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Microbial biodegradation of waste materials for nutrients enrichment and heavy metals removal: An integrated composting-vermicomposting process

机译:废料的微生物生物降解,以富集养分和去除重金属:堆肥-堆肥混合过程

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The aim of present study was to improve the quality of vermicompost through different substrates and adding active sewage sludge as a source of N-fixing and P-solublizing bacteria in a shorter time than conventional composting process. The experiment setup included 15-L reactors used for pre-composting, a vermicomposting mixture of activated sewage sludge (control, 2000, 4000 and 6000 mg L-1) and corn stalk residue (40, 60 and 80%). The physicochemical changes in vermicompost caused by the microbial biodegradation and their combinations were measured over a period of 70 days. The results showed that the values of total organic carbon (TOC), total volatile solid (TVS), total Kjeldahl nitrogen (TKN) and carbon to nitrogen ratio (C/N) decreased in all treatments, while those of electrical conductivity (EC), total phosphorous (TP), nitrate and heavy metals increased. A minimum C/N ratio of 13.16% obtained in the 40% corn stalk waste substrate with 4000 mg L-1 activated sludge treatment while it was 23.44% in the 80% corn stalk waste substrate without activated sludge treatment. Results indicated that with the increase in 6000 mg L-1 sewage sludge and with the decrease of 40% corn waste substrate lead a decrease in TKN and an increase in nitrate, viz. 1.36-2.06% and n.d.-1889 mg kg(-1) respectively. However, in comparison to decrease in TKN nitrogen, decrease in TOC (39.94-27.32%), TVS (63.48-43.48%), C/N ratio (63.48-13.43) and pH (7.33-3.15) and increase in EC (1.55-3.15 mS cm(-1)) and TP (2.395-3.31 g kg(-1)) was obtained. The decrease of heavy metals in the final vermicompost materials was detected by noting a low heavy metals concentration in the corn residue
机译:本研究的目的是通过比传统堆肥过程更短的时间,通过不同的基质来改善ver堆的质量,并添加活性污泥作为固氮和增溶P细菌的来源。实验装置包括用于预堆肥的15升反应器,活性污水污泥(对照,2000、4000和6000 mg L-1)和玉米秸秆残留物(40%,60%和80%)的ver堆肥混合物。在70天的时间内测量了因微生物生物降解及其组合引起的ver堆的物理化学变化。结果表明,在所有处理中,总有机碳(TOC),总挥发性固体(TVS),凯氏氮(TKN)和碳氮比(C / N)的值均降低,而电导率(EC)的值均降低,总磷(TP),硝酸盐和重金属增加。经4000 mg L-1活性污泥处理的40%玉米秸秆废料基质的最低C / N比为13.16%,而未经活性污泥处理的80%玉米秸秆废料基质的最低C / N比为23.44%。结果表明,随着6000 mg L-1污水污泥的增加和40%玉米废料基质的减少,TKN减少,硝酸盐增加,即。 1.36-2.06%和n.d.-1889 mg kg(-1)。但是,与减少TKN氮相比,TOC减少(39.94-27.32%),TVS(63.48-43.48%),C / N比(63.48-13.43)和pH(7.33-3.15)以及EC升高(1.55)获得-3.15 mS cm(-1))和TP(2.395-3.31 g kg(-1))。通过注意到玉米残留物中重金属的浓度低,可以检测出最终ver杂材料中重金属的减少

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