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首页> 外文期刊>Journal of environmental sciences >Sewage sludge disintegration by high-pressure homogenization: A sludge disintegration model
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Sewage sludge disintegration by high-pressure homogenization: A sludge disintegration model

机译:高压均质化分解污泥:污泥分解模型

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摘要

High-pressure homogenization (HPH) technology was applied as a pretreatment to disintegrate sewage sludge. The effects of homogenization pressure, homogenization cycle number, and total solid content on sludge disintegration were investigated. The sludge disintegration degree (DD_(COD)), protein concentration, and polysaccharide concentration increased with the increase of homogenization pressure and homogenization cycle number, and decreased with the increase of sludge total solid (TS) content. The maximum DD_(COD) of 43.94% was achieved at 80 MPa with four homogenization cycles for a 9.58 g/L TS sludge sample. A HPH sludge disintegration model of DD_(COD)= kN~aP~b was established by multivariable linear regression to quantify the effects of homogenization parameters. The homogenization cycle exponent a and homogenization pressure exponent b were 0.4763 and 0.7324 respectively, showing that the effect of homogenization pressure (P) was more significant than that of homogenization cycle number (N). The value of the rate constant k decreased with the increase of sludge total solid content. The specific energy consumption increased with the increment of sludge disintegration efficiency. Lower specific energy consumption was required for higher total solid content sludge.
机译:高压均质化(HPH)技术被用作分解污泥的预处理。研究了均质压力,均质循环次数和总固体含量对污泥分解的影响。污泥分解度(DD_(COD)),蛋白质浓度和多糖浓度随均质压力和均质化循环次数的增加而增加,随污泥总固体(TS)含量的增加而降低。对于9.58 g / L TS污泥样品,在四个均质循环下,以80 MPa的压力获得的最大DD_(COD)为43.94%。通过多元线性回归建立了DD_(COD)= kN〜aP〜b的HPH污泥分解模型,以量化均质化参数的影响。均质化循环指数a和均质化压力指数b分别为0.4763和0.7324,表明均质化压力(P)的影响比均质化循环数(N)更为显着。速率常数k的值随污泥总固体含量的增加而降低。单位能耗随着污泥分解效率的增加而增加。总固体含量较高的污泥需要较低的单位能耗。

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