首页> 外文OA文献 >Inhibition of Barnacle (\u3cem\u3eAmphibalanus amphitrite\u3c/em\u3e) Cyprid Settlement by Means of Localized, Pulsed Electric Fields
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Inhibition of Barnacle (\u3cem\u3eAmphibalanus amphitrite\u3c/em\u3e) Cyprid Settlement by Means of Localized, Pulsed Electric Fields

机译:通过局部脉冲电场抑制藤壶(\ u3cem \ u3eAmphibalanus amphitrite \ u3c / em \ u3e)赛普拉斯定居

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摘要

The increasing needs for environmental friendly antifouling coatings have led to investigation of new alternatives for replacing copper and TBT-based paints. In this study, results are presented from larval settlement assays of the barnacle Amphibalanus (= Balanus) amphitrite on planar, interdigitated electrodes (IDE), having 8 or 25 mum of inter-electrode spacing, upon the application of pulsed electric fields (PEF). Using pulses of 100 ms in duration, 200 Hz in frequency and 10 V in pulse amplitude, barnacle settlement below 5% was observed, while similar IDE surfaces without pulse application had an average of 40% settlement. The spacing between the electrodes did not affect cyprid settlement. Assays with lower PEF amplitudes did not show significant settlement inhibition. On the basis of the settlement assays, the calculated minimum energy requirement to inhibit barnacle settlement is 2.8 W h m(-2).
机译:对环保型防污涂料的需求不断增长,导致人们开始研究替代铜和TBT涂料的新替代品。在这项研究中,结果是在脉冲电场(PEF)的作用下,在指间间距为8或25 m的平面交叉指状电极(IDE)上,对藤壶ampmphalanus(= Balanus)辉石幼虫的定居分析得出的结果。使用持续时间为100 ms,频率为200 Hz,脉冲幅度为10 V的脉冲,观察到藤壶的沉降低于5%,而没有脉冲施加的类似IDE表面的平均沉降为40%。电极之间的间距不影响赛普拉斯沉淀。 PEF幅度较低的测定法未显示出明显的沉降抑制作用。根据沉降试验,计算出的抑制藤壶沉降的最低能量需求为2.8 W h m(-2)。

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