Irshad Sana, Xie Zuoming, Qing Mao, Nawaz Asad, Mehmood Sajid, Alomar Suliman Yousef, Faheem Muhammad, Walayat Noman
School of Civil and Transportation Engineering, Shenzhen University, Shenzhen 518000, China.
School of Environmental Studies, China University of Geosciences, Wuhan 430074, China.
Biology (Basel). 2023 Apr 18;12(4):611. doi: 10.3390/biology12040611.
This study determined the effect of XZM extracellular polymeric substances (EPS) production on the arsenic adsorption capacity of the Biochar- XZM (BCXZM) composite. The XZM was immobilized on corn cobs multifunction biochar to generate the BCXZM composite. The arsenic adsorption capacity of BCXZM composite was optimized at different pHs and As(V) concentrations using a central composite design (CCD)2 and maximum adsorption capacity (42.3 mg/g) was attained at pH 6.9 and 48.9 mg/L As(V) dose. The BCXZM composite showed a higher arsenic adsorption than biochar alone, which was further confirmed through scanning electron microscopy (SEM) micrographs, EXD graph and elemental overlay as well. The bacterial EPS production was sensitive to the pH, which caused a major shift in the -NH, -OH, -CH, -C=O, -C-N, -SH, -COO and aromatic/-NO peaks of FTIR spectra. Regarding the techno economic analysis, it was revealed that USD 6.24 are required to prepare the BCXZM composite to treat 1000 gallons of drinking water (with 50 µg/L of arsenic). Our findings provide insights (such as adsorbent dose, optimum operating temperature and reaction time, and pollution load) for the potential application of the BCXZM composite as bedding material in fixed-bed bioreactors for the bioremediation of arsenic-contaminated water in future.
本研究确定了XZM胞外聚合物(EPS)的产生对生物炭-XZM(BCXZM)复合材料砷吸附能力的影响。将XZM固定在玉米芯多功能生物炭上,制备出BCXZM复合材料。采用中心复合设计(CCD)2在不同pH值和As(V)浓度下对BCXZM复合材料的砷吸附能力进行了优化,在pH 6.9和48.9 mg/L的As(V)剂量下达到了最大吸附容量(42.3 mg/g)。BCXZM复合材料的砷吸附量高于单独的生物炭,扫描电子显微镜(SEM)图像、EXD图和元素叠加也进一步证实了这一点。细菌EPS的产生对pH敏感,这导致了傅里叶变换红外光谱(FTIR)中-NH、-OH、-CH、-C=O、-C-N、-SH、-COO和芳香族/-NO峰的重大变化。关于技术经济分析,结果表明,制备BCXZM复合材料处理1000加仑饮用水(含50μg/L砷)需要6.24美元。我们的研究结果为BCXZM复合材料未来作为固定床生物反应器中处理砷污染水的生物修复的垫料材料的潜在应用提供了见解(如吸附剂剂量、最佳操作温度和反应时间以及污染负荷)。