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Psychrophilic anaerobic treatment of dairy wastewater in attached-film packed-bed reactors.

机译:附着膜填充床反应器的乳制品废水的厌氧厌氧处理。

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摘要

Retention of microorganisms in anaerobic digesters by providing an attachment medium potentially can increase their productivity at lower operating temperatures. The objective of this work was to investigate the effectiveness of attached-film bioreactors for psychrophilic anaerobic digestion of dairy manure. Eight digesters were maintained in an environmental chamber and studied at temperatures of 37 and {dollar}rm 10spcirc C.{dollar} Two digesters were packed with limestone gravel, two with pieces cut from non-woven polyester matting, two with a combination of limestone gravel and polyester pieces, and two had no packing. Biogas methane content averaged 66% at {dollar}rm 37spcirc C{dollar} and 74% at {dollar}rm 10spcirc C{dollar} and was generally consistent across all reactors. Because of this all measures of reactor performance showed similar trends for a given reactor type. The polyester medium with its high porosity and surface to volume ratio had the best overall performance at both 37 and {dollar}rm 10spcirc C.{dollar}; The performance of attached-film reactors under psychrophilic conditions with reduced organic loading rates (OLRs) and decreasing hydraulic retention times (HRTs) was evaluated. The reactors packed with mixed media (limestone and polyester) were used. Although the methane yields seem to increase when the OLRs were reduced for lower temperatures, much of this increase may have been due to previously accumulated solids. In general it was seen that a reactor subject to decreasing OLRs performs poorly in terms of waste treatment and energy production. The influence of bioaugmentation on the performance of attached-film reactors, under psychrophilic conditions {dollar}rm (10spcirc C){dollar} was also studied. Bioaugmentation improved biogas and methane production at {dollar}rm 10spcirc C{dollar} when a very low OLR of 0.01 kg VS/{dollar}rm m3{lcub}cdot{rcub}d{dollar} was used.; Recovery of digester performance at mesophilic {dollar}rm (37spcirc C){dollar} conditions after temperature cycling to {dollar}rm 10spcirc C{dollar} was evaluated using two digesters packed with limestone gravel, two with pieces cut from non-woven polyester matting, and two with no packing. Two control reactors were maintained continuously at {dollar}rm 37spcirc C.{dollar} None of the reactors regained their original performance in terms of biogas and methane production characteristics or pollution abatement after the temperature was cycled to {dollar}rm 10spcirc C{dollar} then back to {dollar}rm 37spcirc C{dollar}; however, the control reactors also showed a decline in performance during the period of study. It was concluded that the lack of complete recovery of reactor performance could not be attributed to the temperature cycle.
机译:通过提供附着介质将微生物保留在厌氧消化池中,可以在较低的工作温度下提高其生产率。这项工作的目的是调查附着膜生物反应器对奶牛粪尿进行厌氧消化的有效性。八个蒸煮器被放置在一个环境室内,并在37和10spcirc C的温度下进行了研究。{美元}两个蒸煮器装有石灰石碎石,两个蒸煮器由无纺聚酯席子切成碎片,两个蒸煮器结合了石灰石。碎石和聚酯片,两个没有包装。沼气中的甲烷平均含量为{sp} C 37美元,为66%,而{sp 10 circ C}美元则为74%,并且在所有反应堆中通常保持一致。因此,对于给定的反应堆类型,所有反应堆性能指标均显示出相似的趋势。具有高孔隙率和表面积与体积之比的聚酯介质在37和10spcirc C时均具有最佳的整体性能。评估了在低温条件下附着膜反应器的有机负荷率(OLR)降低和水力停留时间(HRT)降低的性能。使用装有混合介质(石灰石和聚酯)的反应器。尽管在较低温度下降低OLR时甲烷的产量似乎有所增加,但这种增加的大部分可能是由于先前积累的固体所致。总的来说,可以看到减少了OLR的反应堆在废物处理和能源生产方面表现不佳。还研究了在嗜冷条件下{rm} rm(10spcirc C){dol}的生物强化对附着膜反应器性能的影响。当使用非常低的OLR为0.01 kg V​​S / {rm} m3 {lcub} cdot {rcub} d {dollar}时,生物强化提高了{sp} 10spcirc C {dol}的沼气和甲烷的产生。使用两个装有石灰石碎石的消化池,其中两个由非织造聚酯切成片,评估了温度循环至{rms} rm 10spcirc C {dollar}后在中温{rm} rm(37spcirc C){dollar}条件下消化器性能的恢复。消光,两个不带包装。将两个控制反应器连续保持在37spcirc rm。{dollar}在温度循环至10spcirc C {dollar之后,没有一个反应器在沼气和甲烷生产特性或减少污染方面恢复了原有性能。 },然后回到{dollar} rm 37spcirc C {dollar};然而,在研究期间,对照反应堆的性能也有所下降。结论是,不能完全恢复反应堆性能不能归因于温度循环。

著录项

  • 作者

    Vartak, Diptish Ramesh.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Agricultural.; Biology Microbiology.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;微生物学;
  • 关键词

  • 入库时间 2022-08-17 11:49:10

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