School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, PR China.
School of Energy and Environmental Engineering, Hebei University of Technology, Tianjin 300401, PR China.
Sci Total Environ. 2019 Apr 1;659:473-490. doi: 10.1016/j.scitotenv.2018.12.400. Epub 2018 Dec 27.
As a multi-beneficial amendment, biochar is reasonable and reliable to be employed as an amendment to implement soil remediation. An overview on the manufacture, applications for contaminated soil restoration and revegetation, as well as recommended aspects for future work has been accomplished. One of the objectives of this work presented herein was to determine the effect of feedstock and preparation conditions such as pyrolysis temperature, retention time, gas flow rate, additives on the biochar characteristics and application potentials. Besides, relevant modification or activation technologies have been discussed for the improvement of the biochar functions. The application of biochar could adjust the soil structure (surface area, pore size and distribution etc.), improve the soil physicochemical properties (pH, cation exchange capacity, water retention capacity etc.) and enhance the uptake of soil nutrients for plant growth; In addition, it also can be used to adsorb various contaminants (heavy metals, organic matters), modify the habit and function of microorganism and mitigate climate problem by changing the bioavailability of elements (C, N, K etc.) in soil. These results also provided the possibility to expend the application of biochar to modify the degraded soils in the saline-alkali soil and industrial regions, further increase the usable area of cultivated land. The future research directions could be suggested as long-term field trials, the evaluation of environmental risk and the optimization of biochar production. Moreover, the relevant mechanisms should be adequately considered for maximizing the all-around efficiency of biochar amendments.
作为一种多效改良剂,生物炭作为一种改良剂来实施土壤修复是合理且可靠的。本文对生物炭的制造、在污染土壤修复和植被恢复中的应用,以及未来工作的推荐方面进行了综述。本文的目的之一是确定原料和制备条件(如热解温度、停留时间、气流速率、添加剂)对生物炭特性和应用潜力的影响。此外,还讨论了相关的改性或活化技术,以提高生物炭的功能。生物炭的应用可以调节土壤结构(表面积、孔径和分布等),改善土壤理化性质(pH 值、阳离子交换容量、持水能力等),促进植物生长对土壤养分的吸收;此外,它还可以用于吸附各种污染物(重金属、有机物),改变土壤中元素(C、N、K 等)的生物有效性,从而改变微生物的习性和功能,缓解气候问题。这些结果还为将生物炭的应用扩展到改良盐碱地和工业地区的退化土壤提供了可能性,进一步增加了可耕地的面积。可以提出未来的研究方向,如长期田间试验、环境风险评估和生物炭生产的优化。此外,应充分考虑相关机制,以最大限度地提高生物炭改良剂的全面效率。