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生物炭改良对土壤碳、氮、磷水解酶活性的影响:一项荟萃分析。

Biochar amendment effects on the activities of soil carbon, nitrogen, and phosphorus hydrolytic enzymes: a meta-analysis.

机构信息

Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology, School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou, 510006, China.

Guizhou Institute of Forest Inventory and Planning, Guiyang, 550003, China.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(22):22990-23001. doi: 10.1007/s11356-019-05604-1. Epub 2019 Jun 10.

Abstract

The aim of this meta-analysis was to synthesize the effects of biochar amendment on soil enzyme activities (SEAs) related to carbon (C), nitrogen (N), and phosphorus (P) cycling. Based on 401 paired comparisons from 43 published studies, the SEAs and main influential factors were analyzed in response to biochar characteristics, soil properties, and experiment conditions. Results showed that biochar additions to soils overall increased the N- and P-cycling SEAs by 14 and 11%, respectively. The enhancement of the N- and P-cycling SEAs was mainly attributable to the microbial stimulation by biochar properties (i.e., nutrient content and porosity) and soil nutrients (e.g., soil organic C and total N). The enhancement was the most significant under the conditions with biochars produced at low temperatures and using feedstock materials with high nutrient content, and biochar applications in acidic or neutral soils, coarse or fine soils, and farmland soils. Biochar additions to soils overall reduced the C-cycling SEAs by 6.3%. The C-cycling SEAs were greatly suppressed under the conditions with low and very high biochar loads, biochars produced at high temperatures and with feedstock materials of herb and lignocellulose, and biochar applications in alkaline, fine, and forest soils. The results were mainly related to the adsorption and inhibition effects of biochars and soil properties (e.g., liming effect, high biochar porosity and aromatic C content) on fungi and the enzymes. Biochar feedstock, C/N and load, and soil total N were the main influential factors on the SEAs. The results from this study demonstrate that biochar amendment is beneficial to improving soil N and P cycling and C sequestration.

摘要

本荟萃分析的目的是综合生物炭改良对与碳(C)、氮(N)和磷(P)循环相关的土壤酶活性(SEA)的影响。基于 43 项已发表研究中的 401 对配对比较,分析了 SEA 和主要影响因素对生物炭特性、土壤性质和实验条件的响应。结果表明,生物炭添加总体上增加了土壤的 N 和 P 循环 SEA 分别为 14%和 11%。N 和 P 循环 SEA 的增强主要归因于生物炭特性(即养分含量和孔隙率)和土壤养分(例如土壤有机 C 和总 N)对微生物的刺激。在生物炭低温生产和使用高养分含量原料、生物炭应用于酸性或中性土壤、粗或细土壤以及农田土壤的条件下,增强效果最为显著。生物炭添加总体上降低了土壤的 C 循环 SEA 为 6.3%。在低生物炭负荷和极高生物炭负荷、高温生产和草本及木质纤维素原料的生物炭以及生物炭应用于碱性、细土和森林土壤的条件下,C 循环 SEA 受到极大抑制。这些结果主要与生物炭和土壤性质(例如石灰化效应、高生物炭孔隙率和芳香 C 含量)对真菌和酶的吸附和抑制作用有关。生物炭原料、C/N 比和负荷以及土壤全氮是 SEA 的主要影响因素。本研究结果表明,生物炭改良有利于提高土壤 N 和 P 循环以及 C 固存。

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