从我们的自然环境中清除,对于污染场所的恢复至关重要。为了应对HM污染,植物修复已经成为一种低成本和生态可持续的解决方案,传统的物理化学清理方法需要高资金投入和劳动力,改变土壤性质和扰乱土壤微生物区系。植物修复是一种利用植物和相关微生物修复污染场地以保护环境和公众健康的绿色技术。因此,鉴于上述情况,本文旨在探讨植物修复作为金属污染场地管理的可持续修复技术的可行性。因此,本文对传统的植物修复方法和新的植物修复方法进行了深入的综述;评估它们从自然环境中去除有毒金属的功效;探索当前的科学进展、实地经验和可持续性问题;并修订了世界范围内植物修复研究的趋势,使其作为二十一世纪污染场地管理的可持续修复技术得到更广泛的认可和公众接受。
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引用次数: 199
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Reviews of environmental contamination and toxicology
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