Suppr超能文献

铝的环境影响。

Environmental effects of aluminium.

机构信息

Norwegian Institute for Water Research, Korsvoll, P.O. Box 69, N-0808, Oslo 8, Norway.

出版信息

Environ Geochem Health. 1990 Mar;12(1-2):17-27. doi: 10.1007/BF01734045.

Abstract

Aluminium (Al), when present in high concentrations, has for long been recognised as a toxic agent to aquatic freshwater organisms,i.e. downstream industrial point sources of Al-rich process water. Today the environmental effects of aluminium are mainly a result of acidic precipitation; acidification of catchments leads to increased Al- concentrations in soil solution and freshwaters. Large parts of both the aquatic and terrestrial ecosystems are affected.In the aquatic environment, aluminium acts as a toxic agent on gill-breathing animals such as fish and invertebrates, by causing loss of plasma- and haemolymph ions leading to osmoregulatory failure. In fish, the inorganic (labile) monomeric species of aluminium reduce the activities of gill enzymes important in the active uptake of ions. Aluminium seems also to accumulate in freshwater invertebrates. Dietary organically complexed aluminium, maybe in synergistic effects with other contaminants, may easily be absorbed and interfere with important metabolic processes in mammals and birds.The mycorrhiza and fine root systems of terrestrial plants are adversely affected by high levels of inorganic monomeric aluminium. As in the animals, aluminium seems to have its primary effect on enzyme systems important for the uptake of nutrients. Aluminium can accumulate in plants. Aluminium contaminated invertebrates and plants might thus be a link for aluminium to enter into terrestrial food chains.

摘要

铝(Al)在高浓度下长期以来一直被认为是对水生淡水生物有毒的物质,即富铝工艺水的下游工业点源。如今,铝的环境影响主要是由于酸性沉降物造成的;集水区的酸化导致土壤溶液和淡水中的铝浓度增加。水生和陆地生态系统的大部分都受到影响。在水生环境中,铝通过引起等离子体和血淋巴离子的损失,导致渗透调节失败,从而对鳃呼吸的动物(如鱼类和无脊椎动物)产生毒性作用。在鱼类中,无机(不稳定)单体铝物种降低了在离子主动摄取中起重要作用的鳃酶的活性。铝似乎也在淡水中无脊椎动物中积累。膳食中有机复合的铝,可能与其他污染物协同作用,很容易被吸收,并干扰哺乳动物和鸟类的重要代谢过程。土壤植物的菌根和细根系统受到无机单体铝的高水平的不利影响。与动物一样,铝似乎对吸收营养物质的重要酶系统有其主要影响。铝可以在植物中积累。因此,受铝污染的无脊椎动物和植物可能是铝进入陆地食物链的一个环节。

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