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国家自然科学基金(51178049)

作品数:2 被引量:2H指数:1
相关作者:姜晓满全向春岑艳更多>>
相关机构:北京师范大学更多>>
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Application of high OLR-fed aerobic granules for the treatment of low-strength wastewater: Performance, granule morphology and microbial community
2013年
Aerobic granules, pre-cultivated at the organic loading rate (OLR) of 3.0 kg COD/(m3 ·day), were used to treat low-strength wastewater in two sequencing batch reactors at low OLRs of 1.2 and 0.6 kg COD/(m3 ·day), respectively. Reactor performance, evolution of granule morphology, structure and microbial community at low OLRs under long-term operation (130 days) were investigated. Results showed that low OLRs did not cause significant damage to granule structure as a dominant granule morphology with size over 540 μm was maintained throughout the operation. Aerobic granules at sizes of about 750 μm were finally obtained at the low OLRs. The granule reactors operated at low OLRs demonstrated effective COD and ammonia removals (above 90%), smaller granule sizes and less biomass. The contents of extracellular polymeric substances in the granules were decreased while the ratios of exopolysaccharide/exoprotein were increased (above 1.0). The granules cultivated at the low OLRs showed a smoother surface and more compact structure than the seeded granules. A significant shift in microbial community was observed but the microbial diversity remained relatively stable. Confocal Laser Scanning Microscopy observation showed that the live cells were spread throughout the whole granule, while the dead cells were mainly concentrated in the outer layer of the granule, and the proteins, polysaccharides and lipids were mainly located in the central regime of the granule. In conclusion, granules cultivated at high OLRs show potential for treating low-strength organic wastewater steadily under long-term operation.
Jingyun MaXiangchun QuanHuai Li
关键词:BIODEGRADATION
黄原酸化废弃污泥吸附Cu2+研究被引量:2
2014年
将污水处理厂废弃污泥在碱性环境中用CS2处理,制备黄原酸酯类重金属吸附剂,探究一种有效的废弃污泥资源化途径.用傅里叶转换红外光谱(fourier transform infrared spectroscopy,FTIR)对污泥进行了表征,并通过批量实验研究了污泥对Cu2+的吸附性能以及pH和初始Cu2+浓度的影响.结果表明,黄原酸化成功引入了含硫基团,使黄原酸化污泥的吸附量相对于原始废弃污泥提高了20.6%~46.9%.当Cu2+初始浓度为25 mg·L-1时,黄原酸化污泥对Cu2+的去除率可达96.7%.吸附动力学遵循准二级动力学模型(Pseudo-second-order equation),平衡时间为3 h,吸附速率同时受膜扩散和颗粒内扩散两过程控制;吸附过程符合Langmuir等温模型和Freundlich等温模型,25℃下,由Langmuir模型得到的最大吸附量达142.92 mg·g-1(pH=5),且吸附容量随pH(1~5)及初始Cu2+浓度升高而升高.黄原酸化废弃污泥可作为高效重金属离子吸附剂,实现废弃资源的回收利用.
岑艳全向春姜晓满
关键词:动力学等温线
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