ICAR Research Complex for NEH Region, Sikkim Centre, Gangtok, Sikkim, 737102, India; Palli Siksha Bhavana, Visva Bharati, Sriniketan, Birbhum, India.
Palli Siksha Bhavana, Visva Bharati, Sriniketan, Birbhum, India.
J Environ Manage. 2021 Jan 15;278(Pt 2):111501. doi: 10.1016/j.jenvman.2020.111501. Epub 2020 Nov 5.
We have quantified the influence of different pyrolysis temperature and feedstocks types on thirty six compositional characteristics of biochar. The properties of biochar were principally influenced more by the feedstocks type than pyrolytic temperature. Higher porosity and surface area illustrated its soil structural modification and nutrient retention capacity along with their utilization for wastewater adsorbents. The total carbon content in all the biochar increased upto 10.14% with the increase in pyrolysis temperature. The produced biochar can replace the conventional fossil fuels due to their high fixed carbon. The cation exchange capacity of biochar augmented with rise in pyrolysis temperature. But the dissolved organic carbon reduced exponentially with increase in temperature. At low temperature pyrolysis the polarity index tends to increase and vice-versa. All the biochar has a potential to alleviate soil boron deficiency due to its higher concentration. Therefore, dissimilar properties of biochar can be produced by selecting the right feedstock type and standardizing specific pyrolytic temperature, depending on the necessity for environmental application in a specific crisis.
我们已经量化了不同热解温度和原料类型对生物炭 36 种组成特性的影响。生物炭的性质主要受原料类型的影响大于热解温度。更高的孔隙率和表面积表明它具有土壤结构改良和养分保持能力,可用于废水吸附剂。所有生物炭的总碳含量随着热解温度的升高增加到 10.14%。由于其高固定碳含量,所生产的生物炭可以替代传统的化石燃料。随着热解温度的升高,生物炭的阳离子交换容量增加。但是,随着温度的升高,溶解有机碳呈指数下降。在低温热解时,极性指数趋于增加,反之亦然。由于较高的浓度,所有生物炭都有可能缓解土壤硼缺乏。因此,可以通过选择合适的原料类型和标准化特定的热解温度,根据在特定危机中环境应用的必要性,生产出具有不同特性的生物炭。