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Nitrogen retention of biochar derived from different feedstocks at variable pyrolysis temperatures

机译:在可变的热解温度下源自不同原料的生物炭的氮保留

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Pyrolysis temperature is known to affect the potential of biochar as a nutrient-holding soil amendment, but the mechanism is unclear. In this study, physiochemical properties of biochar derived from switchgrass, water oak and biosolid at different pyrolysis temperatures were characterized using multiple techniques. In addition, biochar sorption of nitrogen nutrients in forms of ammonium (NH4+), nitrite (NO2-) and nitrate (NO3-) was investigated. The results indicated that the profound effects of pyrolysis temperature on biochar physiochemical properties were feedstock-specific. Similarly, biochar derived from different feedstocks at different temperatures exhibited different strengths to retain NH4+, NO2- and NO3-. The maximum NH4+ retention capacities were found with the biochar of switchgrass produced at 800 degrees C (10.47 mg g(-1)), biochar of water oak at 400 degrees C (3.82 mg g(-1)), and raw biosolids (43.29 mg g(-1)). Meanwhile, biochar was found to have limited (switchgrass and water oak) and negative (biosolids) retention for NO2- and NO3-. The cation exchange capacity (CEC) and morphological characteristics (e.g., porosity) were found to be the predominant factors affecting biochar NH4+ sorption.
机译:众所周知,热解温度会影响生物炭作为养分土壤改良剂的潜力,但机理尚不清楚。在这项研究中,使用多种技术表征了柳枝,、水栎和生物固体在不同热解温度下生物炭的理化特性。此外,还研究了铵(NH4 +),亚硝酸盐(NO2-)和硝酸盐(NO3-)形式的氮养分对生物碳的吸附作用。结果表明,热解温度对生物炭理化性质的深远影响是原料特异性的。类似地,在不同温度下衍生自不同原料的生物炭表现出不同的强度来保留NH4 +,NO2-和NO3-。发现最大的NH4 +保留能力是在800摄氏度下生产的柳枝bio生物炭(10.47 mg g(-1)),在400摄氏度下生产的水栎生物炭(3.82 mg g(-1))和原始生物固体(43.29)毫克g(-1))。同时,发现生物炭对NO2-和NO3-的保留能力有限(柳枝and和水橡树),且负保留(生物固体)。发现阳离子交换容量(CEC)和形态特征(例如,孔隙率)是影响生物炭NH 4+吸附的主要因素。

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