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PRE-TREATMENT OF WASTEWATER SLUDGE -BIODEGRADABILITY AND RHEOLOGY STUDY

机译:废水污泥的预处理-生物降解性和流变学研究

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This study investigates the changes in biodegradability, rheology and metal concentration of wastewater sludge - non-hydrolyzed (raw), sterilized, and hydrolyzed (thermal alkaline pre-treatment) at total solids concentration from 10-50 g 1~(-1) to ascertain the bioavailability of nutrients for subsequent fermentation. The dissolved solids concentration increased linearly with total solids. Irrespective of the wastewater sludge (raw or, pre-treated), percentage biodegradability in terms of total solids (26.5-44.5%), total COD (25.8-56.5%) and dissolved solids (41.9-66.9%) was maximum around 20 g 1~(-1) solids concentration. The pseudoplasticity of sludge decreased (consistency index decreased from 895.1 to 5.2 and flow behaviour index increased from 0.28 to 0.88, for all sludge types) with pre-treatment and increased with total solids concentration. The pre-treated sludge, namely, sterilized and hydrolyzed sludge showed higher microbial growth (1-2 log cycles increase in comparison to raw sludge) suggesting their susceptibility to microbial degradation. The C:N ratio decreased with pretreatment (raw sludge > sterilized > hydrolyzed) during biodegradation. Although the metal concentration increased in incubated hydrolyzed sludge, the final concentration was within the regulatory norms for agriculture application. Thus, pretreatment of sludge resulted in increase in biodegradability making it an excellent proponent for fermented value-added products.
机译:这项研究调查了总固体浓度从10-50 g 1〜(-1)到10-g的非水解(生),灭菌和水解(热碱预处理)废水污泥的生物降解性,流变学和金属浓度的变化。确定养分的生物利用度,以供后续发酵。溶解的固体浓度随总固体线性增加。不论废水污泥(原始或预处理)如何,总固体含量(26.5-44.5%),总化学需氧量(25.8-56.5%)和溶解固体(41.9-66.9%)的可生物降解百分比最高约为20 g 1〜(-1)固体浓度。预处理使污泥的假塑性降低(稠度指数从895.1降低至5.2,流动行为指数从0.28升高至0.88),并随着总固体浓度的增加而增加。预处理后的污泥,即经过消毒和水解的污泥,显示出更高的微生物生长能力(与生污泥相比,增加了1-2个对数循环),表明它们易于被微生物降解。在生物降解过程中,随着预处理(原始污泥>灭菌>水解)的C:N比降低。尽管在温育的水解污泥中金属浓度增加,但最终浓度在农业应用的法规规范之内。因此,污泥的预处理导致生物降解性的提高,使其成为发酵增值产品的极佳支持者。

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