首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Optimization of pilot-scale in-vessel composting process for various agricultural wastes on elevated temperature by using Taguchi technique and compost quality assessment
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Optimization of pilot-scale in-vessel composting process for various agricultural wastes on elevated temperature by using Taguchi technique and compost quality assessment

机译:通过使用Taguchi技术和堆肥质量评估,优化各种农业废物的飞行员规模堆肥过程中的各种农业废物

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Rapid treatment processing for agricultural waste is of the utmost importance with the boom in the agriculture sector of China. This research aimed to examine the influence and optimize the applied tem-perature and allowed processing time in accelerating the degradation and mineralization rates of the in-vessel composting of agricultural wastes. Under the umbrella of Taguchi technique, total 09 experi-ments were conducted with three levels of temperature (55 degrees C, 65 degrees C, 75 degrees C) and time (15 h, 18 h, 22 h) in a pilot-scale composter equipped with control systems for temperature, aeration, agitation, and humidity for the composting of poultry manure (PM), vegetable waste (VW), and rice straw (RS) mixed at ratio 5.5:3.5:1 respectively. Results showed that among all treatments, the combination of temperature 65 degrees C and time 18 h was an optimal treatment based on S/N ratio and experimental data analysis. Material Loss Analysis of this most stabilized compost showed final masses of mixed raw material, dry matter, mois-ture contents, TN, and TP were reduced by 78 %, 50 %, 93 %, 23 %, and 41 % of initial masses respectively. Elimination rates of volatile fatty acid and NH4+-N were observed at 98 % and 79 %, respectively. Little higher pH (8.3) showed slight alkane nature of the optimal compost having 26 wt.% moisture content, 9.9 +/- 0.5 wt. % of dm total nutrients (N + K2O + P2O5), and acceptable limits of heavy metals. All these physiochemical characteristics were within limits of the Chinese Standards of Organic Fertilizer (2012). Overall medium size particle distribution was observed under the macroscopic analysis. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:农业废物的快速处理加工是中国农业部门的热潮至关重要。该研究旨在研究影响和优化应用的温度和允许的加工时间,以加速农业废物的血管内堆肥的降解和矿化率。在Taguchi技术的伞下,共有09个经验,用三个水平的温度(55摄氏度,65℃,75℃)和导频刻度堆积器中的时间(15小时,18小时,22小时)进行配备用于堆肥(PM),蔬菜废物(VW)和稻草(RS)分别以比例为5.5:3.5:1的堆肥的温度,通气,搅拌和湿度的控制系统。结果表明,在所有治疗中,温度65摄氏度和时间18小时的组合是基于S / N比和实验数据分析的最佳处理。这种最稳定的堆肥的物质损失分析显示出最终的混合原料,干物质,毛囊 - 试验含量,TN和TP分别降低了78%,50%,93%,23%和41%的初始质量。在98%和79%的情况下观察到挥发性脂肪酸和NH4 + -N的消除率。较高的pH(8.3)显示出具有26重量%的最佳堆肥的轻微烷烃性质。%水分含量,9.9 +/- 0.5重量%。 DM总营养素的百分比(N + K2O + P2O5),以及重金属的可接受限制。所有这些物理化学特征都在中国的有机肥标准(2012)的范围内。在宏观分析下观察到整体中等大小的颗粒分布。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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