Tracking relevant nanomaterial transformations, exposure, uptake and effects in freshwater and soil systems
Tracking relevant nanomaterial transformations, exposure, uptake and effects in freshwater and soil systems
批准号:
NE/N006224/1
负责人:
David Spurgeon
金额:
$41.17万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2015
资助国家:
英国
项目状态:
已结题
起止时间:
2015 至 --
中文摘要
纳米材料(NM)是非常小的颗粒,远远小于人类头发的宽度。它们的合成是为了从相同材料的较大形式提供不同的性能,现在它们被广泛用于各种产品。NMS提供的特性包括增强的强度、反射光线或与其他化学物质反应的能力以及高效的电导。NM的价值现在得到了非常广泛的认可,许多公司开始将其用于常见的消费品,如防晒霜和化妆品,以及工业产品,如面料和建筑材料。这意味着少量的NMS将从日常使用的产品到达更广泛的环境。最近的许多研究都在评估NMS对人类和环境的安全性。这些研究中的大多数都着眼于新制造的NMS形式。然而,越来越明显的是,一旦NMS被释放到更广泛的环境中,它们就不会停留在它们的制造状态--它们会改变或“转变”。变化会影响纳米颗粒的大小、电荷、表面涂层以及它们与其他物质(如土壤颗粒或其他化学物质)的结合能力。转变既发生在向环境转移(例如通过污水处理厂)的过程中,也发生在NMS到达更广泛的环境本身(河流、沉积物和土壤)之后。了解NMS的转化过程和环境命运(S)是非常重要的,因为它们会影响到它们对人类和环境的毒性。本项目的目的是更详细地研究这些NM转换。我们想更好地了解不同类型的网管是以相同的方式转型还是以不同的方式转型。我们将使用不同类型的NMS进行工作,包括由银、二氧化钛、聚苯乙烯(一种塑料)和石墨烯(一种碳)制成的NMS。我们将首先使用实验室方法,模拟在污水处理过程中以及在自然水和土壤中改变NMS的方式,以创建转化的材料,然后我们将进行研究。我们将测试这些新的和改变的NMS如何影响一系列常见的水生和土壤生物,并将它们在“原始”状态下的毒性与它们在环境中转化不同时间后的毒性进行对比。在我们的测试中,我们将测量每种物质有多少被有机体吸收到不同的组织中,以及这是否会影响它们的生长和繁殖。我们还将测量随着生物体吸收不同的NMS而可能受到影响的不同基因的活性。我们预测,每一个NM都将以一种改变其造成有害影响的可能性的方式进行改造。每项测试都将使用英国各地常见的不同土壤和水重复进行,以确定不同条件下的变化情况。最后,我们将建立定制的大型暴露系统(中观系统),旨在模拟污水处理厂排放到的河流和污泥扩散到的土壤,并在它们中种植各种常见的英国本土植物、无脊椎动物和鱼类(在水中)。通过跟踪这些中观系统几个月,我们可以模拟真实的英国环境中可能发生的事情,就我们转变后的NMS的命运和影响而言。我们将使用这些结果来改进模型,这些模型能够预测我们转变后的网络管理系统将如何运行以及它们将产生的影响。综上所述,我们的结果应该有助于我们预测NMS的毒性,以帮助确保它们的安全性,支持纳米技术产业未来的增长。为此,我们将运行和协调一个英国纳米学者和监管机构平台,并将通过主要的欧盟(纳米安全集群)和全球(经济合作与讨论组织)政策工作组以及公众展示我们的成果,从而尽可能广泛地接触到受众。
英文摘要
Nanomaterials (NM) are very small particles much less than the width of a human hair. They are synthesised to provide different properties from larger forms of the same material and they are now used in a wide range of products. The properties that NMs provide include enhanced strength, an ability to reflect light or to react with other chemicals, and efficient electrical conductance. The value of NM is now very widely recognised and many companies are starting to use them in common consumer products, such as sunscreens and cosmetics, plus industry products, such as fabrics and building materials. This means that small quantities of NMs will reach the wider environment from everyday product use.A great deal of recent research has gone into assessing the safety of NMs for humans and the environment. Most of these studies have looked at NMs in their newly-manufactured forms. It is increasingly apparent, however, that once NMs are released into the wider environment, they do not stay in their manufactured state - they change or 'transform'. Transformations can affect NM size, charge, their surface coatings and their ability to bind to other things such as soil particles or other chemicals. Transformations occur both during transfer to the environment (e.g. via sewage works) and once NMs reach the wider environment itself (rivers, sediments and soils). It is of huge importance that we understand the transformation processes and environmental fate(s) of NMs as they can affect their toxicity to humans and the environment. The aim of this project is to study these NM transformations in more detail. We want to better understand whether different types of NMs are transformed in the same or different ways. We will conduct our work with different types of NMs, including those made from silver, titanium dioxide, polystyrene (a type of plastic) and graphene (a type of carbon). We