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生物炭添加改变了农业生态系统中磷和氮的有效性:一项荟萃分析。

Biochar additions alter phosphorus and nitrogen availability in agricultural ecosystems: A meta-analysis.

机构信息

Department of Forest Management, W.A. Franke College of Forestry and Conservation, University of Montana, Missoula, MT, USA.

Department of Forest Management, W.A. Franke College of Forestry and Conservation, University of Montana, Missoula, MT, USA.

出版信息

Sci Total Environ. 2019 Mar 1;654:463-472. doi: 10.1016/j.scitotenv.2018.11.124. Epub 2018 Nov 9.

Abstract

Biochar is a carbon (C) rich product of thermochemical conversion of organic material that is used as a soil amendment due to its resistance to decomposition and its influence on nutrient dynamics; however, individual studies on biochar effects on phosphorus (P) and nitrogen (N) have proven inconsistent. Herein, we performed a meta-analysis of 124 published studies to evaluate the influence of biochar on available P, microbial biomass P (MBP), and inorganic N (NO-N and NH-N) in global agricultural ecosystems. Overall, the results showed that biochar applications significantly increased surface soil available P by 45% and MBP by 48% across the full range of biochar characteristics, soil type, or experimental conditions. By contrast, biochar addition to soil reduced NO-N concentrations by 12% and NH-N by 11%, but in most cases biochar added in combination with organic fertilizer significantly increased soil NH-N compared to controls. Biochar C:N ratio and biochar source (feedstock) strongly influenced soil P availability response to biochar where inorganic N was most influenced by biochar C:N ratio and soil pH. Biochar made from manure or other low C:N ratio materials, generated at low temperatures, or applied at high rates were generally more effective at enhancing soil available P. It is important, however, to note that most negative results were observed in short-term (<6 months) where long-term studies (>12 months) tended to result in neutral to modest positive effects on both P and N. This meta-analysis indicates that biochar generally enhances soil P availability when added to soils alone or in combination with fertilizer. These findings provide a scientific basis for developing more rational strategies toward widespread adoption of biochar as a soil amendment for agricultural P and N management.

摘要

生物炭是有机物质热化学转化的富碳产物,由于其抗分解性及其对养分动态的影响,被用作土壤改良剂;然而,关于生物炭对磷 (P) 和氮 (N) 的影响的个别研究结果不一致。在此,我们对 124 项已发表的研究进行了荟萃分析,以评估生物炭对全球农业生态系统中有效磷、微生物生物量磷 (MBP) 和无机氮 (NO-N 和 NH-N) 的影响。总的来说,结果表明,在生物炭特性、土壤类型或实验条件的全范围内,生物炭的应用使表层土壤有效磷增加了 45%,微生物生物量磷增加了 48%。相比之下,生物炭添加到土壤中使 NO-N 浓度降低了 12%,NH-N 降低了 11%,但在大多数情况下,与对照相比,生物炭与有机肥一起添加显著增加了土壤 NH-N。生物炭的 C:N 比和生物炭来源(原料)强烈影响生物炭对土壤磷有效性的响应,而无机氮最受生物炭 C:N 比和土壤 pH 的影响。由粪便或其他低 C:N 比材料制成、在低温下生成或高用量施用的生物炭通常更有效地提高土壤有效磷。然而,需要注意的是,大多数负面结果是在短期(<6 个月)观察到的,而长期研究(>12 个月)往往对 P 和 N 都产生中性到适度的积极影响。这项荟萃分析表明,当单独或与肥料一起添加到土壤中时,生物炭通常会提高土壤磷的有效性。这些发现为制定更合理的策略提供了科学依据,以便更广泛地采用生物炭作为农业磷和氮管理的土壤改良剂。

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