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71.
72.
Jacobsen CS van der Keur P Iversen BV Rosenberg P Barlebo HC Torp S Vosgerau H Juhler RK Ernstsen V Rasmussen J Brinch UC Jacobsen OH 《Environmental pollution (Barking, Essex : 1987)》2008,156(3):794-802
Pesticide mineralization and sorption were determined in 75 soil samples from 15 individually drilled holes through the vadose zone along a 28 km long transect of the Danish outwash plain. Mineralization of the phenoxyacetic acid herbicide MCPA was high both in topsoils and in most subsoils, while metribuzine and methyltriazine-amine was always low. Organic matter and soil pH was shown to be responsible for sorption of MCPA and metribuzine in the topsoils. The sorption of methyltriazine-amine in topsoil was positively correlated with clay and negatively correlated with the pH of the soil. Sorption of glyphosate was tested also high in the subsoils. One-dimensional MACRO modeling of the concentration of MCPA, metribuzine and methyltriazine-amine at 2 m depth calculated that the average concentration of MCPA and methyltriazine-amine in the groundwater was below the administrative limit of 0.1 μg/l in all tested profiles while metribuzine always exceeded the 0.1 μg/l threshold value. 相似文献
73.
活性污泥合成聚羟基烷酸酯代谢机制研究进展 总被引:1,自引:0,他引:1
聚羟基烷酸酯(PHAs)是生物制备型环境友好塑料,具有广阔的应用前景.活性污泥合成PHAs可降低生产成本,实现废水处理厂剩余污泥的减量化和资源化.研究微生物合成PHAs的代谢机制,有利于优化PHAs的工业化生产,目前其代谢研究多集中在以纯菌种合成PHAs,而以活性污泥合成PHAs的研究尚不成熟.资料表明,DO变化对活性污泥合成PHAs的代谢途径有显著影响,进而改变其PHAs产物的产量和单体组成.综述了活性污泥合成PHAs在厌氧/好氧工艺、微氧/好氧工艺、缺氧/好氧工艺、好氧动态底物投加工艺条件下的代谢机制,分析了现有PHAs合成代谢模型中存在的问题,展望了PHAs合成代谢机制研究的发展方向. 相似文献
74.
The initial degradation mechanisms of OH and 4-chloro-2-methylphenoxyacetic acid (MCPA) including molecular form and anionic form are studied at the MPWB1K/6-311+G(3df, 2p)//MPWB1K/6-31+G(d, p) level. Possible reaction pathways of H-atom abstraction and OH addition are considered in detail. By result comparison analysis, it is found that the reaction mechanisms for OH and two forms of MCPA are different, and most reactions for anionic MCPA are easier than those for molecular MCPA. For H-atom abstraction reactions, the calculated energies show that OH abstracting H-atom from -CH3 group of molecular MCPA is the most kinetically favorable process; the potential energy surface for anionic MCPA indicates that H-atom in -CH2 group is slightly easier to be abstracted than that in -CH3 group. For OH addition reactions, the addition of OH to the C1 site is the initial step for molecular MCPA and the predominant product is 4-chloro-2-methylphenol (denoted P3), while the C4 site is the most reactive site for anionic MCPA and the primary product results from the hydroxylation of the aromatic ring, which is in good agreement with the experimental observation. In additional, results from PCM calculations show that most reactions in water phase are more kinetically favorable than those in gas phase, though the mechanisms discussed above will not be changed. 相似文献
75.
76.
Degradation of pentachlorobiphenyl by a sequential treatment using Pd coated iron and an aerobic bacterium (H1) 总被引:1,自引:0,他引:1
The reductive dechlorination and biodegradation of 2,2′4,5,5′-pentachlorobiphenyl (PCB#101) was investigated in a laboratory-scale. Palladium coated iron (Pd/Fe) was used as a catalytic reductant for the chemical degradation of 2,2′4,5,5′-pentachlorobiphenyl, and an aerobic bacteria was used for biodegradation following the chemical reaction in this study. Dechlorination was affected by several factors such as Pd loading, initial soil pH and the amount of Pd/Fe used. The results showed that higher Pd loading, higher dosage of Pd/Fe and slightly acid condition were beneficial to the catalytic dechlorination of 2,2′,4,5,5′-pentachlorobiphenyl. In laboratory batch experiments, 2,2′4,5,5′-pentachlorobiphenyl was reduced in the presence of Pd/Fe bimetal, which was not further degraded by aerobic bacteria. 2,2′,4-trichlorobiphenyl (PCB#17), a reduction product from 2,2′4,5,5′-pentachlorobiphenyl, was readily biodegraded in the presence of a aerobic bacterial strain. It is suggested that an integrated Pd/Fe catalytic reduction-aerobic biodegradation process may be a feasible option for treating PCB-contaminated soil. 相似文献
77.
