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首页> 外文期刊>Water, Air, and Soil Pollution >HEAVY METAL BIOSORPTION BY PLANT BIOMASS OF THE MACROPHYTE LUDWIGIA STOLONIFERA
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HEAVY METAL BIOSORPTION BY PLANT BIOMASS OF THE MACROPHYTE LUDWIGIA STOLONIFERA

机译:大型紫花苜蓿STOLONIFERA的植物生物量对重金属的生物吸附

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摘要

Ludwigia stolonifera biomass of roots, floating roots and leaves were tested for their performance as heavy metal biofilters. Cadmium (Cd) and nickel (Ni) (50 ppm) solutions were filtered through 0.5-1.5 g packed columns with each biomaterial, to determine their metal removal efficiency. Root column was more efficient in removing Ni (as low as 6 ppb in the effluent) than of Cd (as low as to 22 ppb in the effluent). This tendency was also observed upon treatment of a mixed solution of both metals. Floating roots column reduced Cd content to the same level as the root column, but its metal binding capacity was higher; 93 mg Cd g~(-1) DW in floating roots in comparison to 43 mg Cd g~(-1) DW in the roots biofilter. Leaf biomass column demonstrated the best metal binding capacity; 128 mg Cd g~(-1) DW, and Cd concentration in the effluent was 17 ppb. Pectin content was 5, 8 and 10% WAV in roots, leaves and floating roots biofilters, respectively. It seems that ion exchange is the major mechanism by which the metal is biosorbed. Evidence for the exchange of the bound heavy metal ions against the discharge of light metal ions such as calcium (Ca), magnesium (Mg), potassium (K) and sodium (Na) was provided.
机译:测试了路德维希氏根,漂浮根和叶的生物量作为重金属生物过滤器的性能。将镉(Cd)和镍(Ni)(50 ppm)溶液与每种生物材料一起通过0.5-1.5 g填充柱进行过滤,以确定其金属去除效率。根柱色谱柱在去除Ni(废水中低至6 ppb)方面比Cd(废水中低至22 ppb)更有效。在处理两种金属的混合溶液时也观察到这种趋势。漂浮根柱将Cd含量降低到与根柱相同的水平,但其金属结合力更高;与根生物滤池中43 mg Cd g〜(-1)DW相比,漂浮根中的Cd g〜(-1)DW为93 mg。叶生物量柱显示出最佳的金属结合能力; Cd g〜(-1)DW为128 mg,出水中Cd浓度为17 ppb。根,叶和浮根生物滤池中果胶的含量分别为5、8和10%WAV。似乎离子交换是金属被生物吸附的主要机理。提供了结合的重金属离子与轻金属离子(例如钙(Ca),镁(Mg),钾(K)和钠(Na))的放电交换的证据。

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