生物炭
脱水
壳聚糖
制浆造纸工业
废物管理
响应面法
过程(计算)
化学
环境科学
热解
色谱法
工程类
岩土工程
生物化学
计算机科学
操作系统
作者
Yahong Yang,Xingfeng Yang,Yirong Chen,Xiaowei Li,Qi Yang,Yangying Li,Po‐Lun Ma,Huining Zhang,Shenghui Xu
摘要
Abstract Due to the colloidal stability, the high compressibility and the high hydration of extracellular polymeric substances (EPS), it is difficult to efficiently dehydrate sludge. In order to enhance sludge dewatering, the process of ultrasonic (US) cracking, chitosan (CTS) re-flocculation and sludge-based biochar (SBB) skeleton adsorption of water-holding substances to regulate sludge dewaterability was proposed. Based on the response surface method, the prediction model of the specific resistance to filtration (SRF) and sludge cake moisture content (MC) was established. The US cracking time and the dosage of CTS and SBB were optimized. The results showed that the optimal parameters of the three were 5.08 s, 10.1 mg/g DS and 0.477 g/g DS, respectively. Meantime, the SRF and MC were 5.4125 × 1,011 m/kg and 76.8123%, which significantly improved the sludge dewaterability. According to the variance analysis, it is found that the fitting degree of SRF and MC model is good, which also confirms that there is significant interaction and synergy between US, CTS and SBB, and the contribution of CTS and SBB is greater. Moreover, the process significantly improves the sludge's calorific value and makes its combustion more durable.
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