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61.
62.
以猪粪和酒糟为发酵原料,考察了5种混合比例(猪粪与酒糟总固体含量(TS)比100:0、95:5、90:10、80:20、50:50)下混合厌氧发酵的产甲烷特性,并研究了其三元pH缓冲体系特征。结果表明,混合比例显著影响猪粪与酒糟混合发酵的甲烷产率(P-1(VSadded)),比纯猪粪厌氧发酵的甲烷产率提高了6.2%。纯猪粪、猪粪与酒糟TS比为95:5的2组累积产甲烷量符合修正Gompertz方程(R2=0.993 3; R2=0.989 6),无明显滞后期。酒糟含有的大量硫酸盐影响了甲烷产量。VFAs-氨氮-TIC三元pH缓冲体系特征的研究结果表明,由于酒糟的碱度严重缺失,酒糟添加量过大时,体系偏离合适的pH缓冲区域,体系酸度过高,抑制了厌氧发酵的进行。 相似文献
63.
Caihong Huang Zhurui Tang Beidou Xi Wenbing Tan Wei Guo Weixia Wu Caiyun Ma 《Frontiers of Environmental Science & Engineering》2021,15(6):127
64.
65.
A fungal consortium including Aspergillus niger, Mucor hiemalis and Galactomyces geotrichum was tested for the treatment of dairy wastewater. The bio-augmentation method was tested at lab-scale (4 L), at pilot scale (110 L) and at an industrial scale in Wastewater Treatment Plants (WWTP). The positive impact of fungal addition was confirmed when fungi was beforehand accelerated by pre-culture on whey (5 g/L lactose) or on the dairy effluent. Indeed, chemical oxygen demand (COD) removal yields increased from 55% to 75% for model medium, diluted milk. While after inoculation of an industrial biological tank from a dairy factory with the fungal consortium accelerated by pre-cultivation in a 1000 L pilot plant, the outlet COD values decreased from values above the standard one (100 mg/L) to values in the range of 50-70 mg/L. In addition, there was a clear impact of fungal addition on the ’hard’ or non-biodegradable COD owing to the significant reduction of the increase of the COD on BOD 5 ratio between the inlet and the outlet of the biological tank of WWTP. It was in the range of 451%-1111% before adding fungal consortium, and in the range of 257%-153% after bio-augmentation with fungi. An inoculated bioreactor with fungal consortium was developed at lab-scale and demonstrated successfully at pilot scale in WWTP. 相似文献
66.
Bart Van der Straeten Jeroen Buysse Stephan Nolte Ludwig Lauwers Dakerlia Claeys Guido Van Huylenbroeck 《Journal of Environmental Planning and Management》2010,53(8):1011-1030
The EU Nitrate Directive has spurred many countries to regulate manure production and manure application. Farmers have three allocation options: spreading manure on their own land, transporting manure to other farmers' land or processing manure. The manure problem can be seen as an allocation problem. To better understand this allocation problem, we have developed the spatial mathematical programming multi-agent simulation (MP-MAS) model. This model has been applied in Flanders, Belgium, a region with a high concentration of livestock. The model evaluates the cost efficiency of policy intervention in the manure market through obliged processing. We propose to further optimise the policy using a regionally differentiated manure pressure indicator, which is directly derived from the dual outcome of the mathematical programme. This indicator increases transparency in the manure and processing market, leading to better decision support about location and type of manure processing. 相似文献
67.
土霉素降解菌TJ-1在猪粪无害化处理中的作用 总被引:6,自引:0,他引:6
利用普通理化分析结合Biolog微平板技术研究了土霉素高效降解菌Staphylococcus sp.TJ-1在新鲜猪粪无害化处理中的作用.结果表明,土霉素高效降解菌的接种能显著提高猪粪中土霉素的降解效率(p<0.05),21d堆肥结束时可将土霉素降解率从62.7%提升至82.0%.堆肥结束后,不接种降解菌的普通堆肥工艺和接种降解菌的高效堆肥工艺中NH+4-N含量分别为189.34、42.36 mg·kg-1,NO-3-N含量分别为439.38、238.06 mg·kg-1.Biolog结果显示,土霉素降解菌TJ-1对土霉素中碳源的代谢有利于堆体中氨基酸类及芳香族化合物等氮源的降解,缓解了堆体中有毒有害物质对其他微生物的损伤,保证了微生物群落的多样性和活性,对维护堆体生态系统的稳定性具有良好作用.因此,接种高效降解菌进行堆肥是一种良好的消除抗生素残留的猪粪无害化工艺. 相似文献
68.
