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Effect of liquid-to-solid ratio on semi-solid Fenton process in hazardous solid waste detoxication
Authors:Li-Fang Hu  Hua-Jun FengYu-Yang Long  Yuan-Ge ZhengCheng-Ran Fang  Dong-Sheng Shen
Institution:a Department of Environmental Engineering, Zhejiang University, Hangzhou 310029, China
b College of Quality and Safety Engineering, China Jiliang University, Hangzhou 310018, China
c College of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou 310012, China
d School of Civil Engineering and Architecture, Zhejiang University of Science and Technology, Hangzhou 310023, China
Abstract:The liquid-to-solid ratio (L/S) of semi-solid Fenton process (SSFP) designated for hazardous solid waste detoxication was investigated. The removal and minimization effects of o-nitroaniline (ONA) in simulate solid waste residue (SSWR) from organic arsenic industry was evaluated by total organic carbon (TOC) and ONA removal efficiency, respectively. Initially, Box-Behnken design (BBD) and response surface methodology (RSM) were used to optimize the key factors of SSFP. Results showed that the removal rates of TOC and ONA decreased as L/S increased. Subsequently, four target initial ONA concentrations including 100 mg kg−1, 1 g kg−1, 10 g kg−1, and 100 g kg−1 on a dry basis were evaluated for the effect of L/S. A significant cubic empirical model between the initial ONA concentration and L/S was successfully developed to predict the optimal L/S for given initial ONA concentration for SSFP. Moreover, an optimized operation strategy of multi-SSFP for different cases was determined based on the residual target pollutant concentration and the corresponding environmental conditions. It showed that the total L/S of multi-SSFP in all tested scenarios was no greater than 3.8, which is lower than the conventional slurry systems (L/S ? 5). The multi-SSFP is environment-friendly when it used for detoxication of hazardous solid waste contaminated by ONA and provides a potential method for the detoxication of hazardous solid waste contaminated by organics.
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