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351.
采用固定化微生物-曝气生物滤池与铁-炭微电解法联用的工艺方法处理含硝基苯、苯胺的废水。通过培养驯化微生物阶段、半负荷进水阶段、满负荷进水阶段的调试运行,表明:当进水CODCr<1 000mg/L、硝基苯<120mg/L、苯胺<30mg/L时,出水可达到CODCr<300mg/L、硝基苯<5mg/L、苯胺<5mg/L的设计要求。铁-炭微电解法在pH值为3~4时,对废水有一定的脱色作用,但pH值升高后脱色效果不明显。 相似文献
352.
Sulfur-containing amino acid methionine as the precursor of volatile organic sulfur compounds in algea-induced black bloom 总被引:2,自引:0,他引:2
After the application of methionine, a progressive and significant increase occurred in five volatile organic sulfur compounds (VOSCs): methanethiol (MeSH), dimethyl sulfide (DMS), dimethyl disulfide (DMDS), dimethyl trisulfide (DMTS) and dimethyl tetrasulfide (DMTeS). Even in the untreated control without a methionine addition, methionine and its catabolites (VOSCs, mainly DMDS) were found in considerable amounts that were high enough to account for the water’s offensive odor. However, blackening only occurred in two methionine-amended treatments. The VOSCs production was observed to precede black color development, and the reaching of a peak value for total VOSCs was often followed by water blackening. The presence of glucose stimulated the degradation of methionine while postponing the occurrence of the black color and inhibiting the production of VOSCs. In addition, DMDS was found to be the most abundant species produced after the addition of methionine alone, and DMTeS appeared to be the most important compound produced after the addition of methionine+glucose. These results suggest that methionine acted as an important precursor of the VOSCs in lakes suffering from algea-induced black bloom. The existence of glucose may change the transformation pathway of methionine into VOSCs to form larger molecular weight compounds, such as DMTS and DMTeS. 相似文献
353.
The measurements of atmospheric carbonyls concentrations in Beijing were conducted from 12 July to 8 October, 2008, covering the periods of the 2008 Olympic Games and Paralympic Games. Six carbonyls, including formaldehyde, acetaldehyde, acetone, butyraldehyde, valeraldehyde, and hexaldehyde, were identified in all air samples. The total average concentrations of these carbonyls before, during, and after traffic restriction were (48.1 ± 15.2), (36.6 ± 14.5) and (23.4 ± 12.3) μg/m3, respectively. Compared with the period after traffic restriction, the distinct high concentrations of the carbonyls before and during traffic restriction were primarily ascribed to the remarkable contribution of photochemical reactions. With respect to our previous investigation in the summer of 2005, the reductions of formaldehyde, acetaldehyde and acetone during traffic restriction period were about 64%, 47% and 27%, respectively, indicating that the air cleaning actions adopted by the Chinese government for the two games were efficient. The lowest levels of atmospheric carbonyls and the extremely high composition proportion of acetone after the traffic restriction were mainly attributed to the long-term effect of the control measures for the two games. 相似文献
354.
In this study, we report a novel magnetic biomimetic nanozyme(Fe_3O_4@Cu/GMP(guanosine5′-monophosphate)) with high laccase-like activity, which could oxidize toxic ophenylenediamine(OPD) and remove phenolic compounds.The magnetic laccase-like nanozyme was readily obtained via complexed Cu~(2+)and GMP that grew on the surface of magnetic Fe_3O_4 nanoparticles.The prepared Fe_3O_4@Cu/GMP catalyst could be magnetically recycled for at least five cycles while still retaining above 70% activity.As a laccase mimic,Fe_3O_4@Cu/GMP had more activity and robust stability than natural laccase for the oxidization of OPD.Fe_3O_4@Cu/GMP retained about 90% residual activity at 90℃ and showed little change at pH 3–9, and the nanozyme kept its excellent activity after long-term storage.Meanwhile, Fe_3O_4@Cu/GMP had better activity for removing phenolic compounds, and the removal of naphthol was more than 95%.Consequently, the proposed Fe_3O_4@Cu/GMP nanozyme shows potential for use as a robust catalyst for applications in environmental remediation. 相似文献
355.
典型工业无组织源VOCs排放特征 总被引:15,自引:0,他引:15
选取制药厂、酿酒厂和橡胶厂分析了不同工艺过程VOCs排放特征.结果表明,制药厂安乃近合成和氨基比林合成的VOCs排放以苯、甲苯和苯乙烯等苯系物为主,乙酰氨基酚合成的VOCs排放主要以C4~C6的烷烃为主,酿酒厂和橡胶厂VOCs排放均以甲苯、乙苯和间,对二甲苯为主.采用最大增量反应活性法对臭氧生成潜势进行分析,制药厂安乃近合成和氨基比林合成VOCs单位臭氧生成潜势以苯、甲苯等苯系物为主;乙酰氨基酚合成以顺-2-丁烯、甲苯和异戊烷为主;酿酒厂、橡胶厂以甲苯、乙苯、间,对二甲苯为主.同时采用阈稀释倍数对VOCs进行恶臭分析,制药厂和酒厂无组织排放VOCs恶臭污染程度较轻,橡胶厂的伸缩装置车间和硫化车间的无组织VOCs排放存在一定程度的恶臭污染. 相似文献
356.