《Journal of environmental science and health. Part. B》2013,48(2):355-362
Atmospheric emission of the soil fumigant 1,3-dichloropropene (1,3-D) has been associated with the deterioration of air quality in certain fumigation areas. To minimize the environmental impacts of 1,3-D, feasible and cost-effective control strategies are in need of investigation. One approach to reduce emissions is to enhance the surface layer of a soil to degrade 1,3-D. A field study was conducted to determine the effectiveness of composted steer manure (SM) and composted chicken manure (CKM) to reduce 1,3-D emissions. SM or CKM were applied to the top 5-cm soil layer at a rate of 3.3 or 6.5 kg m?2. An emulsified formulation of 1,3-D was applied through drip tape at 130.6 kg ha?1 into raised beds. The drip tape was placed in the center of each bed (102 cm wide) and 15 cm below the surface. Passive flux chambers were used to measure the loss of 1,3-D for 170 h after fumigant application. Results indicated that the cumulative loss of 1,3-D was about 48% and 28% lower in SM- and CKM-amended beds, respectively, than in the unamended beds. Overall, both isomers of 1,3-D behaved similarly in all treatments. The cumulative loss of 1,3-D, however, was not significantly different between the two manure application rates for either SM or CKM. The results of this study demonstrate the feasibility of using composted animal manures to control 1,3-D emissions. 相似文献
69.
Borage, white mustard and phacelia, green manure plants currently used in agriculture to improve soil properties were cultivated for 10 wk on various polluted soils with metal(loid) concentrations representative of urban brownfields or polluted kitchen gardens. Metal(loid) bioavailability and ecotoxicity were measured in relation to soil characteristics before and after treatment. All the plants efficiently grow on the various polluted soils. But borage and mustard only are able to modify the soil characteristics and metal(loid) impact: soil respiration increased while ecotoxicity, bioaccessible lead and total metal(loid) quantities in soils can be decreased respectively by phytostabilization and phytoextraction mechanisms. These two plants could therefore be used for urban polluted soil refunctionalization. However, plant efficiency to improve soil quality strongly depends on soil characteristics. 相似文献
70.
养殖固体废物掺杂磷肥工艺中养殖固体废物与酸的反应直接影响其有机组成。以鸡粪为研究对象,采用L16(45)正交试验研究了鸡粪粒径、酸浓度、鸡粪与酸溶液质量比、反应温度和反应时间对鸡粪在硝酸和磷酸溶液中水解过程的影响。结果表明,硝酸溶液中影响因素显著性依次为鸡粪与硝酸质量比、反应时间、硝酸浓度、鸡粪粒径、反应温度,最优工艺条件为鸡粪粒径0.20mm、硝酸质量分数15%、鸡粪与硝酸质量比0.2∶1.0、反应温度95℃、反应时间4h;在磷酸溶液中影响因素显著性依次为鸡粪与磷酸质量比、反应温度、鸡粪粒径、磷酸浓度、反应时间,鸡粪水解率与反应温度间呈正相关关系,最优工艺条件为鸡粪粒径0.40mm、磷酸质量分数60%、鸡粪与磷酸质量比0.1∶1.0、反应温度95℃、反应时间8h。鸡粪比表面积及其单位质量耗酸量、美拉德反应是制约鸡粪在硝酸和磷酸中水解反应的内因。研究结果为养殖固体废物掺杂有机磷肥的研发和推广提供了理论基础。 相似文献