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181.
目的 研究不锈钢在西太平洋海域深海环境中的腐蚀规律。方法 采用深海高效串型试验装置对304不锈钢和316L不锈钢在西太平洋深海环境中进行深海实海腐蚀试验,分析不锈钢的腐蚀形貌、腐蚀速率和点蚀深度规律等,研究2种不锈钢在500、800、1 200、2 000 m海深下的腐蚀规律。结果 304不锈钢与316L不锈钢腐蚀质量损失主要由缝隙腐蚀引起,316L不锈钢的腐蚀程度总体上低于304不锈钢,304不锈钢的腐蚀速率低于0.4 mm/a,316L不锈钢的腐蚀速率低于0.25 μm/a。深海环境中,304不锈钢的腐蚀产物主要是α-Fe2O3、γ-FeOOH、γ-Fe2O3,316L不锈钢的腐蚀产物主要是α-FeOOH、γ-FeOOH、γ-Fe2O3。结论304不锈钢和316L不锈钢在西太深海环境中使用过程中应避免缝隙的形成,降低其发生缝隙腐蚀和点蚀的概率。 相似文献
182.
纸基复合包装中的纸基部分通过水力碎浆分离后可直接用于生产再生纸. 其铝塑部分由1层0.02~0.03 mm厚的铝箔和2层0.03~0.08 mm厚的低密度聚乙烯膜层压复合而成,主要对铝塑的湿法分离进行研究.比较了甲酸、乙酸、盐酸3种剥离剂的分离效果; 用甲酸作为铝塑剥离剂时, 考察了剥离剂的浓度、反应温度、液固比及破碎尺寸对铝塑分离的影响; 根据铝塑分离时间、分离率、铝的损失率等指标,通过正交试验及方差分析优化铝塑分离的工艺条件. 结果表明,甲酸分离铝塑的最优条件: 剥离剂浓度为4 mol/L, 反应温度为60 ℃,液固比为60 L/kg, 破碎尺寸为5 cm×5 cm. 在该条件下, 铝塑的分离率达到100%. 相似文献
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184.
Jill P. Collins Christian A. Vossler 《Journal of Environmental Economics and Management》2009,58(2):226-235
This paper uses laboratory experiments with induced values to address fundamental issues related to the incentive compatibility of choice experiment value elicitation questions. In particular, we compare two- versus three-option choice sets and the effect of using alternative provision rules, including one where the outcome is influenced by both participant and “regulator” votes. We find the overall proportion of choices that are inconsistent with induced preferences is rather low. However, there are more deviations from induced preferences for two-option choice sets, and for alternatives to a simple plurality vote implementation rule. A multinomial probit analysis of choices in tandem with a mixed logit welfare analysis suggests there is a statistically significant but modest degree of bias towards selecting the status quo option. 相似文献
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186.
本文通过农田试验 ,得出氧化塘底泥可以改良土壤结构、增加有机质含量、微生物数量、提高作物产量的结论。因此 ,底泥可以作为一种有机肥应用于农业。 相似文献
187.
医疗废物焚烧过程中脱氯机理和试验 总被引:1,自引:0,他引:1
医疗废物中包括含有大量的PVC,焚烧时会产生HCl从而污染环境,因此医疗废物在焚烧处理时需要进行脱氯。经热力学计算可知,医疗废物焚烧炉内喷入脱氯吸收剂在燃烧过程脱氯,效果最好的脱氯剂是Ca(OH)2、CaO、CaCO3、MgCO3、Mg(OH)2和MgO。在固定床上进行的医疗废物焚烧过程中脱氯试验结果表明:温度对脱氯有着重要的影响,最佳脱氯温度为800℃左右;吸收剂粒径越小,脱氯效率越高;随着Ca/Cl值的增大脱氯率增大,但增加的速度却趋于平缓,所得最佳Ca/Cl值为2.5~3。 相似文献
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189.
Since the ability to degrade lignin with one kind of white-rot fungi or bacteria was very limited, superior mixed flora‘s ability to degrade lignin was investigated by an orthogonal experiment in this paper. The results showed that superior mixed flora reinforced the ability to degrade lignin, the degradation rates of both sample 9 and 10 were beyond 80% on the day 9. The cooperation between lignin peroxidase(LiP), Mn-dependent peroxidase(MnP) and laccase (Lac) for lignin degradation was also studied. By examining the activities of three enzymes produced by superior mixed flora, it was found that Lac was a key enzyme in the process of biological degradation of lignin but Lip was not; the enzyme activity ratios of Lac/MnP and Lac/LiP were significantly correlative with the degradation rate of lignin at the 0.01 level; and the ratio of MnP/LiP was an important factor affecting the degradation rate of lignin. 相似文献
190.
Yellow River water transfer for Tianjin is important in solving the water shortage in Tianjin, which facilitate economic development and social progress for many years. Fresh water drawn from Yellow River( i. e., Yin-Huang water) becomes saltier and saltier when being stored in the Bei-Da-Gang reservoir. We qualitatively analyze the water salinization mechanism based on mass transfer theory. The main factors are salinity transfer of saline soil, evaporation concentrating, and the agitation of wind. A simulative experimental pond and an evaporation pond were built beside the Bei-Da-Gang reservoir to quantitatively investigate the water salinization based on water and solute balance in the simulative pond. 80% of increased [Cl^-] is due to the salinity transfer of the saline soil and the other 20% is due to evaporation concentrating, so the former is the most important factor. We found that the salinization of Yin-Huang water can be described with a zero-dimension linear model. 相似文献