357.
近年来随着我国经济快速发展,挥发性有机物(VOCs)作为雾、霾和臭氧前驱物日益受到关注,经济快速发展区VOCs污染情况尤为复杂.本文对京津冀、长三角和珠三角的12种典型工业行业及垃圾、废水处理厂与综合工业园区、居民区的VOCs排放特征与分布趋势进行系统分析.解析出制药、橡胶和油漆喷涂为12种典型工业行业中VOCs平均排放浓度最高的3个行业,得到平均浓度分别为541、499和450 mg·m-3,应给予高度关注.对比分析发现长三角与京津冀地区平均排放浓度最高是制药行业,分别为112 mg·m-3和1.00×103 mg·m-3;而珠三角地区油漆喷涂行业排放最高,平均浓度为1.04×103 mg·m-3.进一步对12种典型工业行业VOCs种类分布情况进行分析,发现毒性大的芳香烃与卤代烃分别在油漆喷涂与制药行业中排放占比最高,达到55.99%和26.57%.三大经济区中长三角地区居民区与综合工业园区附近VOCs浓度最低,京津冀地区浓度最高,与各地区工业排放分布情况一致.分析2002~2018年的数据发现居民区VOCs浓度整体呈现波动性下降趋势,尤其2016年后显著降低,反映出我国VOCs防治的相关政策、法律法规和标准及技术对现阶段VOCs控制起到了显著成效. 相似文献
358.
为掌握鄱阳湖平原地下水的有机物污染状况,采样并分析了该区地下水中14种挥发性有机物(VOCs)与10种半挥发性有机物(SVOCs)的含量,利用美国环境保护署(USEPA)的健康风险评价模型对其进行健康风险评价。结果表明:鄱阳湖平原地下水的这些有机物的检出率为3. 03%~27. 27%,其中14种VOCs的检出率为6. 06%~15. 15%,10种SVOCs的检出率为3. 03%~27. 27%,部分区域地下水受有机物污染,主要污染物为1,1,2-三氯乙烷、苯并(a)芘和萘;使用内梅罗多项指标的综合污染指数评价污染程度,区域有机物污染特征分为无污染、轻度污染、中度污染以及严重污染四个等级,污染源主要来自杀虫剂、石油化工企业和垃圾填埋场;有机的致癌物质通过饮用途径产生的健康风险远大于非致癌物质的健康风险,其中三氯乙烯、1,1-二氯乙烷、1,2-二氯乙烷、1,1,2,2-四氯乙烷、1,2-二氯丙烷、1,1,2-三氯乙烷、苯并[a]芘等通过饮水产生的致癌风险水平分别为最小可接受水平10-6的7. 06、1. 06、18. 7、54、1. 64、14. 4、2. 87倍,a-六六六通过饮水途径引起的致癌风险水平甚至高达1. 03×10~(-4),是区域地下水中主要致癌风险物质。研究成果可为鄱阳湖平原地下水水质污染状况研究及治理监管工作提供理论依据,为其他区域地下水有机物的监测和质量控制提供参考和借鉴。 相似文献
359.
传统北京烤鸭烤制过程中大气污染物的排放特征 总被引:1,自引:5,他引:1
烤鸭是具有北京特色的传统美食之一,制作过程采用果木炭火烤制方式,与其它食物烹饪过程存在明显的差异,国内还未对这类餐饮源的排放特征进行过系统研究,为掌握这类餐饮源排放特征,从而为污染控制提供技术依据,选取北京市具有代表性的烤鸭店,研究了其烤鸭烤制过程中大气污染物的排放特征.结果表明,传统烤鸭烤制过程中排放的油烟、颗粒物、挥发性有机物(VOCs)和醛酮类化合物的基准排放浓度分别为(0.74±0.45)、(15.32±7.93)、(7.60±3.41)和(1.22±0.59)mg·m~(-3);颗粒物排放浓度要远高于油烟排放浓度,VOCs组分构成相对复杂,既包括烷烃、烯烃、芳香烃等VOCs也包括醛酮类、醇类、酯类等含氧VOCs和卤代烃,其中3-甲基呋喃、乙醇和乙酸甲酯的浓度最高;醛酮类化合物的主要组分有乙醛、甲醛和丙烯醛等,其中C1~C3物质占72.27%. 相似文献
360.
High-surface-area mesoprous powders of γ-Al2O3 doped with Cu2 +, Cr3 +, and V3 + ions were prepared via a modified sol–gel method and were investigated as catalysts for the oxidation of chlorinated organic compounds. The composites retained high surface areas and pore volumes comparable with those of undoped γ-Al2O3 and the presence of the transition metal ions enhanced their surface acidic properties. The catalytic activity of the prepared catalysts in the oxidation of 1,2-dichloroethane (DCE) was studied in the temperature range of 250–400°C. The catalytic activity and product selectivity were strongly dependent on the presence and the type of dopant ion. While Cu2 +- and Cr3 +-containing catalysts showed 100% conversion at 300°C and 350°C, V3 +-containing catalyst showed considerably lower conversion. Furthermore, while the major products of the reactions over γ-alumina were vinyl chloride (C2H3Cl) and hydrogen chloride (HCl) at all temperatures, Cu- and Cr-doped catalysts showed significantly stronger capability for deep oxidation to CO2. 相似文献