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水合肼生产盐渣中氮化合物的去除 总被引:1,自引:1,他引:0
将水合肼生产盐渣分离碳酸钠后,通过吹脱、氧化等工艺降低饱和盐溶液的氮含量(以氨质量浓度计),以达到电解法制备氢氧化钠工艺对原料氯化钠的使用要求。中试试验结果表明:氧化反应最佳工艺条件为以次氯酸钠为氧化剂,次氯酸钠溶液中氢氧化钠质量浓度9.2g/L,次氯酸钠与初始氨的质量比为13,溶液pH 7~8,反应温度30~35℃;在此条件下氧化处理饱和盐溶液,处理后氨质量浓度由350.0 mg/L降至2.1 mg/L。将处理后的饱和盐溶液用于电解法制备氢氧化钠的生产过程,不仅可创造一定的经济效益,而且还解决了水合肼生产中的环境污染问题。 相似文献
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An integrated process of metal chelate absorption coupled with two stage bio-reduction using immobilized cultures has been proposed to continuously removal of NOx, and the effects of SO2, NO and O2 concentration, gas/liquid flow rate on NOx removal efficiency were investigated. Although nitrogen-containing components, such as Fe(II)EDTA-NO, NO2? and NO3? in the scrubbing solution, inhibited the bio-reduction of Fe(III)EDTA obviously, it was feasible to abate the inhibition effect by using the two stage bio-reduction system, and thus to improve NOx removal efficiency. The removal efficiency decreased slowly with the increase of SO2, O2, NO concentration and gas flow rate, and increased with the increase of liquid flow rate. Continuously operating for 18 days, a high removal efficiency around 95% was reached by using the two-stage bio-reduction system with immobilized microorganisms, while the value decreased to 85% after 5 days of operation by using the suspended microorganisms, at a constant gas flow rate of 60 L/h containing 424–450 mg/m3 NO, 2428–2532 mg/m3 SO2 and 3% O2. 相似文献
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周国泰 《中国个体防护装备》2006,(5):5-7
1.个体防护装备对职业安全健康的重要作用
(1)个体防护装备是保护人体不受外来物理、化学、生物等有害因素伤害,保持生命安全、身体健康的装备。个体防护装备按照不同职业的防护需要,分为工农业生产劳动防护装备、卫生防护装备、科学考察试验研究防护装备、军人防护装备、警员防护装备、抢险救援救助防护装备、日常工作和生活用防护装备等。 相似文献
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Numerous studies support that biodiversity predict most to ecosystem functioning, but whether other factors display a more significant direct impact on ecosystem functioning than biodiversity remains to be studied. We investigated 398 samples of the phytoplankton phosphorus resource use efficiency (RUEP = chlorophyll-a concentration/dissolved phosphate) across two seasons in nine plateau lakes in Yunnan Province, China. We identified the main contributors to phytoplankton RUEP and analyzed their potential influences on RUEP at different lake trophic states. The results showed that total nitrogen (TN) contributed the most to RUEP among the nine lakes, whereas community turnover (measured as community dissimilarity) explained the most to RUEP variation across the two seasons. Moreover, TN also influenced RUEP by affecting biodiversity. Species richness (SR), functional attribute diversity (FAD2), and dendrogram-based functional diversity (FDc) were positively correlated with RUEP in both seasons, while evenness was negatively correlated with RUEP at the end of the rainy season. We also found that the effects of biodiversity and turnover on RUEP depended on the lake trophic states. SR and FAD2 were positively correlated with RUEP in all three trophic states. Evenness showed a negative correlation with RUEP at the eutrophic and oligotrophic levels, but a positive correlation at the mesotrophic level. Turnover had a negative influence on RUEP at the eutrophic level, but a positive influence at the mesotrophic and oligotrophic levels. Overall, our results suggested that multiple factors and nutrient states need to be considered when the ecosystem functioning predictors and the biodiversity-ecosystem functioning relationships are investigated. 相似文献
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水环境监测的酶学方法 总被引:2,自引:0,他引:2
对淡水环境水质监测的酶学方法作了扼要的综述。淡水生态系统中的酶能够基本反映水体的生物活性,故能与其它经典生物性指数相参照,而酶活性的变化往往先于细胞数目的变化,故酶学监测方法更为简便和灵敏。酶的活性及其动力学特征亦可对某种特定的生物化学过程或者物质循环机制作出较为深刻精确的描述。因此,酶可望成为特殊层次上的包含综合信息且具有独特含义的监测指标。 相似文献
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Effects of productivity on biodiversity in forest ecosystems across the United States and China 下载免费PDF全文
In the global campaign against biodiversity loss in forest ecosystems, land managers need to know the status of forest biodiversity, but practical guidelines for conserving biodiversity in forest management are lacking. A major obstacle is the incomplete understanding of the relationship between site primary productivity and plant diversity, due to insufficient ecosystem‐wide data, especially for taxonomically and structurally diverse forest ecosystems. We investigated the effects of site productivity (the site's inherent capacity to grow timber) on tree species richness across 19 types of forest ecosystems in North America and China through 3 ground‐sourced forest inventory data sets (U.S. Forest Inventory and Analysis, Cooperative Alaska Forest Inventory, and Chinese Forest Management Planning Inventory). All forest types conformed to a consistent and highly significant (P < 0.001) hump‐shaped unimodal relationship, of which the generalized coefficients of determination averaged 20.5% over all the forest types. That is, tree species richness first increased as productivity increased at a progressively slower rate, and, after reaching a maximum, richness started to decline. Our consistent findings suggest that forests of high productivity would sustain few species because they consist mostly of flat homogeneous areas lacking an environmental gradient along which a diversity of species with different habitats can coexist. The consistency of the productivity–biodiversity relationship among the 3 data sets we examined makes it possible to quantify the expected tree species richness that a forest stand is capable of sustaining, and a comparison between the actual species richness and the sustainable values can be useful in prioritizing conservation efforts. 相似文献