以湖北某铜矿尾矿库为主要研究对象,采集库内尾矿样品11个、对照样某小型废弃尾矿库尾矿样品2个和附近耕地土壤样品1个,采用变性梯度凝胶电泳方法对上述样品中细菌的16S r RNA V3~V6可变区扩增片段进行分析,利用分析得到的图谱数据与所...以湖北某铜矿尾矿库为主要研究对象,采集库内尾矿样品11个、对照样某小型废弃尾矿库尾矿样品2个和附近耕地土壤样品1个,采用变性梯度凝胶电泳方法对上述样品中细菌的16S r RNA V3~V6可变区扩增片段进行分析,利用分析得到的图谱数据与所测得样品的理化性质及重金属Cu、Zn含量进行相关性及冗余度(RDA)分析.结果表明,尾矿库内Cu、Zn污染严重并波及周边,与尾矿样品的理化性质存在不同的相关性,其中Zn的污染程度与有机质存在极显著正相关[R=0.668(P<0.01)].DGGE图谱分析结果发现,样品细菌多样性较低,相似性较高(最低相似度53.1%),优势菌群相对稳定,PCA分析表明,Cu和Zn对细菌多样性具有抑制作用.RDA分析结果说明Cu和Zn的含量对细菌种群分布影响很大,Cu对大部分种群具有抑制作用,而Zn一方面能促进某些种属数量,另一方面又能抑制其他种群的结构变化,这种影响并不是实验室研究的简单线性关系.展开更多
Corn cob is a naturally renewable material with developed micropore and hydrophobic characteristics, which enables it to show good oil adsorption capacity. In order to improve oil adsorption capacity, corn cob was mod...Corn cob is a naturally renewable material with developed micropore and hydrophobic characteristics, which enables it to show good oil adsorption capacity. In order to improve oil adsorption capacity, corn cob was modified with lauric acid and ethanediol. The structure of raw and modified corn cob was investigated using Fourier transform infrared(FTIR) spectroscopy, scanning electron microscopy(SEM), Brunauer-Emmett-Teller(BET) method, thermogravimetric analysis(TGA) and Ze Ta potential analyzer. The effects of p H level, adsorption time, adsorbent dosage, and initial oil concentration on oil absorbency of corn cob were studied. The results indicate that the modification significantly improved the lipophilicity of corn cob, making the modified corn cob with much better adsorption capacity on oil absorbency. Compared with raw corn cob, the maximum saturated adsorption capacity of modified corn cob is 16.52 mg/g at p H 5, and the increasing percentage is found to be 141%, which indicates that the modification causes a better adsorption capacity for oil removal. In addition, due to high oil adsorption capacity, affordable price and low secondary pollution, the modified corn cob could be considered promising alternative for the traditional oil adsorbent to clean up the emulsified oily water.展开更多
文摘以湖北某铜矿尾矿库为主要研究对象,采集库内尾矿样品11个、对照样某小型废弃尾矿库尾矿样品2个和附近耕地土壤样品1个,采用变性梯度凝胶电泳方法对上述样品中细菌的16S r RNA V3~V6可变区扩增片段进行分析,利用分析得到的图谱数据与所测得样品的理化性质及重金属Cu、Zn含量进行相关性及冗余度(RDA)分析.结果表明,尾矿库内Cu、Zn污染严重并波及周边,与尾矿样品的理化性质存在不同的相关性,其中Zn的污染程度与有机质存在极显著正相关[R=0.668(P<0.01)].DGGE图谱分析结果发现,样品细菌多样性较低,相似性较高(最低相似度53.1%),优势菌群相对稳定,PCA分析表明,Cu和Zn对细菌多样性具有抑制作用.RDA分析结果说明Cu和Zn的含量对细菌种群分布影响很大,Cu对大部分种群具有抑制作用,而Zn一方面能促进某些种属数量,另一方面又能抑制其他种群的结构变化,这种影响并不是实验室研究的简单线性关系.
基金Project(51174017)supported by the National Natural Science Foundation of China
文摘Corn cob is a naturally renewable material with developed micropore and hydrophobic characteristics, which enables it to show good oil adsorption capacity. In order to improve oil adsorption capacity, corn cob was modified with lauric acid and ethanediol. The structure of raw and modified corn cob was investigated using Fourier transform infrared(FTIR) spectroscopy, scanning electron microscopy(SEM), Brunauer-Emmett-Teller(BET) method, thermogravimetric analysis(TGA) and Ze Ta potential analyzer. The effects of p H level, adsorption time, adsorbent dosage, and initial oil concentration on oil absorbency of corn cob were studied. The results indicate that the modification significantly improved the lipophilicity of corn cob, making the modified corn cob with much better adsorption capacity on oil absorbency. Compared with raw corn cob, the maximum saturated adsorption capacity of modified corn cob is 16.52 mg/g at p H 5, and the increasing percentage is found to be 141%, which indicates that the modification causes a better adsorption capacity for oil removal. In addition, due to high oil adsorption capacity, affordable price and low secondary pollution, the modified corn cob could be considered promising alternative for the traditional oil adsorbent to clean up the emulsified oily water.