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1.
Huan Jing Ke Xue ; 43(9): 4727-4735, 2022 Sep 08.
Artigo em Chinês | MEDLINE | ID: mdl-36096613

RESUMO

The activated sludge of a biochemical unit (WLK_OD) and an advanced denitrification unit (WLK_AD) were collected from a municipal wastewater treatment plant (WWTP), in which the TN concentration of effluent was less than 1.5 mg·L-1, and their microbial community structure and function profiles were analyzed using 16S rRNA gene high-throughput sequencing. The microorganisms in WLK_AD had lower evenness compared with that in WLK_OD, which was attributed to environmental selection. Furthermore, PCoA revealed that different incoming wastewaters had an impact on microbial community structure. At the phylum level, Proteobacteria (70.11%) was enriched in WLK_AD. At the genus level, Thauera, Flavobacterium, Hydrogenophaga, and Zoogloea served as distinct-dominant denitrifying bacteria in WLK_AD; however, Trichococcus (3.50%) and Terrimonas (1.10%) were enriched in WLK_OD. Through the comparison between groups (P<0.05), the biomarkers detected in each WWTP were different. Furthermore, the results of the co-occurrence network showed that the bacteria from module I had a higher proportion in WLK_AD; the bacteria from module II had a higher proportion in WLK_OD, and they were common microorganisms in WWTPs, implying that wastewater environments drpve the differences in the microbial community structure. Among the types of environmental parameters, the removal efficiency of COD and TN had the greatest impact on the microbial community by the RDA. The removal efficiency of COD was positively correlated with the dominant bacteria from WLK_OD, such as Saccharibacteria, Thermomarinilinea, Terrimonas, and Comamonas; the removal efficiency of TN was positively correlated with the denitrifying bacteria from WLK_AD, such as Dokdonella, Thauera, Flavobacterium, and Zoogloea. WLK_AD was enriched with Novosphingobium, Dokdonella, Thauera, and Sphingomonas, which synergistically removed TN, leading to the TN of the effluent being less than 1.5 mg·L-1. Moreover, based on the results of function prediction, WLK_AD had a higher proportion of genes that could code the denitrification enzymes.


Assuntos
Microbiota , Zoogloea , Bactérias/genética , Reatores Biológicos/microbiologia , Desnitrificação/genética , Nitrogênio , RNA Ribossômico 16S , Esgotos/microbiologia , Thauera/genética , Águas Residuárias/química , Zoogloea/genética
2.
Chinese Journal of Endemiology ; (6): 197-201, 2011.
Artigo em Chinês | WPRIM (Pacífico Ocidental) | ID: wpr-643220

RESUMO

Objective To investigate the levels of trace elements such as fluorine(F), and aluminium (Al)etc. of osteomalacia malformation children and to make etiological diagnosis in reference with clinical manifestations.Methods Urine and occipitalia hairs of 14 diseased children(patient group) from endemic fluorosis area and 13 healthy children(control group) from non-endemic area were included in the study on November, 2008, and contents of 10 elements of fluorine(F), aluminum(Al), chromium(Cr), manganese(Mn), ferrum(Fe), cuprum(Cu), zinc(Zn), arsenic (As), selenium(Se), strontium(Sr), and barium(Ba) were tested. The data were analyzed with medical soft package PEMS 3.1. Results Urinary contents of F, Al, Mn, Cu, Sr, and Se(1.18 mg/L, 112.6 μg/L,6.62,29.86 mg/L, 177.5,4.23 ng/L) in patient group were significantly different from those in control group (0.48,47.1,2.04,16.61 mg/L, 55.17,15.52 ng/L, t = 4.592,2.486,4.850,2.210 2.078,2.912, all P< 0.05); Hair contents of Al, Mn, As, Sr, Ba, Fe, and Se in patient group(59.27,5.26,0.96,1.50,1.29,297.13,0.45 mg/kg)were significantly different from those of control group( 18.69,0.72,1.09,0.62,0.68,69.02,1.323 mg/kg, t = 4.583,6.318,3.309,2.704,5.606,6.294, all P < 0.05); in patient group, the correlation coefficients of urinary Fe to Al,Zn, As, and Se were all bigger tan 0.662(all P< 0.05), those of urinary Se to Mn, Ba, Cu, Zn, Sr, and As were all bigger than 0.694(all P< 0.05), those among urinary Mn, Sr, As, and Ba were bigger than 0.550(all P<0.05), those of hair Al to Mn, Cr, Fe, and Cu were bigger than 0.732(all P< 0.05), those of hair Ba to Mn,Cr, Fe, and Sr, and of hair Mn to Cr and Fe, and those between Cr and As, between Cu and Sr were all bigger than 0.686 (all P < 0.05). In control group, the correlation coefficients of urinary Cu to Zn, Se, and Ba, those of Zn to Se and Ba, and those of Cr to Mn and Ba were all bigger than 0.516(all P < 0.05), those of hair Al to Mn,Fe, Cu, As, and Se, and those of hair Se to Fe, Cu, and As, those of hair Fe to Mn, Cu, and As, those of hair Cu to Zn and As, and that between Zn and As were bigger than 0.739(all P < 0.05). The correlation coefficient of urinary F to Se in patient group(0.762) was significantly different from that in control group( - 0.469, u = 2.079,P < 0.05). Conclusions The burden of F and Al of osteomalacia malformation children in endemic fluorosis area of Shuicheng county is too high. The contents of multi-elements in urine and hairs and their correlation are coincident with high levels of Al and F and they cause network increase of multi-element content changes and their correlation. According to bone X-ray features combining with the living environment, the diagnosis of endemic Al-F fluorosis can be made. The biological significance of reducing urinary and hair Se levels and the correlations of F and Al need to be further studied.

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