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生物炭添加物的原料和热解温度对大肠杆菌在饱和和不饱和土壤中迁移的影响。

Influence of feedstock and pyrolysis temperature of biochar amendments on transport of Escherichia coli in saturated and unsaturated soil.

机构信息

U.S. Department of Agriculture, Agricultural Research Service, 230 Bennett Lane, Bowling Green, Kentucky 42104, USA.

出版信息

Environ Sci Technol. 2012 Aug 7;46(15):8097-105. doi: 10.1021/es300797z. Epub 2012 Jul 16.

Abstract

The effects of biochar feedstock, pyrolysis temperature, and application rate (1 and 2%) on the transport of two Escherichia coli isolates through a fine sand soil under water-saturated and partially saturated conditions were investigated in column experiments. Biochars from two feedstocks (poultry litter and pine chips) and pyrolyzed at two temperatures (350 and 700 °C) were evaluated. Both biochars pyrolyzed at 700 °C resulted in significant reductions in E. coli transport, with greater reductions observed with the pine chip biochars. For the low temperature biochars, increased transport was observed for the poultry litter biochar whereas reduced transport was observed for the pine chip biochar. In general, the effect of biochar application on E. coli transport was more pronounced in the unsaturated soils and for the 2% application rates. Large differences were also observed between the two isolates indicating that bacterial surface properties play a role in how biochar affects E. coli transport.

摘要

采用柱状实验研究了生物炭原料、热解温度和施用量(1%和 2%)对两种大肠杆菌分离株在水饱和和部分饱和条件下通过细砂土壤运移的影响。评估了两种原料(家禽粪便和松屑)制成的两种热解温度(350 和 700°C)的生物炭。两种 700°C 热解的生物炭均显著降低了大肠杆菌的迁移,其中松屑生物炭的降低效果更为明显。对于低温生物炭,家禽粪便生物炭的迁移增加,而松屑生物炭的迁移减少。一般来说,生物炭的应用对大肠杆菌运移的影响在非饱和土壤和 2%的施用量下更为显著。两个分离株之间也观察到了很大的差异,这表明细菌表面特性在生物炭影响大肠杆菌运移的过程中起着重要作用。

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