Since the living microorganisms in activated sludge continuously change, it is difficult to conduct controlled experiments and achieve reproducible results for evaluating sludge characteristics. Synthetic sludge, as a chemical surrogate to activated sludge, could be used to investigate the sludge physicochemical properties, and it is desirable to prepare synthetic sludge with similar structure and properties to real activated sludge to explore the flocculation and settlement processes in activated sludge systems. In this work, a high-strength synthetic sludge was prepared with functional polystyrene latex particles as the framework and extracellular polymeric substances (EPS) to modify its surface. The flocculation and settling characteristics of the microspheres and the prepared synthetic sludge were tested. Compared with other three functional polystyrene latex microspheres, the synthetic sludge prepared with EPS-modified polystyrene latex microspheres showed good settling characteristics and a significantly higher strength. They could be used for studying the physicochemical properties of activated sludge. 相似文献
Original high hydrocarbon groundwater represents a kind of groundwater in which hydrocarbon concentration exceeds 0.05 mg/L. The original high hydrocarbon will significantly reduce the environment capacity of hydrocarbon and lead environmental problems. For the past 5 years, we have carried out for a long-term monitoring of groundwater in shallow Triassic aquifer in Northwest Guizhou, China. We found the concentration of petroleum hydrocarbon was always above 0.05 mg/L. The low-level anthropogenic contamination cannot produce high hydrocarbon groundwater in the area. By using hydrocarbon potential, geochemistry and biomarker characteristic in rocks and shallow groundwater, we carried out a comprehensive study in Dalongjing (DLJ) groundwater system to determine the hydrocarbon source. We found a simplex hydrogeology setting, high-level water–rock–hydrocarbon interaction and obviously original hydrocarbon groundwater in DLJ system. The concentration of petroleum hydrocarbon in shallow aquifer was found to increase with the strong water–rock interaction. Higher hydrocarbon potential was found in the upper of Guanling formation (T2g3) and upper of Yongningzhen formation (T1yn4). Heavily saturated carbon was observed from shallow groundwater, which presented similar distribution to those from rocks, especially from the deeper groundwater. These results indicated that the high concentrations of original hydrocarbon in groundwater could be due to the hydrocarbon release from corrosion and extraction out of strata over time.
To reveal the biological characteristics of urban forest soil and the effects of soil enzyme on soil fertility as well as
the correlation between physicochemical properties and enzyme activities, 44 urban forest soil profiles in Nanjing were investigated.
Basic soil physicochemical properties and enzyme activities were analyzed in the laboratory. Hydrogen peroxidase, dehydrogenase,
alkaline phosphatase, and cellulase were determined by potassium permanganate titration, TTC (C19H15N4·Cl) colorimetry, phenyl phosphate dinatrium colorimetry, and anthrone colorimetry, respectively. The result showed that soil
pH, organic carbon (C), and total nitrogen (N) had great effects on hydrogen peroxidase, dehydrogenase, and alkaline phosphatase
activities in 0–20 cm thick soil. However, pH only had great effect on hydrogen peroxidase, dehydrogenase, and alkaline phosphatase
activities in 20–40 cm thick soil. Hydrogen peroxidase, dehydrogenase, and alkaline phosphatase were important biological
indicators for the fertility of urban forest soil. Both in 0–20 cmand 20–40 cmsoil, soil enzyme system (hydrogen peroxidase,
dehydrogenase, alkaline phosphatase, and cellulase) had a close relationship with a combination of physicochemical indicators
(pH, organic C, total N, available K, available P, cation exchange capacity (CEC), and microbial biomass carbon (Cmic)). The more soil enzyme activities there were, the higher the fertility of urban forest soil.
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Translated from Urban Environment & Urban Ecology, 2007, 20(4): 4–6, 9 [译自: 城市环境与城市生态] 相似文献
为研究硅(Si)肥等量施用对水稻不同生育期吸收镉(Cd)和土壤Cd生物有效性的影响,采用5种不同种类的Si肥(SiO2用量为225 kg ·hm-2)开展田间小区试验.结果表明,随着水稻生育期的延长,水稻根系和茎叶的Cd含量增加;施用Si肥,不同生育期水稻根系、茎叶和籽粒Cd含量平均分别降低14.9%、28.2%和12.2%;硅钙镁铁肥(SiCaMgFe)和水溶Si肥(SiW)处理,籽粒Cd含量分别比对照处理降低21.1%(P<0.05)和21.2%(P<0.05);水稻根表铁膜中Cd含量(DCB-Cd)随着水稻生育期延长而增加,施用Si肥,水稻不同生育期DCB-Cd含量有高有低,DCB-Cd是根系Cd含量的15.8%~42.8%;与对照相比,施用Si肥水稻成熟期土壤可交换态Cd (Exc-Cd)含量平均降低36.4%,其它形态的含量平均增加12.5%~48.2%.水稻全生育期根系Cd与Si呈极显著负相关,与DCB-Cd呈极显著正相关,DCB-Cd与土壤有效态Cd和有效态Si呈极显著负相关,土壤Exc-Cd与Carb-Cd呈极显著负相关,土壤有效态Cd与pH值呈显著负相关.施用相同Si肥用量,SiCaMgFe和SiW处理降低水稻Cd含量的效果好;施用Si肥通过提高土壤pH值和土壤有效Si含量、降低土壤有效态Cd和Exc-Cd含量,促进Exc-Cd向Carb-Cd转移,减少根表铁膜对Cd的吸附,从而减少水稻对土壤Cd的吸收. 相似文献