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某生产性IC反应器内颗粒污泥钙化规律的追踪调研
Follow-up Investigation on Granular Sludge Calcification in an Operating IC
收稿日期:2019-09-23  
DOI:10.11980/j.issn.0254-508X.2020.02.006
关键词:  造纸废水  钙化  钙浓度  颗粒污泥
Key Words:papermaking wastewater  calcification  calcium concentration  granular sludge
基金项目:有机工业废水处理技术的节能增效及产业化应用 0126-202071708 ; 陕西省自然科学基础研究计划项目 2017JQ5097 有机工业废水处理技术的节能增效及产业化应用(0126-202071708);陕西省自然科学基础研究计划项目(NO 2017JQ5097)。
作者单位
汪琴 陕西科技大学环境科学与工程学院 
张安龙 陕西科技大学环境科学与工程学院 
侯银萍 陕西科技大学环境科学与工程学院 
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摘要:为了解处理废纸造纸废水的颗粒污泥钙化规律,对陕西某废纸造纸废水处理厂IC反应器内颗粒污泥的钙化进行了1年的跟踪调研,考察了颗粒污泥钙化过程中的形态结构、无机物含量和类型及厌氧处理效果。结果表明,随着颗粒污泥钙化程度的加深,颗粒污泥对Ca2+、COD的去除率下降,颗粒污泥中无机成分含量增加,干燥后的颗粒污泥颜色由深变浅;从颗粒污泥中的无机物类型来看,前期是以方解石形式存在的CaCO3为主且掺杂少量SiO2,后期是方解石和文石两种形式共存的CaCO3,同时还伴随有FeCO3、Fe2O3。从颗粒污泥的结构来看,颗粒污泥的孔隙和空穴在减少,被呈片状和粒状聚集体的沉积物所覆盖,杆状菌和球菌等减少。高通量测序对颗粒污泥中产甲烷菌的分类进行了分析,发现随着反应器运行时间的延长,乙酸型产甲烷菌的比例在逐渐增加,氢营养型产甲烷菌的比例在大幅度减少。最后综述了现有的钙化防治措施或办法,并从微生物角度提出了通过富集功能菌群来减缓钙化的新思路。
Abstract:In order to understand the calcification of granular sludge in papermaking wastewater treatment system, the granular sludge calcification of a recycled papermaking wastewater plant in Shaanxi Province was traching for nearly one year. The morphological structure, inorganic content and type of granulated sludge calcification and the effect of anaerobic treatment were investigated. The results showed that with the deepening of calcification of the sludge, the removal rate of Ca2+ and COD by granular sludge decreased, the content of inorganic components in granular sludge increases, and the color of granular sludge after drying changed from dark to light, in terms of the type of inorganic matter in the granular sludge, CaCO3 mainly existed in the form of calcite and was doped with a small amount of SiO2, in the later stage, CaCO3 coexisted in the form of calcite and aragonite, accompanied by FeCO3 and Fe2O3.The broles and cavities in the structure of the granular sludge were reduced, instead it was covered by deposits of flakes and granular aggregates, and the rod-shaped bacteria and the cocci were reduced. The sub-classification level of methanogens in granular sludge was analyzed by High-throughput sequencing. It was found that the proportion of acetic acid-type methanogens increased gradually with the prolongation of reactor operation time, and the proportion of hydrogen-trophic methanogens decreased significatly. Finally, the existing calcification control measures or methods were reviewed, and a new idea of enriching functional flora to slow down calcification was proposed from the perspective of microorganisms.
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