Suppr超能文献

沸石对海洋微藻培养的影响:简要综述

Effects of zeolites on cultures of marine micro-algae: A brief review.

作者信息

Fachini Adriano, Vasconcelos Maria Teresa S D

机构信息

Interdisciplinary Center for Marine and Environmental Research, CIIMAR, Rua dos Bragas, 289, 4050-123 Porto, Portugal.

出版信息

Environ Sci Pollut Res Int. 2006 Oct;13(6):414-7. doi: 10.1065/espr2006.01.293.

Abstract

GOAL, SCOPE AND BACKGROUND: The cation-exchange capacity of zeolites is well known and has been increasingly explored in different fields with both economic and environmental successes. In aquatic medium with low salinity, zeolites have found multiple applications. However, a review of the literature on the applications of zeolites in salt waters found relatively few articles, including some recently published papers. The purpose of this review is to present the state-of-the-art on applications of using zeolites for amending the trace elemental contents of salt water as well as the implications of this property for promoting marine micro-algal growth.

MAIN FEATURES

This paper deals with the following features: Sorption capacity of zeolites including 1. application of zeolites in saltwater, 2. the role of silicon and zeolites on cultures of micro-algae, and 3. the role of organically chelated trace metals.

RESULTS

The following competing factors have been identified as effects of zeolites on algal growth in salt water: (i) ammonia decrease: growth inhibition reduced; (ii) macro-nutrients increase, mainly silicon: stimulation of silicon-dependent algae; (iii) trace metals increase (desorption from zeolites) or decrease (adsorption): inhibition or stimulation, depending on the nature of the element and its concentration; and, (iv) changes in the chelating organics exudation: inhibition or stimulation of growth, depending on the (a) nature of the complexed element; (b) bioavailability of the complex; and (c) concentration of the elements simultaneously present in inorganic forms.

DISCUSSION

Zeolites have been capable of stimulating the growth of the silicon-demanding marine micro-algae, like diatoms, mainly because they can act as a silicon buffer in seawater. Zeolites can also influence the yield of non-silicon-demanding algae, because the changes they can cause (liberation and adsorption of trace elements) in the composition of the medium.

CONCLUSIONS

Zeolites have been capable of stimulating the growth of the marine micro-algae. However, the extent of ion exchange between zeolite and seawater, which conditions the effects, will depend on several factors: (1) initial metal concentration in seawater; (2) levels of trace metals in the zeolites (contaminants); (3) characteristics of the zeolites in terms of both ion-exchange capacity and specific affinities for the different cations; (4) quantity of zeolite per litre of solution; (5) pH and (6) response of the organism in terms of liberation of organic ligands.

RECOMMENDATIONS

Therefore, a previous investigation in each particular case is recommended, in order to select the zeolitic characteristics and concentrations that will maximize the algal yield.

PERSPECTIVES

Stimulation of phytoplankton growth can be economically relevant since phytoplankton constitutes the basis of the marine food webs and is required in fish farming nurseries in the marine aquaculture industry. Zeolites are cheap, only small amounts (few milligrams per liter of culture) are required and the addition of some micro-nutrients may be omitted. Therefore, the inclusion of zeolites in algal cultures in aquaculture may have economic advantages.

摘要

目标、范围与背景:沸石的阳离子交换能力广为人知,并且在不同领域中得到了越来越多的探索,在经济和环境方面均取得了成功。在低盐度的水生介质中,沸石已经有多种应用。然而,对有关沸石在盐水中应用的文献进行综述后发现相关文章相对较少,包括一些最近发表的论文。本综述的目的是介绍利用沸石改善盐水微量元素含量的应用现状,以及这一特性对促进海洋微藻生长的影响。

主要特征

本文涉及以下特征:沸石的吸附能力,包括1. 沸石在盐水中的应用;2. 硅和沸石在微藻培养中的作用;3. 有机螯合微量元素的作用。

结果

已确定以下竞争因素是沸石对盐水中藻类生长的影响:(i)氨减少:生长抑制减轻;(ii)大量营养素增加,主要是硅:刺激依赖硅的藻类生长;(iii)微量元素增加(从沸石上解吸)或减少(吸附):抑制或刺激,这取决于元素的性质及其浓度;以及(iv)螯合有机物渗出的变化:生长抑制或刺激,这取决于(a)络合元素的性质;(b)络合物的生物利用度;以及(c)同时以无机形式存在的元素的浓度。

讨论

沸石能够刺激对硅有需求的海洋微藻(如硅藻)的生长,主要是因为它们可以在海水中充当硅缓冲剂。沸石还可以影响对硅无需求的藻类的产量,因为它们会引起培养基成分的变化(微量元素的释放和吸附)。

结论

沸石能够刺激海洋微藻的生长。然而,沸石与海水之间离子交换的程度决定了其效果,这将取决于几个因素:(1)海水中初始金属浓度;(2)沸石中的微量元素水平(污染物);(3)沸石在离子交换能力和对不同阳离子的特异性亲和力方面的特性;(4)每升溶液中沸石的量;(5)pH值;以及(6)生物体在有机配体释放方面的反应。

建议

因此,建议在每种具体情况下进行预先研究,以选择能够使藻类产量最大化的沸石特性和浓度。

展望

刺激浮游植物生长在经济上具有重要意义,因为浮游植物构成了海洋食物网的基础,并且在海水养殖行业的鱼苗培育中是必需的。沸石价格便宜,只需少量(每升培养物几毫克),并且可以省略添加一些微量营养素。因此,在水产养殖的藻类培养中添加沸石可能具有经济优势。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验