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Green Treatment of Phosphate from Wastewater Using a Porous Bio-Templated Graphene Oxide/MgMn-Layered Double Hydroxide Composite

机译:多孔生物模板氧化石墨烯/ MgMn层状双氢氧化物复合材料对废水中的磷酸盐进行绿色处理

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摘要

Excessive phosphorus in water is the primary culprit for eutrophication, which causes approximately $2.2 billion annual economic loss in the United States. This study demonstrates a phosphate-selective sustainable method by adopting leaves as a natural bio-template, where MgMn-layered double hydroxide (MgMn-LDH) and graphene oxide (GO) can be grown to obtain L-GO/MgMn-LDH. After calcination, the composite shows a hierarchical porous structure and selective recognition of phosphate, which achieves significantly high and recyclable selective phosphate adsorption capacity and desorption rate of 244.08 mg-P g and 85.8%, respectively. The detail variation of LDHs during calcination has been observed via transmission electron microscope (TEM). Moreover, the roles in facilitating phosphate adsorption and antimicrobial ability of chemical constituents in leaves, biflavonoids, and triterpenoids have been investigated. These results indicate the proposed bio-templated adsorbent is practical and eco-friendly for phosphorus sustainability in commercial wastewater treatment.
机译:水中的磷过多是富营养化的主要原因,在美国每年造成约22亿美元的经济损失。这项研究通过采用叶子作为天然生物模板展示了一种磷酸盐选择性可持续方法,其中可以生长MgMn层状双氢氧化物(MgMn-LDH)和氧化石墨烯(GO),以获得L-GO / MgMn-LDH。煅烧后,复合材料显示出分层的多孔结构和对磷酸盐的选择性识别,从而实现了显着高的和可回收的选择性磷酸盐吸附容量和24.08 mg-P g的脱附率和85.8%的脱附率。通过透射电子显微镜(TEM)观察到了煅烧过程中LDHs的详细变化。此外,已经研究了促进叶片,双黄酮类化合物和三萜类化合物中的化学成分吸收磷酸盐和抗菌能力的作用。这些结果表明,所提出的生物模板吸附剂对于商业废水处理中的磷可持续性是实用且环保的。

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