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藻类生物炭——生产与特性。

Algal biochar--production and properties.

机构信息

School of Earth and Environmental Science, James Cook University, Cairns 4870, Australia.

出版信息

Bioresour Technol. 2011 Jan;102(2):1886-91. doi: 10.1016/j.biortech.2010.07.106. Epub 2010 Aug 1.

Abstract

This study presents baseline data on the physiochemical properties and potential uses of macroalgal (seaweed) biochar produced by pyrolysis of eight species of green tide algae sourced from fresh, brackish and marine environments. All of the biochars produced are comparatively low in carbon content, surface area and cation exchange capacity, but high in pH, ash, nitrogen and extractable inorganic nutrients including P, K, Ca and Mg. The biochars are more similar in characteristics to those produced from poultry litter relative to those derived from ligno-cellulosic feedstocks. This means that, like poultry litter biochar, macroalgal biochar has properties that provide direct nutrient benefits to soils and thereby to crop productivity, and will be particularly useful for application on acidic soils. However, macroalgal biochars are volumetrically less able to provide the carbon sequestration benefits of the high carbon ligno-cellulosic biochars.

摘要

本研究提供了基线数据,介绍了通过热解八种源自淡水、半咸水和海水环境的绿潮藻而产生的大型藻类(海藻)生物炭的物理化学性质和潜在用途。所有生产的生物炭的碳含量、表面积和阳离子交换容量都相对较低,但 pH 值、灰分、氮和可提取的无机养分(包括 P、K、Ca 和 Mg)含量都较高。与源自木质纤维素原料的生物炭相比,这些生物炭的特性更类似于源自家禽粪便的生物炭。这意味着,与家禽粪便生物炭一样,大型藻类生物炭具有为土壤提供直接养分益处的特性,从而提高作物生产力,并且特别适用于酸性土壤的应用。然而,与高碳木质纤维素生物炭相比,大型藻类生物炭在提供碳封存方面的能力要低得多。

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