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Biochar research activities and their relation to development and environmental quality. A meta-analysis

  • Khalid Mehmood
    ,
  • Elizabeth Chávez Garcia
    ,
  • Michael Schirrmann
    ,
  • ,
  • Claudia Kammann
    ,
  • Nicole Wrage-Mönnig
  • Jülich Research Centre
    ,
  • UNAM
    ,
  • Leibniz Institute for Agricultural Engineering and Bioeconomy
    ,
  • ,
  • University of New South Wales
    ,
  • Universidad Científica del Sur
Research Output: Contribution to journal Article Peer-review

Open access

Publication Information

Output type

Research Output: Contribution to journal Article Peer-review

Original language

English

Article number

22

Journal (Volume, Issue Number)

Agronomy for Sustainable Development (Volume 37, Issue 3)

Publication milestones

  • Published - 01/06/2017

Publication status

Published - 01/06/2017

ISSN

1774-0746

Publication IDs

  • Scopus: 85020537248

Abstract

Biochar is the solid product that results from pyrolysis of organic materials. Its addition to highly weathered soils changes physico-chemical soil properties, improves soil functions and enhances crop yields. Highly weathered soils are typical of humid tropics where agricultural productivity is low and needs to be raised to reduce human hunger and poverty. However, impact of biochar research on scientists, politicians and end-users in poor tropical countries remains unknown; assessing needs and interests on biochar is essential to develop reliable knowledge transfer/translation mechanisms. The aim of this publication is to present results of a meta-analysis conducted to (1) survey global biochar research published between 2010 and 2014 to assess its relation to human development and environmental quality, and (2) deduce, based on the results of this analysis, priorities required to assess and promote the role of biochar in the development of adapted and sustainable agronomic methods. Our main findings reveal for the very first time that: (1) biochar research associated with less developed countries focused on biochar production technologies (26.5 ± 0.7%), then on biochars’ impact on chemical soil properties (18.7 ± 1.2%), and on plant productivity (17.1 ± 2.6%); (2) China dominated biochar research activities among the medium developed countries focusing on biochar production technologies (26.8 ± 0.5%) and on use of biochar as sorbent for organic and inorganic compounds (29.1 ± 0.4%); and (3) the majority of biochar research (69.0±2.9%) was associated with highly developed countries that are able to address a higher diversity of questions. Evidently, less developed countries are eager to improve soil fertility and agricultural productivity, which requires transfer and/or translation of biochar knowledge acquired in highly developed countries. Yet, improving local research capacities and encouraging synergies across scientific disciplines and countries are crucial to foster development of sustainable agronomy in less developed countries.

Funding Details

Countries low on the human development index (Table ; UNDP ) undertook biochar research in four areas: chemistry & fertility (24%), plant performance (22%), GHG & climate (27%) and technology (27%). Similarly, surveyed funding activities revealed an intense support of biochar research on chemistry & fertility (22%), plant performance (33%), GHG & climate (22%) and technology (22%), but just 1.1% of mentioned funding sources originated from countries low on the human development index. Only three publications mentioned funding from countries with low human development index (Table ; Ali et al. ; Deal et al. ; Sparrevik et al. ; UNDP ). Each of these three studies was devoted to the area of plant performance and 2 of the 3 assessed also effects on chemistry & fertility, GHG & climate and technology. Thus, the majority (~99%) of surveyed funding originated from funding sources in highly developed countries (HDI > 0.480; UNDP ). Limited funding from countries with low human development index scores may be the result of limited financial resources (Delmer ). Therefore, a small number of studies were published, but they revealed that low developed countries focused on assessing potential use of biochar to improve agronomic production as reflected by large proportion of studies related to the research topics chemistry & fertility and plant performance. This interest probably relates to findings reporting that biochar can increase biomass and crop yields especially on low fertility soils in the tropics, which are common in developing tropical countries (Crane-Droesch et al. ; Glaser et al. ; Liu et al. ; Barrett and Bevis ; Cornelissen et al. ; Obia et al. ). Therefore, developing countries in the tropics suffering from hunger and poverty supported biochar research with the aim to increase agronomic productivity (Barrett and Bevis ; Folberth et al. ; Mueller et al. ), which clearly links to the zero hunger and reducing poverty Sustainable Development Goals (UN ).
FundersFunding numbers
DFG
KA3442/1-1

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Sustainable Development Goals

  • SDG 2 - Zero Hunger
    SDG 2 Zero Hunger