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利用基于液态奶牛粪便厌氧消化物的片剂促进底栖微藻的生长。

Enhanced growth of benthic microalgae by tablet from liquid dairy cattle manure-based anaerobic digestate.

机构信息

Graduate School of Integrated Sciences for Life, Hiroshima University, 1-4-4 Kagamiyama, Higashi-Hiroshima, 739-8528, Japan.

Graduate School of Integrated Sciences for Life, Hiroshima University, 1-4-4 Kagamiyama, Higashi-Hiroshima, 739-8528, Japan; Seto Inland Sea Carbon-neutral Research Center, Hiroshima University, 1-4-4 Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8528, Japan.

出版信息

Chemosphere. 2024 Sep;363:142943. doi: 10.1016/j.chemosphere.2024.142943. Epub 2024 Jul 24.

Abstract

An effective strategy for utilizing anaerobic digestates is required to promote biomass power generation. We developed an anaerobic digestate tablet using liquid dairy cattle manure derived from a small mesophilic anaerobic digester installed on a dairy farm. Anaerobic digestate tablets are intended for use in the fertilization of oligotrophic coastal seas to promote primary production. The purpose of this study was to evaluate (1) the dissolution behavior of nutrients from anaerobic digestate tablets and (2) the effect of the application of anaerobic digestate tablets on the growth of benthic microalgae using a culture experiment. Batch experiments were conducted to investigate the dissolution behavior of the nutrients. Cumulative amounts of dissolved inorganic nitrogen and phosphate in the anaerobic digestate tablet ranged from 110 to 28.9 μg g after 28 days. The dissolved inorganic nitrogen in the anaerobic digestate tablet was mainly ammonium nitrogen and accounted for 92.4-96.9%, which is advantageous for the growth of microalgae. The growth curve of the benthic microalga Nitzchia longissima was monitored using f/2 medium added to the anaerobic digestate tablet. The growth of Nitzchia longissima was two orders of magnitude greater than that of the positive control. The enhanced growth of Nitzchia longissima by the anaerobic digestate tablet was considered a concomitant effect of moderate dissolution of ammonium nitrogen and high affinity for benthic microalgae. In conclusion, the anaerobic digestate tablets prepared in this study have the advantage of supplying nitrogen to benthic microalgae. This study proposes a new method for utilizing anaerobic digestates.

摘要

为促进生物质发电,需要寻找一种有效的方法来利用厌氧消化物。我们利用从小型常温厌氧消化器中获得的液态奶牛粪肥开发了一种厌氧消化物片剂,这种消化器安装在一个奶牛场。厌氧消化物片剂旨在用于贫营养沿海海域的施肥,以促进初级生产。本研究的目的是评估(1)厌氧消化物片剂中养分的溶解行为,以及(2)使用培养实验评估厌氧消化物片剂对底栖微藻生长的影响。进行了批处理实验以研究养分的溶解行为。在 28 天后,厌氧消化物片剂中溶解的无机氮和磷的累积量范围从 110 到 28.9μg/g。厌氧消化物片剂中的溶解无机氮主要是铵态氮,占 92.4-96.9%,这有利于微藻的生长。使用添加了厌氧消化物片剂的 f/2 培养基监测底栖微藻长崎菱形藻的生长曲线。长崎菱形藻的生长速度比阳性对照快两个数量级。厌氧消化物片剂促进长崎菱形藻生长被认为是铵态氮适度溶解和对底栖微藻具有高亲和力的伴随效应。总之,本研究中制备的厌氧消化物片剂具有为底栖微藻提供氮的优势。本研究提出了一种利用厌氧消化物的新方法。

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