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61.
Fenton氧化-混凝联合工艺处理络合铜镍废水的研究 总被引:2,自引:0,他引:2
采用Fenton试剂氧化-混凝联合工艺对难处理络合铜镍电镀废水进行了研究,考察了废水初始pH值、H2O2初始浓度、[Fe^2+]/[H2O2]、反应时间和温度、混凝液pH、混凝剂质量浓度对处理过程的影响,探讨了废水的降解途径和机理.结果表明,在体系初始pH=4,温度30℃,H2O2投加量为800mg/L,[Fe^2+]/[H2O2]=0.1,反应时间60 min,混凝液pH=8及混凝剂质量浓度为500mg/L的条件下,废水的COD去除率为96.98%,Cu^2+为99.91%,Ni^2+为99.92%,处理水完全达到国家一级排放标准.同时依据GC/MS对X-GN降解最终产物的分析结果,推导出废水的基本降解机理和途径. 相似文献
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Influence of fertilizer and sewage sludge compost on yield and heavy metal accumulation by lettuce grown in urban soils 总被引:8,自引:0,他引:8
S. B. Sterrett R. L. Chaney C. H. Gifford H. W. Mielke 《Environmental geochemistry and health》1996,18(4):135-142
Previous research has demonstrated that many urban soils are enriched in Pb, Cd and Zn. Culture of vegetable crops in these soils could allow transfer of potentially toxic metals to foods. Tanya lettuce (Lactuca sativa L.) was grown in pots of five urban garden soils and one control agricultural soil to assess the effect of urban-soil metal enrichment, and the effect of soil amendments, on heavy metal uptake by garden vegetables. The amendments included NPK fertilizer, limestone, Ca(H2PO4)2, and two rates of limed sewage sludge compost. Soil Cd ranged from 0.08 to 9.6 mg kg–1; soil Zn from 38 to 3490 mg kg–1; and soil Pb from 12 to 5210 mg kg–1. Lettuce yield on the urban garden soils was as great as or greater than that on the control soil. Lettuce Cd, Zn and Pb concentrations increased from 0.65, 23, and 2.2 mg kg–1 dry matter in the control soil to as high as 3.53, 422 and 37.0 mg kg–1 on the metal-rich urban garden soils. Adding limestone or limed sewage sludge compost raised soil pH and significantly reduced lettuce Cd and Zn, while phosphate fertilizer lowered soil pH and had little effect on Zn but increased Cd concentration in lettuce. Urban garden soils caused a significant increase in lettuce leaf Pb concentration, especially on the highest Pb soil. Adding NPK fertilizer, phosphate, or sludge compost to two high Pb soils lowered lettuce Pb concentration, but adding limestone generally did not. On normally fertilized soils, Pb uptake by lettuce was not exceptionally high until soil Pb substantially exceeded 500 mg kg–1. Comparing garden vegetables and soil as potential sources of Pb risk to children, it is clear that the risk is greater through ingestion of soil or dust than through ingestion of garden vegetables grown on the soil. Urban dwellers should obtain soil metal analyses before selecting garden locations to reduce Pb risk to their children. 相似文献
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目的对比研究35Cr2Ni4Mo A材料的传统镀硬铬和碳化钨WC-10Co-4Cr两种表面处理的耐蚀性能,方法开展35Cr2Ni4Mo A材料两种表面处理的实验室加速腐蚀环境试验,研究两种表面处理腐蚀行为特点。加速腐蚀试验共8个周期,通过蚀坑深度、腐蚀面积、单位面积腐蚀数量等描述35Cr2Ni4Mo A材料表面腐蚀情况。结果试验结果表明,35Cr2Ni4Mo A材料采用碳化钨WC-10Co-4Cr表面处理相较于传统镀硬铬表面处理的耐蚀性好。结论碳化钨WC-10Co-4Cr表面处理有效提高海洋环境下35Cr2Ni4Mo A材料表面耐蚀性能。 相似文献
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Particulate samples taken from both the indoor (working) and outdoor (community) environments contain a wide range of metallic trace elements most of which are mutagenic in at least one of the short term tests for genotoxicity currently in use. Because of the demonstrated presence of a short lived biologically active species (Cr(VI)), and the uncertainty with which the results of the screening of metallic compounds in short term tests can be interpreted in terms of human risk, great care must be taken to assure the appropriate collection, storage, and chemical and biological assay of such material. The sensitivity of the results for fly ash and welding fumes to variations in these protocols is demonstrated and discussed. 相似文献
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An oil spill polluted site at Ogbodo-Isiokpo in Ikwere Local Government Area of Rivers State in southern Nigeria, was identified
for study following three successive reconnaissance surveys of oil fields in the Agbada west plain of Eastern Niger Delta.
A sampling area of 200 m × 200 m was delimited at the oil spill impacted site using the grid technique and soils were collected
at surface (0–15 cm) and subsurface (15–30 cm) depths from three replicate quadrats. A geographically similar, unaffected
area, located 50 m adjacent to the polluted site, was chosen as a control (reference) site. Total extractable hydrocarbon
contents of the polluted soils ranged from 3.02–4.54 and 1.60–4.20 mg/kg (no overlap in standard errors) at surface and subsurface
depths respectively. The concentrations of two “diagnostic” trace heavy metals, nickel (Ni) and vanadium (V), which are normal
constituents of crude oil, were also determined in the soils by atomic absorption spectrophotometric method after pre-extraction
of cations with dithionite–citrate carbonate. Ni varied from 0.15 to 1.65 mg/kg in the polluted plots and from 0.18 to 0.82
mg/kg in the unpolluted plots; vanadium varied from 0.19 to 0.70 mg/kg in the polluted plots and from 0.14 to 0.38 mg/kg in
the unpolluted plots. Ni and V were more enhanced (p < 0.05) in the oil-polluted soils, especially at subsurface depth. Whilst the oil spillage could be said to be indirectly
responsible for the enhanced concentrations of nickel and vanadium via the injection and availability of the petroleum hydrocarbons
that might have increased the activities of biodegradation on site, the physico-chemical properties of the soils and inherent
mobility of metals, as well as the intense rainfall and flooding that characterized the period of study, may have also contributed,
at least in part, to these enhanced concentrations. Such levels of Ni and V may result to enhanced absorption by plants, which
may bring about possible bioaccumulation in such plants and the animals that depend on them for survival and all of these
may lead to toxic reactions along the food chain. 相似文献