Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao, 266100, China.
Institute of Oceanology, Chinese Academy of Sciences, Qingdao, 266071, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
Mar Environ Res. 2020 Jun;158:105005. doi: 10.1016/j.marenvres.2020.105005. Epub 2020 May 4.
In order to investigate the combined toxicities of copper nanoparticles (nano-Cu) with microplastic on microalgae Skeletonema costatum, growth inhibition tests were carried out. The toxic effects of copper nanoparticles and microplastic on the microalgae under singleness and coexistence conditions were investigated. Both copper nanoparticles and microplastic inhibited the growth of S. costatum. The growth inhibition ratio (IR) increased with the increasing of particle concentrations and incubation time. The toxicity of copper nanoparticles was reduced with the addition of microplastic. The concentrations of Cu in the medium with or without addition of microplastic were determined. It was found that adsorption of Cu on microplastic and aggregation between copper nanoparticles and microplastic are the main reasons for attenuation of toxicity of nano-Cu with adding microplastic. The adhesion and aggregate interactions between microalgae and nanomaterial were also approved by the observations through scanning electron microscopy.
为了研究铜纳米粒子(nano-Cu)与微塑料对中肋骨条藻(Skeletonema costatum)的联合毒性,进行了生长抑制试验。研究了铜纳米粒子和微塑料在单一和共存条件下对微藻的毒性作用。铜纳米粒子和微塑料均抑制了中肋骨条藻的生长。随着颗粒浓度和孵育时间的增加,生长抑制率(IR)增加。随着微塑料的加入,铜纳米粒子的毒性降低。测定了添加或不添加微塑料的培养基中 Cu 的浓度。发现 Cu 在微塑料上的吸附和铜纳米粒子与微塑料之间的聚集是添加微塑料使 nano-Cu 毒性降低的主要原因。扫描电子显微镜的观察也证实了微藻和纳米材料之间的附着和聚集相互作用。