Effects of biochar and modified biochar on Chromium contaminated soil properties

A. Siddika, Afm Masum Rabbani, Z. Parveen, M. Hossain
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Abstract

In recent years, increasingly more soils are getting contaminated with organic and inorganic toxins globally due to waste emissions. Among inorganic pollutants, heavy metal like chromium (Cr) is alarming to our environment, even though its environmental management is also ignored. As a result, Cr accumulates in plant tissues at toxic concentrations end up in the food chain. Therefore, pot experiment was conducted to investigate the effects of biochar and modified biochar application on the properties of Cr polluted soils and interaction of Cr with other soil nutrients. Two different biochar viz. rice stubble and saw dust were slow pyrolyzed (450 ± 50ºC) and modified with1M KOH. All biochars were applied at a rate of 20 t ha-1 on soils artificially polluted with Cr at the levels of 0, 100, 200 and 300 µg g-1. The biochars and modified biochars had significant effects (P<0.05) on available K, P, CEC, EC, and N of incubated soils. Therefore, it has convincing evidence that application of biochar and modified biochar is very imperative to improve soil health, ameliorate Cr polluted soils, reduce the amount of carbon produced due to biomass burning and thereby enhances plant growth.
生物炭及改性生物炭对铬污染土壤性质的影响
近年来,由于废物排放,全球越来越多的土壤受到有机和无机毒素的污染。在无机污染物中,重金属铬(Cr)对我们的环境造成了严重的威胁,但其环境管理却被忽视。结果,铬在植物组织中积累到有毒浓度,最终进入食物链。因此,通过盆栽试验,研究了施用生物炭和改性生物炭对Cr污染土壤性状的影响以及Cr与土壤其他养分的相互作用。稻茬和锯末两种不同的生物炭在450±50℃下缓慢热解,并用1m KOH进行改性。所有生物炭均以20 t ha-1的速率施用于Cr人为污染的土壤上,Cr的浓度分别为0、100、200和300µg g-1。生物炭和改性生物炭对土壤速效钾、磷、CEC、EC和N均有显著影响(P<0.05)。因此,有令人信服的证据表明,生物炭和改性生物炭的应用对于改善土壤健康,改善铬污染土壤,减少生物质燃烧产生的碳量,从而促进植物生长是非常必要的。
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