five

Activity percent and composition percent of radionuclides, protein, carbohydrates, and iron at various pH levels using isoelectric focusing of radionuclide-labeled EPS

收藏
DataONE2025-03-09 更新2025-04-26 收录
下载链接:
https://search.dataone.org/view/sha256:927242efd20833b2785bdb391a08b86dc26e705fe850a8bfe9545b77d685b66b
下载链接
链接失效反馈
官方服务:
资源简介:
<p>Laboratory studies were conducted to examine the sorption of selected radionuclides (234Th, 233Pa, 210Po,<br /> 210Pb, and 7Be) onto inorganic (pure silica and acid-cleaned diatom frustules) and organic (diatom cells with or<br /> without silica frustules) particles in natural seawater and the role of templating biomolecules and exopolymeric<br /> substances (EPS) extracted from the same species of diatom, Phaeodactylum tricornutum, in the sorption process.<br /> The range of partition coefficients (Kd, reported as logKd) of radionuclides between water and the different<br /> particle types was 4.78–6.69 for 234Th, 5.23–6.71 for 233Pa, 4.44–5.86 for 210Pb, 4.47–4.92 for 210Po, and 4.93–7.23 for 7Be, similar to values reported for lab and field determinations. The sorption of all radionuclides was<br /> significantly enhanced in the presence of organic matter associated with particles, resulting in Kd one to two<br /> orders of magnitude higher than for inorganic particles only, with highest values for 7Be (logKd of 7.2). Results<br /> further indicate that EPS and frustule-embedded biomolecules in diatom cells are responsible for the sorption<br /> enhancement rather than the silica shell itself. By separating radiolabeled EPS via isoelectric focusing, we found<br /> that isoelectric points are radionuclide specific, suggesting that each radionuclide binds to specific biopolymeric<br /> functional groups, with the most efficient binding sites likely occurring in acid polysaccharides, iron hydroxides,<br /> and proteins. Further progress in evaluating the effects of diatom frustule–related biopolymers on binding,<br /> scavenging, and fractionation of radionuclides would require the application of molecular-level characterization<br /> techniques.</p>
创建时间:
2025-03-09
二维码
社区交流群
二维码
科研交流群
商业服务