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纤维素生产废物和城市污水污泥对植物混合物生物量和重金属吸收的影响。

The effect of cellulose production waste and municipal sewage sludge on biomass and heavy metal uptake by a plant mixture.

机构信息

Department of Agricultural and Environmental Chemistry, University of Agriculture in Krakow, Krakow, Poland.

Institute of Soil Science, Environment Engineering and Management, University of Life Sciences in Lublin, Lublin, Poland.

出版信息

Environ Sci Pollut Res Int. 2018 Nov;25(31):31101-31112. doi: 10.1007/s11356-018-3109-5. Epub 2018 Sep 5.

Abstract

Environmental management of cellulose production waste and municipal sewage sludge appears to be substantiated due to various physicochemical properties of these wastes. The aim of the conducted research was to determine the effect of cellulose production waste and sewage sludge on yielding and heavy metal uptake by a plant mixture. The research was conducted under field experiment conditions, determining the fertilizer value of these wastes in the environmental aspect. The research was carried out in the years 2013-2016. Species composition of the plant mixture was adjusted to habitat conditions. It was established that, as compared with the cellulose production waste, the municipal sewage sludge used in the experiment had a higher content of macroelements. The content of heavy metals in the studied waste did not exceed the limits that condition their use in agriculture and reclamation. Applying only the cellulose production waste did not significantly decrease the yield of the plants. Municipal sewage sludge showed the highest yield-forming effect. Mixing the above-mentioned wastes and their application to soil had a significant effect on the increase in the plant mixture yield. The waste applied to soil also increased the content of Cr, Cd, Pb, Cu, and Zn in the plant mix. The level of heavy metal content in the plant mix did not exclude this biomass from being used for fodder or reclamation purposes. The cellulose production waste and municipal sewage sludge increased the heavy metal uptake by the plant mixture. The plant biomass extracted heavy metals from the sewage sludge more intensively than from the cellulose production waste. Among the analyzed heavy metals, the highest phytoremediation was recorded for Ni (30%), followed by Cd (20%), Cr (15%), Pb (10%), and the lowest for Cu (9%) and Zn (8%). Application of the cellulose production waste and sewage sludge to soil also increased the content of the studied heavy metals in soil. However, it did not cause deterioration of soil quality standards. Heterogeneity in the chemical composition of the wastes confirms that each batch intended to be used for environmental management should be subjected to chemical control.

摘要

纤维素生产废物和城市污水污泥的环境管理似乎是合理的,因为这些废物具有各种物理化学性质。本研究的目的是确定纤维素生产废物和污水污泥对植物混合物产量和重金属吸收的影响。该研究是在田间试验条件下进行的,从环境方面确定了这些废物的肥料价值。该研究于 2013-2016 年进行。植物混合物的物种组成适应了栖息地条件。结果表明,与纤维素生产废物相比,实验中使用的城市污水污泥含有更高含量的大量元素。研究中废物的重金属含量未超过限制其在农业和复垦中使用的限制。仅使用纤维素生产废物不会显著降低植物的产量。城市污水污泥表现出最高的产率形成效果。混合上述废物并将其施用于土壤对增加植物混合物产量有显著影响。施用于土壤的废物还增加了植物混合物中 Cr、Cd、Pb、Cu 和 Zn 的含量。植物混合物中重金属的含量并未排除将这种生物质用于饲料或复垦目的。纤维素生产废物和城市污水污泥增加了植物混合物对重金属的吸收。与纤维素生产废物相比,植物生物量从污水污泥中更强烈地吸收重金属。在所分析的重金属中,Ni 的植物修复率最高(30%),其次是 Cd(20%)、Cr(15%)、Pb(10%),Cu(9%)和 Zn(8%)最低。将纤维素生产废物和污水污泥施用于土壤也增加了土壤中研究重金属的含量。然而,这并没有导致土壤质量标准恶化。废物化学成分的异质性证实,每批拟用于环境管理的废物都应进行化学控制。

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