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181.
182.
港口煤炭码头大气降尘与总量控制 总被引:4,自引:0,他引:4
提出了煤炭港口煤尘污染总量控制的方法 ,论证了港口大气降尘与煤尘污染的关系。运用平均数控制图的原理 ,解决控制港口煤尘污染的问题。 相似文献
183.
对立窑烟尘排放特点与立窑除尘工艺中的问题及对策进行了讨论。分析了立窑烟尘排放特征,对几种常见的立窑除尘的设备和工艺进行了比较,指出袋式除尘器可成功地用于立窑烟气除尘。并且从滤料选择、清灰方式、烟温控制、灰斗的气密性等方面详细地完善了袋式除尘器在立窑烟气除尘中的应用。 相似文献
184.
张义坤 《中国安全科学学报》2012,22(2):151-156
针对煤矿综掘面粉尘治理技术中存在的不足,采用泡沫降尘新技术结合长压短抽式通风方式进行粉尘防治。以霍尔辛赫矿为例,根据井下实际情况,利用GAMB IT和FLUENT建立掘进巷道的几何模型,并对巷道掘进通风过程中粉尘分布规律进行解算,将模拟结果和现场实测数据对比,确定掘进面回风侧的高浓度粉尘分布区。对掘进面煤样进行湿润性试验,确定最佳的发泡剂添加比例。综合以上情况,泡沫降尘技术实施时采用环形前置式喷头布置,发泡剂添加比例定为10‰,并在回风侧距掘进面5 m、距底板2 m处设置风筒,将高浓度粉尘抽出并沉降。现场实测数据显示,泡沫降尘技术降尘效率明显高于喷雾降尘技术。使用泡沫降尘时,在司机侧测得全尘及呼吸性粉尘降尘效率分别达到75.4%和74.7%。 相似文献
185.
186.
根据国家标准,分析了爆炸性粉尘环境危险区域划分的方法和步骤,以粉尘释放源释放频率和形成爆炸混合物的可能性为指标,给出了危险区域划分方法,并以某纺织企业为例进行了说明,所得结果对纺织企业的安全生产具有借鉴意义。 相似文献
187.
188.
模拟酸雨对街道灰尘重金属淋溶的累积释放特征与释放模型 总被引:4,自引:0,他引:4
以泉州市交通繁忙区街道灰尘为研究对象,采用模拟酸雨动态淋溶实验和改进的BCR四步提取法研究街道灰尘中重金属元素在不同酸度(pH=3.5、4.5、5.6)模拟酸雨淋溶下的溶出规律及形态变化.结果表明,街道灰尘中重金属元素的累积释放量均随模拟酸雨pH的降低而增加,当pH值为3.5和4.5时,Cu、Pb、Mn、Ni、V、As和Co的释放过程为快速释放阶段,Cr、Zn和Fe的释放过程分为快速释放和相对平稳释放两个阶段;当pH值为5.6时,除Co、V为快速释放过程外,其余重金属都处于相对慢速的释放过程.动力学方程拟合结果表明,双常数速率方程能更好地描述上述重金属元素的累积释放特征.尘样经模拟酸雨淋溶后,弱酸可溶态中Co、Cu、Mn、Zn、Ni百分含量有所增加,Cr、Fe、Pb百分含量变化不明显;可还原态中Cr、Pb、Cu、Ni百分含量有所增加,Mn、Zn、Co百分含量有所下降;可氧化态中上述各元素的百分含量均有所降低;残渣态中除Ni、Mn百分含量有所下降外,其它元素百分含量变化均不显著. 相似文献
189.
Licorice, a plant indigenous to southern Europe, the Middle East, and northern China, exhibits several pharmacological properties, including estrogenic, anti-tumoral, anti-inflammatory, anti-allergenic, and anti-tussive activities. Prolonged use of licorice is known to produce headaches, hypertension, cardiac arrhythmias, edema, lethargy, dyspnea, sodium retention and loss of potassium in humans. However, to date, the potential adverse health effects due to occupational inhalation exposure of licorice root dust remains unknown. This study was, therefore, undertaken to address this issue. In this cross-sectional study, individuals (30 workers) occupationally exposed to licorice root dust at a licorice producing plant in Shiraz, Iran were recruited. Similarly, 30 healthy male unexposed employees at a telecommunications industry, with identical demographic and socioeconomic status, without any past or current exposure to licorice dust or habitual ingestion of this compound, served as the referent group. Systolic and diastolic blood pressures were measured. Further, individuals underwent electrocardiography, clinical examination and blood chemistry tests. To assess the extent to which subjects were exposed to licorice root dust, atmospheric concentrations of this compound were also measured in the plant. There were no differences in age, weight, height and duration of exposure to licorice dust or length of employment between exposed and referent groups. Atmospheric measurement of licorice dust showed that concentration exceeded the permissible limit of 5 mg m?3. Systolic and diastolic blood pressures of exposed subjects were significantly higher than those of the referent group. Similarly, blood analysis revealed that serum concentrations of potassium and platelet counts were significantly lower in exposed subjects than in referent individuals. Questionnaire data demonstrated that symptoms such as headaches, lethargy, and vertigo were more common in exposed subjects. No abnormal changes were noted in the electrocardiographs of exposed or referent subjects. Our findings provide evidence that inhalation exposure to high concentrations of licorice dust is associated with an increased prevalence of headache, lethargy, and vertigo, as well as hypertension and hypokalemia. None of these changes resulted in increased morbidity and mortality in exposed workers. 相似文献
190.
Coal dust explosion occurs easily in the coal chemical industry. To ensure safety in industrial production, NaY zeolite was used as carrier modified with Fe ions and combined with ammonium polyphosphate (APP) to prepare a novel composite suppressant for coal dust explosion. The explosion suppression performance of novel APP/NaY–Fe suppressant was investigated by flame propagation inhibition experiments. The results show that Fe ion modification can effectively improve the explosion suppression performance. By increasing content, the explosion suppression performance of the explosion suppressant increases. The maximum explosion pressure Pmax of coal dust drops to 0.13 MPa when 50 wt% explosion suppressants were added, and the coal dust explosion cannot continue to expand. Complete suppression of explosion could be achieved by adding 66 wt% explosion suppressants. Combined with XRD, SEM and TG results, the explosion suppression mechanism was proposed. The novel explosion suppressant has high thermal stability, good dispersity and its explosion suppression components distribute uniformly. It shows good explosion suppression performance by the synergistic effect among explosion-suppression components. 相似文献