首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Modified Rice Straw Enhanced Cadmium (II) Immobilization in Soil and Promoted the Degradation of Phenanthrene in Co-Contaminated Soil
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Modified Rice Straw Enhanced Cadmium (II) Immobilization in Soil and Promoted the Degradation of Phenanthrene in Co-Contaminated Soil

机译:改良的稻草增强了土壤中镉的固定化并促进了共污染土壤中菲的降解

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摘要

Very limited information is available about heavy metal-polycyclic aromatic hydrocarbons (PAHs) depollution involving the modified natural material in soil. Using phenanthrene and cadmium (Cd) as model, this study investigated the effect(s) of modified rice straw by a NaOH solution and on PAHs, heavy metal availability, and their interactions. Treatment included chemical contaminant with/without modified/unmodified rice straw. Fourier Transform Infrared (FTIR) analysis revealed that certain functional groups including anionic matters groups, which can a complex with Cd2+, were exposed on the modified rice straw surfaces. Therefore, Cd concentration was significantly reduced by about 60%, 57%, 62.5 %, and, 64% in the root, shoot, CaCl2, diethylenetriaminepentaacetic acid (DTPA), and extractable Cd, respectively. Subsequently, the prediction of the functional profile of the soil metagenome using Clusters Orthologous Groups (COGs) and the Kyoto Encyclopedia of Genes and Genomes (KEGG) database revealed that the significantly changed individual COGs belonged to the carbohydrate metabolism, ion transports, and signaling (including cytochrome P450s) categories. This indicated that ion transports might be involved in Cd management, while carbohydrate metabolism, including bisphenol, benzoate, ethylbenzene degradation, and cytochrome P450s, were rather involved in phenanthrene metabolism. The exposed functional group might serve as an external substrate, and P450s might serve as a catalyst to activate and initiate phenanthrene metabolism process. These finding offer confirmation that modified straw could promote the reduction of heavy metal and the degradation of PAHs in soil.
机译:关于涉及土壤中改性天然物质的重金属-多环芳烃(PAHs)脱除污染的信息非常有限。本研究以菲和镉(Cd)为模型,研究了NaOH溶液对改性稻草的影响以及对PAH,重金属的利用率及其相互作用的影响。处理包括使用/不使用改性/未改性稻草的化学污染物。傅立叶变换红外光谱(FTIR)分析表明,某些能与Cd 2 + 形成复合物的阴离子基团等官能团暴露在改性稻草表面。因此,根,茎,CaCl2,二亚乙基三胺五乙酸(DTPA)和可提取的Cd中的Cd浓度分别显着降低了约60%,57%,62.5%和64%。随后,使用聚类直系同源群(COG)和《京都议定书》的基因和基因组百科全书(KEGG)数据库对土壤元基因组的功能谱进行了预测,结果表明,显着变化的单个COG属于碳水化合物的代谢,离子迁移和信号传导(包括细胞色素P450)类别。这表明离子迁移可能与镉的管理有关,而碳水化合物的代谢(包括双酚,苯甲酸酯,乙苯降解和细胞色素P450s)则与菲的代谢有关。暴露的官能团可能充当外部底物,而P450可能充当激活和启动菲代谢过程的催化剂。这些发现证实了改性秸秆可以促进土壤中重金属的减少和多环芳烃的降解。

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