Dhall Purnima, Siddiqi T O, Ahmad Altaf, Kumar Rita, Kumar Anil
Environmental Biotechnology Division, Institute of Genomics and Integrative Biology, Delhi 110007, India.
ScientificWorldJournal. 2012;2012:105712. doi: 10.1100/2012/105712. Epub 2012 Aug 22.
BOD (Biochemical oxygen demand) is the pollution index of any water sample. One of the main factors influencing the estimation of BOD is the nature of microorganisms used as seeding material. In order to meet the variation in wastewater characteristics, one has to be specific in choosing the biological component that is the seeding material. The present study deals with the estimation of BOD of dairy wastewater using a specific microbial consortium and compares of the results with seeding material (BODSEED). Bacterial strains were isolated from 5 different sources and were screened by the conventional BOD method. The selected microbial seed comprises of Enterobacter sp., Pseudomonas sp. BOD : COD (Chemical oxygen demand) ratio using the formulated seed comes in the range of 0.7-0.8 whereas that using BODSEED comes in the ratio of 0.5-0.6. The ultimate BOD (UBOD) was also performed by exceeding the 3-day dilution BOD test. After 90 days, it has been observed that the ratio of BOD : COD increased in case of selected consortium 7 up to 0.91 in comparison to 0.74 by BODSEED. The results were analyzed statistically by t-test and it was observed that selected consortium was more significant than the BODSEED.
生化需氧量(BOD)是任何水样的污染指标。影响BOD估算的主要因素之一是用作接种材料的微生物的性质。为了适应废水特性的变化,必须特定地选择作为接种材料的生物成分。本研究使用特定的微生物群落对乳制品废水的BOD进行估算,并将结果与接种材料(BODSEED)进行比较。从5个不同来源分离出细菌菌株,并通过传统的BOD方法进行筛选。所选的微生物种子包括肠杆菌属、假单胞菌属。使用配制的种子时,BOD∶COD(化学需氧量)比值在0.7 - 0.8范围内,而使用BODSEED时,该比值为0.5 - 0.6。还通过超过3天稀释BOD试验进行了最终生化需氧量(UBOD)测定。90天后,观察到所选菌群7的BOD∶COD比值增加到0.91,而BODSEED的该比值为0.74。通过t检验对结果进行统计分析,观察到所选菌群比BODSEED更具显著性。