Elsevier,

Climate Risk Management, Volume 16, 2017

The primary objective of this study is to determine what drives states to plan for the impacts of a changing climate.

Elsevier,

Renewable and Sustainable Energy Reviews, Volume 71, 2017

In this paper, five most emerging renewable energy sources are analyzed.

Elsevier,

Sustainable Cities and Society, Volume 28, 1 January 2017

This paper discusses the CO2 footprint of California's drought during 2012–2014.

Elsevier,

Sustainable Shale Oil and Gas, Chapter 3, 2017, Pages 29–43

This chapter advances SDGs 7 and 13 by discussing detection methods for fugitive methane and whether these gases can be captured and used for commercial opportunity.
This chapter considers the developments in agricultural technology required to fully achieve SDG 2 (zero hunger) can sometimes be detrimental to the environment. Climate smart technologies are needed.
Elsevier,

Challenges and Opportunities in Urban Public Transportation, Chapter 7, 2017, Pages 95–107

Green innovations will be significant in reducing climate change impacts and contributing to goals 9 (industry, innovation and infrastructure), 11 (sustainable cities and communities) and 13 (climate action). This chapter considers a number of sustainable and innovative transport and infrastructure options to support these goals.
The Blueprint for Business Leadership on the SDGs aims to inspire all business — regardless of size, sector or geography — to take leading action in support of the achievement of the Sustainable Development Goals (SDGs). It illustrates how the five leadership qualities of Ambition, Collaboration, Accountability, Consistency, and Intentional can be applied to a business' strategy, business model, products, supply chain, partnerships, and operations to raise the bar and create impact at scale. The Blueprint is a tool for any business that is ready to advance its principled approach to SDG action to become a leader. This chapter relates specifically to SDG 13.
Future climate change is usually projected by coupled earth system models under specific emission scenarios designed by integrated assessment models (IAMs), and this offline approach means there is no

This paper uses ‘Medieval’ drought conditions from the 12th Century to simulate the implications of severe and persistent drought for the future of water resource management in metropolitan Phoenix

ICIS,

ICIS EPCA Supplement 2015, pages 56-57, 26 September 2016

Future progress on managing climate change is in our hands
Landmark emissions targets were outlined at the COP21 meeting in Paris in 2015 and the chemical industry will play an important role in achieving them. The support of the chemical industry is vital for advancing SDG 13.2 to integrate climate change measures into national policies, strategies and planning. This report also emphasises the opportunities that climate action brings to the chemical industry.

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