Tao Zhang Qiucheng Li Lili Ding Hongqiang Ren Ke Xu Yonggang Wu Dong Sheng 《环境科学学报(英文版)》2011,23(6):881-890
Chemical precipitation to form magnesium ammonium phosphate (MAP) is an effective technology for recovering ammonium
nitrogen (NH4
+-N). In the present research, we investigated the thermodynamic modeling of the PHREEQC program for NH4
+-N
recovery to evaluate the effect of reaction factors on MAP precipitation. The case study of NH4
+-N recovery from coking wastewater
was conducted to provide a comparison. Response surface methodology (RSM) was applied to assist in understanding the relative
significance of reaction factors and the interactive effects of solution conditions. Thermodynamic modeling indicated that the saturation
index (SI) of MAP followed a polynomial function of pH. The SI of MAP increased logarithmically with the Mg2+/NH4
+ molar ratio
(Mg/N) and the initial NH4
+-N concentration (CN), respectively, while it decreased with an increase in Ca2+/NH4
+ and CO3
2??/NH4
+
molar ratios (Ca/N and CO3
2??/N), respectively. The trends for NH4
+-N removal at different pH and Mg/N levels were similar to the
thermodynamic modeling predictions. The RSM analysis indicated that the factors including pH, Mg/N, CN, Ca/N, (Mg/N) (CO3
2??/N),
(pH)2, (Mg/N)2, and (CN)2 were significant. Response surface plots were useful for understanding the interaction effects on NH4
+-N
recovery. 相似文献
78.
为了研究在饱和持水量条件下不同氮沉降形态和水平对森林土壤氮素净转化及土壤N2O排放的影响,选取中亚热带地带性森林红壤为研究对象,采用室内模拟试验方法,设置110%饱和持水量(WHC)的土壤水分,添加不同形态氮[(NH4)2SO4、NaNO3、NH4NO3]和不同含量[0 mg/kg(CK)、20.0 mg/kg(LN)、66.7 mg/kg(HN),以干土计]的氮素,进行为期14 d的室内培养(20℃).结果表明,与CK相比,(NH4)2SO4和NaNO3处理对土壤净氮矿化和氨化的影响不大,而(NH4)2SO4处理的净硝化量在高氮水平下为负值,说明硝化很弱,但该处理的净氨化量高于其他处理,特别是NaNO3处理的净氨化量较高,认为很可能存在NO3--N异化还原为铵(DNRA).NaNO3处理能显著提高土壤净硝化量而显著降低w(SON)(SON为土壤可溶性有机氮),NH4NO3处理同时降低了土壤w(NH4+-N)和w(NO3--N),表现为氮固定作用,并且高氮水平的土壤w(MBN)(MBN为微生物量氮)显著高于低氮水平;NaNO3和NH4NO3处理的土壤N2O排放速率和培养周期内的累积排放量均显著高于CK,并且高氮水平显著高于低氮水平,而(NH4)2SO4处理与CK相当,并且高氮水平下的N2O累积排放量低于低氮水平.研究显示,在过饱和土壤水分条件下,混合形态氮对土壤氮素净转化格局影响较大,含NO3-形态氮明显促进土壤N2O的排放,尤其是高氮水平.研究结果可为评价全球气候变化下特别是降雨情况下沉降氮形态对土壤氮素转化的影响提供重要参考. 相似文献
79.
The aim of the present work was to produce a polyaluminium ferric silicate chloride (PAFSiC) coagulant from acidic and alkaline
wastewater of purifying graphite by roasting, and subsequently to evaluate coagulation efficiency of the reagent by treating surface
water from the Yellow River as well as municipal wastewater in comparison with the conventional coagulant polyaluminium chloride
(PAC). The PAFSiC coagulant was prepared by co-polymerization. The effects of (Al+Fe)/Si molar ratio, OH/(Al+Fe) molar ratio (i.e.,
value), coagulant dosage and pH value of test suspension on the coagulation behavior of FAFSiC and the stability of the PAFSiC were
also examined. Results showed that PAFSiC performed more efficiently than PAC in removing turbidity, chemical oxygen demand
(COD), and total phosphate (TP). The PAFSiC with a
value of 2.0 and (Al+Fe)/Si ratio of 5 (PAFSiC 2.0/5) showed excellent
coagulation effect for both turbidity and COD, while PAFSiC 1.0/5 was the best for TP. The optimum coagulation pH range of PAFSiC
2.0/5 was 5.0–9.0, slightly wider than that of PAC (6.0–8.0). The process can be easily incorporated into high-purity graphite production
plants, thereby reducing wastewater pollution and producing a valuable coagulant. 相似文献
80.