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The capacity of aquatic macrophytes for phytoremediation and their disposal with specific reference to water hyacinth

机译:水生植物的植物修复能力及其处理方法,尤其是参照水葫芦

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摘要

The actual amount of fresh water readily accessible for use is < 1 % of the total amount of water on earth, and is expected to shrink further due to the projected growth of the population by a third in 2050. Worse yet are the major issues of water pollution, including mining and industrial waste which account for the bulk of contamination sources. The use of aquatic macrophytes as a cost-effective and eco-friendly tool for phytoremediation is well documented. However, little is known about the fate of those plants after phytoremediation. This paper reviews the options for safe disposal of waste plant biomass after phytoremediation. Among the few mentioned in the literature are briquetting, incineration and biogasification. The economic viability of such processes and the safety of their economic products for domestic use are however, not yet established. Over half of the nations in the world are involved in mining of precious metals, and tailings dams are the widespread legacy of such activities. Thus, the disposal of polluted plant biomass onto mine storage facilities such as tailing dams could be an interim solution. There, the material can act as mulch for the establishment of stabilizing vegetation and suppress dust. Plant decomposition might liberate its contaminants, but in a site where containment is a priority.
机译:可供使用的实际淡水量不到地球上总水量的1%,并且由于预计到2050年人口将增长三分之一,预计还会进一步减少。水污染,包括采矿和工业废物,占污染源的大部分。使用水生植物作为一种经济有效且生态友好的植物修复工具已得到充分证明。但是,对于植物修复后这些植物的命运知之甚少。本文综述了植物修复后安全处置废物植物生物量的方法。在文献中提到的少数几个是团块化,焚化和生物气化。但是,尚未确定这种方法在经济上的可行性以及其家用经济产品的安全性。世界上有一半以上的国家从事贵金属的开采,而尾矿坝则是此类活动的广泛遗产。因此,将污染的植物生物质处理到矿山存储设施(如尾矿坝)上可能是一个临时解决方案。在那里,该材料可以用作覆盖物,以建立稳定的植被并抑制灰尘。植物的分解可能会释放其污染物,但要优先处理围堵的地点。

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