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DOI10.1021/acs.est.7b04130
Transformations of Nanoenabled Copper Formulations Govern Release, Antifungal Effectiveness, and Sustainability throughout the Wood Protection Lifecycle
Pantano, Daniele1; Neubauer, Nicole2,3; Navratilova, Jana4,8; Scifo, Lorette5; Civardi, Chiara6,7; Stone, Vicki1; von der Kammer, Frank4; Mueller, Philipp2,3; Sobrido, Marcos Sanles5; Angeletti, Bernard5; Rose, Jerome5; Wohlleben, Wendel2,3
发表日期2018-02-06
ISSN0013-936X
卷号52期号:3页码:1128-1138
英文摘要

Here we compare the standard European benchmark of wood treatment by molecularly dissolved copper amine (Cu-amine), also referred to as aqueous copper amine (ACA), against two nanoenabled formulations: copper(II)oxide nanoparticles (CuO NPs) in an acrylic paint to concentrate Cu as a barrier on the wood surface, and a suspension of micronized basic copper carbonate (CuCO3 center dot Cu(OH)(2)) for wood pressure treatment. After characterizing the properties of the (nano)materials and their formulations, we assessed their effects in vitro against three fungal species: Coniophora puteana, Gloeophyllum trabeum, and Trametes versicolor, finding them to be mediated only partially by ionic transformation. To assess the use phase, we quantify both release rate and form. Cu leaching rates for the two types of impregnated wood (conventional and nanoenabled) are not significantly different at 172 +/- 6 mg/m(2), with Cu being released predominantly in ionic form. Various simulations of outdoor aging with release sampling by runoff, during condensation, by different levels of mechanical shear, all resulted in comparable form and rate of release from the nanoenabled or the molecular impregnated woods. Because of dissolving transformations, the nanoenabled impregnation does not introduce additional concern over and above that associated with the traditional impregnation. In contrast, Cu released from wood coated with the CuO acrylate contained particles, but the rate was at least 100-fold lower. In the same ranking, the effectiveness to protect against the wood-decaying basidiomycete Coniophora puteana was significant with both impregnation technologies but remained insignificant for untreated wood and wood coated by the acrylic CuO. Accordingly, a lifecycle-based sustainability analysis indicates that the CuO acrylic coating is less sustainable than the technological alternatives, and should not be developed into a commercial product.


语种英语
WOS记录号WOS:000424851700023
来源期刊ENVIRONMENTAL SCIENCE & TECHNOLOGY
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/61672
作者单位1.Heriot Watt Univ, Nano Safety Res Grp, Edinburgh EH14 4AS, Midlothian, Scotland;
2.BASF SE, RAA OR, Mat Phys, Carl Bosch Str 38, D-67056 Ludwigshafen, Germany;
3.BASF SE, RAA OS, Carl Bosch Str 38, D-67056 Ludwigshafen, Germany;
4.Univ Vienna, Deepartment Environm Geosci, A-1090 Vienna, Austria;
5.CEREGE Marseille Univ, CNRS, INRA, IRD,Coll France, F-13545 Aix En Provence, France;
6.Swiss Fed Labs Mat Sci & Technol, Empa, CH-9014 St Gallen, Switzerland;
7.ETH, Inst Bldg Mat, CH-8049 Zurich, Switzerland;
8.US EPA, Res Triangle Pk, NC 27711 USA
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Pantano, Daniele,Neubauer, Nicole,Navratilova, Jana,et al. Transformations of Nanoenabled Copper Formulations Govern Release, Antifungal Effectiveness, and Sustainability throughout the Wood Protection Lifecycle[J]. 美国环保署,2018,52(3):1128-1138.
APA Pantano, Daniele.,Neubauer, Nicole.,Navratilova, Jana.,Scifo, Lorette.,Civardi, Chiara.,...&Wohlleben, Wendel.(2018).Transformations of Nanoenabled Copper Formulations Govern Release, Antifungal Effectiveness, and Sustainability throughout the Wood Protection Lifecycle.ENVIRONMENTAL SCIENCE & TECHNOLOGY,52(3),1128-1138.
MLA Pantano, Daniele,et al."Transformations of Nanoenabled Copper Formulations Govern Release, Antifungal Effectiveness, and Sustainability throughout the Wood Protection Lifecycle".ENVIRONMENTAL SCIENCE & TECHNOLOGY 52.3(2018):1128-1138.
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