will first use laboratory methods that mimic the ways that NMs are changed during sewage treatment and in natural waters and soils to create the transformed materials that we will then study. We will test how these new and changed NMs affect a range of common aquatic and soil organisms and contrasting their toxicity in their "pristine" state with that after they have been transformed in the environment for different times. During our tests, we will measure how much of each material is taken up by the organisms into different tissues and whether this affects how they grow and reproduce. We will also measure the activity of different genes that are likely to be affected as organisms take up different NMs. We predict that each NM will be transformed in a way that changes its likelihood to cause harmful effects. Each test will be repeated using different soils and waters typically found across the UK, to determine how transformations vary under different conditions.Finally, we will build custom-made, large exposure systems ('mesocosms') designed to mimic the rivers into which sewage works discharged and soils upon which sludge is spread, and populate them with a wide range of common UK native plants, invertebrates and fish (in the waters). By following these mesocosms for several months, we can simulate what may actually be happening in real UK environments in terms of the fate and effects of our transformed NMs. We will use the results to improve models able to predict how our transformed NMs will behave and the effects they will have. Taken together, our results should help us to predict the toxicity of NMs to help assure their safety, supporting the growth of the nanotechnology industry into the future. To this latter end we will run and coordinate a UK Nano-Academics & Regulators Platform, and will also present our results through major European Union (NanoSafety Cluster) and worldwide (Organisation for Economic Cooperation and Discussion) policy working groups, as well as to the public, so reaching as wide an audience as possible.
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DOI:
10.1039/d0en00578a
发表时间:
2020-10
期刊:
Environmental science. Nano
影响因子:
--
作者:
[C. Schultz;J. Adams;K. Jurkschat;S. Lofts;D. Spurgeon]
通讯作者:
C. Schultz;J. Adams;K. Jurkschat;S. Lofts;D. Spurgeon
DOI:
10.1039/c8en01378k
发表时间:
2019-06
期刊:
Environmental science. Nano
影响因子:
--
作者:
[E. Petersen;M. Mortimer;R. Burgess;R. Handy;S. Hanna;K. Ho;Monique E. Johnson;S. Loureiro;]
通讯作者:
E. Petersen;M. Mortimer;R. Burgess;R. Handy;S. Hanna;K. Ho;Monique E. Johnson;S. Loureiro;
DOI:
10.1039/c8en00054a
发表时间:
2018-11
期刊:
Environmental science. Nano
影响因子:
--
作者:
[C. Schultz;Joanna Gray;R. Verweij;M. Busquets-Fité;V. Puntes;C. Svendsen;E. Lahive;M. Matzke]
通讯作者:
C. Schultz;Joanna Gray;R. Verweij;M. Busquets-Fité;V. Puntes;C. Svendsen;E. Lahive;M. Matzke
DOI:
10.1021/acs.est.0c05125
发表时间:
2021-02
期刊:
Environmental science & technology
影响因子:
11.4
作者:
[S. Short;A. Robinson;E. Lahive;A. Green Etxabe;Szabolcs Hernádi;M. Pereira;P. Kille;D. Spurgeon]
通讯作者:
S. Short;A. Robinson;E. Lahive;A. Green Etxabe;Szabolcs Hernádi;M. Pereira;P. Kille;D. Spurgeon
Soil properties influence the toxicity and availability of Zn from ZnO nanoparticles to earthworms
土壤特性影响 ZnO 纳米粒子对蚯蚓的毒性和有效性
DOI:
10.1016/j.envpol.2022.120907
发表时间:
2023
期刊:
Environmental Pollution
影响因子:
8.9
作者:
[Lahive E]
通讯作者:
Lahive E
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