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基于生物炭添加和溶磷菌接种的堆肥磷形态转化优化调控方法。

An optimized regulating method for composting phosphorus fractions transformation based on biochar addition and phosphate-solubilizing bacteria inoculation.

机构信息

College of Life Science, Northeast Agricultural University, Harbin 150030, China.

College of Life Science, Northeast Agricultural University, Harbin 150030, China.

出版信息

Bioresour Technol. 2016 Dec;221:139-146. doi: 10.1016/j.biortech.2016.09.038. Epub 2016 Sep 10.

Abstract

The study was conducted to investigate the influence of biochar and/or phosphate-solubilizing bacteria (PSB) inoculants on microbial biomass, bacterial community composition and phosphorus (P) fractions during kitchen waste composting amended with rock phosphate (RP). There were distinct differences in the physic-chemical parameters, the proportion of P fractions and bacterial diversity in different treatments. The contribution of available P fractions increased during composting especially in the treatment with the addition of PSB and biochar. Redundancy analysis showed that bacterial compositions were significantly influenced by P content, inoculation and biochar. Variance partitioning further showed that synergy of inoculated PSB and indigenous bacterial communities and the joint effect between biochar and bacteria explained the largest two proportion of the variation in P fractions. Therefore, the combined application of PSB and biochar to improve the inoculation effect and an optimized regulating method were suggested based on the distribution of P fractions.

摘要

本研究旨在探讨生物炭和/或解磷菌(PSB)接种剂对添加磷矿粉(RP)的厨余垃圾堆肥过程中微生物生物量、细菌群落组成和磷(P)形态的影响。不同处理方式的理化参数、P 形态比例和细菌多样性存在明显差异。在堆肥过程中,特别是在添加 PSB 和生物炭的处理中,有效 P 形态的比例增加。冗余分析表明,细菌组成受 P 含量、接种和生物炭的显著影响。方差分解进一步表明,接种 PSB 和土著细菌群落的协同作用以及生物炭和细菌之间的共同作用解释了 P 形态变化的最大两个比例。因此,建议根据 P 形态的分布,联合应用 PSB 和生物炭来提高接种效果,并提出了一种优化的调节方法。

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