4.4 Article

Long-term effects of sewage sludge-derived biochar on the accumulation and availability of trace elements in a tropical soil

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JOURNAL OF ENVIRONMENTAL QUALITY
卷 50, 期 1, 页码 264-277

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WILEY
DOI: 10.1002/jeq2.20183

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  1. National Council of Technological and Scientific Development (CNPq)

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The study examined the impact of sewage sludge biochar on trace elements in tropical soil over 5 years, showing an increase in the availability of essential and beneficial elements without raising concentrations of harmful elements. This suggests that pyrolysis of domestic sewage sludge can be a suitable strategy for safely utilizing this residue in tropical agriculture.
Thermal treatment by pyrolysis has been proposed as a sustainable alternative to enable the agricultural use of sewage sludge. The solid product obtained via pyrolysis of sewage sludge is called sewage sludge biochar and presents several advantages for its use as a fertilizer or soil conditioner. However, there are concerns about the accumulation and dynamics of trace elements in soil amended with sewage sludge biochar over the years. This study examined the effect of sewage sludge biochar, under field conditions for 5 yr, on the accumulation and availability of trace elements in a tropical soil. For this, 15 t ha(-1) of sewage sludge biochar produced at 300 and 500 degrees C were applied in the first two growing seasons. Application was interrupted from the third to the fifth seasons to assess the residual effect of sewage sludge biochar in the soil. The total and available trace element concentrations were determined. The total contents of trace elements showed the following variation in the soil over the 5 yr (mg kg(-1)): Cd (16.8-20.0), Co (19.5-21.5), Cr (98.2-125.7), Cu (8.1-17.1), Mn (62.9-85.7), Ni (20.3-35.0), Pb (27.0-52.4), and Zn (20.3-35.8). There was no change in the availability of Cd, Cr, Ni, and Pb over the years. Additionally, a residual effect of the sewage sludge biochar was the increase in availability of trace elements that are considered essential (Cu, Mn, and Zn) and beneficial elements (Co) for plants. Therefore, in relation to contamination by trace elements, the pyrolysis of sewage sludge of domestic origin proved to be an adequate strategy to enable the safe use of this residue in tropical agriculture.

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