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151.
中草药种植区土壤及草药中重金属含量状况及评价 总被引:8,自引:1,他引:7
通过野外调查和室内分析相结合的方法,研究了河北省安国市中草药种植区土壤重金属As、Hg、Pb、Cd的含量、空间分布特征及草药中重金属含量状况,以及不同中草药对土壤重金属的累积特征,并对种植区土壤和草药重金属污染程度进行了评价.结果表明,种植区土壤重金属As、Hg、Pb、Cd含量均值分别为12.9、 0.036、 15.6、 0.118 mg·kg-1,均低于相应<土壤环境质量标准>二级标准值;以土壤背景值为标准评价,单项污染指数评价结果显示,16个中药种植区中土壤 As、Hg、Pb、Cd达轻度污染的比例分别为18.75%、43.75%、0%、100%,且6.25%的种植区土壤Hg污染达到中度水平.综合污染指数评价结果表明,12.5%种植区土壤重金属污染等级为警戒级,其余各地区均处于轻度污染水平;而以<土壤环境质量标准>二级标准值评价,各种植区单项污染指数及综合污染指数结果均<0.7,土壤环境清洁;绝大多数(>95%)种植区草药样品污染指数<1,不同中草药对土壤重金属的累积能力存在明显差异:紫菀、知母对Cd的富集系数及白芷、北沙参对Hg富集系数均>1.因此,在中药GAP(优良农业生产)基地土壤质量评价过程中,应重视中草药自身特性对重金属吸收和累积的影响. 相似文献
152.
夏秋季石家庄大气污染变化特征观测研究 总被引:12,自引:3,他引:9
研究了石家庄夏秋季节大气污染状况及2008奥运前后大气污染物浓度变化特征.2007和2008年夏秋季节,使用全自动在线观测仪器对石家庄大气环境质量进行连续监测,目的是阐明奥运期间石家庄污染物减排对当地大气环境的改变,探讨石家庄地区产生的大气污染物对北京及周边地区可能的影响.结果表明,除了氮氧化物,其他污染物均有超标情况出现,其中夏秋季节O3浓度较高,小时最大浓度值平均(O3-Max)分别为(177.2±63.0)和(105.8±61.7)μg·m-3,NO和NO2在夏秋季节的浓度分别为(4.5±4.0)、(32.7±12.4)μg·m-3和(21.5±16.9)、(60.5±16.9)μg·m-3,SO2浓度分别为(72.0±27.5)和(92.0±44.4)μg·m-3,PM2.5和PM10浓度达到(102.3±47.6)、(153.3±58.3)μg·m-3和(95.8±50.0)、(147.4±67.0)μg·m-3;奥运期间各类污染物浓度显著下降,NOx、O3-Max、SO2、PM2.5和PM10浓度分别为(43.8±15.0)、(142.0±54.9)、(52.4±18.8)、(76.7±35.1)和(116.5±38.8)μg·m-3,其中SO2、PM2.5和PM10分别较2008年监测期间平均值降低34.6%、22.8%和21.0%.本研究系统分析了夏秋季节石家庄大气污染状况,为评估当地大气污染控制措施提供了科学依据. 相似文献
153.
154.
Kinetics of enzymatic unhairing by protease in leather industry 总被引:2,自引:0,他引:2
In leather industry, unhairing is a heavy pollution operation. The conventional lime-sulfide process produces a large amount of sulfide which is toxic to health and difficult to dispose. Moreover, conventional lime-sulfide process leads to the destruction of the hair causing increased COD, BOD and TDS loads in the effluent. As an alternative method, enzymatic unhairing is a promising clean technology. The main utilized enzyme preparations are proteases.There are many reports about enzymatic unhairing, most of which are qualitative. The kinetics of enzymatic unhairing by protease was discussed in this article. It will provide useful information to enzymatic unhairing. In our research, by analysis of the concentrations of released total protein in enzyme bath during protease unhairing, the good linearity between released total protein and square root of time (min1/2) was obtained at the initial stage. The good linearity suggests that enzymatic unhairing by protease is a diffusion-controlled process at the initial stage. The analysis of kinetics of released saccharides also confirms the same conclusion. On the other hand, the same characteristics between the kinetics of released saccharides and that of released total protein further confirms that it is the hydrolysis of core protein by protease that leads to the degradation of proteoglycans and the release of protein and saccharides. However, in our tests, the kinetics of released collagen indicates that the injury to skin took place in 3-6 h. Therefore, it’s necessary to control the time of protease unhairing within an appropriate limit. 相似文献
155.
156.
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
157.
Effect of C/N ratio, aeration rate and moisture content on ammonia and greenhouse gas emission during the composting 总被引:3,自引:0,他引:3
Gaseous emission (N2O, CH4 and NH3) from composting can be an important source of anthropogenic greenhouse gas and air pollution. A laboratory scale orthogonal experiment was conducted to estimate the effects of C/N ratio, aeration rate and initial moisture content on gaseous emission during the composting of pig faeces from Chinese Ganqinfen system. The results showed that about 23.9% to 45.6% of total organic carbon (TOC) was lost in the form of CO2 and 0.8% to 7.5% of TOC emitted as CH4. Most of the nitrogen was lost in the form of NH3, which account for 9.6% to 32.4% of initial nitrogen. N2O was also an important way of nitrogen losses and 1.5% to 7.3% of initial total nitrogen was lost as it. Statistic analysis showed that the aeration rate is the most important factor which could affect the NH3 (p = 0.0189), CH4 (p = 0.0113) and N2O (p = 0.0493) emissions significantly. Higher aeration rates reduce the CH4 emission but increase the NH3 and N2O losses. C/N ratio could affect the NH3 (p = 0.0442) and CH4 (p = 0.0246) emissions significantly, but not the N2O. Lower C/N ratio caused higher NH3 and CH4 emissions. The initial moisture content can not influence the gaseous emission significantly. Most treatments were matured after 37 days, except a trial with high moisture content and a low C/N ratio. 相似文献
158.
Polyaspartic acid (PASP) has been extensively studied in recent years as a green scale inhibitor. PASP was synthesized by thermal polycondensation of maleic anhydride and ammonium carbonate in this study. The optimal polycondensation reaction conditions were the raw material (maleic anhydride and ammonium carbonate) molar ratio of 1.0:1.2, the polymerization temperature of 180°C and reaction time of 2.0 hr. The results showed that PASP exhibits very good scale inhibiting performance. The inhibition rate was 95% for calcium carbonate and 90% for calcium sulfate by the application of 5 mg/L PASP. 相似文献
159.
160.