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Marine and Freshwater Feedstocks as a Precursor for Nitrogen-Containing Carbons: A Review

机译:海洋和淡水原料作为含氮碳的前体:综述

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摘要

Marine-derived as well as freshwater feedstock offers important benefits, such as abundance, morphological and structural variety, and the presence of multiple elements, including nitrogen and carbon. Therefore, these renewal resources may be useful for obtaining N- and C-containing materials that can be manufactured by various methods, such as pyrolysis and hydrothermal processes supported by means of chemical and physical activators. However, every synthesis concept relies on an efficient transfer of nitrogen and carbon from marine/freshwater feedstock to the final product. This paper reviews the advantages of marine feedstock over synthetic and natural but non-marine resources as precursors for the manufacturing of N-doped activated carbons. The manufacturing procedure influences some crucial properties of nitrogen-doped carbon materials, such as pore structure and the chemical composition of the surface. An extensive review is given on the relationship between carbon materials manufacturing from marine feedstock and the elemental content of nitrogen, together with a description of the chemical bonding of nitrogen atoms at the surface. N-doped carbons may serve as effective adsorbents for the removal of pollutants from the gas or liquid phase. Non-recognized areas of adsorption-based applications for nitrogen-doped carbons are presented, too. The paper proves that nitrogen-doped carbon materials belong to most of the prospective electrode materials for electrochemical energy conversion and storage technologies such as fuel cells, air–metal batteries, and supercapacitors, as well as for bioimaging. The reviewed material belongs to the widely understood field of marine biotechnology in relation to marine natural products.
机译:海洋来源的以及淡水原料提供了重要的好处,例如丰富,形态和结构的多样性,以及包括氮和碳在内的多种元素的存在。因此,这些更新资源可用于获得可通过各种方法制造的含N和C的材料,例如通过化学和物理活化剂支持的热解和水热工艺。但是,每个合成概念都依赖于将氮和碳从海洋/淡水原料有效转移到最终产品中。本文概述了海洋原料作为合成N掺杂活性炭的前体所具有的优势,它优于合成和天然但非海洋资源。制造过程会影响氮掺杂碳材料的一些关键性能,例如孔结构和表面化学成分。对用海洋原料生产的碳材料与氮元素含量​​之间的关系进行了广泛的综述,并描述了表面氮原子的化学键。氮掺杂的碳可以用作从气相或液相中去除污染物的有效吸附剂。还介绍了基于吸附的氮掺杂碳应用的未被认识的领域。该论文证明,掺杂氮的碳材料属于电化学能量转换和存储技术的大多数预期电极材料,例如燃料电池,空气金属电池,超级电容器以及生物成像。审阅的材料属于与海洋天然产物有关的海洋生物技术领域。

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