Quincy, Washington, offers an unusual answer to a question increasingly confronting communities across the US: what happens when digital infrastructure becomes the foundation of a local economy. The rural city of roughly 8,100 people has spent years building public amenities that would be difficult to associate with a small agricultural community, including a new aquatic center, an indoor sports complex, modern public facilities and upgraded municipal infrastructure. A new aquatic center featuring a six-lane pool, a lazy river and waterslides recently opened in Quincy, adding another highly visible symbol of the transformation. The larger Q-Plex project, a 143,000-square-foot indoor sports complex, is planned as another major addition to the city’s civic infrastructure. Behind that expansion sits an industrial tax base dominated by data centers, turning computing infrastructure into one of the most consequential economic forces in Quincy’s modern history.
Property Taxes Became the Foundation for Expansion
The scale of the transformation becomes clearer through Quincy’s municipal finances, where data centers now account for 57% of all taxes collected in the city. That concentration gives the industry an outsized role in determining how much public infrastructure the community can afford to build and maintain. Quincy has used that fiscal capacity to improve facilities that extend far beyond the boundaries of the technology sector, including schools, public safety buildings, a hospital, a library, sidewalks and wastewater infrastructure. The city’s high school was among the major education investments supported by a $108 million bond, with the majority of that funding coming from property taxes on data centers. For residents, the economic impact therefore reaches into places that have little obvious connection to cloud computing or artificial intelligence.
A Farming Town Found Another Economic Path
Quincy’s economic identity has not disappeared beneath its technology infrastructure, and agriculture remains central to the city’s commercial life. Potatoes, apples and alfalfa continue to shape the surrounding economy, while food processors such as Lamb Weston remain among the community’s largest employers. The arrival of data centers instead created another economic layer on top of that agricultural foundation, expanding the range of industries capable of supporting local employment and public revenue. Pat Haley, who recently left his position as city administrator after seven years, described the change as the “Quincy miracle.” “Quincy was a farming and ag town. That was your career path if you were going to stay,” he said, describing how data-center development expanded the range of economic opportunities available in the community.
Employment Expanded Beyond the Server Buildings
The economic multiplier surrounding Quincy’s data centers extends beyond the people directly employed inside those facilities. Washington state analyses show that data centers have created approximately 900 direct jobs in Quincy, while estimates presented to the state workgroup suggest that each direct data-center job could support roughly four to six additional indirect or induced jobs. That secondary activity matters in a small community because new industrial employment can increase demand for housing, restaurants, professional services, transportation and other businesses that would otherwise struggle to sustain themselves. The technology sector consequently became a catalyst for economic diversification rather than a replacement for agriculture. Meanwhile, the city’s poverty rate declined sharply from 29.4% in 2012 to 6.2% in 2024, although that change cannot be attributed exclusively to data-center development and reflects broader demographic and economic forces.
Microsoft Chose Quincy for Its Power Advantage
Microsoft’s arrival in Quincy helped establish the foundation for the city’s current technology economy. In 2006, Microsoft purchased 75 acres of agricultural land in an industrial zone for a large company-owned data center that initially supported online services including Hotmail, with the Quincy campus later supporting additional Microsoft workloads. The company’s interest in Quincy reflected one of the most persistent principles in data-center site selection: reliable electricity at competitive prices can outweigh the disadvantages of locating far from major population centers. Quincy sits near the Columbia River, where publicly owned hydroelectric generation contributes to an electricity supply that has historically offered unusually low rates. That energy advantage provided a compelling foundation for a facility whose business model depended on sustained power availability rather than proximity to a traditional urban workforce.
Electricity Costs Tell a More Complicated Story
The relationship between data centers and electricity prices remains one of the most contentious aspects of the Quincy model. Residential electricity costs have risen in the region, but the way those costs are allocated among customer classes makes the relationship between large industrial loads and household bills more complicated than a simple cause-and-effect calculation. The underlying rate structure, however, presents a more complicated picture, because large industrial customers can face different tariffs and infrastructure-cost arrangements from residential customers. Grant County’s electricity-rate structure distinguishes between residential and large industrial customers, making the effect of data-center demand on individual rate classes a matter of utility-specific cost allocation rather than a uniform residential charge. This distinction matters as communities evaluate new projects, since the economic impact depends heavily on how utilities structure rates, finance infrastructure and allocate costs among different customer classes.
Water Management Added Another Layer
Water represents a second major resource question, particularly as modern computing facilities face growing scrutiny over cooling requirements. The EPA says data centers accounted for about 10% of Quincy’s pumped groundwater use, while food processors accounted for 57%, underscoring the city’s unusually large industrial water demand. Microsoft worked with the city to develop the Quincy Water Reuse Utility, a $31 million system that treats and recirculates cooling water for data-center operations. The approach gives the city another mechanism for accommodating industrial activity without treating freshwater consumption as an unavoidable consequence of digital expansion. Still, the experience cannot automatically serve as a blueprint for every market, since water availability, climate conditions, cooling architectures and industrial composition vary considerably between regions. AI-focused facilities introduce an additional complication because their computing loads can require substantially more power and may impose different thermal-management requirements than earlier hyperscale installations.
Growth Created New Pressures for Workers
The economic benefits have not reached every segment of Quincy’s population equally, and that tension complicates the success story. The city has a large Hispanic population, which accounted for about 77.5% of residents in the 2020 Census, alongside a significant migrant farmworker community that works in the region during parts of the year. Agriculture and food processing remain essential sources of employment for these workers, while rapid economic growth and population change have also raised concerns about housing affordability and the cost of living in the community. A community can gain new public buildings and better municipal services while simultaneously making housing and everyday life more difficult for lower-income households. That divergence exposes an important weakness in the traditional argument that large industrial projects automatically improve living standards across an entire population. Economic development can expand the tax base without ensuring that every worker shares equally in the resulting gains.
The AI Era Raises a Bigger Question
Quincy’s experience predates the current wave of AI infrastructure, which makes comparisons with today’s projects increasingly important but difficult. Earlier facilities entered the market during an era when cloud computing, enterprise applications, search and email drove much of the demand for large-scale capacity. AI workloads now place greater pressure on electricity systems, land availability, cooling infrastructure and grid interconnection, creating a materially different development proposition for communities. Cities across the country have responded by debating moratoriums, zoning restrictions and other controls as residents question the effects of large computing projects on power, water, land and local employment. Some of those concerns reflect genuine infrastructure constraints, while others depend on assumptions that require closer examination at the individual project level.
Quincy Offers a Blueprint With Limits
The most consequential lesson from Quincy is not that every small town should pursue data centers, but that digital infrastructure can fundamentally reshape the economic trajectory of a community under the right conditions. Cheap and reliable power gave Quincy an entry point, industrial land provided room for development, and the local government gained a tax base capable of financing public improvements that agriculture alone could not easily support. The city then experienced broader effects alongside that investment, including direct employment, additional economic activity, population growth and new civic infrastructure. The model becomes even harder to replicate as AI facilities demand larger power connections and potentially impose greater pressure on land, water and transmission systems. For communities evaluating the next generation of data centers, Quincy is therefore less a success story to copy than a framework to study, with fiscal capacity, resource allocation, workforce effects and affordability considered together.
