吸附板法从海水中收集锂。

H. Koyanaka, Y. Koyanaka, Y. Numata, T. Wakamatsu
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引用次数: 1

摘要

采用吸附板法从人工海流中收集锂。在这次实验中,我们从日本别府湾将30吨海水输送到我们的实验室,并在一个循环水道中产生人工洋流。我们使用了由丙烯酸板制成的吸附板,上面涂有氧锰型粉末吸附剂。实验结果表明:(1)在125cm/sec的人工海流条件下,经过60h,每平方米吸附板的锂吸收量达到400mg以上。这相当于58g锂辉石的锂含量,锂辉石是最常见的锂陆地矿石。(2)锂的吸附速率与海流速度有显著关系。因此,我们认为工业锂收集厂应该建在有天然海流的海域,如黑潮。(3)在16次海流收集锂的试验中,吸附板的锂收集能力保持良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Collection of Lithium from Sea Water by an Adsorption Plate Method.
Lithium was collected from an artificial ocean current by using an adsorption plate method. For this experiment, 30 tons of sea water were transported to our laboratory from Beppu Bay, Japan and an artificial ocean current was generated in a circulating water channel. We used an adsorption plate made from acrylic plate onto which an oxygen-manganese type powder adsorbent was applied. The experimental results are shown as follows:(1) It was confirmed that over 400mg Li were collected per unit square meter of adsorption plate, after 60hours, in an artificial ocean current of 125cm/sec. This amount of Li is equivalent to the Li content of 58g spodumene, which is the most popular Li land ore.(2) The rate of Li adsorption depended significantly on the ocean current velocity. Therefore, in our opinion, an industrial Li collection plant should be constructed at a sea area where exists a natural ocean current, such as the Kuroshio current.(3) The Li collecting ability of the adsorption plate was maintained throughout 16 tests of Li collection from the ocean current.
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