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阳光和氧化处理对生物炭中多环芳烃浓度测量的影响。

The influence of sunlight and oxidative treatment on measured PAH concentrations in biochar.

机构信息

Department of Chemistry, Eastern Illinois University, Charleston, IL, 61920, USA.

出版信息

Environ Sci Pollut Res Int. 2015 Sep;22(17):12975-81. doi: 10.1007/s11356-015-4469-8. Epub 2015 Apr 29.

Abstract

The concentration changes of 18 different polycyclic aromatic hydrocarbons (PAHs) in two different biochars were assessed after (1) chemical oxidative treatment with a solution of H2O2 and Na2S2O8, (2) exposure to sunlight with intermittent wetting, and (3) exposure to sunlight with intermittent wetting after mixing in ZnO and Na2S2O8. Chemical oxidative treatment of biochars derived from gasified wood biochar and a gasified wood/Arundo donax mixture led to decreases in six-ring PAHs, but overall significant increases in measured PAH concentration sums for both biochars (from 225 ± 7 to 312 ± 18 μg g(-1) for wood-derived and 165 ± 3 to 244 ± 7 μg g(-1) for mixture-derived). Sunlight exposure of the mixture-derived biochar led to increases in some three- and four-ring PAHs, but overall decreases in summed PAH concentrations (165 ± 3 to 60 ± 1 μg g(-1) with wetting only and 165 ± 3 to 41 ± 4 μg g(-1) when Na2S2O8 and ZnO were included). The mass losses in the sunlight-exposed samples primarily were due to losses of low molar mass (two-ring) PAHs, though high molar mass (five- and six-ring) PAH concentrations also decreased. This result implies sun and rain exposure to biochar, prior to agricultural application, will help reduce potential PAH soil contamination from the biochar.

摘要

评估了(1)用过氧化氢和过硫酸钠溶液进行化学氧化处理、(2)在阳光照射下间歇润湿、以及(3)在与 ZnO 和过硫酸钠混合后在阳光照射下间歇润湿对两种生物炭中 18 种不同多环芳烃(PAHs)浓度的变化。对气化木材生物炭和气化木材/芦竹混合物衍生的生物炭进行化学氧化处理,导致六环 PAHs 减少,但两种生物炭的测量 PAH 浓度总和均显著增加(木材衍生的从 225 ± 7 增至 312 ± 18μg/g,混合物衍生的从 165 ± 3 增至 244 ± 7μg/g)。混合物衍生的生物炭在阳光照射下,一些三环和四环 PAHs 增加,但总 PAH 浓度下降(仅润湿时从 165 ± 3 增至 60 ± 1μg/g,当加入过硫酸钠和 ZnO 时从 165 ± 3 增至 41 ± 4μg/g)。阳光照射下样品的质量损失主要是由于低分子量(二环)PAHs 的损失,尽管高分子量(五环和六环)PAH 浓度也有所下降。这一结果意味着在农业应用之前,生物炭受到阳光和雨水的照射,将有助于减少生物炭对土壤中潜在 PAH 污染的可能性。

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