PREPARATION, CHARACTERIZATION OF BIOCHAR FOR A SUSTAINABLE SOIL HEALTH

R. A, Vidhya A.
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Abstract

Recent research suggests that biochar is a promising approach to minimize soil contamination caused by heavy metals and organic pollutants. It is also involved in the amendment of soil by altering the nutrients, pH and other factors. Through intensive literature review, this paper was aimed to better understand the selection of feedstock processes, preparation, and characterization of biochar. Wide variety of feedstock used for the biochar production based on the cost effectiveness, ease availability and they are ecofriendly to the environment. Among the thermochemical processes, pyrolysis is the promising techniques followed for the production of BC. The stabilization efficacy was mainly determined by cation exchange capacity, pH, and ash content of the biochar. The physicochemical characteristic of the biochar is analyzed using various methods such as SEM, FTIR, TGA and BET analysis. The surface area plays a major role in the metal sorption. The quality characteristics of biochar as a soil amendment varied greatly with the feedstock materials and the pyrolysis conditions. Biochar plays a great role in increasing the pH which helps the acidic soil region and its high-water retention capacity enhance the moisture level in the soil which enhances the microbial communities and its activity. Biochar becomes stabilized in the soil by interacting with soil particles. The inherent characteristics of the biochar as dictated by feedstock and pyrolysis conditions, interact with climatic conditions such as precipitation and temperature to influence how long biochar carbon remains stored in the soil. Due to its carbon sequestration in the soil, it helps in increasing the fertility of the soil and also enhances the crop yield.
可持续土壤健康生物炭的制备和表征
最近的研究表明,生物炭是一种很有前途的方法,可以最大限度地减少重金属和有机污染物对土壤的污染。它还通过改变土壤的养分、pH值和其他因素来修正土壤。通过大量的文献综述,本文旨在更好地了解生物炭的原料选择、制备和表征。基于成本效益,易于获得和对环境友好的基础上,各种各样的原料用于生物炭生产。在热化学过程中,热解是最有前途的生产BC的技术。生物炭的稳定效果主要受阳离子交换量、pH和灰分含量的影响。利用扫描电镜(SEM)、红外光谱(FTIR)、热重分析(TGA)和BET分析等多种方法对生物炭的理化特性进行了分析。表面积对金属的吸附起着重要的作用。生物炭作为土壤改良剂,其质量特性随原料和热解条件的不同而有较大差异。生物炭具有提高土壤pH值的作用,有利于酸性土壤,其高保水能力提高了土壤水分水平,增强了土壤微生物群落及其活性。生物炭通过与土壤颗粒的相互作用在土壤中变得稳定。生物炭的固有特性由原料和热解条件决定,与降水和温度等气候条件相互作用,影响生物炭碳在土壤中储存的时间。由于其在土壤中的固碳作用,它有助于提高土壤的肥力,也提高了作物的产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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