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Characterization of biochars derived from different materials and their effects on microbial dechlorination of pentachlorophenol in a consortium

机译:源自不同材料的生物炭的表征及其对财团中五氯苯酚的微生物脱氯的影响

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The properties of biochars derived from different raw materials (rice husk, bamboo, caragana, and garbage) and their effects on the microbial reductive dechlorination of pentachlorophenol (PCP) were investigated to understand how biochars influence the biotransformation of environmental pollutants. The results indicated that only caragana-derived biochar showed stable electron transfer activity for PCP dechlorination. Electro(chemical) analyses revealed that caragana biochar had the highest electrical conductivity (EC) (2.22 × 10 ~(6) μS cm ~(?1) ), while those of the other biochars were <1500 μS cm ~(?1) . The electron transfer capacities were within the ranges of 61.63–155.83 μmol e ~(?) g ~(?1) . Cyclic voltammetry analysis suggested that there were no obvious redox peaks for the biochars, while the Fourier transform infrared analysis showed similar transmission spectra with variable absorption intensity; this suggested that all biochars possessed similar structures and functional group classes and the enhancement of PCP dechlorination was not attributable to the redox reaction. Overall, the beneficial effects of caragana biochar on PCP dechlorination depended on the EC rather than the redox functional groups, possibly because high EC values enabled the highest electron transfer, and thus resulted in the greatest promotion of reductive dechlorination activity.
机译:研究了不同原料(稻壳,竹子,柠条和垃圾)衍生的生物炭的特性及其对五氯酚(PCP)微生物还原脱氯的影响,以了解生物炭如何影响环境污染物的生物转化。结果表明,只有柠条来源的生物炭对PCP脱氯具有稳定的电子转移活性。电(化学)分析表明,柠条生物炭具有最高的电导率(EC)(2.22×10〜(6)μScm〜(?1)),而其他生物炭的电导率(1500)小于<1500μScm〜(?1) 。电子转移容量在61.63-155.83μmole〜(?)g〜(?1)范围内。循环伏安法分析表明,生物炭没有明显的氧化还原峰,而傅立叶变换红外分析显示出相似的透射光谱,吸收强度可变。这表明所有生物炭都具有相似的结构和官能团类别,并且PCP脱氯的增强并非归因于氧化还原反应。总体而言,柠条生物炭对PCP脱氯的有益作用取决于EC,而不是氧化还原官能团,这可能是因为高EC值可以实现最高的电子转移,从而最大程度地促进了还原性脱氯活性。

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