排序方式: 共有43条查询结果,搜索用时 15 毫秒
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石灰石-石膏法烟气脱硫技术中石灰石利用率低导致钙流失严重,为实现脱硫废水中Ca2+的资源化利用,进行糠醛渣改性和Ca2+的吸附特性研究。实验结果表明,利用H3PO4改性后的糠醛渣对脱硫废水中Ca2+具有较高的吸附率;在振荡的前30 min吸附率上升极快,至90 min时基本达到平衡吸附量;对Ca2+浓度对吸附率影响研究结果表明,平衡吸附量与平衡浓度关系符合Langmuir等温吸附方程;在初始Ca2+浓度为300 mg/L的溶液中加入3 g吸附剂,温度30℃条件下振荡90 min,平衡吸附量为8.41 mg/g。 相似文献
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为了探究糠醛生产中的废料糠醛渣对水体中甲基橙的吸附性能和吸附机制,利用FT-IR(傅里叶变换红外光谱)和SEM(扫描电镜)对糠醛渣的结构特性进行表征,浅析糠醛渣对甲基橙的吸附机制;通过模拟试验,考察了吸附剂用量、pH、吸附时间和温度等因素对糠醛渣吸附甲基橙过程的影响;采用吸附动力学模型和吸附等温模型,进一步探讨了糖醛渣吸附机制.结果表明:①糠醛渣结构疏松多孔,表面具有丰富的官能团,有利于吸附.②糠醛渣能高效吸附水中甲基橙,在温度为293 K、pH为4~9、吸附剂用量为0.2 g时,糠醛渣对400 mg/L的甲基橙吸附效果最好;吸附过程在60 min左右达到平衡,并且较好地符合准二级动力学模型(R2=0.999 9);吸附量随温度的升高而减少,表明该吸附过程为放热过程;在293 K时最大理论吸附量为54.35 mg/g,吸附数据更符合Langmuir吸附等温模型(R2=0.993 3),表明糠醛渣对甲基橙的吸附主要为单层吸附.③糠醛渣可再生重复利用,吸附甲基橙后的糠醛渣用0.1 mol/L氢氧化钠溶液进行解吸再生试验,第5次使用时对甲基橙仍然具有较好的吸附效果.研究显示,糠醛渣在室温条件下、较宽的pH范围内能快速高效地吸附水中的甲基橙,并且重复利用性好,是一种在偶氮染料废水处理中具有发展前景的廉价、可再生生物质吸附材料. 相似文献
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Neelam Dwivedi Sandeep Kumar Ashish S. Verma Ghanshyam D. Gupta K.K. Dutta 《毒物与环境化学》2013,95(9):1572-1580
Furfural is an industrial compound used as a process intermediate and as a solvent; it poses a potential inhalation hazard in occupational settings. This study was carried out to find furfural-induced immunotoxicity in Wistar rat following inhalative exposure. The weights of thymus and lymph node were found decreased, while the weights of the liver and the adrenal gland were significantly increased following furfural exposure. Delayed-type hypersensitivity response was found decreased in furfural vapors-exposed animals when compared to that of control animals. The phagocytic index of peritoneal and alveolar exudates showed significant decrease and was most prominent (90%) in 30 days-exposed groups. The number of anti-rat anti-sheep red blood cell immunoglobulin M plaque forming cells of spleen got decreased in furfural-exposed groups in comparison to control. Taken together, this study indicates that inhalation of furfural induces immunotoxic manifestations that could lead to severe immunological disorders. 相似文献
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糠醛废渣制备活性炭对糠醛废水的脱色研究 总被引:1,自引:0,他引:1
以水蒸气为活化剂,用热解糠醛废渣制备活性炭,着重研究了所制备的活性炭对糠醛废水的脱色性能. 结果表明:糠醛废渣制备的活性炭对糠醛废水脱色的最佳温度为50 ℃,并且在很短的时间内即可完成,该活性炭与糠醛废水混合搅拌15 min后,脱色率几乎不再变化. 由于采用糠醛废渣制备活性炭的成本较低,可以适当增加活性炭的投加量以提高糠醛废水的脱色率. 当活性炭投加量为10 g/L时,50 ℃条件下搅拌10 min,糠醛废水脱色率可达到86.65%. 经活性炭脱色后的糠醛废水无色、透明,以去离子水为参比溶液测定其吸光度,与自来水相当. 相似文献
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对企业生产过程中的危险有害因素进行安全评价,是当前企业预防事故发生的有效手段。安全评价技术在国内外已有较长的发展历史,但关于糠醛生产过程的安全评价方法及研究还比较匮乏。在糠醛生产过程中存在着火灾、爆炸、中毒、噪声等危险因素,极易造成大量的人员伤亡和财产损失。根据某糠醛厂的实际情况,结合安全评价的基本程序,采用重大危险源辨识及事故树分析评价法,对危险有害因素进行辨识和评价。结果显示,糠醛厂存在着锅炉超压爆炸的危险,利用事故树分析法可以及时的找出预防途径,有针对性地提出安全改进的合理建议,从而进一步改善糠醛厂生产过程中的环境。评价的结果对糠醛生产企业进行安全决策、减少事故隐患,具有积极的指导意义。 相似文献
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介绍了采用磷酸作活化剂,将糠醛渣制成活性炭的最佳工艺条件。产品活性炭的脱色力及磷酸消耗成本等指标均达到预期理想目标 相似文献
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Deivis E. Lujan-Rhenals Rubén O. Morawicki Steven C. Ricke 《Journal of environmental science and health. Part. B》2013,48(4):305-311
The objective of this research was to determine the minimum inhibitory concentration of 5-hydroxymethyl furfural, furfural, and acetic acid on Saccharomyces cerevisiae (NRRL Y-2233) and Zymomonas mobilis subspecies mobilis (NRRL B-4286) in both detoxified hydrolyzed soybean meal and synthetic YM broth spiked with the three compounds. Soybean meal was hydrolyzed with dilute sulfuric acid (0.0, 0.5, 1.25, and 2.0% wt v?1) at three temperatures (105, 120, and 135°C) and three durations (15, 30, and 45 min) followed by detoxification with activated carbon. Of all the combinations, only the treatments obtained at 135°C, 2.0% H2SO4, and 45 min and the one at 135°C, 1.25% H2SO4, and 45 min showed inhibition in the growth of the tested microorganisms. Spiked YM broths showed inhibition for the highest levels of inhibitors, either applied individually or in combination. 相似文献